Full-automatic high-capacity wet grain feeding machine

Through the design of a fully automatic high-capacity wet grain feeder, the refrigerator and the insulation compartment of the partitioned rotating chassis can realize the frozen storage and automatic feeding of wet grains, which solves the problem of wet grain deterioration and ensures the long-term feeding needs of pets.

CN223286368UActive Publication Date: 2025-09-02DALIAN NISSIN PRECISION PLASTIC MOLDING
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Patent Information

Application Number
CN202422307125.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-09-02
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

In the prior art, wet grains are inconvenient to preserve and are prone to deterioration, which makes it impossible for the owner to feed them with wet grains when going out for a long time, and the pets are at risk of getting sick.

Method used

A fully automatic high-capacity wet grain feeder is designed, using a refrigerator and insulation chamber combined with a zoned rotating chassis to preserve wet grains through chilling, and an intelligent feeding fork is used to achieve automatic feeding to ensure the quality and safety of wet grains.

Benefits of technology

It realizes automatic feeding of wet food when the owner goes out for a long time, ensures that the pets eat qualified wet food, avoids the risk of wet food deterioration, and improves storage capacity and operation reliability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a full-automatic high-capacity wet food feeding machine, and relates to the technical field of pet feeding equipment. Comprising a refrigerating machine, a heat preservation cabin is arranged on the side face of the refrigerating machine, the refrigerating machine is used for refrigerating the interior of the heat preservation cabin, a plurality of pet cans are placed in the heat preservation cabin, a partition rotating chassis is arranged in the heat preservation cabin, and the pet cans are placed on the partition rotating chassis; a plurality of heat preservation subareas are arranged on the subarea rotating base plate and are independently separated from one another; the pet cans are evenly distributed in the circumferential direction with the circle center of the partition rotating base plate as the center, a can taking opening is formed in the side face of the heat preservation cabin, and the partition rotating base plate can rotate and convey the pet cans to the can taking opening in sequence. The size of the tin taking opening corresponds to that of the pet tin box; and an intelligent feeding fort capable of accommodating a pet tin can is arranged outside the heat preservation cabin. According to the utility model, wet grains are effectively replaced by utilizing the transmission structure on the basis that the wet grains are preserved in a chilled manner, so that pets can eat qualified wet grains for a long time.
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Description

Technical Field

[0001] The utility model relates to the technical field of pet feeding equipment, in particular to a fully automatic high-capacity wet food feeder. Background Art

[0002] At present, pet breeding has formed a large scale in urban environments, so the problem of pet feeding has become more and more prominent.

[0003] On this basis, the owner needs to feed the pet every day by opening the pet food and pouring it into the pet's bowl, and the pet can enjoy the food. However, if the owner needs to go on a long trip or has other matters and cannot return home to take care of the pet, there will be no one to prepare food for the pet, causing the pet to miss meals and go hungry.

[0004] In the prior art, dry food is usually used as the main feeding product when the owner is away from home. However, if pets eat dry food for a long time, there is a risk of disease. Although wet food feeding can solve this problem, it is not conducive to storage. Therefore, the prior art does not have a good method for long-term wet food feeding. Utility Model Content

[0005] The purpose of the present invention is to overcome the problems in the prior art where wet food is inconvenient to store and easily spoils, which results in owners being unable to feed their pets with wet food when they are away from home for a long time, leading to a greater risk of illness for their pets. The present invention provides a fully automatic high-capacity wet food feeder that effectively replaces the wet food by utilizing a transmission structure on the basis of keeping the wet food fresh, thereby ensuring that the pets can eat qualified quality wet food for a long time.

[0006] The purpose of this utility model is mainly achieved through the following technical solutions:

[0007] A fully automatic high-capacity wet food feeder includes a refrigerator, a side of which is provided with an insulation compartment, the refrigerator being used to cool the insulation compartment, a plurality of pet cans being placed in the insulation compartment, and a partitioned rotating chassis being provided in the insulation compartment, the pet cans being placed on the partitioned rotating chassis;

[0008] The partitioned rotating chassis is provided with a plurality of heat preservation partitions, and the heat preservation partitions are independently separated from each other;

[0009] The pet cans are evenly distributed around the center of the partitioned rotating chassis. A can removal opening is provided on the side of the thermal insulation chamber. The partitioned rotating chassis can rotate and transport the pet cans to the can removal opening in sequence.

[0010] The size of the can opening corresponds to the size of the pet can;

[0011] An intelligent feeding burger capable of accommodating the pet canned food box is provided outside the thermal insulation cabin.

