Food transportation device used for food processing and provided with anti-falling mechanism

Through the innovative design of the feeding mechanism and conveying mechanism, the two-way threaded rod driven by hydraulic cylinders and motors are used to solve the instability and drop problems of nut food during the transportation process, and improve processing efficiency and product quality.

CN120348706AInactive Publication Date: 2025-07-22HEFEI XINYANG FOOD CO LTD
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Patent Information

Application Number
CN202510818356.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-18
Publication Date
2025-07-22
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional food transportation devices have problems such as unstable delivery and easy drop of food when transporting nut foods, which affect processing efficiency and product quality.

Method used

The combination of feeding mechanism and conveying mechanism is adopted, including discharge pipe, moving plate, hydraulic cylinder, baffle and motor-driven bidirectional threaded rod. The hydraulic cylinder drives the horizontal movement of the moving plate and the motor-driven baffle to adjust the spacing, ensuring orderly conveying of nut foods and avoiding stacking and falling.

Benefits of technology

The orderly conveying of nut food during the transportation process is achieved, squeezing and falling, and the processing efficiency and product quality are improved.

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Abstract

The invention relates to a food conveying device with an anti-falling mechanism for food processing, which comprises a feeding mechanism and a conveying mechanism, the feeding mechanism comprises a discharging pipe, the top surface of the discharging pipe is provided with a groove, the groove is connected with a feeding plate groove, the groove is internally provided with two partition plates, the two partition plates divide the groove into three feeding cavities with the same size, and the feeding cavities are communicated with the feeding plate groove. The bottom ends of the three partition plates extend downwards to the inner bottom of the discharging pipe, a movable plate is arranged in the discharging pipe, and long plates are arranged on the outer walls of the two sides of the discharging pipe correspondingly. According to the nut food conveying device, the output end of the hydraulic cylinder drives the moving plate to horizontally reciprocate in the sliding opening, so that nut food in the feeding cavity can be conveyed from the output opening of the discharging pipe in order, and it is ensured that the nut food cannot be squeezed or stacked in the conveying process; and the distance between the two baffles can be automatically adjusted according to the size of the nut food, the problem that the nut food is prone to falling in the conveying process is effectively solved, and the processing efficiency and the product quality are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of food processing, and particularly to a food transportation device with an anti-falling mechanism for food processing. Background Art

[0002] In the food processing industry, nut foods are deeply loved by consumers because of their rich nutrition and unique taste. However, in the process of nut food processing, how to efficiently and orderly transport the food while avoiding the dropping and damage of the food during transportation has always been a technical problem in the industry. Traditional transportation devices often have problems such as unstable transportation and easy dropping of food, which affect the processing efficiency and product quality. Summary of the Invention

[0003] The purpose of the present invention is to provide a food transportation device with an anti-falling mechanism for food processing, so as to solve the problems that traditional transportation devices often have unstable transportation and easy dropping of food, which affect the processing efficiency and product quality.

[0004] To achieve the above purpose, the present invention provides the following technical solution: A food transportation device with an anti-falling mechanism for food processing, including a feeding mechanism and a conveying mechanism. The feeding mechanism includes a discharge pipe. A groove is provided on the top surface of the discharge pipe. The groove is connected to a feeding plate groove. Two partition plates are provided inside the groove. The two partition plates divide the groove into three feeding chambers of the same size, and the bottom ends of the three partition plates extend downward to the inner bottom of the discharge pipe. A moving plate is provided inside the discharge pipe, and long plates are provided on the outer walls on both sides of the discharge pipe. One ends of the two long plates are connected to a cross plate. A hydraulic cylinder is provided on the side of the cross plate opposite to the discharge pipe. The output end of the hydraulic cylinder penetrates the cross plate and extends outward to be connected to the moving plate. The conveying mechanism includes a concave bracket. The concave bracket is arranged on the bottom surface of the discharge pipe. Vertical plates are provided on the outer walls on both sides of the concave bracket. A sliding rod is provided between the two vertical plates. Baffles are provided through both ends of the sliding rod.

