A kind of integrated livestock harmless treatment equipment and process
The treatment of poultry and livestock corpses through a large boiling pot pressurization pump system and automated process has solved the pollution and land occupation problems of traditional treatment methods, achieved efficient and harmless treatment and retained available products.
Patent Information
- Application Number
- CN202111047017.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-09-08
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2041-09-08
AI Technical Summary
In the prior art, the treatment methods for dead animals, such as incineration and landfill, have pollution and land occupation problems, and lack efficient and harmless treatment equipment and processes.
The large boiling pot pressurization pump system is adopted, combined with automatic sealing, stable support and heating structure, and poultry and livestock corpses are processed through high temperature and high pressure, and some products are retained as pet food additives through fully automated processing methods.
The harmless treatment of poultry and livestock corpses has been achieved, which reduces pollution and land occupation, while retains available products, and uses fully automated processes to improve processing efficiency.
Smart Images

Figure CN113857202B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of poultry and livestock processing, and in particular to an integrated poultry and livestock harmless processing device and process. Background Art
[0002] my country's "Technical Specifications for Pollution Prevention and Control in the Livestock and Poultry Breeding Industry" stipulates that the carcasses of dead livestock and poultry should be disposed of by incineration or landfill. Large-scale farms, in particular, should have incineration facilities. Effective purification measures should also be implemented for the flue gases produced by incineration. Farms without incineration facilities can use landfills. For non-dead livestock and poultry, composting is a cost-effective method for disposing of dead animals. Summary of the Invention
[0003] To achieve the above objectives, the present invention is implemented through the following technical solutions: an integrated livestock and poultry harmless treatment device, comprising a large boiling pot and a pressure pump, the pressure pump being arranged on one side of the large boiling pot, a material conveying structure being arranged on one side of the large boiling pot, a feeding system being arranged between the material conveying structure and the large boiling pot, an automatic sealing structure being arranged on the large boiling pot, a stabilizing support structure being arranged at the bottom of the large boiling pot, and a heating structure being arranged on the stabilizing support structure;
[0004] The stable support structure comprises: a support seat, four threaded cylinders, four meshing cylinders, an internal gear, four external gears, and a meshing motor;
[0005] The four threaded cylinders are located at the bottom of the support seat, and the four meshing cylinders are installed in the inside of the four threaded cylinders through threaded engagement. The lower ends of the four meshing cylinders are connected to the support platform, and the bottom of the support platform is provided with an annular groove, and the bottom of the internal gear is provided with a sliding ring, and the sliding ring is provided in the annular groove. The interior of the support platform is provided with a mounting groove, and the meshing motor is provided in the mounting groove. The driving end of the meshing motor is provided with a meshing gear, and the four external gears are sleeved on the meshing cylinders, and the outer wall surface of the internal gear is provided with teeth meshing with the external gear at equal angles, and the teeth mesh with the four external gears;
[0006] The support base is provided with a plurality of telescopic columns, the large boiling pot is provided on the plurality of telescopic columns, and the heating structure is located between the plurality of telescopic columns;
[0007] The heating structure includes: a heat conducting sheet, a docking station, a multi-layer heating sheet, two contact switches, and two contact posts;
[0008] The large boiling pot is provided with a door-shaped frame structure connected to the ground, the heat conductive sheet is embedded in the end of the heating box, the heat conductive sheet is located at the end of the docking platform, the bottom of the large boiling pot is provided with a contact platform, which can wrap the docking platform, the multi-layer heating sheet is located inside the heating box, the two contact switches are located at the end of the heating box, the two contact columns are located at the bottom of the large boiling pot, and the two contact columns can contact the two contact switches.
