Storage mechanism and vehicle

By setting connection and mounting parts on different sides of the basket cover and the storage body, combined with the guidance and operation design, the basket cover can be opened and closed conveniently, solving the problems of visual blind spots and difficulty in opening, and improving the user experience.

CN223396284UActive Publication Date: 2025-09-30SHANGHAI JUNZHENG NETWORK TECH CO LTD
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Patent Information

Application Number
CN202422471450.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-14
Publication Date
2025-09-30
Estimated Expiration
2034-10-14

AI Technical Summary

Technical Problem

The existing bicycle basket cover is easy to block the sight when opened, which is especially difficult for users of short height to open, affecting the convenience of taking items such as helmets.

Method used

The connection part and the mounting part of the cover and the storage body are respectively arranged on different sides, so that the cover is connected by rotation. The user only needs to apply external force on the side close to the mounting part to open or close the cover. The combined guide part and the operating part design facilitate operation.

Benefits of technology

The problem of visual blind spots is solved, the convenience of taking the cover by users, especially short users, is improved, and the cover is prevented from being blown open when the vehicle is moving.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a storage mechanism and a vehicle, and the storage mechanism comprises a storage body which is provided with a containing cavity and a mounting part; the cover body is rotationally connected with the storage body through a connecting part so as to open or cover the accommodating cavity; wherein the connecting part and the mounting part are respectively positioned on different sides of the storage body. By means of the mode, when a user needs to take articles in the storage body, the cover body can be driven to rotate relative to the storage body from the side close to the mounting part or the side relatively close to the mounting part so as to open the containing cavity, the cover body cannot be located on the same side of the mounting part after rotating, and then the situation that the cover body shields the sight of the user is avoided; a user can conveniently take articles in the accommodating cavity; and meanwhile, the distance between the side close to the mounting part or the side relatively close to the mounting part and the user is smaller than the distance between the side, opposite to the mounting part, of the cover body and the user, so that the convenience of opening the cover body by the user is improved.
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Description

Technical Field

[0001] The present application relates to the field of vehicle technology, and in particular to a storage mechanism and a vehicle. Background Art

[0002] A basket is a container mounted on the front, rear, or side of a bicycle or small electric scooter to hold items. With the rapid development of the world, shared vehicles have emerged to facilitate travel. These vehicles can be deployed in a specific area and move within a certain range, allowing users to conveniently ride within the vehicle's range.

[0003] For both aesthetics and safety, shared electric vehicles typically have a basket located in front of the handlebars. This basket is fitted with a lid to form a closed cavity, preventing objects from falling out when the vehicle bumps or tips over. As sharing technology matures and its operational models become more sophisticated, shared electric vehicles are becoming increasingly popular.

[0004] Since shared electric bikes are controlled by the handlebars and ride at high speeds, they are equipped with helmets for riders to wear. The helmets are usually placed in the basket of the bike. Before riding, users need to open the basket cover to take out the helmets.

[0005] In the prior art, the connection between the basket cover and the bicycle basket is located near the handlebars and is rotatably connected via a pivot shaft, thereby maximizing exposure to the interior of the basket. To open the basket cover, the user must rotate it from the side away from the handlebars toward the side closer to the handlebars. However, once opened, the basket cover typically remains upright or tilted toward the handlebars. When the user is on the other side of the handlebars, the basket cover obscures the interior of the basket, creating a blind spot and making it difficult for the user to remove a helmet from the basket.

[0006] In addition, some users are short in height. When they need to open the bicycle basket cover from the side of the handlebars close to the seat, there is a gap between the place where the fingertips touch and the force-bearing end of the bicycle basket cover (that is, the side of the bicycle basket cover away from the handlebars), making it difficult to open the bicycle basket cover.

[0007] Therefore, there is a need for a storage mechanism and a vehicle that can facilitate users to open the basket cover to take out the items placed in the basket. Utility Model Content

[0008] The present application aims to solve the above problems and thus provides a storage mechanism, comprising:

[0009] The storage body has a cavity and a mounting portion;

[0010] a cover body rotatably connected to the storage body via a connecting portion to open or close the cavity;

[0011] Wherein, the connecting portion and the mounting portion are respectively located on different sides of the storage body.

