Anti-bonding device based on pet feed processing and conveying
The combined design of the receiving shovel and receiving tray solves the problem of pet food sticking and breaking during transportation, achieving efficient particle separation and buffering, and improving the quality of feed collection.
Patent Information
- Application Number
- CN202520565822.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-28
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-03-28
AI Technical Summary
In existing technologies, pet food tends to stick to the conveyor belt during transportation, and the separation effect of cleaning brushes is not good, resulting in broken feed particles and affecting processing quality.
The design combines a receiving shovel and a receiving tray. The receiving shovel automatically separates feed particles that are stuck to the conveyor belt and screens the crushed particles through the screening holes. At the same time, a discharge buffer baffle is set on the receiving tray to reduce the impact of particles and prevent breakage.
It effectively prevents feed pellets from sticking together on the conveyor belt, improves the quality of feed collection, reduces breakage, and enhances processing efficiency.
Smart Images

Figure CN223721947U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to pet feed processing technical field, especially in kind based on pet feed processing and prevent sticking device of conveying. BACKGROUND
[0002] When pet feed is processed, raw materials form porous puffed particles through high-temperature and high-pressure treatment, which significantly improves the palatability and digestibility of the feed, and also achieves sterilization. The conveying system is responsible for efficiently and safely conveying the puffed feed to subsequent processes.
[0003] For example, a patent with the name "a feed conveying and continuously cleaning scraper" and the authorization announcement number CN221955139U has a cleaning frame fixedly connected to the bottom of the scraper shell and located on one side of the discharge hopper. The inside of the cleaning frame is provided with a cleaning mechanism. The cleaning mechanism includes a cleaning rod, one end of the cleaning rod is rotatably connected to the rear part of the inner cavity of the cleaning frame through a bearing, the other end of the cleaning rod penetrates the cleaning frame and extends to the outside of the cleaning frame, the outer surface of the cleaning rod and the inside of the cleaning frame are fixedly connected with a cleaning sleeve, and the outer surface of the cleaning sleeve is fixedly connected with a plurality of cleaning brushes matched with the conveying belt.
[0004] As the same as the above application, when pet feed is conveyed in the prior art, pet feed is prone to stick to the conveying belt, the cleaning brush has poor effect on cleaning and separating the feed, cannot ensure complete separation of the stuck feed, and easily causes the feed particles to be broken when the feed is cleaned, which affects the quality of pet feed processing. INVENTION CONTENTS
[0005] The utility model aims at overcoming the prior art that when pet feed is conveyed, pet feed is prone to stick to the conveying belt, the cleaning brush has poor effect on cleaning and separating the feed, cannot ensure complete separation of the stuck feed, and easily causes the feed particles to be broken when the feed is cleaned, which affects the quality of pet feed processing, and provides a pet feed processing and conveying based on the anti-sticking device. The pet feed particles stuck to the conveying belt are automatically separated and discharged by the material receiving shovel plate attached to the conveying belt, the feed particles are prevented from sticking to the conveying belt, the separated pet feed is conveyed to the material receiving tray, at this time, the screening holes in the material receiving tray can automatically screen and remove the broken feed particles, so as to facilitate the recycling of the broken feed and improve the quality of the collected feed.
[0006] To achieve the above purpose, the utility model adopts the technical scheme:
[0007] The utility model discloses a kind of anti-bonding devices based on pet feed processing and conveying, including conveying mechanism, conveying belt for conveying feed is rotatably arranged in the conveying mechanism, further including blanking mechanism;
[0008] The blanking mechanism includes a receiving pallet, a receiving shovel plate is formed on the front side of the receiving pallet, the end of the receiving shovel plate is abutted and attached to the conveying belt to separate and discharge the pet feed particles bonded to the conveying belt, and a screening hole is uniformly provided on the receiving pallet; Specifically, when the pet feed is conveyed to the discharge end of the conveying mechanism, the receiving shovel plate attached to the conveying belt automatically separates and discharges the pet feed particles bonded to the conveying belt, preventing the pet feed particles from being bonded to the conveying belt. At the same time, the separated pet feed enters the receiving pallet for conveying down, and the screening hole on the receiving pallet can automatically screen and remove the broken feed particles to facilitate the recycling of the broken feed and improve the quality of the collected feed.