[0009] Preferably, the feeding system comprises: a moving unit and a dumping unit;
[0010] The mobile unit comprises: a back frame, a pair of auxiliary guide rods, a mobile seat, a linear module translation stage, a connector, and a pair of guide rails;
[0011] The back frame is installed obliquely on one side of the boiling pot and is connected to the door-shaped frame. The pile of guide rods is arranged on the back frame. The pair of guide rails is located between the upper and lower ends of the back frame. The bottom of the movable seat is movably connected to the pair of guide rails. The left and right ends of the movable seat are mounted on a pair of auxiliary guide rods. The linear module translation platform is located at the bottom of the back frame. The moving end of the linear module translation platform is connected to the bottom of the movable seat through a connector. The dumping unit is arranged on the movable seat.
[0012] Preferably, the dumping unit comprises: a bottom plate, a plurality of shock-absorbing springs, a shock-absorbing bed, a flip gear, a meshing rack, and a hydraulic cylinder;
[0013] The base plate is connected to the movable seat through a pin shaft, the plurality of springs are installed between the shock-absorbing bed and the base plate, the flipping gear is connected to one end of the pin shaft, the hydraulic cylinder is arranged on the outer wall of the movable seat, the piston end of the hydraulic cylinder is connected to the meshing rack, the meshing rack can be engaged with the flipping gear, and the base plate can rotate along the pin shaft.
[0014] Preferably, the automatic sealing structure comprises: a sealing portion and a salvaging portion;
[0015] The sealing part includes: a heightening frame, a pair of telescopic motors, a support plate, a movable column, and a sealing end cover;
[0016] The raising frame is arranged on one side of the large boiling pot, a pair of telescopic motors are located at the end of the raising frame, the movable column is located between the support plate and the sealing end cover, the interior of the movable column is a cavity structure, the driving motor is arranged inside the movable column, the driving end of the driving motor is connected to the sealing end cover, and the end of the large boiling pot has an opening for the sealing end cover to enter.
[0017] Preferably, the salvage unit comprises: a salvage frame, a pair of electric rails, a lifting motor, an N-shaped fixing frame, a plurality of cylinders, and a plurality of insertion rods;
[0018] A pair of electric rails are laid on one side of the large boiling pot, the bottom of the salvage frame is connected to the pair of electric rails, the lifting motor is located at the upper end of the salvage frame, the N-shaped fixed frame is located on the telescopic end of the lifting motor, and the multiple cylinders are located on the outer wall of the N-shaped fixed frame, and the piston end penetrates the frame body and is connected to the insertion rod.
[0019] Preferably, the material conveying structure comprises: a left conveying structure and a right conveying structure;
[0020] The left conveying structure and the right conveying structure have the same structure and are respectively located on the left and right sides of the large boiling pot, wherein the right conveying structure is located between a pair of electric rails, and the left conveying structure is located on one side of the loading structure;
[0021] The left conveying structure is composed of a chain conveyor and a plurality of protrusions located on the conveying chain, and the plurality of protrusions have an angle of 30-60 degrees relative to the conveying chain.
[0022] Preferably, a pair of electric rails extend from one end of the right conveying structure to one end of the left conveying structure.
[0023] Preferably, the movable column consists of two columns that are movably assembled together.
[0024] Preferably, the height of the n-type fixing frame is greater than the height of the portal frame.
[0025] Preferably, the heights of the plurality of springs gradually decrease from one end to the other end of the movable seat.
[0026] Beneficial effects
[0027] The present invention provides an integrated, harmless livestock processing device. This method utilizes high temperature and high pressure to process livestock carcasses, preserving a portion of the product. This retained product can also be used as a food additive for pets such as cats and dogs. Furthermore, this method utilizes a fully automated processing method, which, unlike traditional processing methods, reduces pollution and floor space while also allowing some of the product to be retained for use. This method is arguably the most beneficial. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 This is a schematic structural diagram of the integrated livestock and poultry harmless treatment equipment described in the present invention.
[0029] Figure 2 This is a schematic top view of the structure of the integrated harmless livestock processing equipment described in the present invention.
[0030] Figure 3 This is a schematic diagram of the stable support structure of the integrated livestock and poultry harmless treatment equipment described in the present invention.
