Animal carrying device

By setting the design of breathable mesh and movable cover on the transport box, the safety and environmental adaptability of the transport box during impact is solved, and the comfort and safety of the pet is improved.

WO2025165302A1PCT designated stage Publication Date: 2025-08-07JANI INT PTE LTD
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Patent Information

Application Number
PCT/SG2025/050065
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-04-12
Filing Date
2025-01-27
Publication Date
2025-08-07

AI Technical Summary

Technical Problem

The existing transport boxes cannot effectively protect the pets in the box when they are impacted, and the sunlight is exposed to direct sunlight when used outdoors or insufficient lighting is used in the car, which affects the comfort and safety of the pets.

Method used

An animal carrier device is designed. By providing a breathable mesh and a movable shield on the wall of the transport box, the shield has a protective structure, which can be switched at different positions to cover or block the opening, enhancing impact resistance and lighting effects.

Benefits of technology

Improves the safety and comfort of the transport box during impact, ensuring that pets can receive appropriate light and protection in different environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to an animal carrying device. The animal carrying device comprises: a body which has a first wall and a second wall, the second wall being provided with a second opening; and a blocking member which is provided with a protective structure. The blocking member is movably connected to the body, such that the blocking member can be switched between a first position and a second position; when the blocking member is located at the first position, the protective structure at least partially covers the first wall; and when the blocking member is located at the second position, the blocking member at least partially blocks the second opening of the second wall. Figure 2
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Description

[0001] Related Applications for Animal Carrying Devices This application claims priority to Chinese Patent Application No. 2024101425892 filed on January 31, 2024; Chinese Patent Application No. 2024101790010 filed on February 8, 2024; Chinese Patent Application No. 202410437167.8 filed on April 11, 2024; and Chinese Patent Application No. 2024104451761 filed on April 12, 2024, the entire contents of which are incorporated herein by reference. Technical Field The present invention relates to an animal carrying device. Background Art Carrying devices such as transport boxes can be used to carry pets. Transport boxes can be placed on vehicle seats for easy travel. Existing transport boxes are typically provided with ventilation or light-transmitting openings to improve air permeability or light transmittance within the transport box. However, the impact resistance of the transport box walls is generally poor, and when the transport box is impacted, it cannot effectively protect the pet inside. SUMMARY OF THE INVENTION The present invention provides a comfortable and safe animal carrying device. According to one aspect of the present application, an animal carrying device is provided, which includes a body and a shielding member. The body has a first

[0002] The shielding member includes a first wall and a second wall having a second opening, and a protective structure movably connected to the main body to enable the shielding member to switch between a first position and a second position. When the shielding member is in the first position, the protective structure at least partially covers the first wall; when the shielding member is in the second position, the shielding member at least partially obscures the second opening of the second wall. In one or more of the above aspects, the first wall is a side wall, the second wall is a top wall, and the second opening is a top wall opening. A breathable mesh is provided on the wall surface of the animal carrier, particularly on the top opening of the animal carrier. When the animal carrier is used outdoors, strong sunlight directly enters through the breathable mesh, which can reduce the comfort of the pet inside the carrier. Conversely, when the animal carrier is installed on a vehicle seat, the breathable mesh on the side wall can be blocked by the vehicle door, etc., resulting in insufficient light inside the animal carrier, which also reduces the comfort of the pet inside the carrier. According to one aspect of the present application, when the animal carrier is used outdoors, the top wall opening can be shielded to prevent direct sunlight from reaching the animal. When the animal carrier is used inside a vehicle, the top wall opening can be opened to enhance lighting within the animal carrier. Shields are positioned on the side walls to enhance the animal carrier's impact resistance, effectively improving the comfort and safety of the animal carrier. According to another aspect of the present application, an animal carrying device is provided, comprising: a body having a first wall and a second wall connected to the first wall, a first door provided on the first wall, and a second door provided on the second wall; and a shielding member having a protective structure, the shielding member including a fixed end and a free end, the fixed end being connected to the body between the first opening and the second opening and serving as a pivot end to enable the shielding member to flip between a first position and a second position. When the shielding member is in the first position, the protective structure at least partially covers the first opening and allows the second opening to be exposed; and when the shielding member is in the second position, the shielding member at least partially blocks the second opening and allows the first opening to be exposed. In one or more of the above aspects, the first wall and the second wall are opposing side walls, each of which has an opening. The shielding member is mounted on the first wall or the second wall to ensure that at least one of the openings on one side is ventilated. However, sidewalls with openings generally have poor impact resistance, making it difficult to effectively protect the pet inside the animal carrier when it is impacted. Therefore, when the animal carrier is mounted on a vehicle seat, placing a shield on the sidewall near the vehicle door and leaving an opening on the side away from the door for ventilation can enhance the impact resistance of the animal carrier's sidewalls, effectively improving the safety and comfort of the animal carrier.In one or more of the above aspects, the protective structure includes: a first protective layer, and a second protective layer stacked with the first protective layer, the material elasticity of the first protective layer is higher than the material elasticity of the first protective layer, wherein the shielding member is configured so that when the shielding member is in the first position, the second protective layer is closer to the main body than the first protective layer; when the shielding member is in the second position, the first protective layer is closer to the main body than the second protective layer. According to yet another aspect of the present application, an animal carrier is provided. The animal carrier includes: a body and a shielding member, the body having a first wall and a second wall opposite the first wall, wherein the first wall is provided with a first opening and the second wall is provided with a second opening; the shielding member is provided with a protective structure, the shielding member being detachably connected to the body so as to enable the shielding member to switch between a first position and a second position; wherein when the shielding member is in the first position, the protective structure at least partially covers the first wall and allows the second opening to be exposed; and when the shielding member is in the second position, the protective structure at least partially covers the second wall and allows the first opening to be exposed. In one or more of the above aspects, the body further includes an anchor assembly, the anchor assembly being adapted to connect to a vehicle seat to secure the animal carrier to the vehicle seat; when the animal carrier is secured to the vehicle seat via the anchor assembly, the first wall or the first wall is configured to be proximate to a vehicle door. In one or more of the above aspects, the protective structure includes: a first protective layer; and a second protective layer stacked with the first protective layer, the material of the first protective layer having a higher elasticity than the material of the second protective layer; wherein the shielding member is configured such that when the shielding member is in the first position or the second position, the second protective layer is closer to the wooden body than the first protective layer. Optionally, the first protective layer is made of foam; the second protective layer is a plate-like structure, and the material of the second protective layer is selected from at least one of polyethylene, expanded polypropylene, expanded polystyrene, and expanded polyolefin. In one or more of the above aspects, the shielding member further includes a fixing member, and a mating member is provided on the first wall and the second wall, respectively, the mating member being adapted to be removably connected to the fixing member so that the first shielding member fits against the outer side of the first wall or the second wall, respectively, to cover the first opening or the second opening. In one or more of the aforementioned aspects, the mating members on the first wall are respectively disposed on either side of the first door opening, and the fixing members of the shielding member are respectively disposed at both ends of the shielding member. When the shielding member is connected to the first wall via the fixing members, the protective structure is configured to shield the first opening. According to yet another aspect of the present application, an animal carrying device is also provided. The animal carrying device includes a base, a body, and a first shielding member.The main body is mounted on the base and together with the base form a carrying space. A top wall viewing area is provided on the top wall of the main body. A first shielding member is provided with a first protective structure and is movably connected to the main body, enabling the first shielding member to switch between a first position and a second position. When the first shielding member is in the first position, the first protective structure at least partially covers one of the multiple side walls of the main body. When the first shielding member is in the second position, the first protective structure at least partially covers the top wall viewing area. The multiple side walls of the main body are respectively connected to the top wall of the main body. According to the animal carrying device provided in this embodiment, by movably mounting the first shielding member on the main body, the user can selectively position the first shielding member in either the second or third position depending on the actual environment. When the first shielding member is in the first position, the first protective structure provided on the first shielding member effectively protects and cushions the side walls of the animal carrying device. When the animal carrying device is carried outside, the first shielding member can be returned to the first position, thereby covering the top wall breathable mesh. This protects pets within the animal carrier from sunlight, ensuring air circulation within the animal carrier, and also provides a certain degree of protection and cushioning. This embodiment provides an animal carrier that provides both sun protection and excellent protection and cushioning. Furthermore, the removable first shielding member offers advantages such as ease of operation and resistance to loss. In one or more of the aforementioned aspects, one end of the first shielding member is connected to the main body and serves as a first pivot end, enabling the first shielding member to pivot between a first position and a second position about the first pivot end. In one or more of the aforementioned aspects, the top wall viewing area includes a top wall opening and a top wall breathable mesh covering the top wall opening. In one or more of the aforementioned aspects, one of the left or right side walls of the main body is provided with an opening covered with a breathable mesh. When the first shielding member is in the first position, the first protective structure covers at least the opening. In one or more of the aforementioned aspects, the first shielding member includes a first shielding cover, the first protective structure is disposed within the first shielding cover, and one end of the first shielding cover is connected to the main body and serves as the first pivot end. In one or more of the above aspects, the first protective structure includes a first protective layer and a second protective layer, the second protective layer is stacked with the first protective layer, and the first protective layer has better elasticity than the first protective layer; the first shielding member has a first side surface and a first side surface that are oppositely arranged, wherein the second side is suitable for facing one of the multiple side walls of the main body, and the second protective layer is farther away from the first side than the first protective layer.In one or more of the above aspects, the second protective layer is a plate-like structure, made of a material selected from at least one of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin), and the first protective layer is made of foam. In one or more of the above aspects, the first shielding member is an elastic member, adapted to be connected to the body or base via a fixing mechanism, such that the first shielding member adaptively conforms to the outer surface of the body. In one or more of the above aspects, the fixing mechanism includes a first fixing member and a first mating member, the first fixing member being disposed on the first shielding member. The first mating member is disposed on the base or on a sidewall of the body, and is adapted to be removably connected to the first fixing member, such that the first shielding member conforms to the outer surface of the sidewall. In one or more of the above aspects, the fixing mechanism further includes a first fixing member and a first mating member. The first fixing member is disposed on the first shielding member, and the second mating member is disposed on the top wall. The second mating member is adapted to be removably connected to the second fixing member so that the first shielding member is aligned with the outer side of the top wall. In one or more of the above aspects, the fixing mechanism further includes a second mating member disposed on the top wall. The second mating member is adapted to be removably connected to the first fixing member so that the first shielding member is aligned with the outer side of the top wall. In one or more of the above aspects, the first fixing member and the first mating member are respectively a pair of mutually engaging magnets, a pair of snaps, or a pair of adhesive fasteners, or a hook and a loop that are mutually engaging. In one or more of the above aspects, the animal carrying device further includes a second shielding member, the second shielding member being provided with a second protective structure. One end of the second shielding member is connected to the wooden body and serves as a second pivot end, enabling the second shielding member to flip between a second position and a fourth position. When the first shielding member is in the second position and the second shielding member is in the fourth position, the second shielding member and the first shielding member jointly cover the top wall viewing area. When the second shielding member is in the third position, the second protective structure at least partially covers another of the plurality of side walls of the body. In one or more of the above aspects, the first protective structure includes a first protective layer and a second protective layer, the first protective layer being stacked on the first protective layer, and the second protective layer having greater elasticity than the second protective layer.The second shielding member has a first surface and a second surface disposed opposite each other. The second surface of the second shielding member is adapted to face the sidewall of the main body. The second protective layer is further away from the second surface than the first protective layer. In one or more of the aforementioned aspects, the second protective layer is a plate-like structure. The first protective layer is made of at least one of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin). The first protective layer is made of foam. In one or more of the aforementioned aspects, the second shielding member is an elastic member. The second shielding member is adapted to be connected to the first shielding member or the main body via a fixing mechanism, such that the second shielding member adaptively conforms to the outer surface of the first shielding member or the main body. In one or more of the aforementioned aspects, the fixing mechanism includes a first fixing member and a first adapting member. The first fixing member is disposed on the first shielding member. The first adapter is disposed on the base or on the side wall of the body, and is adapted to be removably connected to the first fixing member so that the second shielding member abuts against the outer surface of the side wall of the body. In one or more of the above aspects, the fixing mechanism further includes a second fixing member disposed on the second shielding member. The second adapter is disposed on the first shielding member and is adapted to be removably connected to the second fixing member, thereby connecting the second shielding member to the first shielding member so that the first and second shielding members jointly block the top wall viewing area. In one or more of the above aspects, the fixing mechanism further includes a first adapter, the first adapter being disposed on the first shielding member, and the first adapter being adapted to be removably connected to the first fixing member so that the second shielding member and the first shielding member jointly block the top wall viewing area. In one or more of the above aspects, the fixing mechanism further includes a first mating member and a first fixing member. The first mating member is disposed on the base or on a side wall of the body, and the first fixing member is disposed on the first shielding member. The first fixing member is adapted to be removably connected to the first mating member so that the first shielding member abuts against the outer surface of the side wall of the body. The first fixing member is also adapted to be removably connected to the first fixing member, thereby connecting the first shielding member and the second shielding member together so that the first shielding member and the second shielding member jointly block the top wall viewing area. In one or more of the aforementioned aspects, the first fixing member and the first mating member are each a pair of magnets, a pair of snaps, or a pair of adhesive fasteners that can engage with each other.In one or more of the above aspects, the first shield has a first movable end distal from the first pivot end. The first pivot end and the second pivot end are located on opposite sides of the top wall viewing area. The second shield has a second movable end distal from the second pivot end. When the first shield is in the first position and the first shield is in the fourth position, the first movable end abuts against the first movable end. In one or more of the above aspects, when the first shield is in the second position and the second shield is in the fourth position, the first shield and the second shield at least partially overlap. In one or more of the above aspects, the animal carrier further includes a buffer body that is detachably attached to the body via a connecting mechanism and at least partially covers another one of the plurality of side walls of the body. In one or more of the above aspects, another one of the left side wall and the right side wall of the body is provided with an opening, and the buffer body is adapted to cover at least the opening of the other one of the left side wall and the right side wall of the body. In one or more of the above aspects, the connecting mechanism includes a plurality of first mating portions and a plurality of second mating portions. The plurality of first mating portions are disposed on the buffer body. Multiple second mating portions are disposed on the wooden body, and the multiple first mating portions mate with the multiple second mating portions so that the buffer body at least partially covers the sidewalls of the body. In one or more of the above aspects, one of the first mating portion and the second mating portion is a hook, and the other of the first mating portion and the second mating portion is a buckle, with the hook adapted to be hooked onto the buckle. In one or more of the above aspects, the buffer body includes a first buffer layer and a second buffer layer, the second buffer layer being stacked on the first buffer layer; the first buffer layer has greater elasticity than the second buffer layer, and the first buffer layer is further away from the body than the second buffer layer. In one or more of the above aspects, the first buffer layer is a plate-like structure, and the material of the first buffer layer is selected from at least one of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin), and the first buffer layer is made of foam. In one or more of the above aspects, the breathable mesh is detachably mounted on the body via a zipper to allow the carrying space to be opened or closed. In one or more of the above aspects, a connecting fabric is provided on the rear sidewall of the body, forming a through-channel between the connecting fabric and the rear sidewall, the through-channel extending perpendicularly to the base. In one or more of the above aspects, the first covering member is detachably connected to the body via a fixing mechanism to allow the first covering member to be selectively positioned in either a first position or a second position.In one or more of the above aspects, the fixing mechanism includes a first fixing member and a first mating member. The first fixing member is disposed on the first shielding member. The first mating member is disposed on the main body and is located on a side of the top wall viewing area near one of the plurality of side walls. The first mating member is adapted to be removably connected to the first fixing member. When the first fixing member is connected to the first mating member, the first shielding member is capable of flipping between a first position and a second position. In one or more of the above aspects, the fixing mechanism also includes a second fixing member and a second mating member. The second fixing member is disposed on the first shielding member. The second mating member is disposed on one of the plurality of side walls of the main body or the base. The second mating member is adapted to be removably connected to the second fixing member. When the first fixing member is connected to the first mating member and the second fixing member is connected to the second mating member, the first shielding member is constrained to the first position. In one or more of the above aspects, the fixing mechanism also includes a first fixing member and a third mating member. The first fixing member is disposed on the first shielding member. When the first fixing member is connected to the first mating member and the second fixing member is connected to the second mating member, the first shielding member is restricted to the second position. In one or more of the above aspects, the first shielding member further has a third position adapted to at least partially shield another of the plurality of side walls of the wooden body. When the second fixing member is connected to the third mating member and the first fixing member is not connected, the first shielding member can flip between the third position and the second position. Alternatively, the first fixing member is adapted to be detachably connected to the second mating member. When the first fixing member and the second mating member are connected and the first fixing member is not connected, the first shielding member can flip between the third position and the first position. In one or more of the above aspects, the fixing mechanism includes a first fixing member, a second fixing member, a first mating member, and a second mating member. The first fixing member is disposed on the first shielding member, and the second fixing member is disposed on the first shielding member and opposite the first fixing member. A first mating member is disposed on the body, a second mating member is disposed on the body or the base, and the second mating member is disposed opposite the first mating member. The first mating member is adapted to be removably connected to the first fixing member, and the second mating member is adapted to be removably connected to the second fixing member, thereby confining the first shielding member in the first position. In one or more of the above aspects, the fixing mechanism further includes a third mating member and a fourth mating member, respectively disposed on opposite sides of the top wall viewing area. The second mating member is adapted to be removably connected to the first fixing member, and the fourth mating member is adapted to be removably connected to the second fixing member, thereby confining the first shielding member in the second position. In one or more of the above aspects, the first shielding member further has a third position adapted to at least partially obstruct another of the plurality of sidewalls of the body. The fixing mechanism further includes a fifth mating member and a sixth mating member, disposed opposite each other. The fifth mating member is adapted to be removably connected to the first fixing member, and the sixth mating member is adapted to be removably connected to the first fixing member, thereby confining the first shielding member in the third position. In one or more of the above aspects, one of the first fixing member and the first matching member is a hook, and the other of the first fixing member and the first matching member is a hanging ring; or, the first fixing member and the first matching member are snaps, adhesive buckles, zippers or magnets that can cooperate with each other. In one or more of the above aspects, when the first shielding member is in the first position, the first shielding member has a top wall back-to-back installation method with the first side surface of the first shielding member facing the top wall viewing area and a top wall forward installation method with the first side surface facing the top wall viewing area, wherein when the first shielding member is installed in the second position in the forward installation method, at least a portion of the fixing mechanism is blocked by the first shielding member. In one or more of the above aspects, the first protective structure further includes a third protective layer, which is stacked with the first protective layer of the first protective structure, and the first protective layer has better elasticity than the third protective layer.and is disposed between the third protective layer and the second protective layer of the first protective structure. In one or more of the aforementioned aspects, the third protective layer is a plate-like structure, and the material of the third protective layer is selected from at least one of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin). In one or more of the aforementioned aspects, when the first shielding member is in the first position, either the first side surface or the second side surface of the first shielding member may face one of the plurality of side walls. According to another aspect of the present application, another animal carrying device is also provided, which can improve assembly accuracy, reduce positional deviation or misalignment during assembly, thereby increasing production efficiency and improving yield. The animal carrying device includes: a body, the bottom wall of which is provided with at least two first positioning features; and a base, comprising an upper cover and a lower cover. One of the upper cover and the lower cover is provided with at least two stoppers, and the other is provided with at least two second positioning features, each stopper corresponding to each first positioning feature and each second positioning feature. The upper cover and the lower cover are respectively located on either side of the bottom wall of the body. Each stopper is configured to cooperate with the corresponding first and second positioning features to achieve positioning of the body and the base. The animal carrying device provided in this embodiment utilizes a design in which the body and the base are aligned with each other, providing a fast and stable assembly method. Specifically, the body and the base achieve fast and precise alignment and fixation through the interaction of the stoppers with the first and second positioning features, thereby enabling quick and easy installation of the body and the base. This design not only simplifies the assembly process but also improves assembly accuracy and efficiency. In one or more of the above aspects, the first positioning portion is a first positioning hole, the second positioning portion is a second positioning hole, the limiting portion is a positioning column, and the positioning column is used to pass through the corresponding first positioning hole and the second positioning hole to realize the positioning of the main body and the base. In one or more of the above aspects, the main body has a front side wall and a rear side wall that are relatively arranged, and the direction in which the front side wall and the rear side wall are relatively arranged is defined as the first direction, and a straight line extending along the first direction and passing through the geometric center of the main body is defined as the control line, and a plurality of the first positioning holes are symmetrically arranged along the control line. In one or more of the above aspects, each of the positioning columns is connected by a reinforcing rib. In one or more of the above aspects, a bearing space is formed in the main body, the first positioning hole is connected to the bearing space, and the upper cover is located on the side of the bottom wall of the main body facing the bearing space.The lower cover is located on a side of the bottom wall of the body facing away from the carrying space. In one or more of the above aspects, the animal carrying device further includes a fixing member. The bottom wall of the body is provided with a reinforcement member. One of the reinforcement member and the upper cover is provided with a first connecting portion, and the other is provided with a second connecting portion. The fixing member connects the first connecting portion and the second connecting portion to secure the reinforcement member to the upper cover. In one or more of the above aspects, the wooden body is made of a soft material, and the reinforcement member is made of a hard material. In one or more of the above aspects, the body has a front sidewall, a right sidewall, a rear sidewall, and a left sidewall connected in sequence along a circumferential direction. Two reinforcement members are provided on the bottom wall of the body, and the two reinforcement members are spaced apart along the direction in which the left and right walls are opposite each other. In one or more of the above aspects, the body has a front sidewall and a rear sidewall, at least one of which extends toward the bottom wall of the body to form an extended edge. A cover on the bottom wall of the body and the extended edge are provided with a limiting post, and the other is provided with a first limiting hole, the limiting post being inserted into the first limiting hole. In one or more of the above aspects, the body has a front sidewall and a rear sidewall, and a support is provided on the outer edge of the front sidewall and / or the rear sidewall away from the base. In one or more of the above aspects, the body has a front sidewall and a rear sidewall, and at least a portion of the front sidewall and / or the rear sidewall is formed with a first hollow area, and the first hollow area is covered with a first breathable mesh. In one or more of the above aspects, the animal carrying device further includes a side cover, a first locking member, and a first mating member. At least one of the left side wall and the right side wall of the body is provided with a side opening. The side cover is movably provided at the side opening so as to have a first open position and a first closed position. When the side cover is in the first open position, the side opening is exposed. When the side cover is in the first closed position, the side cover covers the side opening. The second locking member and the first mating member are respectively provided at opposite ends of the side cover. When the side cover is in the first open position, the first locking member cooperates with the first mating member to maintain the side cover in the first open position. In one or more of the above aspects, the animal carrying device further comprises a side cover, wherein at least one of the left side wall and the right side wall of the body is provided with a side opening u, and the side cover is movably disposed at the side opening u so as to have a first open position and a first closed position. When the side cover is in the first open position, the side opening is exposed, and when the side cover is in the first closed position, the side cover covers the side opening u. In one or more of the above aspects, one end of the side cover is movably connected to the body and serves as a first pivot end, so that the side cover can be switched between the first open position and the first closed position about the first pivot end; the side cover has a first movable end remote from the first pivot end.When the side cover is in the first closed position, the first pivot end and the first movable end are located on opposite sides of the side opening. The first movable end is provided with a first locking member, and the first pivot end is provided with a first mating member. When the side cover is in the first open position, the first locking member and the first mating member cooperate to maintain the side cover in the first open position. In one or more of the above aspects, the first locking member and the first mating member are respectively a pair of magnets, a pair of snaps, or a pair of adhesive fasteners that can engage with each other. In one or more of the above aspects, the animal carrying device further includes a top cover. The top wall of the body is provided with a top opening. The top cover is movably disposed at the top opening to enable the top cover to have a second open position and a second closed position. When the top cover is in the second open position, the top door is exposed. When the top cover is in the second closed position, the top cover covers the top door. In one or more of the above aspects, one end of the top cover is movably connected to the body and serves as a second pivot end, allowing the top cover to be moved about the first pivot end between the first open position and the first closed position. The top cover has a first movable end distal from the first pivot end. When the top cover is in the second closed position, the second pivot end and the second movable end are located on opposite sides of the top opening. The second movable end is provided with a second locking member, and the second pivot end is provided with a second mating member. When the top cover is in the second open position, the second locking member and the second mating member cooperate to maintain the top cover in the second open position. In one or more of the above aspects, the second locking member and the second mating member are respectively a pair of magnets, a pair of snaps, or a pair of adhesive fasteners that can engage with each other. In one or more of the above aspects, at least a portion of the side cover and / or the top cover is formed with a first hollow area, and the first hollow area is covered with a second breathable mesh. According to another aspect of the present disclosure, an animal carrying device is also provided. The animal carrying device includes a body and a bottom support member, the bottom support member being connected to the body to form a box with the body for providing a storage space. The body includes side supports and an upper support member that are detachably connected to each other. The body is provided with at least one anti-collision protection device, which is located at least on the side of the body near the vehicle door, and at least one of the anti-collision protection devices is detachably connected to the body. BRIEF DESCRIPTION OF THE DRAWINGS The drawings, which constitute a part of this application, are intended to provide a further understanding of the present application. The illustrative embodiments of this application and their description are intended to explain the present application and do not constitute undue limitations of the present application. To more clearly illustrate the technical solutions in the embodiments of this application, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are merely some embodiments of the present application. For those skilled in the art, without inventive effort, it is easy to understand them.Other figures can also be obtained based on these drawings. In addition, the drawings are not drawn in a 1:1 ratio, and the relative sizes of the various components in the drawings are only drawn for example and not necessarily according to the actual ratio. In the drawings: FIG1 is a perspective view of an animal carrying device according to a first embodiment of the present invention, wherein the first shielding member is in the second position; FIG2 is a perspective view of the animal carrying device in FIG1 , wherein the first shielding member is in the first position; FIG3 is a right side view of the animal carrying device in FIG2 ; FIG4 is a perspective view of the animal carrying device in FIG2 from another perspective, wherein the top breathable mesh panel is partially opened; FIG5 is a schematic structural diagram of the first shielding member in the first position according to the first embodiment of the present invention; FIG6 is a schematic structural diagram of the first shielding member in the first position according to the first embodiment of the present invention; FIG7 is a perspective view of an animal carrying device according to a second embodiment of the present invention; FIG8 is a rear view of the buffer body in FIG7 ; FIG9 is a cross-sectional view of the buffer body in FIG8 along line U1-U1; FIG10 is a perspective view of an animal carrying device according to a third embodiment of the present invention, wherein the first shielding member is in the second position and the first shielding member is in the fourth position; FIG11 is a perspective view of the animal carrying device in FIG10 , wherein the second shielding member is in the first position and the second shielding member is in the third position; FIG12 is a perspective view of the animal carrying device of FIG10 from another perspective, wherein the first shielding member is in the second position and the second shielding member is in the fourth position; FIG13 is a schematic diagram of the structure of the second embodiment of the present invention, wherein the first shielding member is in the second position and the second shielding member is in the fourth position; FIG14 is a perspective view of the animal carrying device of the fourth embodiment of the present invention, wherein the first shielding member is in the first position and the second shielding member is in the second position; FIG15 is a schematic diagram of the structure of the fourth embodiment of the present invention, wherein the first shielding member is in the second position and the second shielding member is in the fourth position; FIG16 is a perspective view of the animal carrying device of the fifth embodiment of the present invention, wherein the first shielding member is in the first position and the second shielding member is in the fourth position; FIG17 is a schematic diagram of the structure of the fifth embodiment of the present invention, wherein the first shielding member is in the second position and the second shielding member is in the fourth position; FIG18 is a perspective view of the animal carrying device of the sixth embodiment of the present invention, wherein the first shielding member is installed in the first position facing forward; FIG19 is a perspective view of the animal carrying device of FIG18, wherein the first shielding member is installed in the first position facing backward; FIG20 shows a perspective view of the animal carrying device in FIG18 from another perspective, wherein the first shielding member is forwardly mounted in the second position; FIG21 shows a rear view of the animal carrying device in FIG18,FIG22 schematically illustrates a structure of the first shielding member installed in the first position according to a sixth embodiment of the present invention; FIG23 schematically illustrates a structure of the first shielding member installed in the first position according to a seventh embodiment of the present invention; FIG24 illustrates a perspective view of an animal carrying device according to an eighth embodiment of the present invention, wherein the first shielding member is installed in the second position with its back facing; FIG25 illustrates a perspective view of the animal carrying device in FIG24 from another perspective, wherein the first shielding member is installed in the second position with its front facing; FIG26 illustrates a perspective view of an animal carrying device according to a ninth embodiment of the present invention; FIG27 illustrates a front view of the animal carrying device shown in FIG26; FIG28 illustrates a rear view of the animal carrying device shown in FIG26; FIG29 illustrates a side view of the animal carrying device shown in FIG26; FIG30 illustrates a top view of the animal carrying device shown in FIG26; FIG31 illustrates a perspective view of the main body of the animal carrying device shown in FIG26; FIG32 illustrates a bottom view of the main body shown in FIG31, wherein the upper cover is located within the main body; FIG33 illustrates a top view of the upper cover of the base of the animal carrying device shown in FIG26; FIG34 is a top view of the base cover of the animal carrying device shown in FIG26 ; FIG35 is a perspective view of a carrier according to the tenth embodiment of the present disclosure; FIG36 is another perspective view of the carrier shown in FIG35 , wherein a portion of the first sealing member is separated from the body; FIG37A is another perspective view of the carrier according to the tenth embodiment of the present disclosure, wherein the carrier is provided with an anti-collision protection device; FIG37B is the other side of the anti-collision protection device shown in FIG37A ; FIG38 is a schematic diagram of the carrier installed on a vehicle seat. Explanation of the Figures:

