An easy-to-disassemble feed dispenser and method

By designing a detachable half-box structure and quantitative components, the problems of cumbersome disassembly and assembly and uneven mixing of pet food dispensers are solved, enabling convenient disassembly and uniform dispensing, and ensuring balanced nutrition for animals.

CN116831046BActive Publication Date: 2025-10-31李晓东 +4
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Patent Information

Application Number
CN202211402747.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-10
Publication Date
2025-10-31
Estimated Expiration
2042-11-10

AI Technical Summary

Technical Problem

Existing pet food dispensers are cumbersome to assemble and disassemble, and have only one inlet/outlet, leading to uneven mixing of different feeds and affecting nutritional balance.

Method used

Design a feed dispenser consisting of two half-boxes, each half-box having a metering chamber and a feed inlet. The feed is quantitatively mixed and uniformly dispensed through a metering component and a stirring mechanism. The disassembly and assembly process is simplified by using a detachable stirring mechanism and a conveying auger structure.

Benefits of technology

It enables convenient disassembly and maintenance of the feed dispenser, ensures uniform mixing of different feeds, improves nutritional balance, and avoids loss and blockage of parts.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the technical field of feed dispensers, specifically disclosing an easily detachable feed dispenser, including a feed dispensing unit, a metering component, a feeding hopper, and a stirring mechanism. The feed dispensing unit comprises two half-boxes, which are detachably installed together. Two metering chambers are symmetrically arranged inside each half-box, each containing a metering component. Two feed inlets are symmetrically arranged at the upper part of each half-box, each connected to a different metering chamber. A feeding hopper is located at each feed inlet at the upper part of each half-box. A discharge trough is located at the bottom of each half-box, connected to the two metering chambers. A stirring mechanism is rotatably installed within the discharge trough, and is detachably mounted within the discharge trough. This invention, through the design of the feed dispensing unit, makes the entire feed dispenser easy to disassemble, reducing cumbersome steps and the need for multiple components. Maintenance and repair of the entire structure can be performed simply by separating the half-boxes, improving efficiency.
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Description

Technical Field

[0001] This application relates to the field of feed dispenser technology, and more specifically, to a feed dispenser and method that is easy to disassemble and assemble. Background Technology

[0002] As society continues to develop, people's love for pets is gradually increasing, and more and more people are raising various kinds of pets. When raising pets, people will buy some corresponding pet food. In order to improve the health of pets, probiotics will be added to the pet food and mixed evenly with the food. When feeding pets, a pet food dispenser is needed.

[0003] Current pet food dispensers still have the following drawbacks: during use, it is inconvenient to assemble the feeding bowl and the support column, making them impractical. Existing technology publication CN216853401U provides a pet food dispenser that is easy to assemble and disassemble. This device consists of a storage box, a feeding bowl, and a support column. The top of the storage box is hinged with a flip cover, one end of the storage box has a fastening structure, the bottom of the storage box is connected to the storage box, the bottom of one end of the storage box is fixed to the support column, one end of the support column has a reset structure, one end of the support column is set with the feeding bowl, an assembly structure is provided between the feeding bowl and the support column, and the top of the feeding bowl is fixed with a protective edge.

[0004] Although the existing technical solutions described above can achieve the relevant beneficial effects through the existing technical structure, they still have the following drawbacks: the device is assembled and used by setting up many parts, which makes disassembly and assembly cumbersome, and the dispenser has only one inlet and outlet, which means that different pet foods cannot be mixed and dispensed, affecting nutritional balance.

[0005] Regarding the aforementioned technologies, the inventor believes there is an urgent need for a method that allows for complete disassembly and display of the internal components in a single disassembly. This would not only facilitate cleaning and maintenance but also avoid excessive parts, which could lead to cumbersome assembly or loss of components.

[0006] In view of this, we propose a feed dispenser that is easy to disassemble and assemble. Summary of the Invention

[0007] 1. Technical problems to be solved

[0008] The purpose of this application is to provide a feed dispenser and method that is easy to disassemble and assemble, to solve the technical problems mentioned in the background art, and to achieve the technical effect that the entire feed dispenser is easy to disassemble and easy to maintain.