[0031] Figure 4 This is a structural schematic diagram of the feeding system of the integrated livestock and poultry harmless processing equipment described in the present invention.
[0032] Figure 5 This is a schematic structural diagram of the mobile unit of the integrated livestock and poultry harmless treatment equipment described in the present invention.
[0033] Figure 6 This is a schematic diagram of the automatic sealing structure of the integrated livestock and poultry harmless treatment equipment described in the present invention.
[0034] Figure 7 This is a partial schematic diagram of the salvage structure of the integrated livestock and poultry harmless treatment equipment described in the present invention.
[0035] Figure 8 This is a partially enlarged structural schematic diagram of the integrated harmless livestock processing equipment described in the present invention.
[0036] Figure 9 This is a partially enlarged structural schematic diagram of the left conveying structure of the integrated poultry and livestock harmless processing equipment described in the present invention.
[0037] Figure: 1. Large boiling pot; 2. Pressure pump; 3. Support base; 4. Threaded cylinder; 5. Meshing cylinder; 6. Internal gear; 7. External gear; 8. Meshing motor; 9. Sliding ring; 10. Annular slide; 11. Telescopic column; 12. Heat conducting plate; 13. Docking station; 14. Heating plate; 15. Contact switch; 16. Contact column; 17. Back frame; 18. Auxiliary guide rod; 19. Moving base; 20. Linear module translation stage; 21. Connector; 22. Guide Rail; 23. Bottom plate; 24. Shock-absorbing spring; 25. Shock-absorbing bed; 26. Flip gear; 27. Meshing rack; 28. Hydraulic cylinder; 29. Raising frame; 30. Telescopic motor; 31. Support plate; 32. Movable column; 33. Sealing end cover; 34. Salvage frame; 35. Electric track; 36. Lifting motor; 37. N-type fixing frame; 38. Cylinder; 39. Insert rod; 40. Left conveying structure; 41. Right conveying structure; 42. Protrusion; 43. Meshing gear. DETAILED DESCRIPTION
[0038] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making any creative work shall fall within the scope of protection of the present invention.
[0039] See also Figure 1 、 6 The present invention provides a technical solution: an integrated livestock and poultry harmless processing equipment and process.
[0040] Embodiment: A harmless integrated processing device for livestock and poultry comprises a large boiling pot 1 and a pressure pump 2. The pressure pump 2 is arranged on one side of the large boiling pot 1. A material conveying structure is provided on one side of the large boiling pot 1. A feeding system is provided between the material conveying structure and the large boiling pot 1. The large boiling pot 1 is provided with an automatic sealing structure. A stable support structure is provided at the bottom of the large boiling pot 1. A heating structure is provided on the stable support structure.
[0041] It should be noted that, first, the corpse is manually piled on one side of the equipment and placed on the material conveying structure. Then, the loading system is used to load the material. The loading structure conveys the corpse into the large boiling pot 1. The sealing structure is controlled to achieve sealing, and the supporting structure is used to lift the heating structure so that the heating structure contacts the bottom of the large boiling pot 1. Then, the heating component heats the corpse inside the large boiling pot 1 to a high temperature of more than 100 degrees. The pressure pump 2 is controlled to pressurize the interior of the large boiling pot 1. After the corpse is processed, the automatic sealing structure is opened, and the corpse is salvaged onto the material conveying structure for transportation.