[0012] Furthermore, the partitioned rotating disk includes a large bottom turntable, on which a plurality of transfer plate chassis are provided, and the transfer plate chassis are evenly distributed circumferentially with the center of the large bottom turntable as a reference;

[0013] A transfer disc body is fixed on the transfer disc chassis;

[0014] The pet can is placed on the transfer plate body.

[0015] Furthermore, the transfer disc chassis is rotatably connected to the bottom large turntable, and a motor B for driving the transfer disc chassis to rotate is provided between the transfer disc chassis and the bottom large turntable;

[0016] A motor A for driving the bottom large turntable to rotate is provided between the bottom large turntable and the heat preservation chamber.

[0017] Furthermore, each of the heat-insulating partitions corresponds to a transfer disc chassis.

[0018] Furthermore, a plurality of can racks are provided on the transfer disc chassis, and the can racks are stacked longitudinally and fixedly connected to form a multi-layer can rack: each layer of the can racks is provided with a transfer disc body.

[0019] Furthermore, the inner wall of the thermal insulation cabin is provided with a refrigerator thermal insulation layer.

[0020] Furthermore, a heat-insulating door is provided at the tank opening, and the heat-insulating door can be opened on one side.

[0021] Furthermore, a can transport vehicle for picking up and transporting the pet cans is provided outside the thermal insulation cabin;

[0022] The can transport vehicle is used to pick up pet cans at the can taking port and transport them to the smart feeding fort, and to drop pet cans at the smart feeding fort and transport them to the can taking port.

[0023] In summary, the present invention has the following beneficial effects compared with the prior art:

[0024] In the utility model, the storage in the heat-insulating cabin and the feeding in the intelligent feeding burger are used to realize fully automatic feeding without manual participation; the wet food can be stored safely without worrying about spoilage; the storage capacity is large and the operation is reliable. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only illustrate certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without paying any creative work.

[0026] Figure 1 It is a structural diagram of the utility model;

[0027] Figure 2 This is a top cross-sectional view of the refrigerator and the insulation cabin of the utility model;

[0028] Figure 3 This is a cross-sectional view of the insulation cabin of the present utility model;

[0029] Figure 4 This is a schematic diagram of the can transport vehicle in the utility model taking cans out of the insulation cabin;

[0030] Figure 5 This is a schematic diagram of the canned food transport vehicle in the utility model delivering cans to the intelligent feeding fort.

[0031] Icons: 1. Pet can; 2. Refrigerator insulation layer; 3. Transfer plate body; 4. Motor A; 5. Motor B; 6. Transfer plate chassis; 7. Large turntable at the bottom; 8. Canned food transport vehicle; 9. Smart feeding burger; 10. Insulated door; 11. Insulated compartment; 12. Refrigerator. DETAILED DESCRIPTION

[0032] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Generally, the components of the embodiments of the present invention described and shown in the drawings herein can be arranged and designed in various different configurations.

[0033] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. All other embodiments derived by persons of ordinary skill in the art based on the embodiments of the present invention without creative effort are also within the scope of protection of the present invention.

[0034] Example:

[0035] Please refer to Figure 1-Figure 5 shown.

[0036] The present application provides a fully automatic high-capacity wet food feeder, comprising a refrigerator 12, a heat preservation chamber 11 being provided on the side of the refrigerator 12, the refrigerator 12 being used to cool the heat preservation chamber 11, a plurality of pet cans 1 being placed in the heat preservation chamber 11, and a partitioned rotating chassis being provided in the heat preservation chamber 11, the pet cans 1 being placed on the partitioned rotating chassis;

[0037] The partitioned rotating chassis is provided with a plurality of heat-insulating partitions, and the heat-insulating partitions are independently separated from each other;

[0038] The pet cans 1 are evenly distributed around the center of the partitioned rotating chassis. A can access opening is provided on the side of the thermal insulation chamber 11. The partitioned rotating chassis can rotate and transport the pet cans 1 to the can access opening in sequence.

[0039] The size of the can opening corresponds to the size of the pet can 1;

[0040] An intelligent feeding fort 9 capable of accommodating the pet can 1 is provided outside the thermal insulation cabin 11 .

[0041] Currently, pet owners typically use intermittent feeding when feeding wet food. This is inconvenient because wet food easily spoils. This embodiment utilizes an insulated compartment 11 to refrigerate and preserve the pet food can 1 using the cooling power of a refrigerator 12, thereby extending the shelf life of the pet food can 1. Furthermore, this embodiment utilizes a can access opening to allow the pet food can 1 to be efficiently removed from the opening and placed in the smart feeding cradle 9, effectively feeding wet food to pets.

