Crushing and drying integrated pig feed processing device

By designing an integrated pig feed processing device for crushing and drying, the combination of rollers, deflectors, filter box and dryer is used to solve the problems of incomplete crushing and moisture in the prior art, and efficient crushing, filtration and drying are achieved, and production quality and storage conditions are improved.

CN120155263APending Publication Date: 2025-06-17苏州登高生物科技有限公司
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Patent Information

Application Number
CN202510646774.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-20
Publication Date
2025-06-17

AI Technical Summary

Technical Problem

The existing pig feed processing equipment is difficult to effectively remove large particles during the crushing process, resulting in a decrease in production quality, the moisture carried by the material affects production quality and storage, and secondary crushing increases production costs.

Method used

A pig feed processing device integrating crushing and drying is designed, using two sets of rollers and deflectors in different directions, combined with a filter box and a dryer to realize the integrated processing of crushing, filtration and drying.

Benefits of technology

The crushing efficiency and product quality are improved, secondary crushing is avoided through the filtration of the filter box, energy consumption is reduced, and the moisture content of the material is reduced through the dryer, improving storage conditions.

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Abstract

The invention relates to the technical field of pig feed processing devices, and discloses a smashing and drying integrated pig feed processing device which comprises a shell, a feeding port is formed in the top of the shell, a processing chamber top sealing plate is arranged at the bottom of the feeding port, a processing chamber is arranged in the shell, a smashing device is installed in the processing chamber, and the smashing device is arranged in the processing chamber. A first transmission gear set and a second transmission gear set are arranged outside the smashing device rotating shaft. According to the pig feed processing device, the upper and lower groups of rolling wheels in different directions are arranged, meanwhile, through cooperation of a flow guide plate, the smashing efficiency of the pig feed processing device can be improved, the processing quality of the pig feed processing device is improved, and through cooperation of a filtering box body, large particles which are not completely smashed can be filtered; and the materials discharged by the spiral conveying device are completely crushed qualified products, so that the production and processing quality of the device is improved, the problem of secondary or multiple crushing processing in the later period can be avoided, and the problem of energy consumption is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of pig feed processing devices, and specifically relates to a pig feed processing device integrating crushing and drying. Background Art

[0002] Pig feed is usually composed of protein feed, energy feed, roughage, green feed, silage, mineral feed, and feed additives for feeding domestic pigs. The main steps in the production and processing of pig feed include raw material procurement, raw material cleaning, crushing, batching, mixing, etc. At present, when crushing and processing pig feed raw materials, the moisture carried by the raw materials will be mixed in the crushed materials, affecting subsequent processing steps, and it is not convenient for storage, prone to mildew, and will also affect the quality of pig feed production. Moreover, the existing pig feed crushing and processing devices are not convenient for separating particles of different sizes, resulting in uneven quality of production materials. And secondary crushing will increase production costs, causing inconvenience to users. Summary of the Invention

[0003] Aiming at the deficiencies existing in the existing pig feed processing devices during use in the background art, the present invention provides a pig feed processing device integrating crushing and drying, which has the advantages of integrating crushing and drying, and solves the technical problems of reduced production quality due to large particles in the crushed products, and the moisture carried by the materials affecting production quality and storage as mentioned in the above background art.

[0004] The present invention provides the following technical solution: A pig feed processing device integrating crushing and drying, including a housing. There is a feed inlet at the top of the housing, and a top sealing plate of the processing chamber is arranged at the bottom of the feed inlet. A processing chamber is arranged inside the housing, and a crushing device is installed inside the processing chamber. First and second transmission gear sets are respectively arranged outside the rotating shaft of the crushing device. A filter box body is arranged below the crushing device, and a photosensitive sensor controller is installed on the right side of the filter box body. The photosensitive sensor controller controls the operation of the crushing device. A dryer is arranged on the left side of the filter box body. A vibration connection clamp is connected to the top of the filter box body. A spiral conveyor device is arranged below the filter box body. A connecting block installed on the housing is arranged on the right side of the filter box body. The connecting block is connected through a torsion spring shaft and will not deflect due to the mass of the filter box body itself, and can support the mass of the filter box body. A convex block is movably inserted inside the connecting block. The convex block is connected to the inside of the connecting block through a spring. In the natural state, the convex block is located inside the connecting block. At this time, the socket can be sleeved outside the connecting block. The connection between the convex block and the top sealing plate of the processing chamber is sealed through a sealing connection layer. The sealing connection layer has elasticity, and a stable gas with a large change in thermal expansion is filled between the sealing connection layer and the inside of the convex block.