[0009] 2. Technical Solution

[0010] This application provides an easy-to-disassemble feed dispenser, including a feed dispensing unit, a metering component, a feeding hopper, and a mixing mechanism;

[0011] The feed feeding unit comprises two half-boxes, which are detachably mounted together.

[0012] The semi-box has two symmetrically arranged metering chambers, each equipped with a metering component for quantitative feeding.

[0013] Two feed inlets are symmetrically arranged in the upper part of the half-box, and the two feed inlets are respectively connected to different metering cavities; a feed hopper is provided at each feed inlet above the half-box.

[0014] A discharge chute is set at the bottom of the half-box, and the discharge chute is connected to two metering chambers at the same time.

[0015] A rotatable stirring mechanism is installed inside the discharge trough; the stirring mechanism is detachably installed inside the discharge trough.

[0016] By adopting the above technical solution and setting up the feed dispensing unit, the entire feed dispenser can be easily disassembled, reducing cumbersome steps and the setup of multiple parts. The entire structure can be repaired and maintained simply by separating the half-box, thus improving efficiency.

[0017] As an optional solution to the technical solution of this application, a feeding hopper is provided at the inlet of the half box, and multiple support legs are fixedly provided on the bottom surface of the inlet;

[0018] The support leg, feed hopper and half box are integrally formed and each is a half-structure.

[0019] By adopting the above technical solution, as long as the two half boxes are separated, the whole box can be separated.

[0020] As an optional solution to the technical solution of this application, a fixing block is symmetrically fixedly provided on the outer side of the half box, and one side of the fixing block is the same as the inner wall of the half box;

[0021] The two fixing blocks on the two half-boxes are fixed together by bolts.

[0022] By adopting the above technical solution, it can be ensured that there are no gaps after the two half-boxes are closed.

[0023] As an optional solution to the technical solution in this application, the quantitative component includes a quantitative block and a quantitative feeding drive component;

[0024] A metering block is rotatably mounted inside the metering cavity, and multiple horizontal hooks are fixedly mounted on the outer wall of the metering block;

[0025] The plurality of the horizontal hooks are arranged in a ring with equal spacing;

[0026] The two quantitative blocks are arranged symmetrically.

[0027] Furthermore, the rotation of the feeders is all inward, but in the opposite direction.

[0028] One of the half-boxes is equipped with a quantitative feeding drive component, which can drive the two quantitative blocks to rotate synchronously.

[0029] As an optional solution to the technical solution of this application, the quantitative cavity is arranged in a circular structure, the outer wall of the horizontal hook of the quantitative block is arranged in an arc-shaped structure, and the cross sections of multiple horizontal hooks are connected to form a circular structure;

[0030] The outer wall of the horizontal hook is slidably connected to the inside of the metering cavity.

[0031] By adopting the above technical solution, it is possible to receive and transport two different feeds by rotating two quantitative blocks, and at the same time, it can also receive feed when the quantitative blocks are not rotating.

[0032] As an optional solution to the technical solution of this application, the quantitative feeding drive component includes a rotating gear, a reversing gear, and a first motor;

[0033] A mechanical cavity is provided on the inner wall of the half-box; a rotating gear is rotatably installed inside the mechanical cavity, and the rotating gear is coaxially and fixedly connected to the corresponding quantitative block.

[0034] The mechanical cavity is also rotatably equipped with two reversing gears, which are meshed with each other and respectively mesh with different rotating gears.

[0035] A first motor is fixedly installed on the outside of the half-box, and the output shaft of the first motor is coaxially and fixedly connected to one of the rotating gears.

[0036] By adopting the above technical solution, the synchronous rotation of the two quantitative blocks was achieved, and the rotation directions of the two quantitative blocks were also reversed.