[0003] A1000, animal carrier; A100, body; A10K, first fixed connection; A102, second fixed connection; A103, carrying space; A120, left side wall; A1201, first opening; A130, right side wall; A1301, first opening; A140, front side wall; A150, second mating portion; A160, rear side wall; A170, top wall; A1701, top wall opening; A171, top wall viewing area; A180, handle; A200, base; A400, anchoring structure; A410, ISOFIX connection assembly; A510, cushioning element; A511, first cushioning layer; A512, second cushioning layer; A513, protective cover; A520, first mating portion; A514, front face; A515, back face; A600a, first shielding member; A600b, second shielding member; A601, first pivoting end; A602, second pivoting end; A603, first movable end; A604, second movable end; A605, first edge; A606, first edge; A610, first protective structure; A611, first protective layer; A612, first protective layer; A613, third protective layer; A620, first protective structure; A621, first protective layer; A622, first protective layer; A630, first shielding cover; A631, first side panel; A632, second side panel; A640, second shielding cover; A641, first surface panel; A642, second surface panel; A700, fixing mechanism; A711, first fixing member; A712, second fixing member; A721, first mating member; A722, second mating member; A723, third mating member; A724, fourth mating piece; A725, fifth mating piece; A726, sixth mating piece; A731, first fixing piece; A741, first adapter piece; A742, second adapter piece; A90K breathable mesh; A902, breathable mesh; A903, top wall breathable mesh; A904, zipper; A905, connecting fabric; I, overlapping area;

[0004] B1000, animal carrying device; B100, body; B110, carrying space; B120, front side wall; B121, extended edge; B122, first limiting hole; B130, right side wall; B140, rear side wall; B150, left side wall; B151, side opening; B160, top wall; B161, top opening; B170, bottom wall; B171, first positioning portion; B1711, first positioning hole; B172, through hole; B200, base; B210, upper cover; B211, limiting portion; B2111, positioning column; B212, reinforcing rib; B213, limiting column; B214, first connecting portion; B2141, connecting column; B220, lower cover; B22E, second positioning portion; B2211, second positioning hole; B222, second limiting hole; B230, folding groove; B231, abutting protrusion; B300, support member; B400, reinforcement member; B410, second connecting portion; B411, connecting hole; B510, first breathable mesh; B520, second breathable mesh; B610, pocket; B620, connecting fabric; B710, side cover; B711, first pivoting end; B712, first movable end; B720, top cover; B721, second pivoting end; B722, second movable end; B810, handle; B820, buckle; B900, anchor assembly; B910, ISOFIX connector; B911, pivoting end; B912, free end; B913, convex bump; F1, first direction; F2, second direction; S1, control line;