[0012] Optionally, the connecting portion and the mounting portion are located on opposite sides of the storage body.

[0013] Optionally, the cover has an operating portion, and the operating portion is configured to drive the cover to rotate relative to the storage body under the action of an external force;

[0014] The operating portion and the mounting portion are located on the same side, or the operating portion is located on an opposite side of the connecting portion.

[0015] Optionally, the operating portion includes at least one recessed portion provided on the top of the cover body.

[0016] Optionally, the recess is provided with one, and the recess is formed by being recessed inward from the outside of the cover body; the recess includes handle positions located on both sides of the cover body and a connecting section connecting the two handle positions; or

[0017] There are two recesses, which are located on both sides of the cover along a first direction, wherein the first direction is parallel to the rotation axis of the cover.

[0018] Optionally, the operating portion includes a protrusion located on a side of the cover and protruding from the storage body.

[0019] Optionally, the cover body further has a guide portion, and the guide portion is located on the same side as the connecting portion;

[0020] The guide portion is configured to guide a direction of airflow.

[0021] Optionally, the guide portion is in an outward convex arc shape.

[0022] The present application also provides a storage mechanism, comprising:

[0023] The storage body has a cavity and a mounting portion;

[0024] a cover body rotatably connected to the storage body via a connecting portion to open or close the cavity, so that the cover body has an open state and a closed state;

[0025] Applying external force to the side of the cover body close to the mounting portion to drive the cover body to rotate in a direction close to the connecting portion to open the cavity, and the cover body switches from a closed state to an open state;

[0026] An external force is applied to a side of the cover body close to the mounting portion to drive the cover body to rotate in a direction away from the connecting portion to cover the cavity, and the cover body switches from an open state to a closed state.

[0027] The present application also provides a vehicle, comprising:

[0028] a vehicle body having a docking portion; and

[0029] The storage mechanism as described above is installed on the docking portion through the installation portion.

[0030] The storage mechanism of the present application has at least the following advantages:

[0031] 1. The cover is rotatably connected to the storage body through the connecting portion, and the connecting portion and the mounting portion are located on different sides of the storage body. When the user needs to drive the cover to rotate to open the cavity of the storage body, there is no need to apply external force to the side of the cover that is opposite to the mounting portion. Only external force needs to be applied to the side of the cover close to the mounting portion to drive the cover to rotate relative to the storage body, so that the cover rotates toward the side away from the mounting portion or in a direction parallel to the axial direction of the connecting portion during rotation, thereby preventing the cover from rotating from the side away from the mounting portion to the side close to the mounting portion. As a result, the cover will not be located on the same side of the mounting portion after rotation to block the user's view, thereby improving the convenience of the user in taking items in the storage body.

[0032] 2. At the same time, since external force only needs to be applied on the side of the cover body close to the mounting portion, the distance between the side of the cover body close to the mounting portion and the user sitting astride the vehicle is smaller than the distance between the opposite side of the cover body and the mounting portion and the user sitting astride the vehicle, making it easier for users of short height to open the cover body.

[0033] The concept, specific structure and technical effects of this application will be further explained below in conjunction with the accompanying drawings to fully understand the purpose, characteristics and effects of this application. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 It is a structural diagram of the storage mechanism of the present application;

[0035] Figure 2 This is an exploded schematic diagram of the storage mechanism of the present application;

[0036] Figure 3 is a cross-sectional schematic diagram of the storage mechanism of the present application;

[0037] Figure 4 This is another structural diagram of the storage mechanism of the present application;

[0038] Figure 5 yes Figure 4 Schematic diagram of part of the structure;

[0039] Figure 6 yes Figure 1 A schematic structural diagram of the cover body;

[0040] Figure 7 yes Figure 1 Another structural schematic diagram of the cover body;

[0041] Figure 8 yes Figure 1 Another structural schematic diagram of the cover body;

[0042] Figure 9 yes Figure 1 Another structural schematic diagram of the cover body in FIG.

