An egg conveying device for cage-raising equipment

By designing an egg conveying device for cage-raising equipment, the problem of collision during egg conveying was solved by using limiting components and a buffer system, achieving safe and efficient egg conveying and cleaning.

CN119734980BActive Publication Date: 2025-10-31太谷新纪机械有限公司
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Patent Information

Application Number
CN202510255047.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-03-05
Publication Date
2025-10-31
Estimated Expiration
2045-03-05

AI Technical Summary

Technical Problem

In cage-rearing equipment, eggs are prone to collisions with eggs collected on the conveyor during the transportation process, which can lead to breakage and affect the transportation efficiency.

Method used

An egg conveying device for cage-raising equipment was designed, including a conveyor frame, a conveyor belt, an egg inlet, a conveying trough, a limiting component, and a buffer system. The limiting component prevents eggs from colliding during conveying, the elastic connectors and buffer structure reduce breakage, and the guide rod and sorting frame combine to achieve safe egg conveying.

Benefits of technology

It effectively prevents eggs from colliding with other eggs during transportation, reduces breakage rate, improves transportation safety and efficiency, and keeps the transportation channel clean through a cleaning structure.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of egg conveying technology and discloses an egg conveying device for cage-raising equipment, including a conveying frame and a cage-raising equipment body located on one side of the conveying frame. A conveyor belt is provided on the conveying frame, and an egg feeding port is opened on one side of the conveying frame. A conveying groove is provided on one side of the egg feeding port. A connecting rod and a first guide rod are fixed below the conveying groove. A support plate is fixed on the conveying frame. The connecting rod is elastically connected to the support plate through a first spring. The lower end of the first guide rod is slidably connected to the support plate. This device can move the eggs near the egg feeding port on the conveyor belt to one side, so that when the eggs on the conveying groove roll onto the conveyor belt, they can avoid collisions with other eggs, thereby improving the safety performance of the eggs rolling onto the conveyor belt and reducing egg breakage.
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Description

Technical Field

[0001] This invention relates to the field of egg conveying technology, specifically to an egg conveying device for cage-raising equipment. Background Technology

[0002] Cage-raising equipment refers to the equipment used in chicken farms for raising chickens. It mainly includes various cages, feed troughs, waterers, manure collection boards, egg collection belts, and other auxiliary equipment. Among these, the egg-rolling cage is a device used to collect eggs, usually installed at the bottom of the chicken cage. The principle is that the eggs are rolled along a slope to collect them in a concentrated location, making it convenient for chicken farmers to collect the eggs. To improve the efficiency of egg collection, an egg conveyor is installed at the egg collection point, allowing the eggs to roll directly onto the conveyor for transport after the hen lays them, thus improving egg collection efficiency.

[0003] Currently, during the transport of eggs in caged farming equipment, eggs are prone to rolling onto the egg conveyor and colliding with the eggs being collected and transported on the conveyor. This collision can easily cause the eggs to break, resulting in losses and affecting the efficiency of egg transport. Summary of the Invention

[0004] This invention provides an egg conveying device for caged breeding equipment. It facilitates the movement of eggs from the conveyor trough onto the conveyor belt, preventing collisions with other eggs and improving safety. This reduces egg breakage and solves the problem mentioned in the background art where eggs in caged breeding equipment easily roll onto the conveyor and collide with other eggs being transported, leading to breakage and losses, and affecting conveying efficiency.

[0005] The present invention provides the following technical solution: an egg conveying device for cage rearing equipment, comprising a conveying frame and a cage rearing equipment body located on one side of the conveying frame, a conveyor belt being provided on the conveying frame, an egg feeding port being provided on one side of the conveying frame, a conveying trough being provided on one side of the egg feeding port, a connecting rod and a first guide rod being fixedly fixed below the conveying trough, a support plate being fixed on the conveying frame, the connecting rod being elastically connected to the support plate through a first spring, the lower end of the first guide rod being slidably connected to the support plate, a plurality of second guide rods for conveying eggs being rotatably connected on the conveying trough, a first rotating shaft being rotatably connected on the conveying trough, the first rotating shaft being located at one end of the second guide rod, and a distributing frame being fixed at the upper end of the first rotating shaft;

[0006] The bottom of the cage-raising equipment body is provided with an inclined egg-eating trough, and an elastic cloth belt is connected between the egg-eating trough and the conveying trough. A limit component is provided on the egg-eating trough.