[0005] 1100, carrier; 1100A, carrier; 1110, body; 1111, side support; 1112, upper support; 1116, first window; 1116a, first door closure; 1117, second window H; 1117a, second door closure; 1120, bottom support; 1130, body cover; 1140, bottom cover; 1150, first connecting component; 1160, second connecting component; 1160A, second connecting component; 1170, anti-collision protection device; 1170a, inner surface; 1170b, outer surface; 1181, first fixing member; 1182, second fixing member; 1300, fixing belt assembly; 1600, vehicle seat. To make the objectives, technical solutions, and advantages of the present invention more clearly understood, the present invention will be further described in detail with reference to the accompanying drawings and specific embodiments. It should be understood that the specific embodiments described herein are intended only to illustrate the present invention and do not limit its scope of protection. It should be noted that, unless otherwise expressly specified or limited, directional terms such as "front," "rear," "left," and "right" in the embodiments of the present invention related to the animal carrying device A1000 are based on the directions shown in the figures. In the figures, arrows L and R schematically indicate the "left" and "right" directions, and arrows F and B schematically indicate the "front" and "rear" directions. These directional terms are merely used to clarify the description of the embodiments of the present invention and are not intended to unduly limit the scope of protection of the present invention. It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is considered to be "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only and do not represent the only embodiments. Unless otherwise defined, all technical and scientific terms used herein have the same meanings as commonly understood by those skilled in the art to which the present invention belongs. The terms used in the description of the present invention herein are only for the purpose of describing specific embodiments and are not intended to limit the present invention. As used herein, the terms "and / or" include any and all combinations of one or more of the related listed items. As shown in FIG1 , Example 1, an animal carrier A1000 may be, but is not limited to, a sleeping box, a pet box, a pet carrier, a pet bag, etc. The animal carrier A1000 may be fixed to a vehicle seat or carried on the person (e.g., carried in one's hand or slung across one's back).The animal carrying device A1000 includes a body A100, a base A200, and a first shielding member A600a. The first shielding member A600a is movably connected to the body A100, enabling the first shielding member A600a to switch between a first position and a second position. The body A100 is positioned above the base A200, and the body A100 and the base A200 together form a carrying space A103. The base A200 is made of, for example, a rigid material to support the body A100. The body A100 may include a fabric sheet or other material that encloses the carrying space A103. Referring to FIG. 4 , the animal carrying device A1000 has a carrying space A103 for accommodating animals. It should be noted that "the first shielding member A600a is movably connected to the body A100" includes the following different embodiments: the first shielding member A600a is connected to the body A100, and at least a portion of the first shielding member A600a is movable relative to the body A100 (e.g., flipping or sliding); the first shielding member A600a is detachably connected to the body A100, allowing the first shielding member A600a to be separated from the body A100. Exemplarily, the first shielding member A600a is made of a fabric sheet, one end of which is sewn to the wooden body A100, and the other end of the first shielding member A600a is capable of flipping relative to the wooden body A100 along the sewing line between a position near the top surface of the wooden body A100 and a position near the side of the body A100. Figures 1 and 2 show perspective views of an animal carrying device A1000 according to a first embodiment of the present invention. In Figure 1 , the first shielding member A600a of the animal carrying device A1000 is in the first position, while in Figure 2 , the first shielding member A600a of the animal carrying device A1000 is in the second position. The first shielding member A600a can be used to block the opening of the carrying space A103, enabling switching between sun protection and ventilation. For example, when outdoors, the first shielding member A600a can be used to cover the opening to provide sun protection (see Figure 1 ). When inside a vehicle, the first shielding member A600a can be removed from the door opening to provide ventilation (see Figure 2 ). As shown in Figures 1 and 2 , the main body A100 includes a top wall A170 and a plurality of side walls connected to the top wall A170.The multiple sidewalls of the body A100 may include a left sidewall A120, a right sidewall A130, a front sidewall A140, and a rear sidewall A160. The front sidewall A140 forms the front wall of the carrying space A103, the left sidewall A120 forms the left wall of the carrying space A103, the right sidewall A130 forms the upper wall of the carrying space A103, the rear sidewall A160 forms the rear wall of the carrying space A103, and the top wall A170 forms the top wall of the carrying space A103. In some embodiments, the bottom wall of the carrying space A103 is formed by the base A200, and the front sidewall A140, the left sidewall A120, the right sidewall A130, and the rear sidewall A160 are directly connected to the base A200. In some alternative embodiments, the body A100 has a bottom wall that is fixed to the base A200 and forms the bottom wall of the carrying space A103. In some embodiments of the present disclosure, the base A200 forms the bottom wall of the body A100. As shown in Figures 1 and 2, the animal carrying device A1000 is equipped with a handle A180, which is used to carry the animal carrying device A1000. oThere are two handles A180, one fixed to the front sidewall A140 and the other to the rear sidewall A160. Specifically, each handle A180 is formed by sewing a webbing strip onto the body A100. As shown in Figure 4, an anchor structure A400 is provided on the rear sidewall A160 of the animal carrier A1000. The anchor structure A400 is adapted to connect to a vehicle seat to secure the animal carrier A1000 thereto. In this embodiment, the anchor structure A400 includes at least one ISOFIX connection assembly A410, which is configured to connect to at least one connection point on the vehicle seat. In an alternative embodiment, the anchor structure A400 includes at least one Latch connection assembly, which is configured to connect to at least one connection point on the vehicle seat. The specific structure of the anchor structure A400 is not described in detail here. Continuing with FIG4 , a connecting fabric A905 is provided on the rear sidewall A160 of the body A100. A passage is formed between the connecting fabric A905 and the rear sidewall A160. This passage is used, for example, to pass through a luggage trolley. The passage extends perpendicularly to the base A200, extending vertically. Specifically, the left and right ends of the connecting cloth A905 are fixedly connected to the side walls of the rear side wall A160 of the main body A110 by sewing. In this embodiment, the connecting cloth A905 is a multi-layer woven structure, and a pocket is formed between the multi-layer woven structure. The pocket can be used to place items. A zipper A904 is provided at the opening of the pocket to open or close the pocket. Optionally, the connecting cloth A905 and the anchoring structure A400 are located on the same side of the main body A100. As shown in Figures 2 and 4, the top wall A170 of the wooden body A100 is provided with a top wall viewing area A17E. The top wall viewing area A171 includes a top wall opening A1701 and a top wall breathable mesh A903 covering the top wall opening A1701. The shape of the top wall breathable mesh A903 matches the shape of the top wall opening A1701. In other words, the position of the top wall breathable mesh A903 corresponds to the position of the top wall opening A1701. The provision of the top wall breathable mesh A903 facilitates observation of the animal within the body A100 while also increasing the breathability of the body A100. In some alternative embodiments, the top wall viewing area A171 may be formed by a top wall opening A1701 and a transparent object disposed at the top wall opening A1701 to facilitate viewing through the top wall viewing area A171. This is not a limitation of this application.As shown in Figure 1, one of the left side wall A120 of the main body A100 and the right side wall A130 of the main body A100 is provided with an opening (i.e., a first opening A1301), and the first opening A1301 can be covered with a breathable mesh A901; as shown in Figure 2, the other of the left side wall A120 of the main body A100 and the right side wall A130 of the main body A100 is provided with an opening (i.e., a second opening A1201), and the second opening A1201 is covered with a breathable mesh A902. In this embodiment, the right side wall A130 is provided with a first opening A1301, and a breathable mesh A901 is provided at the first opening A1301; the left side wall A120 is provided with a second opening A1201, and a breathable mesh A902 is provided at the second opening A1201. The shape of the breathable mesh A901 matches the shape of the first opening A1301, and the shape of the breathable mesh A902 matches the shape of the second opening A1201. In other words, the position of the breathable mesh A901 corresponds to the position of the first opening A1301, and the position of the breathable mesh A902 corresponds to the position of the first opening A1201. The breathable meshes A901 and A902 have substantially the same structure and shape. The area corresponding to the first opening A1301 and the second opening A1201 is the buffering area. By providing the breathable meshes (including the top wall breathable mesh A903, the breathable mesh A901, and the breathable mesh A902), the air permeability of the carrying space A103 within the animal carrying device A1000 can be improved. In another embodiment, a breathable mesh A901 and a top wall breathable mesh A903 may be provided on the main body A100, but no breathable mesh A902 is provided. In still other embodiments, a top wall breathable mesh A903 is provided on the top wall A170, and other breathable meshes (not shown) are provided on at least one of the front side wall A140 and the rear side wall A160. In other embodiments, one of the left side wall A120 and the right side wall A130 of the main body A100 is provided with a breathable mesh A901, and at least one of the front side wall A140 and the rear side wall A160 of the main body A100 is provided with other breathable meshes (not shown), and the top wall A170 is not provided with the top wall breathable mesh A903. In other words, other breathable meshes are provided on any at least two adjacent surfaces of the front side wall A140, the rear side wall A160, the left side wall A120, the right side wall A130 and the top wall A170 of the wooden body A100, and the present application does not impose any restrictions on this.Returning to Figures 1 and 2 , at least one of the top wall breathable mesh A903 and the breathable mesh A901 can be openably and closably mounted on the body A100, for example, via a zipper A904, to allow for opening and closing of the carrying space A103 (see Figure 4 ), thereby facilitating the entry and exit of animals from the animal carrying device A1000. The top wall breathable mesh A903 is openably and closably mounted at the top wall opening A1701 via the zipper A904. Optionally, when the top wall breathable mesh A903 is not closed by the zipper A904, the top wall breathable mesh A903 can be flipped forward and backward relative to the body A100, or flipped left and right relative to the body A100, or separated from the top wall A170. The breathable mesh A901 is openably and closably mounted at the first opening A1301 via the zipper A904. Optionally, when the breathable mesh A901 is not closed by the zipper A904, the breathable mesh A901 can be flipped forward and backward relative to the body A100, or flipped up and down relative to the body A100, or the breathable mesh A901 can be separated from the right side wall A130. Similarly, the breathable mesh A902 is disposed at the second opening A1201 in a retractable manner via the zipper A904. Optionally, when the breathable mesh A902 is not closed by the zipper A904, the breathable mesh A902 can be flipped forward and backward relative to the body A100, or flipped up and down relative to the body A100, or the breathable mesh A902 can be separated from the left side wall A120. In this embodiment, the side of the top wall breathable mesh A903 near the right side wall A130 is connected to the top wall A170, for example, by sewing, allowing the top wall breathable mesh A903 to flip left and right relative to the body A100. One side of the breathable mesh A901 is connected to the right side wall A130, for example, by sewing, allowing the breathable mesh A901 to flip up and down or front and back. One side of the breathable mesh A902 is connected to the left side wall A120, for example, by sewing, allowing the breathable mesh A902 to flip up and down or front and back. As shown in Figures 1 and 2, in the wooden embodiment, the first shielding member A600a is reversibly mounted on the wooden body A100. The first shielding member A600a is provided with a first protective structure A610. The first protective structure A610 is used to cushion the area to be cushioned from external impact, thereby reducing potential damage to animals within the carrying space A103. One end of the first shielding member A600a serves as a first pivot end A601 and is connected to the body A100, so that the first shielding member A600a can be flipped between a first position and a second position.As shown in Figure 1, the second position is a sunshade position, preventing sunlight from entering the main body A100 through the top wall A170. As shown in Figure 2, the third position is a protective position, cushioning the sidewalls of the main body A100 from potential impact forces. The end of the first shielding member A600a, distal from the first pivot end A601, serves as a first movable end A603. Specifically, the first pivot end A601 connects to the main body A100 at a position between the top wall viewing area A171 and the first opening A1301. In other words, the main body A100 has a first fixed connection portion A101 connected to the first pivot end A601 of the first shielding member A600a. This first fixed connection portion A101 is located between the top wall viewing area A171 and the first opening A1301. The first fixed connection portion A101 can be located on either the top wall A170 or the right side wall A130 of the main body A100. Referring to Figures 1 to 4 , the first shielding member A600a may be an elastic member that can flexibly deform and then return to its original shape. The first shielding member A600a is adapted to be connected to the body A100 or the base A200 via a fixing mechanism A700, allowing the first shielding member A600a to adaptively abut the outer side surfaces of the side walls of the body A100 or the outer side surfaces of the top wall A170. In other words, the first shielding member A600a may be fixed to at least one of the top wall A170 and the side walls of the body A100 via a fixing mechanism A700. The specific structure of the fixing mechanism A700 will be described in detail later. Referring to Figure 2 , when the first shielding member A600a is in the first position, the first protective structure A610 at least partially covers one of the multiple side walls of the body A100, thereby cushioning the side wall from external impacts. At this point, the first shielding member A600a is connected to the side wall or base A200 of the body A100 via the fixing mechanism A700, so that the first shielding member A600a is in contact with the outer surface of the side wall of the body A100. Specifically, when the first shielding member A600a is in the first position, the first protective structure A610 of the first shielding member A600a at least partially covers the right side wall A130. More specifically, the first protective structure A610 covers the first opening A1301 where the breathable mesh A901 is located (i.e., the breathable mesh A901, and thus, the buffering area on the right side wall A130). This can cushion the buffering area on the right side wall A130 from external impacts. Optionally, the right side wall A130 does not need to have an opening.Referring to Figures 1 and 2, when the first shielding member A600a is in the second position, it at least partially covers the top wall viewing area A171. At this point, the first shielding member A600a is connected to the top wall A170 of the body A100 via a fixing mechanism A700, allowing the first shielding member A600a to abut against the outer surface of the top wall A170. In this embodiment, when the first shielding member A600a is in the second position, the first shielding member A600a covers the top wall viewing area A171. Specifically, the first shielding member A600a covers the top wall opening A1701 (which is equivalent to completely covering the top wall breathable mesh A903). This not only blocks sunlight from directly entering the carrying space A103, but also appropriately cushions the top wall from external impact forces. That is, when the first shielding member A600a is in the second position, the first shielding member A600a covers the top wall viewing area A171, and the first protective structure A610 may cover the top wall viewing area A17L or only a portion of the top wall viewing area A171, without limitation. The shape of the first shielding member A600a and the first protective structure A610 matches the shape of the first opening A1301 (i.e., the buffering area of ​​the right side wall A130), which is equivalent to matching the shape of the breathable mesh A901 of the right side wall A130. In some alternative embodiments, the shape of the first protective structure A610 may not match the shape of the breathable mesh A901, as long as the first protective structure A610 can substantially cover the breathable mesh A901. As shown in Figures 5 and 6, the first shielding member A600a has a first side surface A631 and a second side surface A632 disposed opposite each other. The first side surface A631 is adapted to face the top wall breathable mesh A903. The first side surface A632 is adapted to face one of the multiple side walls of the body A100. When the first side surface A631 is in the first position, it abuts and blocks the first opening A1301 in the top wall of the body A100, while the second side surface A632 is exposed to the outside. When the first side surface A631 moves from the second position to the first position, the second side surface A632 abuts and blocks the side wall of the body A100, while the first side surface A631 is exposed to the outside. The first shielding member A600a includes a first shielding cover A630, within which the first protective structure A610 is disposed. The first shielding cover A630 is a multi-layer woven fabric structure, meaning that the first protective structure A610 is disposed between two adjacent layers of fabric. Specifically, the multiple layers of fabric are connected by methods such as sewing, bonding, or heat welding.The first shielding fabric cover A630 is formed into a first side surface A631 and a second side surface A632. One end of the first shielding fabric cover A630 forms a first pivot end A601, and the other end forms a first movable end A603. The first pivot end A601 is fixedly connected to the first fixed connection portion A101 by, for example, sewing. Optionally, the first pivot end A601 is fixedly connected to the first fixed connection portion A101 by welding, bonding, or other methods, or the first pivot end A601 is removably connected to the first fixed connection portion A101 by means of cooperating components (such as cooperable hooks and buckles, a zipper, etc.). The first protective structure A610 includes a first protective layer A611 and a second protective layer A612. The second protective layer A612 is stacked on the first protective layer A611, and the second protective layer A612 is further away from the first side surface A631 than the first protective layer A611. That is, when the first shielding member A600a is in the first position, the second side surface A632 faces the first opening A1301 (i.e., faces the breathable mesh A901), and the first protective layer A611 is further away from the first opening A1301 than the second protective layer A612. The first protective layer A611 has greater elasticity than the second protective layer A612. The first protective layer A612 has a plate-like structure and is made of at least one of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin). The first protective layer A611 is made of foam, such as an inert foam. In this way, when the buffering area of ​​the right side wall A130 is impacted, the first protective layer A611 can effectively absorb the external impact force, while the second protective layer A612 can reduce deformation of the first shielding member A600a, thereby further reducing deformation of the right side wall A130 under external impact force. Of course, in other embodiments, the first protective structure A610 can also be provided with more protective layers, such as three or four layers. For example, the first protective structure A610 is provided with a second protective layer. The second protective layer can be a PE board, an EPP board, or an EPS board. Optionally, the third protective layer is located on the side of the first protective layer A611 away from the second protective layer A612. That is, the first protective layer A611 is located between the second protective layer A612 and the third protective layer.This is equivalent to the middle layer of the first protective structure A610 being foam, and the outer layers on either side of the middle layer being PE, EPP, or EPS boards. Optionally, the third protective layer is located between the first protective layer A611 and the second protective layer A612. As shown in Figures 1, 2, 5, and 6, the fixing mechanism A700 includes a first fixing member A711, a second mating member A721, and a second mating member A722. The first fixing member A711 is disposed on the first shielding member A600a. oA first mating member A721 is disposed on the base or on the side wall of the wooden body. The first mating member A721 is adapted to be detachably connected to the first fixing member A711 so that the first shielding member A600a is aligned with the outer side surface of the side wall. A second mating member A722 is disposed on the top wall A170. The second mating member A722 is adapted to be detachably connected to the first fixing member A711 so that the first shielding member A600a is aligned with the outer side surface of the top wall A170. This prevents the first shielding member A600a from being accidentally opened. As shown in Figures 3 to 5 , the first fixing member A711 is disposed at the first movable end A603 of the first shielding member A600a. The first mating member A721 is disposed on the base A200 or on the main body A100 between the first opening A1301 and the base A200. In this embodiment, the first mating member A721 is disposed on the base A200. When the first shielding member A600a is in the first position, the first fixing member A711 and the first matching member A721 are detachably connected, securing the first movable end A603 to the base A200. At this point, the first shielding member A600a at least partially covers the right side wall A130. Specifically, when the first shielding member A600a is in the first position, the lower edge of the first protective structure A610 is flush with or extends downward beyond the upper edge of the base A200 (i.e., the upper edge of the right side surface of the base A200). This effectively cushions the impact forces that may be experienced by the buffering area of ​​the right side wall A130. More specifically, the first fixing member A711 and the first matching member A721 are a pair of magnets that can attract each other. The first fixing member A711 is embedded in the first shielding cloth cover A630. Specifically, the first fixing member A711 is secured to the first shielding cloth cover A630 by, for example, sewing. The first mating component A721 is embedded within the base A200. This facilitates the removable connection between the first fixing component A711 and the first mating component A721, preventing the first shielding component A600a from being accidentally opened, and also enhances the appearance of the animal carrying device A1000. Referring to Figures 1, 2, and 6, the first mating component A722 is positioned on the body A100 between the top wall viewing area A171 and the first opening A1201 (i.e., the breathable mesh A902). Specifically, the second mating component A722 is positioned on the side of the top wall viewing area A171 opposite the second fixed connection portion A101. In this embodiment, the second mating component A722 is a magnet that can be attracted to the first fixing component A711. In other words, the first fixing component A711, the first mating component A721, and the first mating component A722 are all magnets.The first mating component A722 is embedded within the top wall A170 of the main body A100. Specifically, the first mating component A722 is secured to the top wall A170 of the main body A100 by sewing. When the first shielding member A600a is flipped to the second position, the first fixing component A711 engages with the second mating component A722, thereby securing the first movable end A603 to the wooden body A100 and preventing the first shielding member A600a from being accidentally opened. As a result, when the first shielding member A600a flips between the first and second positions, the first fixing component A711 automatically engages with the second mating component A722 or the first mating component A721 at the corresponding position. Optionally, multiple first mating components A722 may be arranged around the top wall viewing area A171, and multiple second fixing components A711 may be provided at corresponding positions on the first shielding component A600a. This can further securely secure the first shielding