[0037] As an optional solution to the technical solution in this application, the stirring mechanism includes a mixing gear, a rotating rod, and a mixing plate;

[0038] The discharge chute is cone-shaped, and a rotating groove is provided on the inner wall of the discharge chute. A mixing gear is slidably arranged inside the rotating groove, and the middle part of the mixing gear is hollow.

[0039] A rotating rod is fixedly installed in the middle of the mixing gear, and multiple mixing plates are fixedly installed on the outer wall of the rotating rod by a fixing rod;

[0040] The inner wall of the discharge trough is provided with a circular cavity, and a drive gear is rotatably arranged inside the circular cavity. The outer wall of the drive gear is meshed with the mixing gear.

[0041] The drive gear is coaxially and fixedly connected to the output end of the second motor, which is fixedly disposed on one side of the cavity.

[0042] By adopting the above technical solution, the mixing plate can be used to mix different feeds, making them more uniform and further ensuring that the animals raised separately can receive balanced nutrition.

[0043] As an optional solution to the technical solution of this application, the mixing plate is arranged in a ring with equal spacing;

[0044] The mixing plates in each group are arranged alternately;

[0045] The mixing plate is arranged at an angle.

[0046] By adopting the above technical solution, the feed can be caught when it falls, reducing the chance of it falling directly to the bottom. This allows for limiting the amount of feed falling during the mixing process, slowing down the fall, and increasing the mixing effect.

[0047] As an optional solution to the technical solution in this application, a conveying auger is coaxially fixed at the outer end of the rotating rod.

[0048] By adopting the above technical solution and setting up the conveying auger, feed can be actively conveyed, avoiding blockages. At the same time, it can also act as a barrier when not in use.

[0049] A method for using an easy-to-disassemble feed dispenser includes the following steps:

[0050] S1. Install the mixing mechanism into the discharge chute; fix the fixing blocks on the two half-boxes with bolts;

[0051] S2. At this time, different external feeds are put into different feed hoppers and reach different metering chambers through the feed inlet.

[0052] S3. At this time, the external power supply is connected, the first motor is started to rotate, which drives one of the rotating gears to rotate, thereby driving the two quantitative blocks to rotate synchronously in opposite directions through the reversing gear.

[0053] S4. At this time, different feeds will fall into the hooks on the metering block in the same proportion. By rotating the metering block, the feeds in the hooks will be moved downwards and towards the center, so that they will fall into the discharge trough after being mixed on both sides.

[0054] S5. At the same time, start the second motor to rotate, which drives the mixing gear to rotate through the drive gear, thereby causing the mixing plate to rotate and mix the feed that has fallen to the bottom.

[0055] S6. At this time, the feed can be conveyed and fed by rotating the conveying auger.

[0056] S7. When disassembly is required, loosen the bolts to separate the two halves of the box. At this point, the internal structure is exposed and can be cleaned or repaired.

[0057] 3. Beneficial effects

[0058] One or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages:

[0059] 1. This application makes the entire feed dispenser easy to disassemble by setting up the feed dispensing group, reducing cumbersome steps and the setup of multiple parts. The entire structure can be repaired and maintained simply by separating the half box, thus improving efficiency.

[0060] 2. This application allows for the precise dispensing of feed by setting up a quantitative component. At the same time, the setting of two quantitative blocks allows for the quantitative mixing of different feeds, avoiding the situation where one type of feed is in excess or insufficient, which would lead to nutritional imbalance. This enables different feeds to be dispensed together through a single outlet.

[0061] 3. This application allows for the mixing of different feeds through the mixing plate, making them more uniform and further ensuring that the animals raised separately receive balanced nutrition.

[0062] 4. This application, through the setting of the conveying auger, enables the active conveying of feed, avoiding blockages. At the same time, it can also serve as a barrier when not in use. Attached Figure Description

[0063] Figure 1 This is a schematic diagram of the overall structure of an easily detachable feed dispenser disclosed in a preferred embodiment of this application;

[0064] Figure 2 This is a disassembly diagram of the overall structure of an easily detachable feed dispenser disclosed in a preferred embodiment of this application;

[0065] Figure 3 This is a split view of the metering component structure of an easily detachable feed dispenser disclosed in a preferred embodiment of this application;

[0066] Figure 4 This is a cross-sectional view of a semi-box structure of an easily detachable feed dispenser disclosed in a preferred embodiment of this application.