[0005] Preferably, a through hole is provided on the side of the discharge pipe opposite to the cross plate. The moving plate is slidably connected to the through hole. A limiting plate is provided on the bottom surface of the end of the moving plate away from the cross plate. Two sliding openings are provided at one end of the top surface of the moving plate. The sliding openings are slidably connected to the partition plates.

[0006] Preferably, a bidirectional threaded rod is provided through the other ends of the two baffles. Fixing plates are connected to both ends of the bidirectional threaded rod. The two fixing plates are respectively arranged on the outer walls on both sides of the discharge pipe. One end of the bidirectional threaded rod penetrates the fixing plate and extends outward to be connected to the output end of a motor.

[0007] Preferably, the other end of the feeding plate groove is connected with two connecting plates through a shaft rod. A first belt transmission assembly is arranged between the two connecting plates. A plurality of blocking plates are arranged at equal intervals on the transmission belt inside the first belt transmission assembly. A feeding hopper is arranged on the top surfaces of the two connecting plates. And side plates are connected to the opposite sides of the two connecting plates through shaft rods. A first bottom frame is arranged at the bottom surfaces of the two side plates.

[0008] Preferably, the output end of the concave bracket is connected with a discharge chute. A second belt transmission assembly is arranged inside the concave bracket. And a second bottom frame is arranged at the bottom surface of the concave bracket.

[0009] The present invention at least has the following beneficial effects:

[0010] 1. The nut food of the present invention can be respectively conveyed to the second belt transmission assembly through three feeding cavities by the feeding chute plate. When the nut food enters the inside of the three feeding cavities, the output end of the hydraulic cylinder drives the moving plate to reciprocate horizontally inside the sliding opening, so that the nut food in the feeding cavity can be orderly conveyed from the output port of the discharge pipe, ensuring that the nut food will not be squeezed or stacked with each other during the conveying process;

[0011] 2. The output end of the motor of the present invention drives the bidirectional threaded rod thereon to rotate. The rotation of the bidirectional threaded rod drives the baffles at both ends to move relatively along the horizontal direction of the sliding rod, and the distance between the two baffles can be automatically adjusted according to the size of the nut food, effectively solving the problem that the nut food is easy to fall during the conveying process, and improving the processing efficiency and product quality. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] Figure 1 is the main structural view of the present invention;

[0013] Figure 2 is the side structural view of the present invention;

[0014] Figure 3 is the structural schematic diagram of the feeding mechanism of the present invention.

[0015] In the attached drawing reference numerals: 1, first bottom frame; 2, side plate; 3, connecting plate; 4, feeding hopper; 5, first belt transmission assembly; 6, blocking plate; 7, feeding plate groove; 8, motor; 9, bidirectional threaded rod; 10, fixed plate; 11, baffle; 12, second belt transmission assembly; 121, concave bracket; 13, sliding rod; 14, vertical plate; 15, discharge chute; 16, second bottom frame; 17, discharge pipe; 18, groove; 19, partition board; 20, feeding cavity; 21, cross plate; 22, hydraulic cylinder; 23, long plate; 24, moving plate; 25, sliding opening; 26, through opening; 27, limiting plate. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0017] Please refer to Figures 1 - 3 , the present invention provides a technical solution: a food transportation device with an anti-falling mechanism for food processing, including a feeding mechanism and a conveying mechanism. The feeding mechanism includes a discharge pipe 17. A groove 18 is fixedly provided on the top surface of the discharge pipe 17. The groove 18 is connected and fixed with a feeding plate groove 7. Two partition plates 19 are fixedly provided inside the groove 18. The two partition plates 19 divide the groove 18 into three feeding chambers 20 of the same size. The bottom ends of the three partition plates 19 extend downward to the inner bottom of the discharge pipe 17. A moving plate 24 is movably provided inside the discharge pipe 17. Long plates 23 are fixedly provided on the outer walls of both sides of the discharge pipe 17. One ends of the two long plates 23 are fixedly connected with a cross plate 21. A hydraulic cylinder 22 is provided on the side of the cross plate 21 opposite to the discharge pipe 17. The output end of the hydraulic cylinder 22 penetrates through the cross plate 21 and extends outward to be connected with the moving plate 24. A through port 26 is provided in the surface of the discharge pipe 17 opposite to the cross plate 21. The moving plate 24 is slidably connected with the through port 26. A limiting plate 27 is fixedly provided on the bottom surface of the end of the moving plate 24 away from the cross plate 21. Two sliding ports 25 are provided at one end of the top surface of the moving plate 24. The sliding ports 25 are slidably connected with the partition plates 19. Nut foods can be respectively transported from the discharge pipe 17 to the second belt transmission assembly 12 through the three feeding chambers 20 through the feeding plate groove 7. When the nut foods enter the interiors of the three feeding chambers 20, the output end of the hydraulic cylinder 22 drives the moving plate 24 to perform a horizontal reciprocating movement inside the sliding ports 25, so that the nut foods in the feeding chambers 20 can be orderly transported from the output port of the discharge pipe 17, ensuring that the nut foods will not be squeezed or stacked with each other during the transportation process.