[0043] Description of Figure Numbers:

[0044] 1- storage body; 11- installation part; 12- cavity;

[0045] 2 - cover; 21, 21a, 21b - recessed portions; 211 - handle position; 212 - connecting section; 21c - protruding portion; 22 - guide portion; 23 - raised portion;

[0046] 3-connecting part;

[0047] 4-Lock;

[0048] Arrow a - counter-flow. DETAILED DESCRIPTION

[0049] The following describes the embodiments of the present application through specific examples. Those skilled in the art can easily understand the other advantages and effects of the present application from the content disclosed in this specification. The present application can also be implemented or applied through other different specific embodiments. The details in this specification can also be modified or changed based on different viewpoints and applications without departing from the spirit of the present application. It should be noted that the following embodiments and features in the embodiments can be combined with each other unless they conflict.

[0050] It should be understood that although directional terms such as "upper," "lower," "left," "right," "front," and "rear" are used in this application to describe various exemplary structural parts and elements, these terms are used for convenience of description only and are based on the exemplary orientations shown in the accompanying drawings. Since the embodiments disclosed in this application can be arranged in different orientations, these directional terms are used for illustrative purposes only and should not be considered as limiting.

[0051] It should be noted that the illustrations provided in the following embodiments are only schematic illustrations of the basic concept of the present application. Therefore, the illustrations only show components related to the present application and are not drawn according to the number, shape and size of components in actual implementation. In actual implementation, the type, quantity and proportion of each component can be changed at will, and the component layout type may also be more complicated.

[0052] Some exemplary embodiments of the present application are described for the purpose of illustration. It should be understood that the present application may be implemented in other ways not specifically shown in the drawings.

[0053] In one embodiment of the present application, a vehicle includes a vehicle body and a storage mechanism mounted on the vehicle body. The vehicle body includes a frame, a front wheel rotatably mounted on the front side of the frame, a rear wheel rotatably mounted on the rear side of the frame, a seat disposed between the front and rear wheels, and handlebars connected to the frame via a front fork assembly. When riding, a user straddles the seat, holds the handlebars to control the riding direction, and simultaneously pedals to drive the front and rear wheels via a chain, thereby achieving vehicle movement.

[0054] The direction in which the vehicle moves is the front, in which the front and rear wheels are driven to rotate by pedals through a chain. The storage mechanism can be installed on the front side of the handlebar or on the rear side of the seat to facilitate users to place items in the storage mechanism.

[0055] With the rapid development of the world, shared vehicles are becoming widely used. These vehicles are generally deployed in designated areas and can be moved within a designated area. To use a shared vehicle, a user must scan a QR code on the vehicle with their mobile device to unlock it. This means that shared vehicles are locked when not in use.

[0056] For safety and aesthetic reasons, shared vehicles feature a storage mechanism located on the front of the handlebars. After unlocking a shared vehicle, users typically sit astride the seat before placing items in the storage mechanism, or sit astride the seat before accessing items from the storage mechanism.

[0057] Taking shared electric vehicles as an example, since the moving speed of shared electric vehicles is generally 25km / h and the riding speed is relatively fast, they will be equipped with helmets for users to wear. The helmet is placed in the storage mechanism. When the user needs to ride a shared electric vehicle, he needs to take the helmet out of the storage mechanism and wear it, and then the shared electric vehicle can be started for riding. When the user needs to lock the shared electric vehicle, he also needs to place the helmet in the storage mechanism before locking the shared electric vehicle. For the convenience of discussion, the following will take the shared vehicle as an example for specific explanation. When the shared electric vehicle is in the locked state, a helmet is stored in the storage mechanism.

[0058] like Figures 1 to 3As shown, in order to prevent items in the storage mechanism from falling out of the storage mechanism due to bumps during riding, or to prevent items in the storage mechanism from falling out of the storage mechanism when the vehicle tips over, the storage mechanism includes at least a storage body 1 and a cover body 2 connected to the storage body 1. The storage body 1 has a cavity 12, and a helmet is placed in the cavity 12. The cover body 2 can move relative to the storage body 1 to open or close the cavity 12 of the storage body 1, thereby taking the helmet in and out.