[0067] Figure 5 This is a schematic diagram of the mixing plate and external structure of an easily detachable feed dispenser disclosed in a preferred embodiment of this application.

[0068] The following are the labels in the diagram: 1. Feed feeding assembly; 11. Half box; 12. Fixing block; 13. Bolt; 2. Metering chamber; 3. Metering component; 31. Metering block; 32. Horizontal hook; 301. Mechanical chamber; 302. Rotating gear; 303. Reversing gear; 304. First motor; 4. Feed inlet; 5. Discharge chute; 51. Rotating trough; 52. Mixing gear; 53. Rotating rod; 54. Mixing plate; 55. Circular cavity; 56. Drive gear; 57. Second motor; 5001. Conveying auger; 6. Feed hopper; 7. Support leg; 8. Mixing mechanism. Detailed Implementation

[0069] The present application will be further described in detail below with reference to the accompanying drawings.

[0070] Reference Figure 1-2 This application provides an easy-to-disassemble feed dispenser, including a feed dispensing unit 1, a metering component 3, a feeding hopper 6, and a stirring mechanism 8;

[0071] The feed feeding unit 1 includes two half-boxes 11, which are detachably mounted together.

[0072] The half-box 11 has two quantitative chambers 2 arranged in a symmetrical structure. Each quantitative chamber 2 is equipped with a quantitative component 3, which can perform quantitative feeding.

[0073] Two feed inlets 4 are symmetrically arranged in the upper part of the half-box 11, and the two feed inlets 4 are respectively connected to different metering chambers 2; a feed hopper 6 is provided at each of the feed inlets 4 above the half-box 11.

[0074] The bottom of the half-box 11 is provided with a discharge chute 5, which is connected to two metering chambers 2 at the same time.

[0075] A stirring mechanism 8 is rotatably installed inside the discharge trough 5; the stirring mechanism 8 is detachably installed inside the discharge trough 5.

[0076] The quantitative component 3 includes a quantitative block 31 and a quantitative feeding drive component;

[0077] The quantitative chamber 2 is equipped with a quantitative block 31 that rotates inside. Multiple horizontal hooks 32 are fixedly installed on the outer wall of the quantitative block 31. The multiple horizontal hooks 32 are arranged in a ring with equal spacing. The two quantitative blocks 31 are arranged in a symmetrical structure. The rotation of the feeding is inward and in opposite directions. Multiple quantitative chambers 2 and horizontal hooks 32 can be set on the quantitative chamber 2 as multiple material receiving points for material receiving and conveying.

[0078] One of the half-boxes 11 is equipped with a quantitative feeding drive component, which can drive the two quantitative blocks 31 to rotate synchronously.

[0079] The metering chamber 2 is circular in structure, and the outer wall of the horizontal hook 32 of the metering block 31 is arc-shaped. The cross-sections of multiple horizontal hooks 32 are connected to form a circular structure. The outer wall of the horizontal hook 32 is slidably connected to the inside of the metering chamber 2, so that it can receive and transport two different feeds by rotating the two metering blocks 31. At the same time, when the metering blocks 31 are not rotating, it can also have the effect of receiving feed without transporting it.

[0080] Reference Figure 3 The quantitative feeding drive assembly includes a rotating gear 302, a reversing gear 303, and a first motor 304;

[0081] A mechanical cavity 301 is provided on the inner wall of the half-box 11. A rotating gear 302 is rotatably arranged inside the mechanical cavity 301. The rotating gear 302 is coaxially and fixedly connected to the corresponding metering block 31. Two reversing gears 303 are also rotatably arranged inside the mechanical cavity 301. The two reversing gears 303 are meshed with each other and are respectively meshed with different rotating gears 302. A first motor 304 is fixedly arranged on the outside of the half-box 11. The output shaft of the first motor 304 is coaxially and fixedly connected to one of the rotating gears 302, so as to realize the synchronous rotation of the two metering blocks 31 and the opposite rotation direction of the two metering blocks 31.