[0007] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, the limiting component includes a second rotating shaft, which is rotatably connected to the egg outlet groove, and a limiting strip is fitted on the second rotating shaft. A first torsion spring is connected between the limiting strip and the second rotating shaft.

[0008] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, a baffle bracket is provided on one side of the egg feeding port. The baffle bracket is rotatably connected to the conveying frame, and a first gear is fixed on the baffle bracket. A first sliding bracket is fixed on the conveying frame. A first rack is meshed with one side of the first gear, and the upper end of the first rack is elastically connected to the first sliding bracket through a second spring.

[0009] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, wherein: a deflector plate is provided on the other side of the egg feeding port; a third rotating shaft is rotatably connected to the conveying frame; the deflector plate is elastically connected to the third rotating shaft via a ninth spring; one end of the deflector plate is provided with an abutting inclined surface; a second gear is fixed on the third rotating shaft; the second gear is meshed with a second rack; a third guide rod is slidably connected to the second rack; the third guide rod is fixed on the conveying frame; and the second rack is elastically connected to the conveying frame via a third spring.

[0010] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, wherein: a first abutting frame is fixed to one end of the second rack, an abutting strip is fixed to one end of the first abutting frame, and one end of the abutting strip abuts against the lower end of the first rack.

[0011] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, a guide plate is provided on one side of the first contact frame, a first contact rod is slidably connected to the guide plate, one end of the first contact rod abuts against the first contact frame, and a fourth spring is connected between the first contact rod and the guide plate.

[0012] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, wherein: a second abutment frame is slidably connected below the conveying frame; the lower end of the connecting rod abuts against the second abutment frame; a fifth spring connects the second abutment frame and the conveying frame; a buffer plate is slidably connected to one side of the conveying frame; a fourth guide rod is fixed on the buffer plate; the fourth guide rod is elastically connected to the conveying frame via a sixth spring; one end of the second abutment frame abuts against a rocker arm, and one end of the rocker arm abuts against the fourth guide rod; the rocker arm is elastically connected to the conveying frame via a second torsion spring.

[0013] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, wherein: a piston cylinder is fixed to one side of the rocker plate, a piston plate is slidably connected inside the piston cylinder, a piston rod is fixed to one side of the piston plate, a seventh spring is connected between the piston plate and the piston cylinder, an air bladder is fixed to the buffer plate, and the air outlet of the piston cylinder is connected to the air bladder through a pipe.

[0014] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, the conveying trough is provided with a strip-shaped opening below it, and a plurality of third gears are provided in the strip-shaped opening. The third gears are fixed to one end of the second guide rod. A third rack that meshes with the third gears is provided in the strip-shaped opening. The third rack is elastically connected to the conveying trough through an eighth spring. A second abutment rod is fixed on the third rack. A plurality of third abutment rods are fixed below the first rotating shaft.

[0015] As an optional embodiment of the egg conveying device for cage-raising equipment described in this invention, the second guide rod has a plurality of circumferentially equidistant protrusions on its surface, and a plurality of brush strips are fixed below the conveying groove, the brush strips abutting against the second guide rod.

[0016] The present invention has the following beneficial effects:

[0017] 1. In this cage-raising equipment's egg conveying device, collected eggs are transported via a conveyor belt mounted on a conveyor frame. An egg-discharging trough within the cage-raising equipment facilitates the automatic rolling of eggs from the hen's laying position onto the trough. A limiting component restricts the eggs' movement; when a certain weight of eggs accumulates on the limiting component, the limiting bar deflects on the second rotating shaft, causing several eggs to roll from one side onto the inclined conveyor trough. A separating frame on the conveyor trough facilitates the distribution of eggs, preventing collisions as they pass through the second guide rod and reducing breakage. When several eggs are on the conveyor trough, gravity overcomes the resistance of the first spring, causing the trough to automatically move downwards until its lower end is flush with the egg-feeding opening on the conveyor frame, facilitating the transfer of eggs from the trough to the conveyor belt. Simultaneously, the conveying trough can abut against the first abutting rod. When the first abutting rod, the first abutting frame, and the abutting strip are linked, on the one hand, the first rack can move upward to drive the first gear on the baffle bracket to rotate, causing the baffle bracket to rotate on the conveyor frame and lie horizontally on the conveyor belt, thus blocking the eggs on the conveyor belt from continuing to be transported. On the other hand, the second rack can move horizontally to drive the second gear on the third rotating shaft to rotate, causing the deflecting plate to deflect, which can move the eggs near the egg feeding port on the conveyor belt to one side, so that when the eggs on the conveying trough roll onto the conveyor belt, they can avoid colliding with other eggs, thereby improving the safety performance of the eggs rolling onto the conveyor belt and reducing the breakage of the eggs. Through the elastic cloth belt connecting the egg discharge trough and the conveying trough, it can be realized that the conveying trough is always connected to the egg discharge trough when it moves downward, avoiding the eggs from colliding with the end of the conveying trough when rolling.

[0018] 2. In the egg conveying device of this cage-raising equipment, the second contact frame can contact the connecting rod when the conveying trough moves downward. This allows the second contact frame to move horizontally and contact the lower end of the rocker plate, causing the rocker plate to deflect. This causes the upper end of the rocker plate to push the fourth guide rod, which in turn drives the buffer plate and the airbag to move horizontally synchronously. This shortens the buffer distance between the airbag and the egg, improving the buffering effect. At the same time, the horizontal movement of the buffer plate can contact the inclined surface of the actuating plate, causing the actuating plate to move vertically on the third rotating shaft. This facilitates the transport of eggs rolling onto the conveyor belt and reduces the number of eggs on the conveyor belt near the egg delivery port. The piston rod fixed on the piston plate can push the piston rod to move horizontally after the second contact frame contacts the lower end of the rocker plate. This allows the piston plate to move inside the piston cylinder, compressing the air inside the piston cylinder and sending it to the airbag for expansion. When the expanded airbag comes into contact with the rolling egg, it reduces the impact force, improves the buffering effect, prevents the egg from breaking, and improves the protection effect.

[0019] 3. In the egg conveying device of this cage-raising equipment, when several circumferentially distributed protrusions on the second guide rod contact the egg surface, they can remove some of the feces and fuzz attached to the egg. When the sorting frame contacts the rolling eggs, it can drive the first rotating shaft to rotate. Several third abutment rods fixed at the lower end of the first rotating shaft can rotate. The third rack can mesh with several third gears fixed at the ends of the second guide rods simultaneously. When the second abutment rods fixed on the third rack abut against the rotating third abutment rods, the third rack can move and drive several second guide rods to rotate, so that the second guide rods can drive the protrusions to rotate, improving the cleaning effect. At the same time, when the brush strips contact the second guide rods, they can remove the impurities attached to the second guide rods, reducing the amount of adhesion, and also improving the sliding effect of the eggs on the second guide rods, reducing obstruction. Attached Figure Description

[0020] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0021] Figure 2 This is a schematic diagram of the conveying trough structure of the present invention.

[0022] Figure 3 This is a schematic diagram of the second abutment frame structure of the present invention.

[0023] Figure 4 This is a cross-sectional view of the piston cylinder structure of the present invention.

[0024] Figure 5 This is a schematic diagram of the conveyor frame structure of the present invention.

[0025] Figure 6 This is a schematic diagram of the baffle bracket and actuating plate structure of the present invention.

[0026] Figure 7 This is a schematic diagram of the back structure of the conveying trough of the present invention.

[0027] Figure 8 for Figure 7 A magnified view of a portion of point A in the middle.