[0059] To prevent the cover from shaking during vehicle movement, the storage mechanism also includes a lock 4 connecting the cover 2 and the storage body 1. This lock 4 locks the cover 2 and the storage body 1. The lock 4 comprises a U-shaped locking member and a clamping member that holds the locking member. The clamping member clamps the locking member to lock the cover. Applying a force greater than the clamping force of the clamping member forces the clamping member to separate from the locking member, allowing the cover to open.

[0060] One of the clamping member and the locking member is provided on the storage body 1 , and the other is provided on the cover 2 . There is no specific limitation here and it depends on the actual situation.

[0061] In other embodiments, the lock buckle 4 may also include a buckle and a slot, etc., which can achieve a locking effect and can be separated under the action of an external force. No specific limitation is made here and it depends on the actual situation.

[0062] The storage body 1 has a mounting portion 11 facing the vehicle body, allowing the storage body 1 to be securely connected to the vehicle body via the mounting portion 11. The vehicle body also has a docking portion that mates with the mounting portion 11. Both the mounting portion 11 and the docking portion have holes, allowing fasteners to be inserted through the holes in the mounting portion 11 and the docking portion to securely connect them. In this case, the mounting portion 11 of the storage body 1, when mounted on the vehicle body, is positioned near the handlebars.

[0063] The cross-section of the mounting portion 11 may be any one of an ellipse, a circle, a square, a rectangle, and a polygon. This application does not make any specific limitation here and it depends on the actual situation.

[0064] In one embodiment, the cover 2 is slidably connected to the storage body 1. A slider is provided on one of the cover 2 and the storage body 1, and a slide rail is provided on the other of the cover 2 and the storage body 1 to slidably cooperate with the slider. In this case, the cover 2 is fixedly connected to one end of the storage body 1. The cover 2 can be configured to be foldable. When the cover 2 is opened, the cover 2 is completely retracted to the side of the storage body 1; when the cover 2 is closed, the cover 2 is completely extended to cover the cavity 12.

[0065] Alternatively, the cover 2 and the storage body 1 do not have a connection point, and the cover 2 is non-retractable. When the cover 2 is opened, the cover 2 moves as a whole to the side of the storage body 1, with part of the cover 2 located outside the storage body 1. When the cover 2 is closed, the cover 2 moves as a whole to the top of the storage body 1 to cover the cavity 12.

[0066] In another embodiment, the cover 2 is rotatably connected to the storage body 1. When the cover 2 is opened, the cover 2 is rotated as a whole to the side of the storage body 1 to open the cavity 12. When the cover 2 is closed, the cover 2 is rotated as a whole to the top of the storage body 1 to cover the cavity 12.

[0067] In this application, the pivoting connection between the lid 2 and the storage body 1 is used as an example for the main description. The pivoting connection between the lid 2 and the storage body 1 facilitates opening the lid 2 and, when closing the lid 2, allows the lid 2 to rotate toward the storage body 1 under its own weight without the user applying any force, thereby achieving closing.

[0068] The cover 2 is rotatably connected to the storage body 1 via a connecting portion 3. In this embodiment, the connecting portion 3 is a rotating shaft. The number of rotating shafts can be one or more, which is not specifically limited here and depends on the actual situation.

[0069] In the prior art, the connection portion 3 between the cover 2 and the storage body 1 is positioned near the handlebars, meaning the connection portion 3 and the mounting portion 11 are located on the same side. To open the cover 2, the user must rotate the cover 2 from the side away from the handlebars toward the side closer to the handlebars. However, after opening, the cover 2 generally remains upright or tilted toward the handlebars. When the user is on the other side of the handlebars (i.e., between the handlebars and the seat, or straddling the seat), the cover 2 obscures the cavity 12 of the storage body 1, creating a blind spot. The user must view the helmet from the side or from above the top of the opened cover 2 to clearly see the placement of the helmet within the cavity 12. Furthermore, because the opened cover 2 is taller than the handlebars, the user must reach over the top of the opened cover 2 to remove the helmet, or remove it from the side, which increases the force path required by the user's hand and causes significant inconvenience.