[0042] Specifically, the stable support structure includes: a support base 3, four threaded cylinders 4, four meshing cylinders 5, an internal gear 6, four external gears 7, and a meshing motor 8;
[0043] The four threaded cylinders 4 are located at the bottom of the support seat 3, and the four meshing cylinders 5 are installed inside the four threaded cylinders 4 by threaded engagement. The lower ends of the four meshing cylinders 5 are connected to the support platform, and the bottom of the support platform is provided with an annular groove 10. The bottom of the internal gear 6 is provided with a sliding ring 9, and the sliding ring 9 is provided in the annular groove 10. The interior of the support platform is provided with a mounting groove, and the meshing motor 8 is provided in the mounting groove. The driving end of the meshing motor 8 is provided with a meshing gear 43, and the four external gears 7 are sleeved on the meshing cylinder 5. The outer wall surface of the internal gear 6 is provided with teeth that mesh with the external gear 7 at equal angles, and the teeth mesh with the four external gears 7;
[0044] It should be noted that when adjusting the heating structure at the bottom of the large boiling pot 1, the meshing motor 8 in the mounting groove inside the support platform is controlled. After the meshing motor 8 drives the meshing gear 43, the meshing gear 43 will mesh with the inner teeth of the internal gear 6, thereby allowing the internal gear 6 to rotate. Since the internal gear 6 has a sliding ring 9 at the bottom, and the sliding ring 9 is located in the sliding groove of the support platform, it can support the internal gear 6 to rotate smoothly. The outside of the internal gear 6 also has teeth, which will mesh with the four external gears 7 on the outside of the four meshing cylinders 5, thereby allowing the external gear 7 to rotate with the meshing cylinder 5. Since the upper end of the meshing cylinder 5 is meshed with the inside of the threaded column through a thread, and the threaded column is connected to the support base 3, the support base 3 will be lifted.
[0045] The support base 3 is provided with a plurality of telescopic columns 11, the large boiling pot 1 is provided on the plurality of telescopic columns 11, and the heating structure is located between the plurality of telescopic columns 11;
[0046] There are multiple telescopic columns 11 between the support base 3 and the large boiling pot 1, so the heating structure is located on the support base 3, so the heating structure can follow the support base 3 and contact the bottom of the large boiling pot 1;
[0047] Specifically, the heating structure includes: a heat conducting sheet 12, a docking station 13, a multi-layer heating sheet 14, two contact switches 15, and two contact posts 16;
[0048] The large boiling pot 1 is provided with a door-shaped frame structure connected to the ground, the heat conductive sheet 12 is embedded in the end of the heating box, the heat conductive sheet 12 is located at the end of the docking platform 13, and a contact platform is provided at the bottom of the large boiling pot 1, which can wrap the docking platform 13. The multi-layer heating sheet 14 is located inside the heating box, the two contact switches 15 are located at the end of the heating box, and the two contact columns 16 are located at the bottom of the large boiling pot 1, and the two contact columns 16 can contact the two contact switches 15.
[0049] It should be noted that in the above description, when the heating box rises along with the support base 3, the docking platform 13 contacts the bottom of the large boiling pot 1, and the multi-layer heating plate 14 begins to heat, and the heat conductive plate 12 transfers the heat to the interior of the large boiling pot 1 to achieve heating. Specifically, the two contact posts 16 are located at the bottom of the large boiling pot 1, and the two contact switches 15 are located at the ends of the heating box. Therefore, when the heating box rises, the two contact switches 15 contact the two contact posts 16, thereby controlling the working state of the multi-layer heating plate 14;
[0050] Specifically, the feeding system includes: a moving unit and a dumping unit;
[0051] The mobile unit includes: a back frame 17, a pair of auxiliary guide rods 18, a moving seat 19, a linear module translation stage 20, a connector 21, and a pair of guide rails 22;
[0052] The back frame 17 is installed obliquely on one side of the boiling pot and is connected to the door-shaped frame. The pile of guide rods is arranged on the back frame 17. The pair of guide rails 22 is located between the upper and lower ends of the back frame 17. The bottom of the movable seat 19 is movably connected to the pair of guide rails 22. The left and right ends of the movable seat 19 are mounted on a pair of auxiliary guide rods 18. The linear module translation platform 20 is located at the bottom of the back frame 17. The moving end of the linear module translation platform 20 is connected to the bottom of the movable seat 19 through a connector 21. The dumping unit is arranged on the movable seat 19.