component A600a to the top wall A170. Similarly, multiple first mating components A721 may be arranged around the first opening A1301, and multiple first fixing components A711 may be provided at corresponding positions on the first shielding component A600a. This can further securely secure the first shielding component A600a to the sidewall of the body A100. Optionally, the first fixing component A711 may be a hook, and the first mating component A721 and the second mating component A722 may each be a hook, and the first fixing component A711 may be a loop. This application is not limited to this. In an alternative embodiment, the fixing mechanism A700 includes a first fixing member A711, a second peripheral fixing member (not shown), a first mating member A721, and a second mating member A722. The first fixing member A711 is disposed on the first shielding member A600a. The first mating member A721 is disposed on the base A200 or on the side wall of the body A100. The first mating member A721 is adapted to be removably connected to the first fixing member A711 to allow the first shielding member A600a to mate with the outer side of the side wall. The second fixing member (not shown) is disposed on the first shielding member A600a. The second mating member A722 is disposed on the top wall A170. The first mating member A722 is adapted to be removably connected to the first fixing member (not shown) to allow the first shielding member A600a to mate with the outer side of the top wall. The first fixing member A711 and the first matching member A721 are a pair of magnets, a pair of snaps or a pair of adhesive buckles, or zippers that can be pulled together, or hooks and rings that can cooperate with each other.The second fixing member and the second mating member A722 may be, for example, a pair of magnets, a pair of snaps, or a pair of adhesive fasteners, or a zipper that can be pulled together, or a hook and loop that can be mated together. The first fixing member A711 and the first mating member A721, and the second fixing member and the second mating member A722, may be identical or different, and this is not a limitation herein. According to the animal carrying device A1000 provided in this embodiment, by reversibly positioning the first shielding member A600a on the body A100, the user can selectively position the first shielding member A600a in either the second or first position depending on the actual environment. When the animal carrying device A1000 is carried outdoors, the first shielding member A600a can be flipped to the second position, thereby covering the top wall viewing area A171. This protects pets inside the animal carrier A1000 from sunlight exposure, ensuring air circulation within the animal carrier A1000 while also providing a certain degree of protection and cushioning. When the first shielding member A600a is flipped to the first position, the first protective structure A610 provided on the first shielding member A600a effectively protects and cushions the sidewalls of the animal carrier A1000. This embodiment provides an animal carrier A1000 that not only provides sun protection but also provides effective protection and cushioning. Furthermore, the reversible first shielding member A600a offers advantages such as ease of operation and resistance to loss. In this embodiment, since the first protective structure A610 is only provided on the right sidewall A130 of the body A100, when the animal carrier A1000 is placed on a vehicle seat for use, the right sidewall with the first protective structure A610 can be positioned close to the vehicle door. This reduces the risk of injury to the animal inside the animal carrier A1000 from accidental collision with the vehicle door. FIG7 shows a perspective view of an animal carrying device A1000 according to a second embodiment of the present invention. The animal carrying device A1000 is equipped with a buffer body A510, and a first shielding member A600a is positioned in a first position. It should be noted that when the animal carrying device A1000 in this second embodiment is not equipped with the buffer body A510, its structure can refer to that of the animal carrying device A1000 in the first embodiment. As shown in FIG1 and FIG7 , the animal carrying device A1000 includes a body A100, a base A200, and a first shielding member A600a. The body A100 is positioned above the base A200.The top wall A170 of the wooden body A100 is provided with a top wall viewing area A171, which is covered with a top wall breathable mesh A903. One of the left side wall A120 and the right side wall A130 of the main body A100 is provided with a first opening A1301, which is covered with a breathable mesh A901. The other of the left side wall A120 and the right side wall A130 of the main body A100 is provided with a first opening A1201, which is covered with a breathable mesh A902. In this embodiment, the left side wall A130 is provided with a first opening A1301, and the breathable mesh A901 is provided at the first opening A1301; the left side wall A120 is provided with a second opening A1201, and the breathable mesh A902 is provided at the second opening A1201. The breathable mesh A901 and breathable mesh A902 have essentially the same structure and shape. The area corresponding to the first opening A1301 and the second opening A1201 serves as the buffering area. Continuing with Figures 1 and 7 , the first shielding member A600a is reversibly mounted on the body A100 and equipped with a first protective structure A610, allowing it to be flipped between a second position and a first position. The first pivot end A601 of the first shielding member A600a is connected to the body A100 between the top wall viewing area A171 (i.e., the top wall breathable mesh A903) and the first opening A1301 (the breathable mesh). Specifically, the first pivot end A601 is connected to the first fixed connection portion A101 of the body A100. This embodiment differs from the first embodiment described above in at least the following ways. As shown in Figure 7 , the animal carrying device A1000 also includes a buffer body A510. The buffer body A510 is detachably attached to the body A100 via a connecting mechanism and at least partially covers another of the multiple sidewalls of the body A100. In this embodiment, the buffer body A510 at least partially covers the left sidewall A120 of the body A100. Optionally, the buffer body A510 is adapted to at least partially cover the right sidewall A130, and the second shielding member A600a is adapted to at least partially cover the left sidewall A140, though this is not a limitation in this application. Referring to Figures 1 and 7, the buffer body A510 detachably covers the second opening A1201 (i.e., the breathable mesh A902) via a connecting mechanism. This means that the buffer body A510 is detachably attached to the left sidewall A140 of the body A100 via a connecting mechanism, covering the second opening A1201 (i.e., the area to be cushioned on the left sidewall A120).The shape of the buffer body A510 matches the shape of the second opening A1201, which is equivalent to matching the shape of the breathable mesh A902 of the left side wall A120. In some alternative embodiments, the shape of the buffer body A510 may not match the shape of the second opening A1201, as long as the buffer body A510 substantially covers the first opening A1201. In this embodiment, a removable buffer body A510 is provided on the left side wall A120, and a reversible first protective structure A610 is provided on the right side wall A130. This is equivalent to providing anti-collision buffer structures on both the left and right sides A120 and A130 of the animal carrier A1000. Either side wall of the animal carrier A1000 can be positioned near a vehicle door, eliminating the need to place the animal carrier A1000 on a specific seat in the vehicle. This allows for flexible placement of the animal carrier A1000, improving its usability and enhancing its impact-absorbing performance. As shown in Figures 9 and 10 , in one embodiment, the buffer body A510 includes a first buffer layer A511, a second buffer layer A512, and a protective cover A513. The first buffer layer A511 and the second buffer layer A512 are stacked. The protective cover A513 covers the first buffer layer A511 and the second buffer layer A512. The protective cover A513 prevents the first buffer layer A511 and the second buffer layer A512 from separating during use and facilitates installation of the buffer body A510 on the main body A100. The buffer body A510 has a back surface A515 facing the main body A100 and a front surface A514 facing away from the main body A100. A breathable mesh is provided on the side of the main body A100 facing the buffer body A510. The side of the protective sleeve A513 facing away from the main body A100 forms the front surface A514 of the buffer body A510. The first buffer layer A511 is further away from the main body A100 than the second buffer layer A512, meaning that the second buffer layer A512 is closer to the main body A100. In other words, the first buffer layer A511 is positioned closer to the front surface A514 of the buffer body A510, while the second buffer layer A512 is positioned closer to the back surface A515 of the buffer body A510. The first buffer layer A511 has greater elasticity than the second buffer layer A512. Specifically, the first buffer layer A512 is a plate-like structure made of at least one of EPP foam, EPS foam, and EPO foam. The first buffer layer A511 is made of foam.The buffer body A510 can effectively absorb external impact forces and reduce deformation of the breathable mesh of the main body A100 under external impact forces. Of course, in other embodiments, the buffer body A510 can also be provided with more buffer layers, such as three or four buffer layers. For example, the buffer body A510 is provided with a third buffer layer, which is located between the first buffer layer A511 and the second buffer layer A512, or located on one side of the first buffer layer A511. The third buffer layer can be a PE board or an EPP board, for example. As shown in Figures 7 and 8, in this embodiment, the connecting mechanism includes a first mating portion A520 and a second mating portion A150. The buffer body A510 is provided with multiple first mating portions A520, which are disposed on the back surface A515 of the buffer body A510. The main body A100 is correspondingly provided with a plurality of second matching parts A150, and the plurality of first matching parts A520 are suitable for matching and connecting with the plurality of second matching parts A150 so that the buffer body A510 can basically cover the area to be buffered. The plurality of second matching parts A150 are respectively located on opposite sides of the second opening A1201. Exemplarily, the plurality of second matching parts A150 are respectively located on the upper side of the second opening A1201 (that is, the second matching parts A150 are provided at a position between the first opening A1201 and the top wall viewing area A171 of the main body A100) and the first matching part A150 is located at the lower side of the first opening A1201 (that is, the second matching part A150 is provided on the base A200 or at a position between the base A200 and the second opening A1201 of the main body A100). Alternatively, exemplarily, the second matching parts A150 are respectively located on the left and right sides of the second opening A1201. The positions of the multiple first mating portions A520 correspond to the multiple second mating portions A150. Specifically, the buffer body A510 is generally elongated, with a first mating portion A520 provided at each end. The multiple first mating portions A150 are edge attachments provided on the buffer body A510. More specifically, the multiple first mating portions A150 are provided at the upper and lower ends of the buffer body A510. As shown in Figure 7, one of the first mating portion A520 and the second mating portion A150 is a hook, and the other of the first mating portion A520 and the second mating portion A150 is a buckle. The hook is adapted to be hooked onto the buckle. In this embodiment, the first mating portion A520 provided on the buffer body A510 is a hook, and the second mating portion A150 provided on the wooden body A100 is a buckle. The buckle can be formed from a webbing sewn onto the wooden body A100.In some alternative embodiments, the first mating portion A520 and the second mating portion A150 are, for example, a pair of Velcro or snap fasteners disposed on the body A100 and the cushioning body A510, respectively. This is not intended to be limiting. Example Three: Figures 10 and 11 respectively illustrate perspective views of an animal carrying device A1000 according to a second embodiment of the present invention. In Figure 10, the first shielding member A600a of the animal carrying device A1000 is in the second position, and the second shielding member A600b is in the fourth position. In Figure 11, the first shielding member A600a of the animal carrying device A1000 is in the first position, and the second shielding member A600b is in the third position. As shown in Figures 10 and 11, the animal carrying device A1000 includes a body A100, a base A200, a first shielding member A600a, and a second shielding member A600b. The body A100 is disposed above the base A200. The top wall A170 of the main body A100 is provided with a top wall viewing area A171, which is covered with a top wall breathable mesh A903. One of the left side wall A120 of the main body A100 or the right side wall A130 of the main body A100 is provided with a first opening A1301, which is covered with a breathable mesh A901. The other of the left side wall A120 of the main body A100 or the right side wall A130 of the wooden body A100 is provided with a second opening A1201, which is covered with a breathable mesh A902. In this embodiment, the right side wall A130 is provided with a first opening A1301, where a breathable mesh A901 is located. The left side wall A120 is provided with a second opening A1201, where a breathable mesh A902 is located. The breathable meshes A901 and A902 have substantially the same structure and shape. The areas corresponding to the first opening A1301 and A1201 serve as buffer zones. The structure of the first shielding member A600a can be referenced to that of the animal carrying device A1000 in the first embodiment, and will not be further described here. The animal carrying device A1000 in this embodiment differs from the animal carrying device A1000 in the first embodiment in at least the following ways. Referring to Figures 10 to 12, the second shielding member A600b is reversibly disposed on the body A100 and is provided with a second protective structure A620. One end of the second shielding member A600b serves as a second pivot end A602 and is connected to the wooden body A100, so that the second shielding member A600b can be flipped between the third position and the fourth position.The fourth position is a sunshade position, preventing sunlight from entering the main body A100 through the top wall A170. The third position is a protective position, cushioning the side walls of the main body A100 from potential impacts. The second shielding member A600b also has a first movable end A604 opposite the first pivot end A601. Specifically, the first pivot end A602 connects to the main body A100 at a position between the top wall viewing area A171 and the second opening A1201. In other words, the main body A100 has a second fixed connection portion A102 connected to the second pivot end A602 of the second shielding member A600b. This second fixed connection portion A102 is located between the top wall viewing area A171 and the second opening A1201. The second fixed connection portion A102 can be located on the top wall A170 or the left side wall A120 of the main body A100. In other embodiments not shown, other shielding members (not shown) may also be provided, and this application is not limited thereto. As shown in Figures 10 to 12, the structure of the second shielding member A600b is substantially identical to that of the first shielding member A600a. The second shielding member A600b is an elastic member. The first shielding member A600b is adapted to be connected to the first shielding member A600a, the body A100, or the base A200 via a fixing mechanism A700, such that the second shielding member A600b adaptively conforms to the outer side of the top wall A170 of the body A100 or to another of the multiple side walls of the body A100. In other words, the second shielding member A600b can be fixed to at least one of the top wall A170 or a side wall of the body A100 via the fixing mechanism A700. Referring to Figure 11 , when the second shielding member A600b is in the third position, the second protective structure A620 at least partially covers another of the multiple sidewalls of the body A100, thereby cushioning the sidewall from external impact. At this point, the first shielding member A600b is connected to the sidewall or base A200 of the body A100 via the fixing mechanism A700, allowing the second shielding member A600b to abut against the outer surface of the sidewall of the body A100. Specifically, when the second shielding member A600b is in the second position, the first protective structure A610 of the second shielding member A600b at least partially covers the left side wall A120. More specifically, the second protective structure A620 of the second shielding member A600b covers the second opening A1201. That is, the second shielding member A600b covers the breathable mesh A902 (that is, covers the area to be buffered on the left side wall A120). This can buffer the area to be buffered on the left side wall A120 from external impact.Optionally, the positions of the first shielding member A600a and the second shielding member A600b can be interchanged, which is not a limitation of this application. Referring to Figures 10, 12, and 13, when the first shielding member A600a is in the second position and the second shielding member A600b is in the fourth position, the first shielding member A600a and the second shielding member A600b jointly cover the top wall viewing area A171, that is, jointly cover the top wall breathable mesh A903. This not only blocks sunlight from directly entering the bearing space A103, but also appropriately cushions the top wall from external impact forces. Specifically, when the first shielding member A600a is in the second position and the second shielding member A600b is in the fourth position, the first shielding member A600a and the first shielding member A600b at least partially overlap. 13 , when the first shielding member A600a and the first shielding member A600b overlap, the overlapping area is the overlapping area I. The overlapping area I may completely cover the top wall viewing area A17L or partially cover the top wall viewing area A171. In other words, the two shielding members 600 at least partially overlap, including the following embodiments: the two shielding members 600 completely or partially overlap, the overlapping area I completely covers the top wall viewing area A17L and each shielding member 600 completely covers the top wall viewing area A171; the two shielding members 600 partially overlap, the overlapping area I partially covers the top wall viewing area A171, one of the two shielding members 600 completely covers the top wall viewing area A17L and the other of the two shielding members 600 partially covers the top wall viewing area A171; the two shielding members 600 partially overlap, the overlapping area I partially covers the top wall viewing area A171, and each shielding member 600 partially covers the top wall viewing area A171. The shape of the second protective structure A620 of the second covering member A600b matches the shape of the second opening A1201 (i.e., the buffering area of ​​the left side wall A120), which is equivalent to matching the shape of the breathable mesh A902 of the left side wall A120. In some alternative embodiments, the shape of the second protective structure A620 may not match the shape of the breathable mesh A902, as long as the second protective structure A620 can substantially cover the breathable mesh A902. The second shielding member A600b has a first surface A641 and a second surface A642 disposed opposite each other. The second surface A642 of the second shielding member A600b is adapted to face the side wall (i.e., the left side wall A120) of the wooden body A100. The second shielding member A600b includes a second shielding cover A640, within which the second protective structure A620 is disposed. The second shielding cover A640 is a multi-layer woven fabric structure, with the second protective structure A620 disposed between two adjacent layers of fabric. Specifically, the multiple layers of fabric are connected by methods such as sewing, bonding, or thermal welding. The first shielding cover A640 is formed into a first surface A641 and a second surface A642. One end of the first shielding cover A640 forms a second pivot end A602, and the other end forms a second movable end A604. The second pivot end A602 is fixedly connected to the second fixed connection portion A102 by methods such as sewing. Optionally, the second pivot end A602 is fixedly connected to the second fixed connection portion A102 by welding, bonding, or the like, or the second pivot end A602 is detachably connected to the second fixed connection portion A102 by means of cooperating components (e.g., cooperating hooks and buckles, a zipper, etc.). The second protective structure A620 includes a first protective layer A621 and a second protective layer A622. The second protective layer A622 is stacked on the first protective layer A621, with the first protective layer A622 being further away from the first surface A641 than the first protective layer A621. That is, when the first covering member A600b is in the second position, the second surface A642 faces the second opening A1302 (i.e., toward the breathable mesh A902), and the first protective layer A621 is further away from the second opening A1302 than the second protective layer A622. The first protective layer A621 is similar to the first protective layer A611, and the second protective layer A622 is similar to the second protective layer A612. The first protective layer A621 has greater elasticity than the second protective layer A622. The second protective layer A622 has a plate-like structure and is made of at least one material selected from the group consisting of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin). The first protective layer A621 is made of foam, such as an inert foam.In this way, when the buffering area of ​​the left sidewall A120 is impacted, the first protective layer A621 can effectively absorb the external impact force, while the second protective layer A622 can reduce deformation of the second shielding element A600b, thereby further reducing deformation of the left sidewall A120 under external impact force. Of course, in other embodiments, the second protective structure A620 can also include more protective layers, such as two or four layers. For example, the first protective structure A620 includes a third protective layer. The third protective layer can be a PE board, an EPP board, or an EPS board. Optionally, the second protective layer is located on the side of the first protective layer A621 away from the second protective layer A622. That is, the first protective layer A621 is located between the second protective layer A622 and the second protective layer. This is equivalent to the second protective structure A620 having a foam middle layer and outer layers on both sides of the middle layer being PE boards, EPP boards, or EPS boards. Optionally, the third protective layer is located between the first protective layer A621 and the second protective layer A622. Referring to Figures 10 to 13, the fixing foot mechanism A700 includes a first fixing part A731, a first adapter part A741, a first matching part A721, and a first fixing part A711. The first fixing part A731 is provided on the first shielding part A600b. The first adapter part A741 is provided on the base A200 or on the side wall of the body A100 (i.e., the left side wall A120). Specifically, the first adapter part A741 is provided on the base A200. The first adapter part A741 is adapted to be detachably connected to the first fixing part A731 so that the second shielding part A600b is in contact with the outer side surface of the side wall of the wooden body A100. The first matching part A721 is provided on the base A2 (X) or on the side wall of the body A100 (i.e., the right side wall A130). Specifically, The first matching part A721 is set on the base A200o, and the first fixing part A711 is set on the first shielding part A600a. The first fixing part A711 is suitable for being detachably connected to the first matching part A721 so that the first shielding part A600a fits with the outer side of the side wall (i.e., the right side wall A130) of the body A100.The second fixed component A711 is adapted to be detachably connected to the second fixing component A731, thereby connecting the second shielding component A600b to the first shielding component A600a, so that the first shielding component A600a and the second shielding component A600b jointly block the top wall viewing area A17L. The first fixed component A711 and the first matching component A721 are magnets that can attract each other. The first fixed component A711 is embedded in the first shielding cloth cover A630, and the first matching component A721 is embedded in the base A200. Specifically, the first matching component A721 is embedded in the right side of the base A200. The first fixed component A731 and the first matching component A741 are magnets that can attract each other. The first fixed component A731 is embedded in the second shielding cloth cover A640, and the first matching component A741 is embedded in the base A200. Specifically, the first matching component A741 is embedded in the left side of the base A200. The first fixing member A711 and the first fixing member A731 are magnets that can attract each other. That is, the first fixing member A711, the first matching member A721, the first fixing member A731, and the first adapting member A741 are all magnets. This application does not limit the number of the first fixing member A711, the first matching member A721, the first fixing member A731, and the first adapting member A741. They can be one or more. Similarly, their respective numbers can be