[0070] In order to solve the above-mentioned problems in the prior art, the connecting portion 3 and the mounting portion 11 in the present application are respectively located on different sides of the storage body 1 .

[0071] In one embodiment, the connection portion 3 is located adjacent to the mounting portion 11. That is, the direction in which the front and rear wheels are driven by the pedals via the chain to drive the vehicle is the front, and the mounting portion 11 is disposed on the rear side of the storage body 1. The storage body 1 also includes a front side and a side located between the front and rear sides. The side has an angle with the front and rear sides, and the angle range is greater than 0° and less than 180°. Correspondingly, the cover 2 also has a front side, a rear side, and a side located between the front and rear sides. The connection portion 3 is mounted on the side of the cover 2 and the storage body 1.

[0072] In this embodiment, when the cover 2 needs to be driven to rotate relative to the storage body 1 to open or close the cavity 12 , an external force is applied to the rear side of the cover 2 to drive the cover 2 to rotate.

[0073] Alternatively, an external force may be applied to the side of the cover 2 where the connecting portion 3 is not provided, thereby driving the cover 2 to rotate, thereby achieving opening or closing of the cover 2.

[0074] In the above-mentioned opening method, when the cover 2 is rotated to open the cavity 12, the cover 2 is located on the side of the storage body 1, and the cover 2 is tilted toward the outside of the storage body 1, without blocking the line of sight to cause a visual blind spot, making it convenient for the user to observe the placement of the helmet in the storage body 1 and to take the helmet out.

[0075] In other embodiments, connecting portions 3 are provided on both sides of the storage body 1. In this case, two covers 2 are provided, and the two covers 2 together cover the cavity 12 of the storage body 1. In this case, when it is necessary to rotate the cover 2 relative to the storage body 1 to open or close the cavity 12, an external force is applied to the rear side of the cover 2 to drive the cover 2 to rotate.

[0076] In another embodiment, the connection portion 3 and the mounting portion 11 are located on opposite sides of the storage body 1. Similarly, with the direction in which the front and rear wheels are driven by the pedals via the chain to drive the vehicle forward being the front, the mounting portion 11 is located on the rear side of the storage body 1. The storage body 1 also includes a front side and a side located between the front and rear sides. Correspondingly, the cover 2 also has a front side, a rear side, and a side located between the front and rear sides. In this embodiment, the connection portion 3 is located on the front side of the cover 2 and the storage body 1.

[0077] Through the above arrangement, when it is necessary to drive the cover 2 to rotate relative to the storage body 1 to open or close the cavity 12, an external force is applied to the rear side of the cover 2 to drive the cover 2 to rotate from the side close to the mounting portion 11 to the side away from the mounting portion 11, so that after the cover 2 is opened, the cover 2 is located in front of the storage body 1 through the connecting portion 3, and tilted toward the outside of the storage body 1 or maintained vertically between the storage body 1 or vertically in the area between the storage body 1, etc.

[0078] Alternatively, external force may be applied to the side of the cover 2 to drive the cover 2 to rotate, thereby achieving the opening or closing of the cover 2.

[0079] In the above-mentioned opening method, when the cover 2 is rotated to open the cavity 12, the cover 2 is located in front of the storage body 1, and will not block the line of sight to cause a visual blind spot, making it easy for the user to observe the placement of the helmet in the storage body 1 and to take the helmet.

[0080] At the same time, the positioning of the connection portion 3 of the cover 2 also prevents the cover 2 from being blown open during riding, maintaining its open position. Specifically, during riding, a counter-flow is generated. This counter-flow flows along the outer surface of the closed cover 2, and due to the pressure differential, forces the cover 2 to rotate toward the storage body 1, preventing the cover 2 from being blown open by the counter-flow.

[0081] Please combine Figure 4 and Figure 5 Specifically, the cover 2 further includes a guide portion 22, located on the same side as the connecting portion 3. Specifically, the guide portion 22 is located on the front side of the cover 2 and is configured to direct the flow of air. During riding, the opposing airflow (arrow a) can follow the guidance of the guide portion 22 and move along the outer surface of the cover 2, thereby forcing the cover 2 to rotate toward the storage body 1. In this embodiment, the guide portion 22 is in the shape of a convex arc.