[0009] A plurality of discharge buffer baffles are movably embedded on the receiving pallet at equal intervals, and a driving mechanism is provided at the bottom of the receiving pallet, which is in transmission connection with the plurality of discharge buffer baffles and drives the plurality of discharge buffer baffles to alternately ascend and descend.
[0010] It should be noted that the separated feed particles are prone to impact and collision when being conveyed through the receiving pallet, resulting in the breakage of pet feed. By providing a plurality of discharge buffer baffles on the receiving pallet and simultaneously providing a driving mechanism to drive the plurality of discharge buffer baffles to alternately ascend and descend, the pet feed conveyed on the receiving pallet is buffered and blocked, the impact and expansion of the feed particles are slowed down, the impact and breakage of the pet feed are prevented, and the quality of the feed processing is further improved.
[0011] As a preferred embodiment, the conveying mechanism includes a conveying frame, conveying rollers are symmetrically rotatably arranged on both sides of the conveying frame, and a conveying belt is rotatably sleeved between the two conveying rollers, a conveying motor is fixed to one end of the conveying frame, and the conveying motor is in transmission connection with one conveying roller through a coupling, and support frames are symmetrically fixed to the bottom of the conveying frame. One conveying roller is driven to rotate by the conveying motor, and the conveying belt is driven to rotate by the other conveying roller at the same time to convey the pet feed on the conveying belt.
[0012] As preferred, the receiving plate is fixed at the outlet end of the conveying mechanism through a connecting frame, specifically, the connecting frame comprises connecting side plates which are screw-fixed at the end of the conveying frame, and the connecting side plates are fixedly connected with the receiving plate through connecting rods, a plurality of strip-shaped openings are equidistantly formed on the receiving plate along the length direction thereof, and the discharge buffer baffle is movably embedded in the strip-shaped openings. The buffer baffle is embedded in the strip-shaped openings for lifting adjustment, so as to buffer and block the upper granular feed of the receiving plate, and prevent the feed granules from directly rolling and impacting and breaking.
[0013] As preferred, side plates are formed on both sides of the receiving plate, and limiting openings are formed on the side plates, limiting connecting columns are fixed at the top ends of both sides of the discharge buffer baffle, and the limiting connecting columns are slidably embedded in the limiting openings. By forming the limiting openings on the side plates on both sides of the receiving plate, and fixing the limiting connecting columns at both sides of the discharge buffer baffle, and slidably embedding the limiting connecting columns in the limiting openings, the lifting adjustment of the discharge buffer baffle is limited, the stability and smoothness of the lifting adjustment of the discharge buffer baffle are improved, and the jamming is prevented.
[0014] As preferred, the driving mechanism comprises a rotating shaft which is rotatably arranged at the center position of the bottom of the receiving plate, a plurality of eccentric cams are fixedly sleeved on the rotating shaft, the positions of the eccentric cams correspond to the positions of the discharge buffer baffles one by one in up and down directions, and the convex portions of any two adjacent eccentric cams are distributed in a staggered manner.
[0015] As preferred, a driving motor is fixed at the bottom of the receiving plate, and the driving motor is drivingly connected with the rotating shaft through a shaft coupling. The rotating shaft is driven to rotate by the driving motor, the rotating shaft drives the plurality of eccentric cams to rotate, the eccentric cams drive the plurality of discharge buffer baffles to alternately lift and adjust, so as to buffer and block the upper granular feed of the receiving plate, and prevent the feed granules from directly rolling and impacting and breaking.
[0016] As preferred, flanges are formed on both sides of the eccentric cam, a guide groove is formed between the two flanges, and the width of the guide groove is matched with the thickness of the discharge buffer baffle. The flanges are formed on both sides of the eccentric cam, so that the bottom of the discharge buffer baffle is embedded in the guide groove formed between the two flanges, thereby improving the stability of the transmission cooperation between the discharge buffer baffle and the eccentric cam.