[0082] Reference Figures 4-5 Example 1: The stirring mechanism 8 includes a mixing gear 52, a rotating rod 53, and a mixing plate 54;

[0083] The discharge trough 5 is designed in a conical shape. A rotating groove 51 is provided on the inner wall of the discharge trough 5. A mixing gear 52 is rotatably arranged inside the rotating groove 51. The middle part of the mixing gear 52 is hollow, so that the feed can be output through the discharge trough 5. At the same time, the conical design of the discharge trough 5 can effectively transport the feed.

[0084] A rotating rod 53 is fixedly installed in the middle of the mixing gear 52, and multiple mixing plates 54 are fixedly installed on the outer wall of the rotating rod 53 by a fixing rod.

[0085] The inner wall of the discharge trough 5 has a circular cavity 55. A drive gear 56 is rotatably installed inside the circular cavity 55. The outer wall of the drive gear 56 meshes with the mixing gear 52. The drive gear 56 is coaxially fixedly connected to the output end of the second motor 57 fixed on one side of the circular cavity 55. The mixing plate 54 can mix different feeds to make them more uniform, further ensuring that the animals raised separately can receive balanced nutrition.

[0086] Example 2: The mixing plates 54 are arranged in a ring with equal spacing, and each group of mixing plates 54 is staggered. The mixing plates 54 are arranged at an angle, which can catch the feed when it falls, reducing the situation where it falls directly to the bottom. In this way, the amount of falling can be limited during rotation and mixing, slowing down the falling and increasing the mixing effect.

[0087] Example 3: A conveying auger 5001 is coaxially fixed at the lower end of the rotating rod 53. The conveying auger 5001 can actively convey the feed to avoid blockage. At the same time, it can act as a barrier when not in use.

[0088] Reference Figure 1 and Figure 2 The bottom surface of the half box 11 is fixedly provided with multiple support legs 7. The support legs 7, the feed hopper 6 and the half box 11 are integrally formed and are all in a half-structure. At this time, as long as the two half boxes 11 are separated, the whole is separated.

[0089] A fixing block 12 is symmetrically fixed on the outside of the half box 11. One side of the fixing block 12 is the same as the inner wall of the half box 11. The fixing blocks 12 on the two half boxes 11 are connected and fixed by bolts 13 so that there is no gap when the two half boxes 11 are closed.

[0090] This invention provides a method for using an easy-to-disassemble feed dispenser, comprising the following steps:

[0091] S1. Install the mixing mechanism 8 into the discharge trough 5; connect and fix the fixing blocks 12 on the two half-boxes 11 with bolts 13;

[0092] S2. At this time, different external feeds are put into different feed hoppers 6 and reach different metering chambers 2 through feed inlets 4.

[0093] S3. At this time, the external power supply is turned on, and the first motor 304 is started to rotate, which drives one of the rotating gears 302 to rotate, thereby driving the two metering blocks 31 to rotate synchronously in opposite directions through the reversing gear 303.

[0094] S4. At this time, different feeds will fall into the horizontal hook 32 on the metering block 31 in the same proportion. By rotating the metering block 31, the feed in the horizontal hook 32 will be moved downward to the middle, so that the two sides will mix and fall into the discharge trough 5.

[0095] S5. At the same time, the second motor 57 is started to rotate, which drives the mixing gear 52 to rotate through the drive gear 56, thereby causing the mixing plate 54 to rotate and mix the feed that falls to the bottom.

[0096] S6. At this time, the feed can be conveyed and fed by rotating the conveying auger 5001.

[0097] S7. When it is necessary to disassemble, loosen bolt 13 to separate the two halves of the box 11. At this time, the internal structure is exposed and can be cleaned or repaired.