[0082] To further enhance the ease of opening the cover 2, in this application, the cover 2 includes an operating portion configured to, under the action of an external force, drive the cover 2 to rotate relative to the storage body 1. As can be seen from the above, a user can apply an external force to the rear or side of the cover 2 to drive the cover 2 to rotate relative to the storage body 1. Therefore, the operating portion is located on the same side as the mounting portion 11 or on the opposite side of the connecting portion 3.

[0083] The operating portion includes at least one recess 21 provided on the top of the cover 2 , and a user's hand can grasp the recess 21 to drive the cover 2 to rotate.

[0084] Optionally, the edge of the recess 21 is chamfered to form an arc-shaped surface, thereby preventing the edge of the recess 21 from contacting the user and scratching the user when the user reaches into the recess 21 .

[0085] Please combine Figure 6In one embodiment, a recess 21 is provided. In this embodiment, the recess 21 is formed inward from the exterior of the cover 2; the recess 21 includes handle positions 211 located on both sides of the cover 2 and a connecting section 212 connecting the two handle positions 211, so that when the user needs to drive the cover 2 to rotate, they can apply force to the back side or the side of the cover 2, which is more convenient and quick.

[0086] The recessed depth of the hand-engaging portion 211 is greater than the recessed depth of the connecting section 212. This arrangement is intended to ensure that when a user's hand reaches one side of the hand-engaging portions 211 on either side of the cover 2 and drives the cover 2 to rotate, the hand driving the cover 2 will not partially block the view.

[0087] Please combine Figure 7 In another embodiment, two recesses are provided. For ease of identification, the two recesses are referred to as recesses 21a. Recesses 21a are located on either side of the cover 2 along a first direction, parallel to the rotation axis of the cover 2. The provision of two recesses 21a on either side of the cover 2 facilitates convenient and quick operation for both left-handed and right-handed users.

[0088] The two recesses 21 a provided on both sides of the cover body 2 can be directly formed by being recessed downward from the top of the cover body 2 , which facilitates mold opening and simplifies the structure.

[0089] Please combine Figure 8 Alternatively, the two recesses provided on both sides of the cover 2 are formed between the cover 2 and the raised portion 23 provided on the top of the cover 2. For the sake of convenience in distinguishing, the two recesses are referred to as recesses 21b. That is, the ends of the raised portion 23 provided on the top of the cover 2 are raised upward, so that there is a distance between the ends of the raised portion 23 and the top of the cover 2. This distance serves as the recess 21b, which can improve the recognition of the appearance of the cover 2.

[0090] Please combine Figure 9 In other embodiments, the operating portion includes a protrusion 21c located on the side of the cover 2 and protruding from the storage body 1. Preferably, the protrusion 21c is located on the side of the cover 2 near the mounting portion 11, that is, on the rear side of the cover 2. The protrusion 21c is located along the front side of the cover 2 and extends to the side of the cover 2, so that the user can drive the cover 2 to rotate from both the rear and side sides.

[0091] The protrusion 21 c and the cover 2 are integrally formed to simplify the manufacturing process and enhance the connection stability between the protrusion 21 c and the cover 2 .

[0092] The present application also provides a storage mechanism, comprising:

[0093] The storage body 1 has a cavity 12 and a mounting portion 11;

[0094] The cover 2 is rotatably connected to the storage body 1 through the connecting portion 3 to open or close the cavity 12, so that the cover 2 has an open state and a closed state.

[0095] Apply external force to the side of the cover 2 close to the mounting portion 11 to drive the cover 2 to rotate in the direction close to the connecting portion 3 to open the cavity 12, and the cover 2 switches from the closed state to the open state;

[0096] External force is applied to the side of the cover 2 close to the mounting portion 11 to drive the cover 2 to rotate away from the connecting portion 3 to cover the cavity 12 , and the cover 2 switches from the open state to the closed state.