[0005] Preferably, a slot is formed on the side of the housing. The slot is located outside the dryer, and upper and lower sealing plates are respectively connected to the positions on the upper and lower sides of the slot of the housing. The upper and lower sealing plates are elastic structures. They abut against the upper and lower sides of the filter cartridge body and seal the gap between the filter cartridge body and the interior of the housing. At the same time, the upper and lower sealing plates can stretch and contract as the filter cartridge body moves up and down without affecting the up and down movement of the filter cartridge body.

[0006] Preferably, a side sealing plate is connected to the inner wall of the processing chamber. The side sealing plate is located on one side of the connection between the processing chamber and the feed inlet. A limiting block is connected to the position of the processing chamber below the top sealing plate of the processing chamber. The limiting block can limit the movement range of the top sealing plate to prevent the top sealing plate from contacting the crushing device. A diversion plate is arranged at the position of the processing chamber below the crushing device. The diversion plates are symmetrically distributed and are in a plate-like structure inclined downward to the middle of the processing chamber.

[0007] Preferably, the dryer is installed at the position of the slot through a hinge shaft, and a working lamp is installed at the position of the dryer inside the housing. The working lamp lights up when the dryer is working. The light of the working lamp can pass through the filter holes of the filter cartridge body and reach the photosensitive sensing controller. When the light of the working lamp cannot reach the photosensitive sensing controller, the dryer stops working.

[0008] Preferably, the filter cartridge body is movably inserted into the slot, and a socket is formed on the right side of the filter cartridge body. The socket is inserted outside the connecting block. The filter cartridge body is composed of a top filter plate and a filter bin. The top filter plate is located at the top of the filter cartridge body, and the inner diameter of the mesh holes on the top filter plate is larger than the outer diameter of the raw material. The filter bin can filter the crushed materials. The filter bin is composed of a plurality of uniformly distributed cylindrical filter meshes. The bottom of the filter bin is located below the photosensitive sensing controller, so that after the filter bin collects enough coarse materials, that is, after the device has worked for a considerable period of time, the device can stop.

[0009] Preferably, the top sealing plate of the processing chamber is connected to the inside of the processing chamber through a torsion spring shaft, and the top sealing plate of the processing chamber is located on the left side of the side sealing plate. In the natural state, the top sealing plate of the processing chamber and the side sealing plate jointly seal the top inlet of the processing chamber. One side of the top of the top sealing plate of the processing chamber is connected with a connecting rod, and the connecting rod extends to the outside of the housing.

[0010] Preferably, the first transmission gear set is connected to the rotating shaft of the crushing device located outside the housing through a gear belt and a gear. The number of teeth of the driven gear of the first transmission gear set is greater than that of the driving gear. A first movable rod is connected to the outside of the first transmission gear set. When the first movable rod rotates, it will pass by the connecting rod and cause the connecting rod to deflect periodically.

[0011] Preferably, the structure of the second transmission gear set is the same as that of the first transmission gear set. The second transmission gear set is driven by the crushing device of the lower group. A second movable rod is connected to the outside of the second transmission gear set. When the second movable rod rotates with the second transmission gear set, it will pass through the vibration connection clip and cause the vibration connection clip to perform periodic lifting and lowering.