[0028] In the diagram: 1. Conveyor frame; 2. Cage rearing equipment body; 3. Conveyor belt; 4. Conveyor trough; 5. Connecting rod; 6. First spring; 7. Second guide rod; 8. Protrusion; 9. First rotating shaft; 10. Separator frame; 11. Egg outlet trough; 111. Second rotating shaft; 112. Limiting strip; 113. First torsion spring; 12. Elastic cloth belt; 13. Egg inlet; 14. First guide rod; 15. Support plate; 16. Baffle bracket; 17. First gear; 18. First sliding bracket; 19. First rack; 20. Second spring; 21. Actuating plate; 22. Third rotating shaft; 23. Second gear; 24. Second rack; 25. Third guide rod 26. First contact rod; 27. Third spring; 28. First contact frame; 29. ​​Contact strip; 30. Guide plate; 31. First contact rod; 32. Fourth spring; 33. Second contact frame; 34. Fifth spring; 35. Buffer plate; 36. Fourth guide rod; 37. Sixth spring; 38. Rocker; 39. Second torsion spring; 40. Piston cylinder; 41. Piston plate; 42. Piston rod; 43. Seventh spring; 44. Airbag; 45. Strip groove; 46. Third gear; 47. Third rack; 48. Eighth spring; 49. Second contact rod; 50. Brush strip; 51. Ninth spring; 52. Contact ramp. Detailed Implementation

[0029] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0030] Example 1, please refer to Figures 1 to 8 An egg conveying device for caged breeding equipment includes a conveying frame 1 and a caged breeding equipment body 2 located on one side of the conveying frame 1. A conveyor belt 3 is provided on the conveying frame 1. An egg feeding port 13 is opened on one side of the conveying frame 1. A conveying trough 4 is provided on one side of the egg feeding port 13. A connecting rod 5 and a first guide rod 14 are fixed below the conveying trough 4 respectively. A support plate 15 is fixed on the conveying frame 1. The connecting rod 5 is elastically connected to the support plate 15 through a first spring 6. The lower end of the first guide rod 14 is slidably connected to the support plate 15. A plurality of second guide rods 7 for conveying eggs are rotatably connected on the conveying trough 4. A first rotating shaft 9 is rotatably connected on the conveying trough 4. The first rotating shaft 9 is located at one end of the second guide rods 7, and a sorting frame 10 is fixed on the upper end of the first rotating shaft 9.

[0031] The bottom of the cage-rearing equipment body 2 is provided with an inclined egg-eating trough 11. An elastic cloth belt 12 is connected between the egg-eating trough 11 and the conveying trough 4. A limit component is provided on the egg-eating trough 11.

[0032] The limiting component includes a second rotating shaft 111, which is rotatably connected to the egg outlet groove 11, and a limiting strip 112 is fitted on the second rotating shaft 111. A first torsion spring 113 is connected between the limiting strip 112 and the second rotating shaft 111.

[0033] A baffle bracket 16 is provided on one side of the egg feeding port 13. The baffle bracket 16 is rotatably connected to the conveyor frame 1, and a first gear 17 is fixed on the baffle bracket 16. A first sliding bracket 18 is fixed on the conveyor frame 1. A first rack 19 is meshed on one side of the first gear 17. The upper end of the first rack 19 is elastically connected to the first sliding bracket 18 through a second spring 20.

[0034] A toggle plate 21 is provided on the other side of the egg feeding port 13. A third rotating shaft 22 is rotatably connected to the conveyor frame 1. The toggle plate 21 is elastically connected to the third rotating shaft 22 through a ninth spring 51. One end of the toggle plate 21 is provided with an abutting inclined surface 52. A second gear 23 is fixed on the third rotating shaft 22. The second gear 23 is meshed with a second rack 24. A third guide rod 25 is slidably connected to the second rack 24. The third guide rod 25 is fixed on the conveyor frame 1. The second rack 24 is elastically connected to the conveyor frame 1 through a third spring 26.

[0035] One end of the second rack 24 is fixed with a first abutting frame 27, and one end of the first abutting frame 27 is fixed with an abutting strip 28. One end of the abutting strip 28 abuts against the lower end of the first rack 19.

[0036] A guide plate 29 is provided on one side of the first contact frame 27. A first contact rod 30 is slidably connected to the guide plate 29. One end of the first contact rod 30 abuts against the first contact frame 27. A fourth spring 31 is connected between the first contact rod 30 and the guide plate 29.