[0097] As can be seen from the foregoing, the direction in which the vehicle is driven by pedals driving the front and rear wheels via a chain is considered forward. Mounting portion 11 is located on the rear side of storage body 1, which also includes a front side and a side located between the front and rear sides. Accordingly, cover 2 also has a front side, a rear side, and a side located between the front and rear sides. Therefore, the side of cover 2 closest to mounting portion 11 can be either the rear side or a side of cover 2.

[0098] In summary, by rotatably connecting the cover 2 to the storage body 1 via the connecting portion 3, and by locating the connecting portion 3 and the mounting portion 11 on different sides of the storage body 1, when the user needs to drive the cover 2 to rotate to open the cavity 12 of the storage body 1, there is no need to apply external force to the side of the cover 2 opposite to the mounting portion 11. Instead, an external force only needs to be applied to the side of the cover 2 close to the mounting portion 11 to drive the cover 2 to rotate relative to the storage body 1, so that the cover 2 rotates toward the side away from the mounting portion 11 or in a direction parallel to the axial direction of the connecting portion 3 during rotation, thereby preventing the cover 2 from rotating from the side away from the mounting portion 11 to the side close to the mounting portion 11. As a result, the cover 2 will not be located on the same side of the mounting portion 11 after rotation to block the user's view, thereby improving the convenience for the user to take items in the storage body 1.

[0099] At the same time, since external force only needs to be applied on the side of the cover body 2 close to the mounting portion 11, the distance between the side of the cover body 2 close to the mounting portion 11 and the user sitting astride the vehicle is smaller than the distance between the opposite side of the cover body 2 and the mounting portion 11 and the user sitting astride the vehicle, making it easier for users of short stature to open the cover body 2.

[0100] The above embodiments are merely illustrative of the principles and effects of this application and are not intended to limit this application. Anyone skilled in the art may modify or alter the above embodiments without departing from the spirit and scope of this application. Therefore, all equivalent modifications or alterations made by one of ordinary skill in the art without departing from the spirit and technical concepts disclosed in this application shall be covered by the claims of this application.

Claims

1. A storage mechanism, characterized in that: include: The storage body has a cavity and a mounting portion; a cover body rotatably connected to the storage body via a connecting portion to open or close the cavity; Wherein, the connecting portion and the mounting portion are respectively located on different sides of the storage body; The cover has an operating portion, which is configured to drive the cover to rotate relative to the storage body under the action of an external force; the operating portion and the mounting portion are located on the same side or the operating portion is located on the opposite side of the connecting portion; The operating portion includes at least one recessed portion provided on the top of the cover body, The recess is provided with one, and the recess is formed inwardly from the outside of the cover body; the recess includes a handle position located on both sides of the cover body and a connecting section connecting the two handle positions; or There are two recesses, which are located on both sides of the cover along a first direction, wherein the first direction is parallel to the rotation axis of the cover.

2. The storage mechanism according to claim 1, characterized in that: The connecting portion and the mounting portion are respectively located on two opposite sides of the storage body.

3. The storage mechanism according to claim 1, characterized in that: The operating portion includes a protruding portion located at a side of the cover and protruding out of the storage body.

4. The storage mechanism according to any one of claims 1 to 2, characterized in that: The cover body further comprises a guide portion, and the guide portion is located on the same side as the connecting portion; The guide portion is configured to guide a direction of airflow.

5. The storage mechanism according to claim 4, characterized in that: The guide portion is in an outward convex arc shape.

6. A storage mechanism, characterized in that: include: The storage body has a cavity and a mounting portion; a cover body rotatably connected to the storage body via a connecting portion to open or close the cavity, so that the cover body has an open state and a closed state; Applying external force to the side of the cover body close to the mounting portion to drive the cover body to rotate in a direction close to the connecting portion to open the cavity, and the cover body switches from a closed state to an open state; An external force is applied to a side of the cover body close to the mounting portion to drive the cover body to rotate in a direction away from the connecting portion to cover the cavity, and the cover body switches from an open state to a closed state.

7. A vehicle, characterized in that: include: a vehicle body having a docking portion; and The storage mechanism according to any one of claims 1 to 6 is installed on the docking portion through the installation portion.