the same or different, as long as they can meet the requirements of mutual coordination. When the first shielding member A600a is in the first position, the first fixing member A711 and the first matching member A721 are attracted to each other. When the second shielding member A600b is in the second position, the first fixing member A731 and the first adapting member A741 are attracted to each other. In this embodiment, referring to Figures 11 and 12 , when the second shielding member A600b is in the second position, the lower edge of its second protective structure A620 is flush with or extends downward beyond the upper edge of the left sidewall A120 of the base A200, which is adjacent to the body A100 (i.e., the upper edge of the left side surface of the base A200). This effectively cushions the impact forces that may be experienced by the buffered area of ​​the left sidewall A120. Referring to Figures 12 and 13 , when the first shielding member A600a is in the second position and the second shielding member A600b is in the fourth position, the first fixing member A711 and the first fixing member A731 engage with each other, thereby connecting the first shielding member A600a and the second shielding member A600b.In this way, both the first shielding member A600a and the second shielding member A600b can be secured to the top wall A170 of the main body A100, preventing the first shielding member A600a and the second shielding member A600b from being accidentally opened. Referring to FIG. 13 , when the first shielding member A600a is in the second position and the first shielding member A600b is in the fourth position, the second shielding member A600a and the second shielding member A600b overlap. Specifically, the two shielding members A600a completely overlap, and their overlapping area I completely covers the top wall breathable mesh A903 (i.e., the top wall viewing area A171). Referring to Figures 10 and 13 , in one embodiment, when the first shielding member A600a and the second shielding member A600b overlap, at least a portion of the second shielding member A600b is positioned above the first shielding member A600a, and both the first fixing member A731 and the first fixing member A711 are located within the overlapping region I. In another embodiment, referring to Figure 12 , when the first shielding member A600a and the second shielding member A600b overlap, the first shielding member A600a may be at least partially positioned above the first shielding member A600b. Optionally, a second mating member A722 may be provided, similar to the animal carrying device A1000 of the first embodiment. As shown in Figures 1 and 2 , the second mating member A722 is, for example, a magnet. The second mating member A722 is embedded in the top wall A170 of the body A100. Thus, when the first shielding member A600a is in the second position and the second shielding member A600b is in the fourth position, the first fixing member A711 and the first fixing member A731 engage with each other, and the first fixing member A711 and the second mating member A722 engage with each other, thereby connecting the first shielding member A600a and the second shielding member A600b together and securing one to the top wall A170. This allows the first shielding member A600a and the second shielding member A600b to be more securely positioned on the top wall A170. Fourth Embodiment: FIG14 shows a perspective view of an animal carrying device A1000 according to a fourth embodiment of the present invention, in which the first shielding member A600a is in the first position and the second shielding member A600b is in the third position. The animal carrying device A1000 of this embodiment differs from the third embodiment described above in at least the following ways. As shown in FIG. 14 and FIG. 15 , the animal carrying device A1000 is provided with a fixing mechanism A700, which includes a first fixing member A711, a first matching member A721 (see FIG. 10 ), a second matching member A722, a first fixing member A731, a first adapter member A741 and a second adapter member A742.The arrangement of the first fixing member A711, the first mating member A721, and the second mating member A722 can be seen in the first embodiment. As shown in Figures 1 and 2 , the first fixing member A711 is disposed on the first shielding member A600a. The first mating member A721 is disposed on the base A200 or on the side wall (i.e., the right side wall A130) of the main body A100. The first mating member A721 is adapted to be removably connected to the first fixing member A711, so that the first shielding member A600a is aligned with the outer side of the side wall. The second mating member A722 is disposed on the top wall A170. The second mating member A722 is adapted to be removably connected to the first fixing member A711, so that the first shielding member A600a is aligned with the outer side of the top wall A170. This prevents the first shielding member A600a from being accidentally opened. Specifically, the first fixing member A711 is disposed at the first movable end A603 of the first shielding member A600a. The first fitting part A721 is provided on the base A200. The second fitting part A722 is provided at a position of the main body A100 between the top wall viewing area A171 and the first opening A1201 (i.e., the breathable mesh A902). In this embodiment, the first fixing part A711, the first fitting part A721, and the second fitting part A722 are magnets respectively. Referring to Figures 14 and 15, the first fixing part A731 is provided on the second shielding part A600b. The arrangement of the first adapter part A741 can refer to the third embodiment mentioned above. As shown in Figure 12, the first adapter part A741 is provided on the base A200 or on the side wall of the main body A100 (i.e., the left side wall A120). Specifically, the first adapter part A741 is provided on the base A200. The first adapter part A741 is suitable for being detachably connected to the first fixing part A731 so that the second shielding part A600b fits the outer side surface of the side wall of the main body A100. The second adapter member A742 is provided with the first shielding member A600a. The first adapter member A742 is adapted to be removably connected to the first fixing member A731, thereby connecting the first shielding member A600b and the first shielding member A600a together, so that the first shielding member A600a and the second shielding member A600b jointly block the top wall viewing area A171. In this embodiment, the first fixing member A731, the first adapter member A741, and the second adapter member A742 are magnets that can attract each other. The first fixing member A731 is embedded in the second shielding member A600b, the first adapter member A741 is embedded in the base A200, and the second adapter member A742 is embedded in the first shielding member A600a.When the first shielding member A600a is in the second position and the second shielding member A600b is in the fourth position, the first fixing member A711 engages with the first mating member A722, and the first fixing member A731 engages with the first adapting member A742, thereby connecting the first shielding member A600a and the second shielding member A600b together and securing them to the top wall A170. At this point, the second shielding member A600b and the first shielding member A600a at least partially overlap. In an alternative embodiment, the fixing mechanism A700, in addition to the first fixing member A711, the first mating member A721, and the second mating member A722 of the first embodiment, further includes a first fixing member A731, a second fixing member (not shown), a first adapting member A741, and a second adapting member A742. The first fixing member A731 and the second fixing member are respectively disposed on the second shielding member A600b. The first adapter member A741 is disposed on the sidewall of the base A200 or the body A100. The first adapter member A742 is disposed on the first shielding member A600a. The first adapter member A741 is adapted to be removably connected to the first fixing member A731, and the second adapter member A742 is adapted to be removably connected to the second fixing member. The first fixing member A731 and the first adapter member A741 are a pair of magnets, a pair of snaps, or a pair of adhesive snaps, or a zipper that can be pulled together, or a hook and loop that can cooperate with each other. The second fixing member and the second adapter member A742 are, for example, a pair of magnets, a pair of snaps, or a pair of adhesive snaps, or a zipper that can be pulled together, or a hook and loop that can cooperate with each other. The first fixing member A731 and the first adapter member A741, and the first fixing member and the first adapter member A742, can be identical or different, and this is not a limitation herein. FIG16 of Embodiment 5 illustrates a schematic structural diagram of the first and second shielding members A600a and A600b of an animal carrying device A1000 according to the fifth embodiment of the present invention, connected to the top wall A170. As shown in FIG16 , the animal carrying device A1000 includes a base A200, a body A100 disposed on the base A200, and first and second shielding members A600a and A600b, respectively reversibly disposed on the body A100. The animal carrying device A1000 of this embodiment differs from the animal carrying device A1000 of the third embodiment described above in at least the following ways.As shown in Figure 17, when the first shielding member A600a is in the second position and the second shielding member A600b is in the fourth position, the first shielding member A600a and the second shielding member A600b do not overlap, and the first movable end A603 of the first shielding member A600a and the first movable end A604 of the second shielding member A600b contact each other. In other words, when the first shielding member A600a and the second shielding member A600b are in the sun-blocking positions (i.e., the second and fourth positions, respectively), they lie on the same plane, with the first shielding member A600a covering a portion of the top wall viewing area A171 and the second shielding member A600b covering another portion of the top wall viewing area A171. The fixing mechanism A700 includes a first fixing member A731, a first adapter member A741, a first mating member A721, and a first fixing member A711. The first fixing member A711 is disposed on the first shielding member A600a, and the first fixing member A731 is disposed on the second shielding member A600b. Specifically, the first fixing member A731 is disposed on the first movable end A604 of the first shielding member A600b, and the first fixing member A711 is disposed on the second movable end A603 of the first shielding member A600a. When the first shielding member A600a is in the second position and the second shielding member A600b is in the fourth position, the first fixing member A711 and the first fixing member A731 cooperate with each other to connect the first shielding member A600a and the second shielding member A600b together. The first mating member A721 is disposed on the right side wall A130 of the main body A100 or the base A200. When the first shielding member A600a is in the first position, the first fixing member A711 and the first mating member A721 cooperate with each other to fit the right side wall A130 of the first shielding member A600a. The arrangement of the first adapter A741 can refer to the second embodiment described above. As shown in Figure 12, the first adapter A741 is arranged on the left side wall A120 of the main body A100 or the base A200. When the first blocking member A600b is in the third position, the first fixing member A731 and the first adapter A741 are attracted to each other, thereby making the second blocking member A600b fit the left side wall A120. In this embodiment, the first fixing member A731 is, for example, a magnet or a hook; correspondingly, the first adapter A741 is, for example, a magnet or a hanging ring; correspondingly, the first fixing member A711 is, for example, a magnet or a hanging ring; correspondingly, the first matching member A721 is, for example, a magnet or a hook.In other words, the first fixing member A731 and the first mating member A721 are identical, both being either a magnet or a hook; the first adapting member A741 and the first fixing member A711 are identical, both being either a magnet or a hook. Of course, the first fixing member A731 could also be a magnet or a hook, with the first adapting member A741, the first mating member A721, and the first fixing member A711 modified accordingly. Sixth Embodiment: Figures 18 to 20 illustrate the structure of an animal carrying device A1000 according to a sixth embodiment of the present invention. In Figure 18, the first shielding member A600a is installed in the first position facing forward, in Figure 19, in the second position facing backward, and in Figure 20, in the second position facing forward. As shown in Figures 18 to 20 , the animal carrying device A1000 includes a body A100, a base A200, and a first shielding member A600a. The structures of the body A100 and base A200 can be referenced to those of the first embodiment and will not be further described here. The animal carrying device A1000 of this embodiment differs from the animal carrying device AA1000 of the first embodiment in at least the following ways. Referring to Figures 18 to 20 , the first shielding member A600a is detachably connected to the body A100 via a fixing mechanism A700, allowing the first shielding member A600a to be selectively positioned in a first position (also referred to as a protective position) or a second position (also referred to as a sunshade position). The fixing mechanism A700 includes a first fixing member A711, a first fixing member A712, a first mating member A721, and a first mating member A722. The first fixing member A711 and the first fixing member A712 are respectively provided on the first side surface A632 of the first shielding member A600a. The first matching member A721 is adapted to be detachably connected to the first fixing member A711. The second matching member A722 is adapted to be detachably connected to the second fixing member A712. The first matching member A721 is provided on the wooden body A100 and is located on a side of the top wall viewing area A171 that is adjacent to one of the plurality of side walls. Specifically, the first matching member A721 is located on a side of the top wall viewing area A171 that is adjacent to the right side wall A130. The second matching member A722 is provided on one of the plurality of side walls of the body or the base A200. Specifically, the second matching member A722 is provided on the right side wall A130 of the body A100 or the right side surface of the base A200. Optionally, the first matching piece A721 is located on the upper side of the first opening A1301 on the right side wall A130, and the first matching piece A722 is located on the lower side, left side or right side of the first opening A1301.In this embodiment, the first mating component A721 and the second mating component A722 are located above and below the first opening A1301 (equivalent to the breathable mesh A901), respectively. The first mating component A721 is positioned between the first opening A1301 on the top wall viewing area A171 and the right side wall A130 of the main body A100. Referring to Figures 18 and 19, when the first fixing component A711 is connected to the first mating component A721 and the first fixing component A712 is connected to the first mating component A722, the first shielding member A600a is restrained in the first position. When the first fixing component A711 is connected to the first mating component A721 and the second fixing component A712 is not connected, the first shielding member A600a can flip between the first and second positions. In some embodiments not shown, the fixing mechanism A700 may not include the second fixing component A712 and the second mating component A722. Through the removable connection between the first fixing member A711 and the first mating member A721, one end of the first shielding member A600a is connected between the top wall viewing area A171 and the first opening A1301, while the other end is movable relative to the body A100, thereby enabling the first shielding member A600a to flip between a first position and a second position, thereby enabling the second shielding member A600a to switch between the first and second positions. As shown in Figures 18 to 20, the fixing mechanism A700 also includes a second mating member A723. The second mating member A723 is adapted to removably connect to the second fixing member A712. The third mating member A723 is disposed on the other side of the top wall viewing area A171, namely, on the side of the top wall viewing area A171 that is adjacent to another of the multiple side walls of the body A100. Alternatively, another of the multiple sidewalls of the body A100 may be opposite to or adjacent to one of the multiple sidewalls of the body A100. In this embodiment, the first mating member A721 is positioned between the top wall viewing area A171 and the first opening A1301 on the right sidewall A130 of the body A100, and the second mating member A723 is positioned between the top wall viewing area A171 and the second opening A1201 on the left sidewall A120 of the body A100. In other words, the first mating member A721 and the third mating member A723 are positioned on the left and right sides of the top wall viewing area A171, respectively. When the first fixing member A711 is connected to the first mating member A721, and the second fixing member A712 is connected to the third mating member A723, the first shielding member A600a is restrained in the second position.As shown in Figures 18 to 20, the first shielding member A600a has a first side surface A631 and a second side surface A632, and can be installed on the body A100 in either a forward or reverse orientation. As shown in Figure 20, forward installation means the second side surface A632 of the first shielding member A600a faces the body A100. As shown in Figure 19, reverse installation means the first side surface A631 of the first shielding member A600a faces the body A100, while the second side surface A632 of the first shielding member A600a faces away from the body A100. The first mating member A711 and the second mating member A712 are respectively disposed on the second side surface A632 of the first shielding member A600a. When the first shielding member A600a is installed in the second position, the first shielding member A600a can be installed in either a forward-facing or reverse-facing position on the top wall A170 of the main body A100, as long as the first shielding member A600a can completely cover the top wall viewing area A171. In other words, when the first shielding member A600a is in the first position, the first shielding member A600a can be installed in a rear-facing position, with the first side A631 of the first shielding member A600a facing the top wall viewing area A171, or in a forward-facing position, with the first side A631 facing away from the top wall viewing area A171. When the first shielding member A600a is installed in the second position using a forward-facing installation method, at least a portion of the fixing mechanism A700 is obscured by the first shielding member A600a. Specifically, the first fixing member A711 and the second fixing member A712 are located between the first shielding member A600a and the body A100 and are covered by the first shielding member A600a. As shown in FIG22 , the first shielding member A600a includes a first shielding cover A630 and a first protective structure A610 disposed within the first shielding cover A630. One side of the first shielding cover A630 forms a first side surface A631, and the other side forms a first side surface A632. The first fixing member A711 and the second fixing member A712 are disposed on the first shielding cover A630. The first protective structure A610 in this embodiment can be referred to as the first protective structure A610 in the first embodiment described above, and will not be further described here. When the first shielding member A600a is installed in the first position, the first protective structure A610 at least covers the first opening A1301 of the right side wall A130, and the first shielding member A600a needs to be installed forward on the body A100, so that the first protective structure A610 on the first shielding member A600a can better play a protective role.In one embodiment, the first fixing member A711 is a predetermined distance from the outer edge of the first shielding member A600a. This predetermined distance ensures that, when the first side surface A631 of the second shielding member A600a faces one of the multiple sidewalls of the body A100 (e.g., the right sidewall A130) (i.e., the first shielding member A600a is installed in the first position, which is reversed), at least one of the first fixing member A711 and the second fixing member A712 is difficult to connect to the corresponding first mating member A721 or the corresponding first mating member A722. It should be noted that "at least one of the first fixing member A711 and the first fixing member A712 is difficult to connect to the corresponding first mating member A721 or the corresponding first mating member A722" means, for example, that it is difficult to connect the first fixing member A711 to the first mating member A721 and the second fixing member A712 to the second mating member A722 without bending or deforming the first shielding member A600a. In other words, when the first shielding member A600a is installed in the reverse direction in the first position, it will bend and deform, for example, the portion between the outer edges of the first shielding member A600a may arch. This allows the user to determine whether the first shielding member A600a has been incorrectly installed in the reverse direction in the first position based on its shape after installation, thereby preventing the first shielding member A600a from being incorrectly installed in the reverse direction. Optionally, one of the first fixing member A711 and the first mating member A721 is a hook, and the other of the second fixing member A711 and the second mating member A721 is a loop; or, the second fixing member A711 and the second mating member A721 are mutually engageable snaps, adhesive fasteners, zippers, or magnets. In this embodiment, the first fixing member A711 and the second fixing member A712 are, for example, hooks, and the first mating member A721 and the second mating member A722 are, for example, loops that can engage with the hooks. Referring to Figures 18 and 19 , the cross-section of the first shielding member A600a is generally rectangular. The two short edges of the first shielding member A600a are first edges A605, and the two long edges of the first shielding member A600a are second edges A606. The first fixing member A711 and the second fixing member A712 are each located a predetermined distance from their adjacent first edges A605. Specifically, the ends of the first fixing member A711 and the first fixing member A712 are flush with their adjacent first edges A605 or located between the two first edges A605.In other embodiments, the first fixing member A711 and the second fixing member A712 may each be a first distance from their adjacent second edge A606, making it difficult for at least one of the first fixing member A711 and the second fixing member A712 to connect to the corresponding first mating member A721 or the corresponding second mating member A722. This is not a limitation of the present application. As shown in Figures 20 and 21, the first shielding member A600a further has a second position adapted to at least partially block another of the plurality of sidewalls of the body A100 (e.g., the left sidewall A120 of the body A100). The first shielding member A600a can be selectively positioned in the first position, the second position, or the third position. When the second fixing member A712 is connected to the second mating member A723 and the first fixing member A711 is not connected to the corresponding mating member (i.e., the first fixing member A711 is not connected), the first shielding member A600a can flip between the second position and the second position. Alternatively, the first fixing member A711 is adapted to be detachably connected to the third mating member A723. When the first fixing member A711 is connected to the third mating member A723 and the second fixing member A712 is not connected to the corresponding mating member (i.e., the second fixing member A712 is not connected), the first shielding member A600a can flip between the third position and the first position. In this embodiment, the first fixing member A711 and the first fixing member A712 are identical and symmetrically distributed on the first shielding member A600a, and the first shielding member A600a has an axially symmetrical structure. Thus, when either the first fixing member A711 or the second fixing member is connected to the second mating member A723, the first shielding member A600a can flip between the second position and the third position. The fixing mechanism A700 also includes a fourth mating member A724. The fourth mating member A724 is disposed on another of the multiple sidewalls of the body A100 or the base A200. At least one of the first fixing member A711 and the first fixing member A712 is adapted to be removably connected to the fourth mating member A724. The fourth mating member A724 corresponds to the position of the third mating member A723. When the third mating member A723 is connected to one of the first fixing member A711 and the second fixing member A712, and the fourth mating member A724 is connected to the other of the first fixing member A711 and the second fixing member A712, the first shielding member A600a is restrained in the second position.Optionally, the second mating part A723 is located on a side of the top wall viewing area A171 close to the left side wall A120, and the fourth mating part A724 is arranged on the left side of the left wall A120 or the base A200; or, the third mating part A723 is located on a side of the top wall viewing area A171 close to the front side wall A140, and the fourth mating part A724 is arranged on the front side of the front side wall A140 or the base A200; or, the third mating part A723 is located on a side of the top wall