[0018] Refer to Figure 1 , the other end of the feeding plate groove 7 is fixedly connected with two connecting plates 3 through a shaft rod. A first belt transmission assembly 5 is provided between the two connecting plates 3. A plurality of blocking plates 6 are provided at equal intervals on the transmission belt inside the first belt transmission assembly 5. Feeding hoppers 4 are fixedly provided on the top surfaces of the two connecting plates 3. Side plates 2 are fixedly connected to the opposite sides of the two connecting plates 3 through shaft rods. A first bottom frame 1 is fixedly provided on the bottom surfaces of the two side plates 2. The nut foods are poured into the interiors of the feeding hoppers 4. Through the blocking plates 6 on the transmission belt inside the first belt transmission assembly 5, the nut foods can be evenly distributed on the transmission belt and transported to the three feeding chambers 20 through the transmission belt by the feeding plate groove 7.

[0019] Refer toFigure 1 , the conveying mechanism includes a concave bracket 121 which is fixedly arranged on the bottom surface of the discharge pipe 17. Vertical plates 14 are fixedly provided on both outer walls of the concave bracket 121. A sliding rod 13 is fixedly arranged between the two vertical plates 14. Baffle plates 11 are slidably penetrated through both ends of the sliding rod 13. The other ends of the two baffle plates 11 are threadedly penetrated through a bidirectional threaded rod 9. Both ends of the bidirectional threaded rod 9 are rotatably connected to fixing plates 10. The two fixing plates 10 are respectively fixedly arranged on the outer walls of both sides of the discharge pipe 17. One end of the bidirectional threaded rod 9 penetrates through the fixing plate 10 and extends outward to be connected to the output end of a motor 8. The output end of the concave bracket 121 is fixedly connected to a discharge chute 15. A second belt conveyor assembly 12 is arranged inside the concave bracket 121, and a second base frame 16 is fixedly arranged on the bottom surface of the concave bracket 121. By driving the bidirectional threaded rod 9 thereon to rotate through the output end of the motor 8, the rotation of the bidirectional threaded rod 9 drives the baffle plates 11 at both ends to move relatively along the horizontal direction of the sliding rod 13, and the distance between the two baffle plates 11 can be automatically adjusted according to the size of the nut food, effectively solving the problem that the nut food is likely to fall during the conveying process and improving the processing efficiency and product quality.

[0020] Working principle: When in use, first, pour the nut food into the inside of the feed hopper 4. Through the blocking plates 6 on the conveyor belt in the first belt conveyor assembly 5, the nut food can be evenly distributed on the conveyor belt and conveyed to the three feed cavities 20 through the feed plate groove 7 by the conveyor belt. When the nut food enters the inside of the three feed cavities 20, the output end of the hydraulic cylinder 22 drives the moving plate 24 to perform horizontal reciprocating movement inside the sliding opening 25, so that the nut food in the feed cavity 20 can be orderly conveyed from the output port of the discharge pipe 17 to the second belt conveyor assembly 12, and finally conveyed to the next processing procedure through the second belt conveyor assembly 12 by the discharge chute 15;

[0021] And by driving the bidirectional threaded rod 9 thereon to rotate through the output end of the motor 8, the rotation of the bidirectional threaded rod 9 drives the baffle plates 11 at both ends to move relatively along the horizontal direction of the sliding rod 13, and the distance between the two baffle plates 11 can be automatically adjusted according to the size of the nut food, effectively solving the problem that the nut food is likely to fall during the conveying process and improving the processing efficiency and product quality.