[0042] On this basis, the present embodiment is provided with a partitioned rotating chassis. The traditional rotating chassis can only drive the circumferentially distributed pet cans 1 to rotate, so as to transport them to the can opening. However, each time the can opening is opened, the cold air in the entire insulation chamber 11 will be lost, which will easily cause the temperature in the insulation chamber 11 to rise. The temperature rise in the insulation chamber 11 will cause the pet can 1 to be at risk of deterioration. The present embodiment sets up multiple independent insulation partitions on the partitioned rotating chassis, so that each time the can opening is opened, the temperature in at most one independent insulation partition is affected, thereby reducing the heat loss in the insulation chamber 11 of the present embodiment, thereby further ensuring the storage safety of the pet can 1 in the present embodiment.

[0043] The size of the can opening corresponds to the size of the pet can 1 , which not only ensures that the pet can 1 can be effectively taken out, but also reduces heat loss when the can opening is opened.

[0044] In this embodiment, the smart feeding burger 9 adopts a model that can be configured on a large scale using existing technology, which facilitates large-scale production of this embodiment.

[0045] The partition rotating disk includes a bottom large turntable 7, on which a plurality of transfer plate chassis 6 are provided, and the transfer plate chassis 6 are evenly distributed circumferentially with the center of the bottom large turntable 7 as the reference;

[0046] A transfer disc body 3 is fixed on the transfer disc chassis;

[0047] The pet can 1 is placed on the transfer plate body 3 .

[0048] In this embodiment, the large turntable 7 at the bottom is used to rotate each insulation partition, thereby adjusting the position of each insulation partition in the insulation chamber 11, so as to achieve the purpose of replacing the new insulation partition to align the tank opening.

[0049] The transfer plate chassis 6 on the large turntable 7 at the bottom can rotate instead of the transfer plate body 3, so that different pet cans 1 in the same insulation zone are aligned with the can opening. Through the arrangement of the transfer plate chassis 6, the internal space of the insulation chamber 11 can be effectively utilized, avoiding the situation where only the pet cans 1 close to the outer side of the insulation chamber 11 can be taken out, thereby increasing the space utilization rate inside the insulation chamber 11.

[0050] The transfer disc chassis 6 is rotatably connected to the bottom large turntable 7. A motor B5 is provided between the transfer disc chassis 6 and the bottom large turntable 7 to drive the transfer disc chassis 6 to rotate.

[0051] A motor A4 for driving the bottom large turntable 7 to rotate is provided between the bottom large turntable 7 and the heat preservation chamber 11 .

[0052] Each of the heat-insulating partitions corresponds to a transfer disc chassis 6 .

[0053] In actual application, this embodiment provides a transfer plate chassis 6 in each heat-insulating partition, so that the transfer plate chassis 6 can be independently rotated in each heat-insulating partition, and the pet cans 1 are distributed and stacked according to the space in the heat-insulating partition, thereby achieving the purpose of increasing space utilization.

[0054] In this embodiment, the bottom large turntable 7 is driven to rotate by the motor A4, and the transfer plate chassis 6 is driven to rotate by the motor B5, so the transfer plate chassis 6 and the bottom large turntable 7 rotate independently of each other, and the driving power sources of the transfer plate chassis 6 and the bottom large turntable 7 are different.

[0055] In this embodiment, the transfer disc chassis 6 is distributed in a petal shape on the large bottom turntable 7. The insulation partition can establish a thermal insulation interval between the transfer disc chassis 6 to ensure that the temperature in the insulation space is appropriate. The petal-shaped distribution of the transfer disc chassis 6 can also effectively ensure the rotation space of each transfer disc chassis 6 itself, and can also achieve the purpose of reducing heat loss when taking the cans.

[0056] A plurality of can racks are provided on the transfer disc chassis 6 , and the can racks are stacked longitudinally and fixedly connected to form a multi-layer can rack: each layer of the can racks is provided with a transfer disc body 3 .

[0057] In this embodiment, a multi-layer can rack is provided to increase the space for storing pet cans 1 in the thermal insulation chamber 11. The can rack is used to separate the pet cans 1 in the upper and lower layers, so that the pet cans 1 can be effectively taken out and put back. It can also accommodate more pet cans 1, achieving a longer wet food feeding operation.

[0058] In this embodiment, the transfer plate body 3 is used to carry the pet can 1, and the transfer plate base 6 is used to realize the rotation of the pet can 1 in the separate heat preservation zone.

[0059] The inner wall of the heat preservation chamber 11 is provided with a refrigerator heat preservation layer 2 .

[0060] A heat-insulating door 10 is provided at the tank opening, and the heat-insulating door 10 can be opened on one side.

[0061] In this embodiment, the heat preservation chamber 11 is insulated by the refrigerator heat preservation layer 2, and the heat preservation door 10 is opened and closed by a single-sided opening method, thereby taking into account both the preservation effect of the pet can box 1 and the convenience of taking out the can.