viewing area A171 close to the rear side wall A160, and the fourth mating part A724 is arranged on the rear side of the rear side wall A160 or the base A200. Optionally, the animal carrying device A1000 in this embodiment may be provided with two or more first shielding members A600a. In this way, the multiple first shielding members A600a may be selectively installed on the top wall A170 and at least one of the multiple side walls of the main body A100. In this way, the first shielding member A600a can provide both sunshade effect and anti-collision function. The animal carrying device A1000 in this embodiment uses a fixing mechanism A700 to detachably set the first shielding member A600a on the main body A100, thereby realizing the switching of the first shielding member A600a between the first position and the second position. In this way, the sunshade or anti-collision requirements of the animal carrying device A1000 can be met, and the first shielding member A600a can be removed when it is not needed, thereby improving the use requirements of the animal carrying device A1000 in different scenarios. Seventh embodiment Figure 23 schematically shows a structural diagram of the first shielding member A600a when it is installed in the first position according to the seventh embodiment of the present invention. The shielding member in this embodiment has at least the following differences from the first shielding member A600a in the sixth embodiment. The first protective structure A610 of the first shielding member A600a includes a first protective layer A611, a second protective layer A612, and a third protective layer A613. The second protective layer A613, the second protective layer A612, and the first protective layer A611 are stacked, and the second protective layer A612 is farther away from the first side surface A631 than the first protective layer A611. That is, when the first shielding member A600a is installed in the first position in the forward direction, the second side surface A632 faces the first opening A1301 (that is, facing the breathable mesh A901), and the first protective layer A611 is farther away from the first opening A1301 than the first protective layer A612. The first protective layer A611 has better elasticity than the second protective layer A612, and has better elasticity than the second protective layer A613. The first protective layer A611 is arranged between the third protective layer A613 and the second protective layer A612. Among them, The first protective layer A611 is made of foam, such as inert foam.The second protective layer A612 has a plate-like structure and is made of a material selected from at least one of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin). The second protective layer A613 has a plate-like structure and is made of a material selected from at least one of PE (polyethylene), EPP (expanded polypropylene), EPS (expanded polystyrene), and EPO (expanded polyolefin). In this way, when the buffering area of ​​the right side wall A130 is impacted, the first protective layer A611 can effectively absorb the external impact force, while the second protective layer A612 or the second protective layer A613 can reduce deformation of the first shielding member A600a, thereby further reducing deformation of the right side wall A130 under external impact force. In this embodiment, the first protective layer A612 and the third protective layer A613 can be the same or different. In another embodiment, when the first shielding member A600a is in the first position, either the first side surface A631 or the second side surface A632 of the first shielding member A600a can face one of the multiple side walls. Similarly, when A600a is in the third position, either the first side surface A631 or the second side surface A632 of the first shielding member A600a can face another of the multiple side walls. In other words, the first shielding member A600a in this embodiment can be installed in either the forward or reverse direction on the corresponding sidewall of the body A100. This eliminates the risk of users mistakenly installing the first shielding member A600a on either sidewall of the body A100, improving the applicability and ease of use of the first shielding member A600a. Eighth Embodiment: Figures 24 and 25 illustrate perspective views of an animal carrying device A1000 according to an eighth embodiment of the present application. As shown in Figures 24 and 25, the animal carrying device A1000 includes a body A100, a base A200, and a first shielding member A6(X)a. The structures of the body A100 and base A200 can be referenced to those of the first embodiment and will not be further described here.The animal carrying device A1000 in this embodiment differs from the animal carrying device AA1000 in the sixth embodiment described above in at least the following ways. In one or more embodiments of the present disclosure, the base A200 can also be considered the bottom wall of the body A100. The fixing mechanism A700 includes a first fixing member A711, a first fixing member A712, a first mating member A721, and a first mating member A722. The first fixing member A711 is disposed on the first shielding member A600a. oThe first fixing member A712 is disposed on the first shielding member A600a and is disposed opposite the first fixing member A711. Specifically, the first fixing member A711 and the second fixing member A712 are disposed near the first edge A605 or the second edge A606 of the first shielding member A600a, respectively. For example, the first fixing member A711 and the second fixing member A712 are disposed near the second edge A606 of the first shielding member A600a, respectively. The first mating member A721 and the second mating member A722 are disposed on the body A100 or the base A200, with the second mating member A722 disposed opposite the first mating member A721. Specifically, the first mating member A721 is disposed on the side of the first opening A1301 near the rear sidewall A160, and the first mating member A722 is disposed on the side of the first opening A1301 near the front sidewall A140. The first mating member A721 is adapted to be removably connected to the first fixing member A711, and the second mating member A722 is adapted to be removably connected to the second fixing member A712, thereby securing the first shielding member A600a in the first position. Continuing with FIG. 24 , the securing mechanism A700 further includes a third mating member A723 and a fourth mating member A724. The third mating member A723 and the fourth mating member A724 are disposed on opposite sides of the top wall viewing area A171. Optionally, the second mating member A723 is disposed on a side of the top wall viewing area A171 near the rear sidewall A160, and the fourth mating member A724 is disposed on a side of the top wall viewing area A171 near the front sidewall A140. The third mating member A723 is adapted to be removably connected to the first fixing member A711, and the fourth mating member A724 is adapted to be removably connected to the first fixing member A712, thereby securing the first shielding member A600a in the second position. In this embodiment, the first shielding member A600a also has a third position adapted to at least partially shield another of the multiple sidewalls of the wooden body A100 (e.g., the left sidewall A120). As shown in FIG25 , the fixing mechanism A700 further includes a fifth and sixth matching members A725 and A726 disposed opposite each other. Specifically, the fifth matching member A725 is disposed on the side of the second opening A1201 of the left sidewall A120 near the rear sidewall A160, while the sixth matching member A726 is disposed on the side of the second opening A1201 near the front sidewall A140. The fifth matching member A725 is adapted to be removably connected to the first fixing member A711, and the sixth matching member A726 is adapted to be removably connected to the second fixing member A712, thereby restraining the first shielding member A600a in the second position.FIG26 to FIG30 illustrate an animal carrier B1000 according to a ninth embodiment of the present invention. The animal carrier B1000 may be, but is not limited to, a sleeping box, a pet carrier, a pet carrier, or a pet bag. The animal carrier B1000 has a carrying space (Bill) for accommodating an animal (see FIG31 ). The animal carrier B1000 can be fixed to a vehicle seat (not shown) or carried on the person (e.g., carried in the hand or slung across the back). Specifically, the animal carrier B1000 includes a base B200 and a body B100. The base B200 and body B100 will be described together with the description of the animal carrier B1000 below. Referring to FIG26 and FIG31 , in one embodiment, the body B100 is mounted on the base B200 and has a carrying space B110. Specifically, the body B100 has a front sidewall B120, a right sidewall B130, a rear sidewall B140, and a left sidewall B150, which are sequentially connected along a circumferential direction. The front sidewall B120 and the rear sidewall B140 are disposed opposite each other along a first direction F1 (i.e., a front-to-back direction), and the left sidewall B150 and the right sidewall B130 are disposed opposite each other along a first direction F2 (i.e., a left-to-right direction). The front sidewall B120 forms the front wall of the carrying space B110, the right sidewall B130 forms the right wall of the carrying space B110, the rear sidewall B140 forms the rear wall of the carrying space B110, and the left sidewall B150 forms the left wall of the carrying space B110. The body B100 also has a top wall B160 and a bottom wall B170. Both are connected to the front side wall B120, the right side wall B130, the rear side wall B140, and the left side wall B150. The top wall B160 and the bottom wall B170 are generally vertically opposed to each other. The top wall B160 forms the top wall of the carrying space B110, while the bottom wall B170 forms the bottom wall of the carrying space B110. Referring to Figures 31 and 32, in one embodiment, the bottom wall B170 of the body B100 is provided with a first positioning portion B171. As shown in Figures 33 and 34, the base B200 includes an upper cover body B210 and a lower cover body B220, wherein one of the upper cover body B210 and the lower cover body B220 is provided with a limiting portion B211, and the other is provided with a second positioning portion B221. For example, the upper cover body B210 is provided with a limiting portion B211, and the lower cover body B220 is provided with a second positioning portion B221; or, the upper cover body B210 is provided with a second positioning portion B221, and the lower cover body B220 is provided with a limiting portion B211.The upper cover B210 and lower cover B220 are located on either side of the bottom wall B170 of the main body B100. Specifically, the upper cover B210 is located on the side of the bottom wall B170 of the main body B100 that faces the carrying space B110, while the lower cover B220 is located on the side of the bottom wall B170 of the main body B100 that faces away from the carrying space B110. In other words, the upper cover B210 is located within the carrying space B110, while the lower cover B220 is located outside the carrying space B110. Specifically, in this embodiment, the upper cover B210 is provided with a limiting portion B21L, and the lower cover B220 is provided with a second positioning portion B221. The limiting portion B211 corresponds to the first positioning portion B171 and the second foot portion B221, respectively. The limiting portion B211 is configured to cooperate with the first foot portion B171 and the first positioning portion B221. In this way, the bottom wall B170 of the main body B100 is clamped between the upper cover B210 and the lower cover B220, thereby achieving the positioning of the main body B100 and the base B200. It should be noted that when the upper cover B210 and the lower cover B220 are fastened together, the upper cover B210 is considered to be the bottom wall of the carrying space B110, thereby supporting the pet. Furthermore, it should be noted that at least two of each of the first positioning portions B171, the second positioning portions B221, and the position-limiting portions B211 are provided, and each first positioning portion B171 corresponds to each second positioning portion B221 and each position-limiting portion B211. In this embodiment, the number of first positioning portions B171, second positioning portions B221, and position-limiting portions B211 is the same. Thus, each first positioning portion B171 corresponds to one first positioning portion B221 and one position-limiting portion B211. Of course, in other embodiments, the number of first positioning portions B171, first positioning portions B221, and position-limiting portions B211 may vary. In one embodiment, the first positioning portion B171 is a first positioning hole B1711 (see Figures 31 and 32), the second positioning portion B221 is a second positioning hole B2211 (see Figure 34), and the limiting portion B211 is a positioning post B2111 (see Figure 33). When the main body B100 is to be mounted on the base B200, each positioning post B2111 is configured to pass through the corresponding first positioning hole B1711 and second positioning hole B2211 to achieve precise docking of the main body B100 and the base B200 (see Figure 32).Specifically, during installation, the upper cover B210 can be placed within the carrying space B110, ensuring that each positioning post B2111 precisely passes through the corresponding first positioning hole B171 E on the bottom wall B170 of the body B100. This way, the positioning posts B2111 protrude below the bottom wall B170 of the body B100, maintaining relative fixity between the bottom wall B170 of the body B100 and the upper cover B210. In other words, the restraining action of the upper cover B210 on the bottom wall B170 of the wooden body B100 prevents relative movement between the two. Subsequently, each positioning post B2111 is inserted into the second positioning hole B2211 of the lower cover B220, completing the precise docking of the upper and lower covers B210 and B220. Of course, in other embodiments, after the upper cover B210 and the bottom wall B170 of the main body B100 are assembled, that is, after the positioning column B2111 passes through the first positioning hole B1711 of the bottom wall B170 of the main body B100, the main body B110 and the upper cover B210 can be inverted; then the lower cover B220 is turned over, and the second positioning hole B2211 on the lower cover B220 is made to correspond to the positioning column B2111 protruding from the surface of the bottom wall B170 of the main body B100, and finally the lower cover B200 is buckled onto the upper cover B210. In this way, the bottom wall B170 of the main body B100 can be clamped between the upper cover B210 and the lower cover B220, and the precise docking of the upper cover B210 and the lower cover B220 is completed. The animal carrying device B1000 provided in this embodiment utilizes a design where the body B100 and base B200 cooperate to position themselves, providing a fast and stable assembly method. Specifically, the body B100 and base B200 achieve quick and precise alignment and fixation through the interaction of the stopper B211 with the first positioning portion B171 and the first positioning portion B221, thereby enabling quick and accurate installation of the body B100 and base B200. This design not only simplifies the assembly process but also improves assembly precision and efficiency. In one embodiment, after the positioning post B2111 passes through the first positioning hole B1711 and the second positioning hole B2211, the bottom wall B170 of the wooden body B100 is sandwiched between the upper cover B210 and the lower cover B220. The upper and lower covers B210 and B220 can be connected using fasteners (not shown), such as screws and bolts.Of course, in other embodiments, the fasteners can be omitted. The upper cover B210 and lower cover B220 can each be provided with a first engaging portion (not shown) and a second engaging portion (not shown) that can engage with each other. This can also achieve a fixed connection between the upper cover B210 and lower cover B220. One of the first engaging portion and the second engaging portion can be located on the positioning post B2111, and the other can be located within the second positioning hole B2211. Alternatively, the first engaging portion and the second engaging portion can be located elsewhere on the upper cover B210 and lower cover B220, respectively. Referring to Figures 32 to 34, in one embodiment, the positioning post B2111 on the upper cover B210, the first positioning hole B1711 on the bottom wall B170 of the body B100, and the second positioning hole B2211 on the lower cover B220 correspond to each other. The following uses the bottom wall B170 of the wooden body B100 as an example to briefly explain the location of the first positioning holes B1711 thereon. Specifically, in this embodiment, as shown in FIG32 , the bottom wall B170 of the body B100 is generally rectangular and is provided with a plurality of first positioning holes B1711 spaced apart along its circumference. Furthermore, at least one first positioning hole B1711 may also be provided in the central region of the bottom wall B170 of the body B100 as needed. More specifically, a line extending along the first direction F1 and passing through the geometric center of the body B100 (which can also be considered the center of the bottom wall B170 of the body B100) is defined as a reference line S1. All first positioning holes B1711 located on the bottom wall B170 of the body B100 are arranged approximately symmetrically along the reference line S1. In other words, the first positioning holes B1711 on either side of the reference line S1 exhibit mirror-symmetry in both number and position. This helps improve the stability of the fastening between the upper cover B210 and the lower cover B220. Of course, in other embodiments, the number and location of the first positioning holes B1711 on either side of the reference line S1 may differ. For example, the number of first positioning holes B1711 on one side of the reference line S1 may be greater or less than the number of first positioning holes B1711 on the other side. In this embodiment, as shown in FIG33 , reinforcing ribs B212 are connected between the positioning posts B2111 on the upper cover B210. This enhances the structural strength of each positioning post B2111, thereby improving the structural strength of the base B200.In one embodiment, the front side wall B120, right side wall B130, rear side wall B140, left side wall B150, bottom wall B170, and top wall B160 may be connected by sewing or other methods. Of course, in other embodiments, the front side wall B120, right side wall B130, rear side wall B140, left side wall B150, bottom wall B170, and top wall B160 may be integrally formed. Alternatively, in other embodiments, portions of the front side wall B120, right side wall B130, rear side wall B140, left side wall B150, bottom wall B170, and top wall B160 may be connected by sewing, while the remaining portions may be integrally formed. For example, in this embodiment, referring to Figures 26 and 31 , the left side wall B150 and top wall B160 are integrally formed, while the remaining portions of the wooden body B100 are connected by sewing or other methods. In one embodiment, the upper cover B210 and lower cover B220 of the base B200 are made of a hard material (such as plastic) to support the main body B100. The main body B100 (i.e., the front sidewall B120, right sidewall B130, left sidewall B150, rear sidewall B140, top wall B160, and bottom wall B170) is made of soft fabric. This improves the comfort of pets leaning against the sidewalls of the carrying space B110. To enhance the support strength of the main body B100 and prevent deformation of the carrying space B110, in one embodiment, as shown in Figures 26 to 31, support members B300 are provided on the outer edges of the front sidewall B120 and / or rear sidewall B140 of the main body B100, away from the base B200. Specifically, support members B300 are provided on the outer edges of the front sidewall B120 and the rear sidewall B140 of the body B100, away from the base B200. These support members B300, for example, can be wire supports. This supports the front sidewall B120 and the rear sidewall B140, preventing deformation of the carrying space B110 and enhancing the aesthetics of the body B100. Furthermore, to prevent the exposed support members B300 from affecting the aesthetics of the animal carrying device B1000, in this embodiment, two wire supports are located within the front sidewall B120 and the rear sidewall B140, respectively. It should be noted that to clarify the placement of the wire supports, dashed lines are used in the various figures to indicate their specific locations within the front sidewall B120 or the rear sidewall B140 of the wooden body B100. 31 to 33 , in one embodiment, a bottom wall B170 of the body B100 is provided with a reinforcement member B400. The reinforcement member B400 is made of a hard material and has a plate-like structure.For example, the reinforcement B400 is made of a PE board, an EPP board, or an EPS board. The reinforcement B400 is pre-attached to the bottom wall B170 of the body B100 by sewing. Specifically, one of the reinforcement B400 and the upper cover B210 has a first connecting portion B214, and the other has a second connecting portion B410. The number of first connecting portions B214 is the same as the number of second connecting portions B410, and the positions of the first connecting portions B214 correspond to those of the first connecting portions B410. More specifically, the upper cover B210 has a first connecting portion B214, which may be a connecting column B2141; the reinforcement B400 has a first connecting portion B410, which may be a connecting hole B411. After the connecting post B2141 passes through the connecting hole B411, it can be connected to the upper cover B210 and the reinforcement member B400 by means of a fixing member (not shown) that passes through the through-hole B172 on the bottom wall B170 of the wooden body B100. This strengthens the connection between the bottom wall B170 of the wooden body B100 and the base B200. In one embodiment, at least two reinforcement members B400 are provided. Specifically, two reinforcement members B400 are provided, spaced relative to each other along the first direction F2 on the bottom wall B170 of the main body B100. Referring to Figures 32 to 34, in one embodiment, at least one of the front side wall B120 and the rear side wall B140 extends toward the bottom wall B170 of the main body B100 to form an extended edge B121. Specifically, in this embodiment, the front side wall B120 extends toward the bottom wall B170 of the main body B100 to form an extended edge B121, and one of the extended edge B121 and the upper cover B210 is provided with a limiting column B213, and the other is provided with a first limiting hole B122. For example, the extended edge B121 is provided with a first limiting hole B122, and the upper cover B210 is provided with a limiting column B213, and the first limiting hole B122 is used to be sleeved outside the limiting column B213. In this way, when the main body B100 is installed on the base B200±, the front side wall B120 can be tightened, making the appearance of the main body B100 more upright. Alternatively, the extended edge B121 is provided with a limiting column B213, and the upper cover B210 is provided with a first limiting hole B122. The limiting column B213 is used to be inserted into the first limiting hole B122 to tighten the front side wall B120, making the appearance of the wooden body B100 more upright.To prevent the limiting post B213 from disengaging from the first limiting hole B122 when the upper cover B210 and lower cover B220 are engaged, causing the front side wall B120 to become loose, a corresponding second limiting hole B222 is provided on the cover B220. When the upper cover B210 and lower cover B220 are engaged, the limiting post B213 can be inserted into the second limiting hole B222, preventing the extended edge B121 from disengaging from the limiting post B213. To improve the air permeability within the bearing space B110, in one embodiment, at least a portion of the front side wall B120 and / or the rear side wall B140 of the main body B100 is formed with a first hollow area, and the first hollow area is covered with a first breathable mesh B510. For example, as shown in Figures 26 and 27, at least a portion of the front side wall B120 of the wooden body B100 is formed with the first hollow area. Alternatively, at least a portion of the rear side wall B140 of the wooden body B100 may be formed with a first hollowed-out area. Alternatively, at least a portion of the front side wall B120 and at least a portion of the rear side wall B140 of the main body B100 may both be formed with a first hollowed-out area. This ensures that the carrying space B110 remains closed while improving its air permeability, thereby improving the pet's environment and comfort. In one embodiment, at least one of the front side wall B120 and the rear side wall B140 of the main body B100 further includes a pocket B610, into which a user can place carry-on items (such as trash bags, water bottles, tissues, etc.). The pocket B610 can be open; however, the pocket door can also be closed with a zipper, a pair of magnets, a pair of snaps, or a pair of adhesive fasteners. Specifically, the size and number of the pockets B610 are not specifically limited in this embodiment. For example, the rear side wall B140 of the body B100 is provided with two pockets B610. The two pockets B610 can be arranged roughly horizontally side by side or staggered. Of course, the two pockets B610 can also be arranged roughly vertically side by side or staggered. More specifically, in this embodiment, as shown in FIG28 , the rear side wall B140 of the body B100 is provided with a pocket B610. The outer surface of the pocket B610 has a mesh structure, which enhances the transparency and breathability of the pocket B610. Continuing with FIG28 , the rear side wall B140 of the wooden body B100 is provided with a connecting cloth B620. A passage is formed between the connecting cloth B620 and the rear side wall B140. The passage is used to pass a luggage handle, for example, through the passage. This improves the portability of the animal carrier