[0037] When using the device, refer to Figures 1-6When the hen in the cage-raising equipment 2 lays eggs, the eggs roll from the bottom of the cage-raising equipment 2 into the egg-laying trough 11. The eggs are limited by the limiting strip 112 in the limiting component. When the eggs gathered on the limiting strip 112 reach a certain weight, the limiting strip 112 is rotated on the second rotating shaft 111, and the first torsion spring 113 stores force. The gathered eggs roll to one side of the egg-laying trough 11 onto the conveying trough 4. When the conveying trough 4 is affected by the weight of the eggs, it is forced to move downward against the resistance of the first spring 6, so that the outlet of the conveying trough 4 is flush with the egg-feeding port 13 of the conveying frame 1. When the conveying trough 4 moves downward, it can achieve the purpose of contacting one end of the first abutment rod 30, causing the first abutment rod 30 to slide on the guide plate 29. When the first contact frame 27 comes into contact with the first contact frame 27, the fourth spring 31 stores energy. When the first contact frame 27 is affected by the contact force, it can drive the contact bar 28 to move horizontally and the second rack 24 to slide on the third guide rod 25. When the contact bar 28 moves, it can come into contact with the lower end of the first rack 19, causing the first rack 19 to slide vertically on the first sliding bracket 18. The second spring 20 stores energy, which can realize the purpose of the first rack 19 driving the meshing first gear 17 to rotate, which facilitates the rotation of the baffle bracket 16 on the conveyor frame 1 and across the conveyor belt 3. It can block the eggs on one side of the conveyor belt 3 from continuing to be transported and restrict the eggs on one side of the conveyor belt from continuing to move. It can prevent the eggs on the conveyor trough 4 from rolling onto the conveyor belt 3 and colliding with other eggs.

[0038] When the second rack 24 slides on the third guide rod 25, the third spring 26 stores energy. During the movement, it can drive the meshing second gear 23 to rotate, causing the third rotating shaft 22 to drive the actuating plate 21 to rotate. This can move the eggs near the egg feeding port 13 on the conveyor belt 3 to one side, making it easier for the eggs on the conveyor trough 4 to roll onto the conveyor belt 3 and further avoid collisions with other eggs, thereby improving the safety of the eggs rolling onto the conveyor belt 3 and reducing egg breakage. The diverting frame 10 installed on the first rotating shaft 9 on the conveyor trough 4 diverts the eggs, allowing them to pass through the second guide rod 7 in sequence and roll onto the conveyor belt 3 at the egg feeding port 13 for transportation, avoiding collisions and reducing the breakage rate.

[0039] The elastic cloth belt 12 connecting the egg outlet 11 and the conveyor 4 can maintain a connection with the egg outlet 11 as the conveyor 4 moves down. After the conveyor 4 moves down, it can prevent the eggs at the back from bumping into the conveyor 4 while rolling, and make it easier for the eggs to roll from the egg outlet 11 to the conveyor 4 along the elastic cloth belt 12.

[0040] Example 2 is an improvement upon Example 1. For details, please refer to [link / reference]. Figures 1 to 8A second abutment frame 32 is slidably connected to the lower part of the conveyor frame 1. The lower end of the connecting rod 5 abuts against the second abutment frame 32. A fifth spring 33 is connected between the second abutment frame 32 and the conveyor frame 1. A buffer plate 34 is slidably connected to one side of the conveyor frame 1. A fourth guide rod 35 is fixed on the buffer plate 34. The fourth guide rod 35 is elastically connected to the conveyor frame 1 through a sixth spring 36. One end of the second abutment frame 32 abuts against a rocker plate 37, and one end of the rocker plate 37 abuts against the fourth guide rod 35. The rocker plate 37 is elastically connected to the conveyor frame 1 through a second torsion spring 38.

[0041] A piston cylinder 39 is fixed to one side of the rocker plate 37. A piston plate 40 is slidably connected inside the piston cylinder 39. A piston rod 41 is fixed to one side of the piston plate 40. A seventh spring 42 is connected between the piston plate 40 and the piston cylinder 39. An air bag 43 is fixed on the buffer plate 34. The air outlet of the piston cylinder 39 is connected to the air bag 43 through a pipe.