[0062] A can transport vehicle 8 for picking up and transporting the pet cans 1 is provided outside the insulation cabin 11;

[0063] The can transport vehicle 8 is used to pick up the pet can box 1 at the can taking port and transport it to the smart feeding fort 9, and to drop the pet can box 1 at the smart feeding fort 9 and transport it to the can taking port.

[0064] This embodiment uses a can transport cart as a carrier between the can access port and the smart feeding fort 9, which can effectively provide sufficient space for the smart feeding fort 9 for pet feeding through the can transport cart 8, thereby reducing the space difficulty of configuring this embodiment.

[0065] A specific implementation of this embodiment is as follows:

[0066] When the insulated chamber 11 is filled with pet cans 1 and it's time for the pet to feed, motors A4 and B5 in the insulated chamber 11 start up. The transfer plate chassis 6 and the large turntable 7 at the bottom coordinate with each other, causing the pet cans 1 to rotate to the can access opening of the insulated chamber 1 and wait. The can transporter 8 transports the pet cans 1 to the smart feeding fort 9 for heating and reheating. When the cans reach the preheated temperature, the cover of the smart feeding fort 9 automatically opens, and the pet can then begin its meal. The can transporter 8 automatically returns to the charging station near the insulated chamber 11 to recharge. The used pet cans 1 are then transported to the interior of the insulated chamber 11 in preparation for recycling to prevent them from spoiling. This completes the process.

[0067] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A fully automatic high-capacity wet food feeder, comprising a refrigerator (12), a heat preservation chamber (11) provided on the side of the refrigerator (12), the refrigerator (12) being used to cool the heat preservation chamber (11), a plurality of pet cans (1) being placed in the heat preservation chamber (11), and characterized in that: A partitioned rotating chassis is provided in the thermal insulation chamber (11), and the pet can (1) is placed on the partitioned rotating chassis; The partitioned rotating chassis is provided with a plurality of heat-insulating partitions, and the heat-insulating partitions are independently separated from each other; The pet cans (1) are evenly distributed around the circumference of the partitioned rotating chassis, and a can removal opening is provided on the side of the thermal insulation chamber (11). The partitioned rotating chassis can rotate and sequentially transport the pet cans (1) to the can removal opening. The size of the can opening corresponds to the size of the pet can (1); An intelligent feeding fort (9) capable of accommodating the pet can (1) is provided outside the thermal insulation cabin (11).

2. The fully automatic high-capacity wet grain feeder according to claim 1, characterized in that: The partitioned rotating disk comprises a bottom large rotating disk (7), and a plurality of transfer disk chassis (6) are provided on the bottom large rotating disk (7), and the transfer disk chassis (6) are evenly distributed in the circumferential direction with the center of the bottom large rotating disk (7) as a reference; A transfer disc body (3) is fixed on the transfer disc chassis; The pet can (1) is placed on the transfer plate body (3).

3. The fully automatic high-capacity wet grain feeder according to claim 2, characterized in that: The transfer disc chassis (6) is rotatably connected to the bottom large turntable (7), and a motor B (5) for driving the transfer disc chassis (6) to rotate is provided between the transfer disc chassis (6) and the bottom large turntable (7); A motor A (4) for driving the bottom large turntable (7) to rotate is provided between the bottom large turntable (7) and the heat preservation chamber (11).

4. The fully automatic high-capacity wet food feeder according to claim 3, characterized in that: Each of the heat-insulating partitions corresponds to a transfer disc chassis (6).

5. The fully automatic high-capacity wet food feeder according to any one of claims 2 to 4, characterized in that: A plurality of can racks are provided on the transfer disc chassis (6), and the can racks are stacked longitudinally and fixedly connected to form a multi-layer can rack: each layer of the can racks is provided with a transfer disc body (3).

6. The fully automatic high-capacity wet food feeder according to claim 1, characterized in that: The inner wall of the heat-insulating cabin (11) is provided with a refrigerator heat-insulating layer (2).

7. The fully automatic high-capacity wet food feeder according to claim 1, characterized in that: A heat-insulating door (10) is provided at the tank opening, and the heat-insulating door (10) can be opened on one side.

8. The fully automatic high-capacity wet grain feeder according to claim 1, characterized in that: A can transport vehicle (8) for picking up and transporting the pet cans (1) is provided outside the thermal insulation cabin (11); The can transport vehicle (8) is used to pick up the pet can box (1) at the can taking port and transport it to the smart feeding fort (9), and to lose the pet can box (1) at the smart feeding fort (9) and transport it to the can taking port.