B1000.Specifically, the passage extends perpendicularly to the base B200, that is, it extends vertically. Specifically, the left and right ends of the connecting cloth B620 are respectively fixedly connected to the sidewalls of the rear sidewall B140 of the body B100 by sewing. In this embodiment, the connecting cloth B620 comprises a multi-layer woven structure, and pockets B610 may be formed between the layers. Referring to Figures 26 and 29 to 31 , in one embodiment, the animal carrying device B1000 further includes a side cover B710. Specifically, at least one of the left sidewall B150 and the right sidewall B130 of the body B100 is provided with a side opening B151. The side cover B710 is movably disposed at the side opening B151, allowing the side cover B710 to have a first open position (see Figure 31) and a first closed position (see Figure 26). When the side cover B710 is in the first open position, the side opening B151 is exposed; when the side cover B710 is in the first closed position, the side opening B151 is covered. Therefore, when a user needs to place a pet into the carrying space B110 or remove a pet from the wooden body B100, the side cover B710 can be placed in the first open position. When the user needs to confine the pet within the carrying space B110, the side cover B710 can be placed in the first closed position. Specifically, in this embodiment, the left side wall B150 and the right side wall B130 of the main body B100 are each provided with a side opening B151, each of which is removably covered by a side cover B710. This allows the user to place a pet into or remove it from the main body B100 through either side opening B151. Referring to Figures 26, 29, and 31, in one embodiment, one end of the side cover B710 is movably connected to the body B100 and serves as a first pivot end B711. This allows the side cover B710 to be switched between a first open position and a first closed position about the first pivot end B711. The connection between the first pivot end B711 and the body B100 includes, but is not limited to, the following methods: for example, the first pivot end B711 may be connected to the body B100 by sewing, or alternatively, by welding, bonding, or other methods; or alternatively, the first pivot end B711 may be connected to the body B100 by a zipper, button, or other mating component.Specifically, in this embodiment, the first pivot end B711 is sewn onto the body B100, and the periphery of the side cover B710, excluding the first pivot end B711, is connected to the body B100 via a zipper. This allows the side cover B710 to be openably and closably disposed on the left and right walls B150 and B130 of the wooden body B100, thereby allowing the carrying space B1100 to be opened or closed. Continuing with Figures 26, 29, and 31, in one embodiment, the end of the side cover B710 distal from the first pivot end B711 is referred to as a first movable end B712. When the side cover B710 is in a first closed position, the first movable end B712 and the first pivot end B711 are located on opposite sides of the side opening B151, respectively. This seals the side opening B151. Specifically, the first movable end B712 is provided with a first locking member (not shown), and the first pivot end B711 is provided with a first mating member (not shown). When the side cover B710 is in the first open position, the first locking member and the first mating member cooperate to maintain the side cover B710 in the first open position. This keeps the side opening B151 open, allowing pets to freely enter and exit the main body B100 as needed. Furthermore, when the user needs to place the pet inside the main body B100, there is no need to fold the side cover B710 again to expose the side opening B151, thereby improving the ease of use of the animal carrying device B1000. In one embodiment, the first locking member and the first mating member can each be a pair of magnets, a pair of snaps, or a pair of adhesive fasteners that can engage with each other. Optionally, the first locking member and the first mating member can be located on the inner surface of the side cover B710 (i.e., the side facing the carrying space B110); alternatively, they can be located on the outer surface of the side cover B710 (i.e., the side facing away from the carrying space B110). Alternatively, when the first locking member and the first mating member are a pair of magnets, they can be located inside the side cover B710. To further enhance the ease of use of the animal carrying device B1000, in one embodiment, as shown in Figures 26, 30, and 31, the animal carrying device B1000 further includes a top cover B720. Specifically, a top opening B161 is defined in a top wall B160 of the body B100, and the top cover B720 is movably disposed at the top opening B161, such that the top cover B720 has a first open position (see Figure 31) and a first closed position (see Figure 26).When the top cover B720 is in the second open position, the top opening B161 is exposed; when the top cover B720 is in the second closed position, the top opening B161 is covered. Therefore, when a user needs to place a pet into the carrying space B110 or remove a pet from the body B100, the top cover B720 can be placed in the second open position. When the user needs to confine the pet within the carrying space B110, the top cover B720 can be placed in the second closed position. This allows the user to adapt their needs by placing or removing the pet from the body B100 through either the top opening B161 or the side opening B151. Referring to Figures 30 and 31, in this embodiment, the top cover B720's side end is movably connected to the body B100 and serves as a second pivot end B72L. This allows the top cover B720 to switch between the second open position and the second closed position about the second pivot end B721. Among them, the connection method between the first pivot end B721 and the main body B100 includes but is not limited to the following methods: for example, the first pivot end B721 can be connected to the main body B100 by sewing or the like; or, the first pivot end B721 can also be connected to the main body B100 by welding, bonding, or the like; or, the second pivot end B721 can also be connected to the main body B100 by matching components such as a zipper and a button. Specifically, in this embodiment, the second pivot end B721 is sewn onto the wooden body B100, and the periphery of the top cover B720, excluding the second pivot end B721, is connected to the wooden body B100 via a zipper. This allows the top cover B720 to be openably and closably disposed on the top wall B160 of the main body B100, thereby allowing the carrying space B1100 to be opened or closed. Continuing with Figures 30 and 31, in one embodiment, the end of the top cover B720 away from the first pivot end B721 is referred to as the first movable end B722. When the top cover B720 is in the second closed position [1], the second pivot end B721 and the second movable end B722 are respectively located on opposite sides of the top opening B161. In this way, the top opening B161 can be closed. Specifically, the second movable end B722 is provided with a second locking member (not shown), and the second pivot end B721 is provided with a second mating member (not shown). When the top cover B720 is in the second open position, the second locking member cooperates with the second matching member to keep the top cover B720 in the second open position.This allows the top opening B161 to remain open, allowing pets to freely enter and exit the main body B100 as needed. Furthermore, when the user needs to place the pet inside the main body B100, there is no need to fold the top cover B720 again to expose the top opening B161, thereby improving the ease of use of the animal carrying device B1000. In one embodiment, the second locking member and the second mating member can be similar to the first locking member and the first mating member described above, and can be a pair of matable magnets, a pair of snaps, or a pair of adhesive fasteners. Alternatively, the second locking member and the second mating member can be located on the inner surface of the top cover B720 (i.e., the side facing the carrying space B110); alternatively, they can be located on the outer surface of the top cover B720 (i.e., the side facing away from the carrying space B110). Alternatively, if the second locking member and the second mating member are a pair of magnets, they can be located inside the top cover B720. To enhance the comfort of pets within the carrying space B110, as shown in FIG. 26 , in one embodiment, at least portions of the side covers B710 and / or top cover B720 are formed with second hollow areas X, and the second hollow areas are covered with a second breathable mesh B520. This improves the breathability of the carrying space B110 within the animal carrying device B1000. Specifically, in this embodiment, at least portions of the top cover B720 and at least portions of the side covers B710 are each provided with a second hollow area. Of course, in other embodiments, the entire top cover B720 and the entire side cover B710 may comprise a second hollow area. In other words, the two second breathable meshes B520 may form the side covers B710 and the top cover B720, respectively. As shown in Figures 26 and 27, the animal carrying device B1000 is equipped with a handle B810, which allows users to conveniently carry the animal carrying device B1000. It should be noted that in this embodiment, the number and location of the handles B810 are not specifically limited. For example, there may be one, two, or more handles B810. The handles B810 may be located on the top wall B160 or side walls (such as the front side wall B120, rear side wall B140, left side wall B150, or right side wall B130) of the body B100. Specifically, when there is one handle B810, it is located approximately in the middle of the top wall B160 of the body B100. When there are two handles B810, the two handles B810 may be fixed to the front side wall B120 and rear side wall B140, or to the left side wall B150 and right side wall B130, respectively.As shown in FIG26 , to facilitate carrying the animal carrier B1000, the animal carrier B1000 is also equipped with two (but not limited to two) buckles B820 for detachably connecting to a crossbody strap. The buckles B820 are located on two opposing side walls of the wooden body B100, such as the front side wall B120 and the rear side wall B140. The buckles B820 are distributed along the diagonal lines of the body B100. Referring to FIG28 , in one embodiment, the animal carrier B1000 is equipped with an anchor assembly B900, which is adapted to connect to a vehicle seat to secure the animal carrier B1000 thereto. The anchor assembly B900 includes at least one ISOFIX connector B910. One end (i.e., the pivot end B911) of the at least one ISOFIX connector B910 is pivotally connected to the base B200, while the other end (i.e., the free end B912) is used to connect to at least one connection point on the vehicle seat. This allows the ISOFIX connector B910 to have an extended state (not shown) and a collapsed state (see FIG. 28 ). Specifically, when the animal carrier B1000 needs to be secured to the vehicle seat, the ISOFIX connector B910 can be rotated about its pivot end B911 to the extended state, thereby securing it to the vehicle seat connection point. When the animal carrier B100 needs to be carried manually, the ISOFIX connector B910 can be rotated about its pivot end B911 to a folded position. This not only reduces the size of the animal carrier B100 but also prevents the ISOFIX connector B910 from accidentally striking pedestrians or other objects during movement. In one embodiment, the base B200 is provided with at least one folding groove B230. When the ISOFIX connector B910 is in the folded position, the ISOFIX connector B910 is accommodated within the folding groove B230. In one embodiment, when the ISOFIX connector B910 is in the folded position, a protrusion B913 is provided on the side wall of the folding groove B230 facing away from the folding groove B230. Specifically, an abutting protrusion B231 is provided on a side wall of the folding groove B230, near the pivot end B911 and facing the second direction F2. When the ISOFIX connector B910 is deployed, the abutting protrusion B231 and the convex bump B913 are disposed opposite each other along the second direction F2 and abut against each other. This prevents the ISOFIX connector B910 from directly colliding with the sidewalls of the folding groove B230 when deployed, thereby extending the service life of the animal carrying device B1000.Specifically, the abutting protrusion B231 and the bump B913 can be made of a wear-resistant material, such as metal, rubber, or silicone. Figure 35 shows a perspective view of a carrier 1100 according to the tenth embodiment of the present disclosure, and Figure 36 shows another perspective view of the carrier 1100 shown in Figure 35 , wherein a portion of the second sealing member 1117a is separated from the body 1110. Referring to Figures 35 and 36 , the tenth embodiment of the present disclosure provides an animal carrying device (also referred to as a carrier 1100). The carrier 1100 can be secured to a vehicle seat, for example, via a securing strap assembly (not shown). It should be noted that the terms "front," "rear," "left," and "right" in this embodiment are based on the orientation of the carrier (as indicated by reference numeral "1100") when placed on the vehicle seat. Specifically, the "forward" direction refers to the direction in which the carrier 1100 is moving away from the vehicle seatback, which in this embodiment is also the direction of vehicle travel. The "rearward" direction refers to the direction in which the carrier 1100 is moving toward or against the vehicle seatback. The "left" and "rearward" directions refer to the lateral directions when viewed from the front of the carrier 1100. Specifically, the carrier 1100 includes a box-shaped wooden body (hereinafter referred to as the "wooden body") 1110 and a bottom support member 1120. The bottom support member 1120 is detachably connected to the main body 1110 to form a box-shaped structure with the main body 1110 for providing a storage space. The main body 1110 forms the four side surfaces and the top surface of the carrier 1100, and the bottom support member 1120 forms the bottom of the box-shaped structure. In one example, the main body 1110 can be detachably connected to the bottom support member 1120 via at least one first connecting assembly 1150. The first connecting assembly 1150 may include a first connecting member disposed on the body 1110 and a second connecting member disposed on the bottom support member 1120. These may be, for example, removable structures such as a zipper, snap-fit ​​structure, slider, Velcro, or hook-and-loop structure. The body 1110 may include a first support member and a second support member, the first and second support members being at least partially removably connected to each other, i.e., at least a portion of the first support member is removably connected to the second support member. In this embodiment, the first support member may be a side support member 1111, and the second support member may be an upper support member 1112. The side support members 1111 form two side surfaces of the body 1110, such as the front and rear sides. The upper support member 1112 forms the top surface and at least a portion of two other side surfaces (such as the left and right sides) of the body 1110.As shown in FIG35 , at least a portion of the side support 1111 can be detachably connected to the upper support 1112 via a second connecting assembly 1160. The second connecting assembly 1160 can include mating structures disposed on the side support 1111 and the upper support 1112, respectively. For example, these structures can include cooperating zippers, snaps, sliders, Velcro, or hook-and-loop structures. A flexible connection structure can also be employed, but the present disclosure is not limited thereto. As shown in FIG35 and FIG36 , windows can be provided on one or more sides of the body 1110 to provide visibility into the interior of the carrier 1100 and / or allow pets to enter and exit the carrier 1100. In this embodiment, the windows include a first window 1116 and / or a second window 1117. The first window 1116 is disposed on the side support 1111. The second window 1117 is provided at least on the upper support member 1112, for example, on the portion of the upper support member 1112 that forms the left and / or right side of the body 1110. Optionally, the first window 1117 may also extend from the upper support member 1112 through a portion of the bottom support member 1120. In one example, a first window 1116 may be provided on the front and rear sides of the body 1110 (i.e., corresponding to the two side supports 1111 of the body 1110). The two first windows 1116 may be provided in corresponding locations, for example, each located in the center of the corresponding side support member 1111. The first windows 1116 may have a trapezoidal shape, but the present disclosure is not limited thereto. The first windows 1116 may also have rectangular, circular, elliptical, or other shapes. Optionally, the two first windows 1116 have the same size and / or shape. Optionally or alternatively, the two first windows 1116 may have different sizes and / or shapes. For example, the first window 1116 located on the rear side may be larger than the first window 1116 located on the front side to increase the ventilation area and thereby improve the air permeability of the rear side of the vehicle 1100 (i.e., the side adjacent to or in contact with the vehicle seat backrest). However, the present disclosure is not limited to this. The vehicle 1100 may also be provided with only one first window 1116. For example, when the vehicle 1100 is placed on a vehicle seat, the first window 1116 may be located on the side of the vehicle 1100 away from the vehicle seat backrest. Similarly, opposing second windows 1117 may be provided on the left and right sides of the vehicle 1100, respectively. The two second windows 1117 may have the same or different shapes and / or sizes. Alternatively, the carrier 1100 may be provided with only one second window 1117, for example, on the left or right side, more specifically, on the side of the carrier 1100 near the vehicle door. Furthermore, the first window 1116 may be provided with a first sealing member 1116a for closing and / or shielding the first window 1116. In this embodiment, the first sealing member 1116a may be a covering that is at least partially detachably or fixedly attached to the first window 1116. In one example, the first sealing member 1116a may be made of a transparent and / or breathable material, such as a mesh structure. Alternatively or additionally, the second window 1117 may be provided with a second sealing member 1117a for closing and / or shielding the second window 1117. In this embodiment, at least a portion of the second sealing member 1117a is detachably attached to the body 1110.For example, as shown in Figure 36 , the upper end of the second sealing member 1117a can be fixedly connected to the body 1110, while the remaining portion can be detachably connected to the body 1110. This allows the second sealing member 1117a to be opened upward relative to the second window 1117. In other words, the second sealing member 1117a can be flipped up to facilitate pet access. In one example, the second sealing member 1117a can be made of a transparent and / or breathable material, or a light-blocking material. The second door sealing member 1117a can be made of a flexible or rigid material and detachably connected to the second window 1117 via a flexible or rigid connection structure. For example, the second sealing member 1117a is a breathable mesh or a mesh-like flexible material. Furthermore, as shown in Figure 36 , the exterior of the body 1110 and / or the bottom support member 1120 of the carrier 1100 is covered with a covering. The covering can be made of at least one of fabric, plastic, or polyethylene, but the present disclosure is not limited thereto. For example, the cover may include a body cover 1130 that wraps around the exterior of the body 1110, and a bottom cover 1140 that wraps around the exterior of the bottom support member 1120. The body cover 1130 and the bottom cover 1140 are detachably connected, for example, via a first connecting component 1150 (such as a zipper, Velcro, or hook-and-loop assembly). In a specific example, at least a portion of the first sealing member 1116a and / or at least a portion of the second sealing member 1117a may be fixedly connected to the cover or integrally formed with the cover (e.g., made of the same material as the cover). The present disclosure is not limited to the above embodiment; the materials and / or connection methods of the first upper sealing member and / or the first sealing member may be interchangeable or varied. Figure 37A shows another perspective view of a vehicle 1100 according to the tenth embodiment of the present disclosure, wherein the vehicle 1100 is provided with an anti-collision protection device 1170, also referred to as a side impact protection block or anti-collision material. FIG37B illustrates the other side of the anti-collision protection device 1170 shown in FIG37A . As shown in FIG37A and FIG37B , the main body 1110 may also be provided with an anti-collision protection device 1170. The anti-collision protection device 1170 may have a certain thickness and may be provided on any side of the main body 1110 to enhance the safety of the pet within the carrier 1100. The anti-collision protection device 1170 may be provided on any or multiple sides of the main body 1110. Optionally, when the carrier 1100 is placed on a vehicle seat, the anti-collision protection device 1170 may be provided on at least one side of the main body 1110 proximate to the vehicle door. In this embodiment, as shown in FIG37A and FIG37B , the anti-collision protection device 1170 may be a separately formed structure that can be detachably attached to the side of the carrier 1100.For example, the anti-collision protection device 1170 may be provided with a first fixing member 1181, and the body 1110 may be correspondingly provided with a first fixing member 1182. The first fixing member 1181 and the first fixing member 1182 may be detachably connected to each other to secure the anti-collision protection device 1170 to the vehicle 1100. Specifically, the first fixing member 1181 may be provided on the inner surface 1170a of the anti-collision protection device 1170, for example, fixed to the inner surface 1170a by sewing, bonding, or the like (see FIG. 37B ). When the anti-collision protection device 1170 is connected to the body 1110 through the cooperation of the first fixing member 1181 and the second fixing member 1182, the outer surface 1170b of the anti-collision protection device 1170 is exposed, so that the first fixing member 1181 or most of its structure is concealed or shielded, thereby improving the aesthetics. In one example, one of the first fixing member 1181 and the second fixing member 1182 can be a hook, while the other can be a loop. However, the present disclosure is not limited to this. As long as the first fixing member 1181 and the second fixing member 1182 cooperate to removably secure the anti-collision protection device 1170 to the vehicle 1100, the anti-collision protection device 1170 is sufficient. Specifically, the anti-collision protection device 1170 can be a buffer body, and the buffer body can be made of foam, plastic, or elastomer. In one example, the buffer body can be constructed as a separately molded buffer block, which is then sewn into a pocket made of the same material as the cover and removably secured to the side of the vehicle 1100. However, the present disclosure is not limited to this. The anti-collision protection device 1170 can also be configured to be non-detachably connected to the cover or formed from the cover itself. The provision of such an anti-collision protection device 1170 can provide better cushioning for the pet inside the vehicle 1100 in the event of an accidental vehicle collision, particularly a side impact, thereby better protecting the pet. Referring to FIG. 38 , the eleventh embodiment of the present disclosure provides a carrier 1100 and a strap assembly 1300 for the carrier 1100. The carrier 1100 can be secured to a vehicle seat 1600 via ISOFIX connectors (not shown) or the strap assembly 1300. As shown in FIG. 38 , the strap assembly 1300 of this embodiment is configured to connect to the carrier 1100. Optionally, the strap assembly 1300 is at least partially fixed (e.g., detachably or non-detachably) to the carrier 1100. At least a portion of the strap assembly 1300 can be stored within a storage space within the carrier 1100. Specifically, the carrier 1100 includes a body 1110 and a bottom support member 1120.The bottom support member 1120 is detachably connected to the body 1110, forming a box with the body 1110, providing space for pets or children. The body 1110 is covered with a cover. The cover can be made of at least one of fabric, plastic, or polyethylene (PE), although this disclosure is not limited thereto. Specifically, the cover can include a body cover that wraps around the body 1110 and a bottom cover that wraps around the bottom support member 1120. The body cover 1130 and the bottom cover 1140 are detachably connected, for example, via a zipper, Velcro, or hook-and-loop assembly, although this disclosure is not limited thereto. Furthermore, as shown in FIG38 , the surface of the anti-collision protection device 1170 on the carrier 1100 faces the vehicle door to reduce impact to the carrier 1100. The anti-collision structure 1170 is located at least on the side closest to the vehicle door when the carrier 1100 is placed on the vehicle seat 1600. The technical features of the above embodiments may be combined in any manner. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as no conflicts exist between these combinations of technical features, they should be considered within the scope of this specification. The above embodiments merely illustrate several implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the invention. It should be noted that a person of ordinary skill in the art would be able to make various variations and improvements without departing from the spirit of the present invention, and these variations and improvements fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.