[0042] To avoid collision with one side of the conveyor frame 1 when rolling from the conveyor trough 4 onto the conveyor belt 3, refer to... Figures 2-4 When the conveying trough 4 moves downward, it can drive the connecting rod 5 and the first guide rod 14 to slide synchronously on the support plate 15, so that the lower end of the connecting rod 5 can contact the second contact frame 32. The first spring 6 stores force, and the second contact frame 32 moves horizontally on the conveying frame 1 when it is contacted. The fifth spring 33 stores force, and when the second contact frame 32 moves horizontally, it can contact the lower end of the rocker 37, causing the rocker 37 to rotate. The second torsion spring 38 stores force, thereby pushing the fourth guide rod 35 to move horizontally, causing the buffer plate 34 fixed at one end of the fourth guide rod 35 to drive the airbag 43 to move horizontally synchronously, thereby shortening the buffer distance between the airbag 43 and the egg, which can improve the buffering effect.

[0043] When the second contact frame 32 continues to move, it can push the piston rod 41 to move horizontally, so that the piston plate 40 can move inside the piston cylinder 39. The eighth spring 47 stores energy, which can compress the air inside the piston cylinder 39 and deliver it to the air bag 43, causing the air bag 43 to expand. When the expanded air bag 43 comes into contact with the rolling egg, it can reduce the impact force, improve the cushioning effect, prevent the egg from breaking, and improve the protection effect. At the same time, during the movement of the buffer plate 34, it can make contact with the contact slope 52 of the actuating plate 21, so that the actuating plate 21 moves vertically on the third rotating shaft 22, so that there is a certain gap between the actuating plate 21 and the conveyor belt 3, so that the eggs rolling from the conveyor trough 4 onto the conveyor belt 3 can be quickly conveyed, reducing the occurrence of collision accidents.

[0044] The third rotating shaft 22 is provided with a limit insert, and the toggle plate 21 is provided with a slot. The limit insert is inserted into the slot, so that the toggle plate 21 can slide vertically on the third rotating shaft 22. When the third rotating shaft 22 rotates, it can drive the toggle plate 21 to rotate synchronously, and the third rotating shaft 22 will not slip on the toggle plate 21.

[0045] Example 3 is an improvement upon Example 1. For details, please refer to [link / reference]. Figures 1 to 8 A strip-shaped slot 44 is provided below the conveying trough 4. Several third gears 45 are provided in the strip-shaped slot 44. The third gears 45 are fixed to one end of the second guide rod 7. A third rack 46 that meshes with the third gears 45 is provided in the strip-shaped slot 44. The third rack 46 is elastically connected to the conveying trough 4 through an eighth spring 47. A second abutment rod 48 is fixed on the third rack 46. Several third abutment rods 49 are fixed below the first rotating shaft 9.

[0046] The surface of the second guide rod 7 is provided with a number of circumferentially distributed protrusions 8, and a number of brush strips 50 are fixed below the conveying groove 4, with the brush strips 50 abutting against the second guide rod 7.

[0047] When the circumferentially equidistant protrusions 8 on the second guide rod 7 come into contact with the rolling egg, they can remove some of the feces and fuzz attached to the egg. However, over time, some impurities will adhere to the second guide rod 7. On the one hand, this will hinder the rolling of the egg, affecting its rolling efficiency; on the other hand, it will affect the cleaning effect of the protrusions 8 on impurities. Therefore, it is necessary to clean the impurities attached to the second guide rod 7. (Refer to...) Figures 7-8 When the sorting frame 10 comes into contact with the rolling egg, it can drive the first rotating shaft 9 to rotate. Several third abutment rods 49 fixed at the lower end of the first rotating shaft 9 can intermittently abut with the second abutment rods 48 fixed on the third rack 46, causing the second abutment rods 48 to drive the third rack 46 to move back and forth in the strip groove 44. The eighth spring 47 continuously stores and releases its elasticity, which can enable the third rack 46 to drive several third gears 45 and the second guide rods 7 connected to the third gears 45 to rotate synchronously. This allows the second guide rods 7 to drive the protrusions 8 to rotate, improving the cleaning effect. At the same time, when the brush strip 50 comes into contact with the second guide rod 7, it can remove the impurities attached to the second guide rod 7, reducing the amount of adhesion. It can also improve the sliding effect of the egg on the second guide rod 7 and reduce obstruction.

[0048] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0049] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.