[0098] When the easy-to-disassemble feed dispenser is needed, first, install the mixing mechanism 8 into the discharge trough 5; connect and fix the fixing blocks 12 on the two half-boxes 11 with bolts 13. At this time, put different feeds into different feed hoppers 6, and reach the different metering chambers 2 through the feed inlet 4. Drive the first motor 304 to rotate and the output shaft to rotate, which drives one of the rotating gears 302 to rotate. The rotating gear 302 meshes with one of the reversing gears 303, and the two reversing gears 303 mesh with each other, so that the reversing gear 303 drives the other rotating gear 302 to rotate, thereby driving the two metering blocks 31 to rotate synchronously in opposite directions. At this time, different feeds will fall into the horizontal hooks 32 on the metering blocks 31 in the same proportion. Through the rotation of the metering blocks 31, the feed in the horizontal hooks 32 will be driven to the middle and lower part, so that the two sides are mixed and fall into the discharge trough 5.

[0099] At this time, the second motor 57 is driven to rotate, which drives the mixing gear 52 to rotate through the drive gear 56, thereby causing the mixing plate 54 to rotate and mix, so that the feed falls to the bottom. At this time, the feed can be conveyed and fed by the rotation of the conveying auger 5001. When it is necessary to disassemble, loosen the bolt 13 to separate the two half boxes 11. At this time, the internal structure is exposed, and it can be cleaned or repaired.

[0100] This application, through the design of the feed dispensing unit, makes the entire feed dispenser easy to disassemble, reducing cumbersome steps and the need for multiple components. Maintenance and repair of the entire structure can be performed simply by separating the half-box, improving efficiency. The quantitative component allows for precise feed dispensing, and the two quantitative blocks enable precise mixing of different feeds, preventing nutritional imbalances caused by uneven amounts of any one feed. This allows for the simultaneous dispensing of different feeds through a single outlet. The mixing plate further ensures more even mixing of different feeds, guaranteeing balanced nutrition for all animals raised separately.

[0101] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely preferred examples and are not intended to limit the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the present invention as claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.

Claims

1. A feed dispenser that is easy to assemble and disassemble, comprising: a feed dispensing unit (1), a metering component (3), a feed hopper (6), and a stirring mechanism (8); characterized in that: The feed feeding unit (1) includes two half-boxes (11) that are detachably mounted together; The half-box (11) has two symmetrically arranged quantitative chambers (2), and each quantitative chamber (2) is equipped with a quantitative component (3). Two feed inlets (4) are symmetrically arranged in the upper part of the half box (11), and the two feed inlets (4) are respectively connected to different metering chambers (2); a feed hopper (6) is provided at each feed inlet (4) above the half box (11). A discharge chute (5) is provided at the bottom of the half-box (11), and the discharge chute (5) is connected to two metering chambers (2); A feeding hopper (6) is provided at the feeding port (4) of the half box (11), and multiple support legs (7) are fixedly provided on the bottom surface of the feeding port (4); the support legs (7), the feeding hopper (6) and the half box (11) are integrally formed and are all in a half-structure. A stirring mechanism (8) is rotatably installed inside the discharge trough (5); the stirring mechanism (8) is detachably installed inside the discharge trough (5); The quantitative component (3) includes a quantitative block (31) and a quantitative feeding drive component; the quantitative cavity (2) is rotatably equipped with a quantitative block (31), and the outer wall of the quantitative block (31) is fixedly equipped with multiple horizontal hooks (32). Multiple horizontal hooks (32) are arranged in a ring with equal spacing; two quantitative blocks (31) are arranged in a symmetrical structure, and a quantitative feeding drive component is provided on one half box (11), which can drive the two quantitative blocks (31) to rotate synchronously in opposite directions; Different feeds fall into the hooks (32) on the metering block (31) in the same proportion. By rotating the metering block (31) in the opposite direction, the feed in the hooks (32) can be driven to the middle and lower part, so that it falls into the discharge trough (5) from both sides. By setting two metering blocks that rotate in opposite directions, two different feeds can be received and transported together. Different feeds can be mixed quantitatively, avoiding the situation where one feed is more or less. Different feeds are fed together and then fed through one outlet. The quantitative cavity (2) is arranged in a circular structure, and the outer wall of the horizontal hook (32) of the quantitative block (31) is arranged in an arc-shaped structure. The cross sections of the multiple horizontal hooks (32) are connected to form a circular structure; the outer wall of the horizontal hook (32) is slidably connected to the inside of the quantitative cavity (2). The quantitative feeding drive assembly includes a rotating gear (302), a reversing gear (303), and a first motor (304); a mechanical cavity (301) is provided on the inner wall of the half box (11); a rotating gear (302) is rotatably arranged inside the mechanical cavity (301), and the rotating gear (302) is coaxially and fixedly connected to the corresponding quantitative block (31); The mechanical cavity (301) is also rotatably equipped with two reversing gears (303), which are meshed with each other and are respectively meshed with different rotating gears (302); the reversing gears (303) drive the two metering blocks (31) to rotate synchronously in opposite directions. A first motor (304) is fixedly installed on the outside of the half box (11), and the output shaft of the first motor (304) is coaxially and fixedly connected to one of the rotating gears (302); The discharge trough (5) is set in a conical structure. A rotating groove (51) is opened on the inner wall of the discharge trough (5). A circular cavity (55) is opened on the inner wall of the discharge trough (5). A drive gear (56) is rotatably arranged inside the circular cavity (55). The drive gear (56) is coaxially fixedly connected to the output end of a second motor (57) fixed on one side of the circular cavity (55). The drive gear (56) is used to drive the stirring mechanism to run.