[0012] Preferably, the vibration connection clip is connected to the outside of the housing through an elastic telescopic rod, and the bottom of the vibration connection clip is movably clamped on the top of the filter box body.

[0013] The present invention has the following beneficial effects: 1. By setting upper and lower groups of rollers in different directions and cooperating with the diversion plate, the present invention can improve the crushing efficiency of the pig feed processing device, improve its processing quality, and through the cooperation of the filter box body, it can filter out larger particles that are not completely crushed, so that the material discharged by the screw conveyor is a qualified product with complete crushing, thereby improving the production and processing quality of the device, and can also avoid the problem of secondary or multiple crushing and processing in the later stage, reducing the energy consumption problem.

[0014] 2. Through the cooperation of the dryer, the present invention can dry the crushed material, avoid the problem that the moisture carried by the material affects subsequent processing or storage, and the movable installation of the dryer can facilitate the later disassembly and cleaning of the filter box body, providing convenience for the maintenance and other operations of the device; and through the cooperation of the connecting block, it can improve the stability of the position of the filter box body when the dryer is working, and the filter box body can be taken out only when the device stops working and the temperature inside the filter box body decreases, improving the safety of the device during use.

[0015] 3. Through the cooperation of the photosensitive sensor controller and the dryer, the present invention can cut off the power supply of the device after the filtered material in the filter box body accumulates to a certain extent, so as to ensure the working efficiency of the device, facilitate its management and use, and through the cooperation of the gear set, it can realize automatic feeding and the vibration of the filter box body simultaneously when the motor of the crushing mechanism works, avoid the problem of crushing dust in the machine, is beneficial to the maintenance of the production environment, and can also promote the filtering effect of the filter box body on the material, improving the production efficiency. Description of the Drawings

[0016] Figure 1 It is a schematic diagram of the overall structure of the invention; Figure 2 It is a schematic diagram of the side structure of the present invention; Figure 3 It is a partial sectional structure schematic diagram of the present invention; Figure 4 It is the present invention Figure 3 The partial enlarged schematic diagram of the structure at A in the figure; Figure 5 Schematic diagram of the structure outside the present invention; Figure 6 For the present invention Figure 5 Partial enlarged schematic diagram of the structure at position B in the present invention; Figure 7 Schematic diagram of the structure of the filter box body in the present invention.

[0017] In the figure: 1. Shell; 101. Upper sealing plate; 102. Lower sealing plate; 103. Slot; 2. Processing chamber; 21. Limit block; 22. Deflector; 23. Side sealing plate; 3. Top sealing plate; 31. Connecting rod; 4. Filter box body; 41. Top filter plate; 42. Filter bin; 43. Socket; 5. Dryer; 51. Working lamp; 6. Photosensitive sensing controller; 7. First transmission gear set; 71. First movable rod; 8. Second transmission gear set; 81. Second movable rod; 9. Vibration connecting clip; 10. Screw conveyor; 11. Feed inlet; 12. Crushing device; 13. Connecting block; 131. Convex block; 132. Sealing connection layer. Specific embodiments