Claims

1. An egg conveying device for cage rearing equipment, comprising a conveying frame and a cage rearing equipment body located on one side of the conveying frame, characterized in that: A conveyor belt is installed on the conveyor frame. An egg feeding port is opened on one side of the conveyor frame, and a conveying trough is provided on one side of the egg feeding port. A connecting rod and a first guide rod are fixed below the conveying trough. A support plate is fixed on the conveyor frame. The connecting rod is elastically connected to the support plate through a first spring. The lower end of the first guide rod is slidably connected to the support plate. Several second guide rods for conveying eggs are rotatably connected on the conveying trough. A first rotating shaft is rotatably connected on the conveying trough. The first rotating shaft is located at one end of the second guide rod, and a sorting frame is fixed at the upper end of the first rotating shaft. The bottom of the cage rearing equipment is equipped with an inclined egg-eating trough, and an elastic cloth belt connects the egg-eating trough to the conveyor trough. Limiting components are installed on the egg-eating trough. The limiting component includes a second rotating shaft, which is rotatably connected to the egg outlet groove, and a limiting strip is fitted on the second rotating shaft. A first torsion spring is connected between the limiting strip and the second rotating shaft. A baffle bracket is provided on one side of the egg feeding port. The baffle bracket is rotatably connected to the conveyor frame, and a first gear is fixed on the baffle bracket. A first sliding bracket is fixed on the conveyor frame. A first rack is meshed on one side of the first gear, and the upper end of the first rack is elastically connected to the first sliding bracket through a second spring.

2. The egg conveying device for cage rearing equipment according to claim 1, characterized in that: A toggle plate is provided on the other side of the egg feeding port. A third rotating shaft is rotatably connected to the conveyor frame. The toggle plate is elastically connected to the third rotating shaft through a ninth spring. One end of the toggle plate is provided with an abutting inclined surface. A second gear is fixed on the third rotating shaft. The second gear is meshed with a second rack. A third guide rod is slidably connected to the second rack. The third guide rod is fixed on the conveyor frame. The second rack is elastically connected to the conveyor frame through a third spring.

3. The egg conveying device for cage rearing equipment according to claim 2, characterized in that: One end of the second rack is fixed with a first abutting frame, and one end of the first abutting frame is fixed with an abutting strip. One end of the abutting strip abuts against the lower end of the first rack.

4. The egg conveying device for cage rearing equipment according to claim 3, characterized in that: A guide plate is provided on one side of the first contact frame, and a first contact rod is slidably connected to the guide plate. One end of the first contact rod abuts against the first contact frame, and a fourth spring is connected between the first contact rod and the guide plate.

5. The egg conveying device for cage rearing equipment according to claim 4, characterized in that: A second abutment frame is slidably connected to the bottom of the conveyor frame. The lower end of the connecting rod abuts against the second abutment frame. A fifth spring connects the second abutment frame and the conveyor frame. A buffer plate is slidably connected to one side of the conveyor frame. A fourth guide rod is fixed on the buffer plate. The fourth guide rod is elastically connected to the conveyor frame through a sixth spring. One end of the second abutment frame abuts against a rocker plate, and one end of the rocker plate abuts against the fourth guide rod. The rocker plate is elastically connected to the conveyor frame through a second torsion spring.

6. The egg conveying device for cage rearing equipment according to claim 5, characterized in that: A piston cylinder is fixed to one side of the rocker, and a piston plate is slidably connected inside the piston cylinder. A piston rod is fixed to one side of the piston plate, and a seventh spring is connected between the piston plate and the piston cylinder. An air bladder is fixed to the buffer plate, and the air outlet of the piston cylinder is connected to the air bladder through a pipe.

7. The egg conveying device for cage rearing equipment according to claim 6, characterized in that: A strip-shaped slot is provided at the bottom of the conveying trough. Several third gears are installed in the strip-shaped slot. The third gears are fixed to one end of the second guide rod. A third rack that meshes with the third gears is installed in the strip-shaped slot. The third rack is elastically connected to the conveying trough through an eighth spring. A second abutment rod is fixed on the third rack. Several third abutment rods are fixed below the first rotating shaft.

8. The egg conveying device for cage rearing equipment according to claim 7, characterized in that: The surface of the second guide rod is provided with several circumferentially distributed protrusions, and several brush strips are fixed below the conveying groove, with the brush strips abutting against the second guide rod.

Citation Information

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