Claims

Claims 1. An animal carrying device, characterized in that: The animal carrying device includes: a main body having a first wall and a second wall, the second wall being provided with a second opening; and a shielding member provided with a protective structure, the shielding member being movably connected to the main body so as to enable the shielding member to switch between a first position and a second position; wherein, when the shielding member is in the first position, the protective structure at least partially covers the first wall; and when the shielding member is in the first position, the shielding member at least partially covers the first opening of the first wall.

2. The animal carrying device according to claim 1, characterized in that: The main body is further provided with an anchor assembly adapted to be connected to a vehicle seat to secure the animal carrier to the vehicle seat. When the animal carrier is secured to the vehicle seat by the anchor assembly, the first wall is configured to be adjacent to a vehicle door.

3. The animal carrying device according to claim 2, characterized in that: The animal carrying device further includes a base, the main body is disposed on the base and forms a carrying space together with the base, the anchor assembly is disposed at the base, and the anchor assembly includes at least one TSOFTX connection assembly or at least one Latch connection assembly.

4. The animal carrying device according to any one of the above items, characterized in that: The protective structure includes: a first protective layer; and a second protective layer stacked with the first protective layer, wherein the material elasticity of the first protective layer is higher than the material elasticity of the second protective layer.

5. The animal carrying device according to claim 4, characterized in that: The first protective layer is made of foam; the second protective layer is a plate-like structure, and the second protective layer is made of at least one material selected from polyethylene, expanded polypropylene, expanded polystyrene and expanded polyolefin.

6. The animal carrying device according to claim 4 or 5, characterized in that: The protective structure also includes: a third protective layer, which is stacked with the first protective layer of the first protective structure, and the first protective layer is arranged between the second protective layer and the second protective layer; the material elasticity of the first protective layer is higher than the material elasticity of the third protective layer, the second protective layer is a plate-like structure, and the material making the second protective layer is selected from at least one of polyethylene, expanded polypropylene, expanded polystyrene and expanded polyolefin.

7. The animal carrying device according to claim 4 or 5, characterized in that: The shielding member includes a fixed end and a free end, the fixed end is connected to the main body and serves as a pivot end, so that the shielding member can be flipped between the first position and the second position, wherein the shielding member is configured such that when the shielding member is in the first position, the first protective layer is closer to the main body than the first protective layer; when the shielding member is in the second position, the first protective layer is closer to the main body than the second protective layer.

8. An animal carrying device according to any one of the preceding claims, characterized in that: The first wall is connected to the second wall; the shielding member includes a fixed end and a free end, the fixed end is connected to the first wall or the second wall, and the fixed end is used as a pivot end to enable the shielding member to flip between the first position and the first position.

9. An animal carrying device according to any one of the preceding claims, characterized in that: The first wall is connected to the second wall, the first wall is a side wall, and the second wall is a top wall. 35 A first opening is provided on the first wall, and the shielding member includes a fixed end and a free end, the fixed end being connected to a position between the first opening and the second opening of the main body and serving as a pivot end so that the shielding member can flip between the first position and the second position; wherein, when the shielding member is in the first position, the protective structure at least partially covers the first opening and allows the second opening to be exposed; when the shielding member is in the second position, the shielding member at least partially covers the second opening and allows the first opening to be exposed.

10. The animal carrying device according to claim 8 or 9, characterized in that: The shielding member includes a shielding cloth cover, the protective structure is arranged in the shielding cloth cover, and the end of the shielding cloth cover is connected to the body by sewing and forms the pivot end.

11. The animal carrying device according to claim 8 or 9, characterized in that: The free end is provided with a fixing piece, and the first wall and the second wall are respectively provided with matching pieces, which are suitable for detachable connection with the fixing piece, so as to detachably fix the shielding piece in the first position or the second position.

12. An animal carrying device according to any one of the preceding claims, characterized in that The animal carrying device further includes a first shielding member, wherein the shielding member and a second shielding member are respectively connected to opposite sides of the second opening. The protective structure includes a protective structure provided on the first shielding member and a second protective structure provided on the second shielding member. One end of the second shielding member is connected to the body and serves as a second pivot end, so that the second shielding member can be flipped between a third position and a fourth position. When the first shielding member is in the third position, the first protective structure at least partially covers the wall of the body opposite the first wall. When the second shielding member is in the fourth position, the second shielding member at least partially blocks the second opening.

13. The animal carrying device according to claim 12, characterized in that: The shielding member is provided with a fixing member, and the second shielding member is provided with a matching member, wherein the matching member is adapted to be detachably connected to the fixing member. When the shielding member is located at the second position and the second shielding member is located at the fourth position, the second shielding member and the shielding member are connected to jointly cover the first opening.

14. The animal carrying device according to claim 12, wherein: The shielding member is provided with a fixing member, and the second wall is provided with a matching member, which is arranged between the second opening and the second shielding member; when the shielding member is located at the second position, the fixing member is connected to the matching member so that the shielding member covers the second opening.

15. The animal carrying device according to any one of claims 1 to 7, characterized in that: The shielding member is detachably connected to the body through a fixed foot mechanism to allow the shielding member to be selectively set in the first position or the second position, and the fixing mechanism includes: a fixing member, which is provided on the shielding member; and a matching member, which is provided on the first wall and / or the second wall, and the matching member is suitable for being detachably connected to the fixing member, thereby detachably fixing the shielding member in the first position or the second position.

16. The animal carrying device according to any one of the preceding claims, characterized in that: ■ The first wall and the second wall are disposed opposite each other, the first - wall is provided with a first • opening, the shielding member and the first - wall and the second wall are detachably connected so that the shielding member can switch between the first position and the second position; 36 When the shielding member is located at the first position, the protective structure at least partially covers the first wall and allows the first opening to be exposed; when the shielding member is located at the first position, the protective structure at least partially covers the first wall and allows the first opening to be exposed.

17. The animal carrying device according to any one of claims 11 to 16, characterized in that: The fixing part and the matching part respectively include a pair of magnets; or the fixing part and the matching part respectively include a pair of buttons; or the fixing part and the matching part respectively include a pair of adhesive buckles; or the fixing part and the matching part respectively include a hook and a hanging ring.

18. An animal carrying device according to claims 3 to 17, wherein: The bottom wall of the main body is provided with at least two first positioning parts; the base includes an upper cover body and a lower cover body, one of the upper cover body and the lower cover body is provided with at least two limiting parts, and the other is provided with at least two second positioning parts, each of the limiting parts corresponds to each first positioning part and each second positioning part respectively, the upper cover body and the lower cover body are respectively located on both sides of the bottom wall of the main body, and each of the limiting parts is used to cooperate with the corresponding first positioning part and the first positioning part to realize the positioning of the main body and the base.

19. The animal carrying device according to claim 18, characterized in that: The first positioning portion is a first positioning hole, the second positioning portion is a second positioning hole, and the limiting portion is a positioning column. The positioning column is used to pass through the corresponding first positioning hole and the second positioning hole to achieve positioning of the body and the base.

20. The object carrying device according to any one of claims 18 to 19, characterized in that: The main body has a front side wall and a rear side wall, at least one of the front side wall and the rear side wall extends toward the bottom wall of the main body to form an extended edge, and one of the upper cover and the extended edge is provided with a limiting column, and the other is provided with a second limiting hole, and the limiting column is used to be inserted into the first limiting hole.

21. The animal carrying device according to any one of claims 18 to 19, characterized in that: The animal carrying device also includes a side cover, a first locking member and a first matching member. At least one of the left side wall and the right side wall of the wooden body is provided with a side opening. The side cover is movably provided at the side opening H so that the side cover has a first open position and a first closed position. When the side cover is in the first open position, the side opening is exposed. When the side cover is in the first closed position, the side cover covers the side opening. The first locking member and the first matching member are respectively provided at opposite ends of the side cover. When the side cover is in the first open position, the first locking member cooperates with the first matching member to keep the side cover in the first open position.

22. The animal carrying device according to any one of claims 1 to 8, characterized in that: The first wall is provided with a first opening, and the first opening is covered with a breathable mesh. The breathable mesh is provided on the first wall in a zipper-operable manner to allow the first opening to be opened or closed.

23. The animal carrying device according to claim 22, characterized in that The breathable mesh has a zipper end provided with a zipper and a sewn end sewn to the first wall. The breathable mesh is provided with a magnet at the zipper end, and the first wall is provided with a magnet at the sewn end. When the zipper end of the breathable mesh is connected to the sewn end through the magnet, the first opening is kept in an open state.

24. The animal carrying device according to claim 16, characterized in that The matching parts on the first wall are respectively arranged on both sides of the first door, and the fixing parts of the shielding member are respectively arranged at both ends of the shielding member. When the shielding member is connected to the first wall through the fixing parts, the protective structure is configured to shield the first opening.

Citation Information

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