[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with 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. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0019] Please refer to Figure 3 , a pig feed processing device integrating crushing and drying. The pig feed processing device includes a shell 1. A processing chamber 2 is arranged inside the shell 1. Two groups of crushing devices 12 are installed in the processing chamber 2 in an up-and-down and different-direction arrangement. The crushing devices 12 are controlled by an external driving device to work, achieving the effect of material crushing. A deflector 22 is arranged between the crushing devices 12, which can play a guiding role, is beneficial to the secondary crushing of materials, improves the crushing efficiency of the device, and improves the production quality; below the crushing device 12, there is a slot 103 opened on the side of the shell 1. A filter box body 4 is inserted into the slot 103. Please refer to Figure 4 , at the bottom of the processing chamber 2, there is a connecting block 13 installed on the inner wall of the shell 1. The connecting block 13 is connected by a torsion spring shaft. The connecting block 13 is in a horizontal state in its natural state. Please refer to Figure 7 , a socket 43 is opened at the rear of the filter box body 4. The connecting block 13 is movably inserted into the socket 43. Please refer to Figure 2, an elastic telescopic rod is connected to the outside of the housing 1 with a vibration connection clip 9. The bottom of the vibration connection clip 9 is movably sleeved on the top of the filter cartridge body 4 located outside the housing 1, so as to limit the position of the filter cartridge body 4. And the connecting block 13 will not deflect due to the mass of the filter cartridge body 4 itself and can support the mass of the filter cartridge body 4. The filter cartridge body 4 is composed of a top filter plate 41 and a filter chamber 42. The two sides of the top filter plate 41 are inclined downward slopes, and the holes on the top filter plate 41 are relatively large and do not filter the material. It can divert the material produced by the crushing device 12 to ensure that the material can enter the filter chamber 42 evenly. The filter chamber 42 is a sunken structure, and the outside of the filter chamber 42 is provided with multiple mesh holes, which can filter the crushed material, so as to filter out the material that is not completely crushed. Through the function of the filter cartridge body 4, the filtering effect on the material can be achieved, the production quality of the device can be improved, and at the same time, the problem of incomplete crushing that requires re-crushing can be avoided. Only the material filtered by the filter cartridge body 4 needs to be crushed, reducing the labor of manual and machine, and saving energy consumption.

[0020] Please refer to Figures 5 - 6 , a gear is connected to the outside of the rotating shaft on one side of the crushing device 12. This gear is linked with the second transmission gear set 8 connected to the outside of the housing 1 through a gear belt. And the number of gears in the second transmission gear set 8 is much larger than the driving gear connected to the rotating shaft of the crushing device 12. When the crushing device 12 rotates at a high speed, it can drive the second transmission gear set 8 to rotate relatively slowly. A second movable rod 81 is connected to the outside of the second transmission gear set 8. The second movable rod 81 passes through the vibration connection clip 9 as the second transmission gear set 8 rotates, so that the vibration connection clip 9 can move up and down periodically, and the vibration connection clip 9 can drive the filter cartridge body 4 to vibrate up and down, thereby promoting the screening efficiency of the filter cartridge body 4 for the material and improving the production efficiency and quality of the device.

[0021] Please refer to Figures 2 - 3, the dryer 5 is installed in the slot 103 through a hinge shaft, and a buckle corresponding to the housing 1 is provided on the outer side of the dryer 5, which facilitates the opening and closing and fixing of the dryer 5, and also enables the convenient removal of the filter cartridge 4, providing convenience for the regular cleaning of the filter cartridge 4. Moreover, by installing the dryer 5, the material passing through the filter cartridge 4 can be dried, further evaporating the original internal moisture, facilitating the next production operation, and also greatly reducing the risk of mildew during material storage, which is beneficial to improving the production quality; a photosensitive sensor controller 6 is installed at a position on the inner wall of the housing 1 opposite to the dryer 5. The photosensitive sensor controller 6 controls the operation of the crushing device 12 and the dryer 5. A working lamp 51 is installed at a position of the dryer 5 inside the housing 1. When the dryer 5 works, the working lamp 51 lights up, and the light of the working lamp 51 can pass through the top filter plate 41 to reach the photosensitive sensor controller 6, enabling the photosensitive sensor controller 6 to start the driving device of the crushing device 12 after detecting the light. When the filtered material accumulated in the top filter plate 41 affects the light path between the working lamp 51 and the photosensitive sensor controller 6, the filtering efficiency of the filter cartridge 4 is affected at this time, and the photosensitive sensor controller 6 cannot receive the corresponding light of the working lamp 51. At this time, the photosensitive sensor controller 6 controls the crushing device 12 and the dryer 5 to stop working, which can facilitate the removal of the filter cartridge 4 and also ensure the processing efficiency of the device.