[0017] Compared with the prior art, the present invention has the following beneficial effects: This anti-sticking device based on pet food processing and conveying automatically separates and discharges pet food particles stuck to the conveyor belt through a receiving shovel plate attached to the conveyor belt, preventing the feed particles from sticking to the conveyor belt. At the same time, the separated pet food enters the receiving tray for conveying down. At this time, the screening holes on the receiving tray can automatically screen and remove the broken feed particles, so as to facilitate the recycling of broken feed and improve the quality of the collected feed.
[0018] By installing multiple discharge buffer baffles on the receiving tray and simultaneously driving the baffles to alternately raise and lower, the pet food conveyed on the receiving tray is buffered and blocked, reducing the impact expansion of feed particles and preventing the pet food from breaking due to impact and collision, thereby further improving the quality of feed processing. Attached Figure Description
[0019] Figure 1 This utility model provides an overall structural schematic diagram of an anti-sticking device based on pet food processing and conveying.
[0020] Figure 2 This is a structural diagram of the feeding mechanism in this utility model;
[0021] Figure 3 This is a side view of the feeding mechanism in this utility model;
[0022] Figure 4 This is a structural diagram of the feeding buffer baffle in this utility model;
[0023] Figure 5 This is a structural diagram of the connecting frame installation in this utility model.
[0024] Reference numerals: 1. Conveyor frame; 2. Conveyor roller; 3. Conveyor belt; 4. Support frame; 5. Conveyor motor; 6. Connecting frame; 61. Connecting side plate; 62. Connecting rod; 7. Receiving shovel plate; 8. Receiving tray plate; 81. Strip opening; 82. Limiting opening; 9. Discharge buffer baffle; 91. Limiting connecting column; 10. Drive mechanism; 101. Rotating shaft; 102. Eccentric cam; 103. Drive motor; 104. Flange; 105. Guide groove. Detailed Implementation
[0025] The following is in conjunction with the appendix Figure 1 -Appendix Figure 5, further illustrate the specific embodiment of the utility model discloses a kind of based on pet feed processing and conveying's anti-adhesion device, overcome prior art, when pet feed is conveyed, for pet feed is easy to bond on conveying belt, the effect of separating feed is poor by cleaning brush to clean pet feed, cannot ensure that the bonded feed is completely separated, and when cleaning feed, it is easy to cause feed particle to break, affect the quality of pet feed processing, provide a kind of based on pet feed processing and conveying's anti-bonding device, by the material receiving shovel plate that is attached on conveying belt automatically separates and discharges pet feed particle that is bonded on conveying belt, prevent feed particle from bonding on conveying belt, simultaneously, pet feed after separation enters material receiving pallet and is conveyed down, at this time, the screen hole on material receiving pallet can automatically screen broken feed particle and remove, to facilitate the recycling of broken feed, improve the quality of collected feed.The utility model discloses a kind of based on pet feed processing and conveying's anti-bonding device is not limited to the description of the following embodiment.
[0026] A kind of based on pet feed processing and conveying's anti-bonding device, including conveying mechanism, the conveying belt 3 for conveying feed is rotationally arranged in the conveying mechanism, further including discharging mechanism;
[0027] Discharging mechanism includes material receiving pallet 8, the front side of material receiving pallet 8 is shaped with material receiving shovel plate 7, the end of material receiving shovel plate 7 is attached to conveying belt 3 to realize the separation and discharge of feed bonded on conveying belt 3, and screen hole is evenly provided on material receiving pallet 8;Specifically, when pet feed is conveyed in conveying mechanism, the material receiving shovel plate 7 attached to conveying belt 3 automatically separates and discharges pet feed particle bonded on conveying belt 3 at the discharging end of conveying mechanism, prevents feed particle from bonding on conveying belt 3, simultaneously, pet feed after separation enters material receiving pallet 8 and is conveyed down, at this time, the screen hole on material receiving pallet 8 can automatically screen broken feed particle and remove, to facilitate the recycling of broken feed, improve the quality of collected feed.