[0022] The foregoing has shown and described the basic principles, main features and advantages of the present invention. For a person skilled in the art, it is obvious that the present invention is not limited to the details of the above-mentioned exemplary embodiments, and without departing from the spirit or basic features of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, it is intended to embrace all changes within the meaning and scope of the equivalent elements of the claims in the present invention. Any reference signs in the claims should not be construed as limiting the claims involved.

[0023] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A food transportation device with an anti-falling mechanism for food processing, comprising a feeding mechanism and a conveying mechanism, characterized in that: The feeding mechanism includes a discharge pipe (17). A groove (18) is provided on the top surface of the discharge pipe (17). The groove (18) is connected to a feed plate groove (7). Two partition plates (19) are provided inside the groove (18). The two partition plates (19) divide the groove (18) into three feed chambers (20) of the same size. The bottom ends of the three partition plates (19) extend downward to the inner bottom of the discharge pipe (17). A moving plate (24) is provided inside the discharge pipe (17). Long plates (23) are provided on the outer walls on both sides of the discharge pipe (17). One ends of the two long plates (23) are connected to a cross plate (21). A hydraulic cylinder (22) is provided on the side of the cross plate (21) opposite to the discharge pipe (17). The output end of the hydraulic cylinder (22) penetrates the cross plate (21) and extends outward to be connected to the moving plate (24). The conveying mechanism includes a concave bracket (121). The concave bracket (121) is arranged on the bottom surface of the discharge pipe (17). Vertical plates (14) are provided on the outer walls on both sides of the concave bracket (121). A slide bar (13) is provided between the two vertical plates (14). Baffle plates (11) are respectively provided through both ends of the slide bar (13).

2. The food transportation device with a falling prevention mechanism for food processing according to claim 1, wherein: A through port (26) is provided on the side of the discharge pipe (17) opposite to the cross plate (21). The moving plate (24) is slidably connected to the through port (26). A limiting plate (27) is provided on the bottom surface of the end of the moving plate (24) away from the cross plate (21). Two sliding ports (25) are opened at one end of the top surface of the moving plate (24). The sliding ports (25) are slidably connected to the partition plates (19).

3. The food transportation device with an anti-falling mechanism for food processing according to claim 1, characterized in that: The other ends of the two baffle plates (11) are respectively provided with a bidirectional threaded rod (9) passing through. Both ends of the bidirectional threaded rod (9) are connected with fixing plates (10). The two fixing plates (10) are respectively arranged on the outer walls on both sides of the discharge pipe (17). One end of the bidirectional threaded rod (9) penetrates the fixing plate (10) and extends outward to be connected to the output end of a motor (8).

4. A food transportation device with a falling prevention mechanism for food processing according to claim 1, characterized in that: The other end of the feed plate groove (7) is connected with two connecting plates (3) through a shaft rod. A first belt transmission assembly (5) is provided between the two connecting plates (3). A plurality of blocking plates (6) are arranged at equal intervals on the transmission belt inside the first belt transmission assembly (5). A feed hopper (4) is provided on the top surfaces of the two connecting plates (3). Shaft rods are respectively connected to the sides opposite to the two connecting plates (3). A first bottom frame (1) is provided on the bottom surfaces of the two side plates (2).

5. The food transportation device with a falling prevention mechanism for food processing according to claim 1, wherein: The output end of the concave bracket (121) is connected with a discharge chute (15). A second belt transmission assembly (12) is provided inside the concave bracket (121). A second bottom frame (16) is provided on the bottom surface of the concave bracket (121).