[0022] Please refer to Figures 3 - 4 , a convex block 131 is movably inserted into the connecting block 13. The convex block 131 is connected inside the connecting block 13 through a spring. In the natural state, the convex block 131 is located inside the connecting block 13. At this time, the socket 43 can be sleeved outside the connecting block 13. The connection between the convex block 131 and the top sealing plate 3 of the processing chamber is hermetically connected through a sealing connection layer 132. The sealing connection layer 132 has elasticity, and a stable gas with a large change in thermal expansion is filled between the sealing connection layer 132 and the inside of the convex block 131. When the dryer 5 starts to work, the dryer 5 generates hot air, and the temperature inside the housing 1 rises. The air inside the convex block 131 expands due to heat, enabling the convex block 131 to extend along the connecting block 13, realizing the position limitation of the connection position between the connecting block 13 and the filter cartridge 4, and ensuring the stability of the filter cartridge 4 during operation vibration. After the dryer 5 stops working, after the air inside the housing 1 and the convex block 131 cools down, the convex block 131 retracts into the connecting block 13 under the action of the internal connecting spring. Only at this time can the filter cartridge 4 be taken out, which can improve the safety of the device during use and avoid the problem of hot air scalding the human body.

[0023] Please refer to Figures 1 - 3, a feed inlet 11 is provided at the top of the housing 1 for the entry of materials. At the bottom inside the feed inlet 11, there is a side sealing plate 23 connected to the top inside the processing chamber 2. The part of the side sealing plate 23 near the middle of the processing chamber 2 slopes downward. On the left side of the side sealing plate 23, there is a top sealing plate 3 of the processing chamber connected to the inside of the processing chamber 2 through a torsion spring shaft. In the natural state, the top sealing plate 3 of the processing chamber cooperates with the side sealing plate 23 to close the top inlet of the processing chamber 2. At the same time, a connecting rod 31 is connected to the top of the top sealing plate 3 of the processing chamber. The connecting rod 31 passes through the housing 1 and extends to the outside of the housing 1. A first transmission gear set 7 is installed outside the housing 1. The structure of the first transmission gear set 7 is the same as that of the second transmission gear set 8, and the first transmission gear set 7 is driven by the rotating shaft of the first group of crushing devices 12 above the processing chamber 2. A first movable rod 71 is connected to the outside of the first transmission gear set 7. When the crushing device 12 rotates slowly, the first movable rod 71 can coincide with the connecting rod 31 and cause the top sealing plate 3 of the processing chamber to deflect, so as to realize automatic feeding, greatly reduce the contact between the working space inside the processing chamber 2 and the outside, reduce the dust problem, and be beneficial to environmental protection. At the same time, the opening and closing of the top sealing plate 3 of the processing chamber are affected by the working state of the crushing device 12. Therefore, feeding can be stopped while the device stops working, which is convenient for the use and management of this pig feed processing device and provides convenience for users.

[0024] Please refer to Figure 2 , a screw conveyor 10 is installed at the bottom of the housing 1, which can convey the materials discharged from the filter box body 4 to the outside, facilitating the next process and the conveying of powder materials.