[0028] Multiple discharging buffer baffle plates 9 are movably embedded on material receiving pallet 8 at equal intervals, and the bottom of material receiving pallet 8 is provided with driving mechanism 10, which is drivingly connected with multiple discharging buffer baffle plates 9 and drives multiple discharging buffer baffle plates 9 to alternately rise and fall.
[0029] It should be noted that the separated feed particles are prone to impact and collision when being conveyed by material receiving pallet 8, which causes pet feed to break, by providing multiple discharging buffer baffle plates 9 on material receiving pallet, and simultaneously providing driving mechanism 10 to drive multiple discharging buffer baffle plates 9 to alternately rise and fall, the pet feed conveyed on material receiving pallet 8 is buffered and blocked, the impact and expansion of feed particles are slowed down, pet feed impact and collision breakage are prevented, and the quality of feed processing is further improved.
[0030] The conveying mechanism comprises a conveying frame 1, conveying rollers 2 symmetrically arranged on both sides of the conveying frame 1, and a conveying belt 3 rotatably sleeved between the two conveying rollers 2. One end of the conveying frame 1 is fixedly connected with a conveying motor 5, and the conveying motor 5 is in transmission connection with one conveying roller 2 through a shaft coupling. The bottom of the conveying frame 1 is fixedly connected with support frames 4 symmetrically arranged on both sides. The conveying motor 5 drives one conveying roller 2 to rotate, and the other conveying roller 2 drives the conveying belt 3 to rotate, so that the pet feed on the conveying belt 3 is conveyed.
[0031] Further, the receiving plate 8 is fixed at the outlet end of the conveying mechanism through the connecting frame 6. Specifically, the connecting frame 6 comprises connecting side plates 61 which are screw-fixed at the end of the conveying frame 1, and the connecting side plates 61 are fixedly connected with the receiving plate 8 through connecting rods 62. A plurality of strip-shaped openings 81 are equidistantly arranged along the length direction of the receiving plate 8, and the discharge buffer baffle 9 is movably arranged in the strip-shaped openings 81. The discharge buffer baffle 9 is movably arranged in the strip-shaped openings 81 to buffer and block the granular feed on the receiving plate 8, so as to prevent the feed from being directly rolled and impacted to be broken.
[0032] Further, side plates are formed on both sides of the receiving plate 8, and limiting openings 82 are arranged on the side plates. Limiting connecting columns 91 are fixedly arranged at the top of both sides of the discharge buffer baffle 9, and the limiting connecting columns 91 are movably arranged in the limiting openings 82. The limiting openings 82 are arranged on the side plates of both sides of the receiving plate 8, and the limiting connecting columns 91 are fixedly arranged at both sides of the discharge buffer baffle 9. The limiting connecting columns 91 are movably arranged in the limiting openings 82, so as to limit the lifting adjustment of the discharge buffer baffle 9, improve the stability and smoothness of the lifting adjustment of the discharge buffer baffle 9, and prevent the discharge buffer baffle 9 from being jammed.
[0033] The driving mechanism 10 comprises a rotating shaft 101 rotatably arranged at the center position of the bottom of the receiving plate 8. A plurality of eccentric cams 102 are fixedly sleeved on the rotating shaft 101. The positions of the eccentric cams 102 correspond to the positions of the discharge buffer baffles 9 in a one-to-one manner. The convex portions of any two adjacent eccentric cams 102 are distributed in a staggered manner. A driving motor 103 is fixedly arranged at the bottom of the receiving plate 8, and the driving motor 103 is in transmission connection with the rotating shaft 101 through a shaft coupling. The driving motor 103 drives the rotating shaft 101 to rotate, and the rotating shaft 101 drives the plurality of eccentric cams 102 to rotate. The eccentric cams 102 drive the plurality of discharge buffer baffles 9 to alternately lift and adjust, so as to buffer and block the granular feed on the receiving plate 8, and prevent the feed from being directly rolled and impacted to be broken.