2. The easily detachable feed dispenser according to claim 1, characterized in that: A fixing block (12) is symmetrically fixed on the outside of the half box (11), and one side of the fixing block (12) is the same as the inner wall of the half box (11); The fixing blocks (12) on the two half-boxes (11) are connected and fixed by bolts (13).

3. The easily detachable feed dispenser according to claim 2, characterized in that: The stirring mechanism (8) includes a mixing gear (52), a rotating rod (53), and a mixing plate (54). A hybrid gear (52) is slidably disposed inside the rotating groove (51); The hybrid gear (52) has a hollow structure in the middle; A rotating rod (53) is provided in the middle of the mixing gear (52), and a plurality of mixing plates (54) are fixedly provided on the outer wall of the rotating rod (53) by a fixing rod. The outer wall of the drive gear (56) meshes with the hybrid gear (52); The mixing plates (54) are arranged in a ring with equal spacing; The mixing plates (54) in each group are staggered.

4. The easily detachable feed dispenser according to claim 3, characterized in that: The outer end of the rotating rod (53) is coaxially fixed with a conveying auger (5001), and the mixing plate (54) is obliquely arranged.

5. A method of using the easily detachable feed dispenser as described in claim 4, characterized in that, Includes the following steps: S1. Install the stirring mechanism (8) into the discharge trough (5); connect and fix the fixing blocks (12) on the two half boxes (11) with bolts (13); S2. Different feeds from the outside are put into different feed hoppers (6) and reach different metering chambers (2) through feed inlets (4); S3. Start the first motor (304) to drive one of the rotating gears (302) to rotate, thereby driving the two metering blocks (31) to rotate synchronously in opposite directions through the reversing gear (303); S4. At this time, different feeds will fall into the horizontal hook (32) on the metering block (31) in the same proportion. By rotating the metering block (31), the feed in the horizontal hook (32) will be moved to the middle and lower part, so that it will fall into the discharge trough (5) from both sides. S5. At the same time, the second motor (57) is started to rotate, and the mixing gear (52) is driven to rotate through the drive gear (56), so that the mixing plate (54) rotates to mix the feed that falls to the bottom. S6. At this time, the feed can be conveyed and fed by rotating the conveying auger (5001); S7. When it is necessary to remove it, loosen the bolts (13) to separate the two halves (11). At this time, the internal structure is exposed and can be cleaned or repaired.

Citation Information

Patent Citations

  • Pet feed dispenser easy to disassemble and assemble

    CN216853401U

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    CN112889682A

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  • Putty powder production equipment

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