[0025] The working principle of the usage method of the present invention is as follows: Install the pig feed processing device in the corresponding working area, connect the power supply, and after starting the device, the power supply of the dryer 5 is connected and it starts to work, generating hot air to increase the temperature at the position of the filter box body 4. The temperature inside the connecting block 13 also rises. The air inside the convex block 131 expands due to heat and causes the convex block 131 to extend out of the connecting block 13. At the same time, the sealing connection layer 132 extends, making the filter box body 4 stuck on the connecting block 13. At the same time, the working lamp 51 lights up, and the light of the working lamp 51 passes through the filter bin 42 and acts on the photosensitive sensing controller 6. The photosensitive sensing controller 6 controls the driving device of the crushing device 12 to start working. The raw materials to be processed are put into the device from the feed inlet 11. The driving device connected to the outside of the crushing device 12 drives the two groups of crushing devices 12 to work. The rotating shaft of the crushing device 12 rotates and, through the speed reduction and transmission of the first transmission gear set 7 and the second transmission gear set 8, causes the first movable rod 71 to periodically pull the connecting rod 31, and the second movable rod 81 to periodically contact the vibration connecting clip 9, and makes the vibration connecting clip 9 vibrate up and down periodically. The connecting rod 31 deflects with the movement of the first movable rod 71 and makes the top sealing plate 3 of the processing chamber open and close as the crushing device 12 works. The raw materials in the feed inlet 11 enter the processing chamber 2 and are gradually crushed by the two groups of crushing devices 12, and then fall on the filter box body 4 along the diversion plate 22. The filter box body 4 vibrates up and down with the movement of the vibration connecting clip 9, so that the materials crushed by the crushing device 12 pass through the filtration of the filter box body 4 and enter the screw conveyor 10. After the device starts to work, the dryer 5 also starts to work. The dryer 5 generates hot air to dry the materials passing through the filter box body 4. The materials that have been crushed, dried, and filtered fall on the screw conveyor 10 and are conveyed out by the screw conveyor 10 and transported to the next production step. When the materials filtered in the top filter plate 41 are too many to affect the production progress, the materials accumulated in the top filter plate 41 block the path between the working lamp 51 and the photosensitive sensing controller 6. The photosensitive sensing controller 6 cannot detect the light of the working lamp 51, so it controls the power supply of the crushing device 12 and the dryer 5 to be disconnected. The crushing device 12 stops working, and the top sealing plate 3 of the processing chamber is also in a closed and stationary state. After the temperature in the processing chamber 2 cools down, the temperature of the filter box body 4 decreases, and the temperature of the air inside the connecting block 13 decreases, the convex block 131 returns to its original position under the action of the spring. At this time, turn on the dryer 5, then press the vibration connecting clip 9 and make it leave the filter box body 4, and then the filter box body 4 can be pulled out. After pouring out the coarser particles filtered in the filter box body 4, insert the filter box body 4 back into the slot 103, and make the socket 43 sleeved on the outside of the connecting block 13. The vibration connecting clip 9 clamps on the top of the filter box body 4 to realize the position limitation of the filter box body 4. Then turn off the dryer 5. At the same time, the gap between the filter box body 4 and the housing 1 is sealed by the upper sealing plate 101 and the lower sealing plate 102. The upper sealing plate 101 and the lower sealing plate 102 also contract as the filter box body 4 vibrates up and down, ensuring that the materials will not leak from the gap between the filter box body 4 and the housing 1.Nor will it affect the up-and-down vibration of the filter cartridge body 4.

[0026] It should be noted that in this article, relational terms such as first and second are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or also includes elements inherent to such process, method, article or device.

[0027] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand 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 pig feed processing device integrating crushing and drying, comprising a housing (1), characterized in that: The top of the shell (1) is provided with a feed port (11), the bottom of the feed port (11) is provided with a processing chamber top sealing plate (3), the inside of the shell (1) is provided with a processing chamber (2), the inside of the processing chamber (2) is provided with a crushing device (12), the outside of the rotating shaft of the crushing device (12) is provided with a first transmission gear set (7) and a second transmission gear set (8), a filter box (4) is provided below the crushing device (12), a photosensitive sensor controller (6) is installed on the right side of the filter box (4), a drying machine (5) is provided on the left side of the filter box (4), a vibration connection clamp (9) is connected to the top of the filter box (4), a spiral conveying device (10) is provided below the filter box (4), and a connection block (13) installed on the shell (1) is provided on the right side of the filter box (4).