[0034] Further, flanges 104 are formed on both sides of eccentric cam 102, and a guide groove 105 is formed between the two flanges 104, the width of the guide groove 105 being matched with the thickness of the blanking buffer baffle 9. The flanges 104 are formed on both sides of the eccentric cam 102, so that the bottom of the blanking buffer baffle 9 is embedded in the guide groove 105 formed by the two flanges 104, thereby improving the stability of the transmission cooperation between the blanking buffer baffle 9 and the eccentric cam 102.
[0035] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.
Claims
1. A pet feed processing and conveying based anti-sticking device comprising a conveying mechanism, a conveying belt (3) for conveying the feed is rotatably arranged in the conveying mechanism, characterized in that: Also include the blanking mechanism; The blanking mechanism includes a receiving pallet (8), the front side of the receiving pallet (8) is shaped with a receiving shovel plate (7), the end of the receiving shovel plate (7) is abutted and fitted to the conveying belt (3) to realize the separation and blanking of the feed adhered to the conveying belt (3), and the receiving pallet (8) is uniformly provided with screening holes; A plurality of blanking buffer baffle plates (9) are movably embedded on the receiving pallet (8) at equal intervals, and a driving mechanism (10) is arranged on the bottom of the receiving pallet (8), and the driving mechanism (10) is in driving connection with the plurality of blanking buffer baffle plates (9) and drives the plurality of blanking buffer baffle plates (9) to alternately lift and adjust.
2. The anti-sticking device based on pet feed processing and conveying according to claim 1, characterized in that: The conveying mechanism includes a conveying rack (1), conveying rollers (2) are symmetrically arranged on both sides of the conveying rack (1), and a conveying belt (3) is rotatably arranged between the two conveying rollers (2).
3. The anti-sticking device based on pet feed processing and conveying according to claim 2, characterized in that: One end of the conveying rack (1) is fixedly connected with a conveying motor (5), and the conveying motor (5) is in driving connection with one of the conveying rollers (2) through a shaft coupling, and the bottom of the conveying rack (1) is fixedly connected with support frames (4) on both sides.
4. The anti-sticking device based on pet feed processing and conveying according to claim 1, characterized in that: The receiving pallet (8) is fixed to the outlet end of the conveying mechanism through a connecting frame (6), a plurality of strip-shaped openings (81) are formed on the receiving pallet (8) at equal intervals along the length direction of the receiving pallet (8), and the blanking buffer baffle plates (9) are movably embedded in the strip-shaped openings (81).
5. The anti-sticking device based on pet feed processing and conveying according to claim 1, characterized in that: Side plates are formed on both sides of the receiving pallet (8), and limiting openings (82) are formed in the side plates, limiting connecting columns (91) are fixed to the top ends of the two sides of the blanking buffer baffle plates (9), and the limiting connecting columns (91) are slidably embedded in the limiting openings (82).
6. The anti-sticking device based on pet feed processing and conveying according to claim 1, characterized in that: The driving mechanism (10) includes a rotating shaft (101) rotatably arranged at the center position of the bottom of the receiving pallet (8), a plurality of eccentric cams (102) are fixedly sleeved on the rotating shaft (101), the positions of the eccentric cams (102) correspond one by one to the positions of the blanking buffer baffle plates (9) in up and down directions, and the convex portions of any two adjacent eccentric cams (102) are distributed in a staggered manner.
7. The anti-sticking device based on pet feed processing and conveying according to claim 6, characterized in that: A driving motor (103) is fixed to the bottom of the receiving pallet (8), and the driving motor (103) is in driving connection with the rotating shaft (101) through a shaft coupling.
8. The anti-sticking device based on pet feed processing and conveying according to claim 6, characterized in that: Flanges (104) are formed on both sides of the eccentric cam (102), and a guide groove (105) is formed between the two flanges (104), and the width of the guide groove (105) is matched with the thickness of the blanking buffer baffle plate (9).
Citation Information
Patent Citations
Continuous cleaning scraper for feed conveying
CN221955139U