2. The pig feed processing device integrating crushing and drying according to claim 1 is characterized in that: A slot (103) is provided on the side of the housing (1), the slot (103) being located outside the dryer (5), and the housing (1) is respectively connected to an upper sealing plate (101) and a lower sealing plate (102) at the upper and lower sides of the slot (103), the upper sealing plate (101) and the lower sealing plate (102) being elastic structures, the two being pressed against the upper and lower sides of the filter box body (4) and closing the gap between the filter box body (4) and the housing (1), and at the same time, the upper sealing plate (101) and the lower sealing plate (102) will expand and contract as the filter box body (4) moves up and down without affecting the up and down movement of the filter box body (4).

3. The pig feed processing device integrating crushing and drying according to claim 1 is characterized in that: The inner wall of the processing chamber (2) is connected to a side sealing plate (23), the side sealing plate (23) is located on one side of the connection between the processing chamber (2) and the feed port (11), the processing chamber (2) is connected to a limit block (21) at a position below the processing chamber top sealing plate (3), and the processing chamber (2) is provided with a guide plate (22) at a position below the crushing device (12), the guide plate (22) being a plate-like structure that is symmetrically distributed and inclined toward the lower middle of the processing chamber (2).

4. The pig feed processing device integrating crushing and drying according to claim 2 is characterized in that: The dryer (5) is mounted at the position of the slot (103) via a hinge shaft, and a working light (51) is installed at a position of the dryer (5) located inside the housing (1). The working light (51) lights up when the dryer (5) is working, and the light of the working light (51) can reach the photosensitive sensor controller (6) by passing through the filter space of the filter box body (4). When the light of the working light (51) cannot reach the photosensitive sensor controller (6), the dryer (5) stops working.

5. The pig feed processing device integrating crushing and drying according to claim 2 is characterized in that: The filter box body (4) is movably plugged into the slot (103), and a socket (43) is provided on the right side of the filter box body (4), and the socket (43) is plugged into the outside of the connection block (13). The filter box body (4) is composed of a top filter plate (41) and a filter bin (42), the top filter plate (41) is located at the top of the filter box body (4), and the inner diameter of the mesh on the top filter plate (41) is larger than the outer diameter of the raw material. The filter bin (42) is capable of filtering the crushed material, and the filter bin (42) is composed of a plurality of evenly distributed cylindrical filter screens.

6. The pig feed processing device integrating crushing and drying according to claim 3 is characterized in that: The processing chamber top sealing plate (3) is connected to the inner side of the processing chamber (2) via a torsion spring shaft, and the processing chamber top sealing plate (3) is located on the left side of the side sealing plate (23). In a natural state, the processing chamber top sealing plate (3) and the side sealing plate (23) together seal the top entrance of the processing chamber (2). A connecting rod (31) is connected to one side of the top of the processing chamber top sealing plate (3), and the connecting rod (31) extends to the outside of the shell (1).

7. The pig feed processing device integrating crushing and drying according to claim 6 is characterized in that: The first transmission gear set (7) is connected to a rotating shaft of the crushing device (12) located outside the housing (1) via a gear belt and a gear; the number of teeth of the driven gear of the first transmission gear set (7) is greater than the number of teeth of the driving gear; a first movable rod (71) is connected to the outside of the first transmission gear set (7); when the first movable rod (71) rotates, it passes through the connecting rod (31) and causes the connecting rod (31) to perform periodic reciprocating deflection.

8. The pig feed processing device integrating crushing and drying according to claim 1 is characterized in that: The structure of the second transmission gear set (8) is the same as that of the first transmission gear set (7). The second transmission gear set (8) is driven by a crushing device (12) next to the second transmission gear set. A second movable rod (81) is connected to the outer side of the second transmission gear set (8). When the second transmission gear set (8) rotates, the second movable rod (81) passes through the vibration connecting clamp (9) and causes the vibration connecting clamp (9) to rise and fall periodically.

9. The pig feed processing device integrating crushing and drying according to claim 1, characterized in that: The vibration connection clamp (9) is connected to the outside of the housing (1) via a rod body that can be elastically retracted, and the bottom of the vibration connection clamp (9) is movably clamped on the top of the filter box body (4).

Citation Information

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