[0053] It should be noted that, in the above description, the back frame 17 is located between the large boiling pot 1 and the material transport structure. When the corpse is placed on the tilting structure of the movable seat 19, the linear module translation stage 20 is controlled to drive the connector 21 to move. The connector 21 will move the movable seat 19 on the pair of guide rails 22. The left and right ends of the movable seat 19 are mounted on a pair of guide rods, thereby assisting the movable seat 19 to move smoothly, and then moving the corpse on the movable seat 19 to the upper end of the large boiling pot 1;
[0054] Specifically, the dumping unit includes: a bottom plate 23, a plurality of shock-absorbing springs 24, a shock-absorbing bed 25, a flip gear 26, an engaging rack 27, and a hydraulic cylinder 28;
[0055] The base plate 23 is connected to the movable seat 19 through a pin shaft. The plurality of springs are installed between the shock-absorbing bed 25 and the base plate 23. The flipping gear 26 is connected to one end of the pin shaft. The hydraulic cylinder 28 is arranged on the outer wall of the movable seat 19. The piston end of the hydraulic cylinder 28 is connected to the meshing rack 27. The meshing rack 27 can mesh with the flipping gear 26, and the base plate 23 can rotate along the pin shaft.
[0056] It should be noted that, in the above description, when the corpse is placed on the shock-absorbing bed 25, due to the corpse's weight, a number of shock-absorbing springs 24 are provided between the shock-absorbing bed 25 and the base plate 23 to eliminate vibration. Subsequently, the linear module review platform moves the corpse on the movable seat 19 to the top of the large boiling pot 1, and then controls the hydraulic cylinder 28 to push the meshing rack 27 to engage with the flipping gear 26. The flipping gear 26 rotates with the pin, and the pin rotates with the base plate 23, thereby flipping the corpse on the shock-absorbing bed 25 on the base plate 23 into the interior of the large boiling pot 1.
[0057] Specifically, the automatic sealing structure comprises: a sealing portion and a salvaging portion;
[0058] The sealing part includes: a heightening frame 29, a pair of telescopic motors 30, a support plate 31, a movable column 32, and a sealing end cover 33;
[0059] The raising frame 29 is arranged on one side of the large boiling pot 1, and a pair of telescopic motors 30 are located at the end of the raising frame 29. The movable column 32 is located between the support plate 31 and the sealing end cover 33. The interior of the movable column 32 is a cavity structure. The driving motor is arranged inside the movable column 32. The driving end of the driving motor is connected to the sealing end cover 33. The end of the large boiling pot 1 has an opening for the sealing end cover 33 to enter.
[0060] It should be noted that a pair of telescopic motors 30 on the raising frame 29 can push the support plate 31 downward, and the driving motor drives the sealing end cover 33 to engage with the opening at the end of the large boiling pot 1, thereby achieving automatic sealing;
[0061] It is important to note that the middle portion of the raising frame 29 also has a torque motor that can drive the raising frame 29 to rotate, thereby cooperating with the salvage work of the salvage structure;
[0062] The salvage unit includes: a salvage frame 34, a pair of electric rails 35, a lifting motor 36, an N-shaped fixing frame 37, a plurality of cylinders 38, and a plurality of insertion rods 39;
[0063] 9. A pair of electric rails 35 are laid on one side of the large boiling pot 1. The bottom of the salvage frame 34 is connected to the pair of electric rails 35. The lifting motor 36 is located at the upper end of the salvage frame 34. The N-shaped fixed frame 37 is located on the telescopic end of the lifting motor 36. The multiple cylinders 38 are located on the outer wall of the N-shaped fixed frame 37, and the piston end passes through the frame body and is connected to the insertion rod 39.
[0064] 10. After the corpse has been subjected to high-temperature and high-pressure treatment, a pair of electric rails 35 are controlled to drive the salvage frame 34 to move to the top of the large boiling pot 1. The lifting motor 36 is controlled to drive the N-shaped fixing frame 37 to descend into the large boiling pot 1. Subsequently, a plurality of cylinders 38 are controlled to push a plurality of rods 39 to clamp the corpse and place it on the material transport structure.
[0065] 11. It should also be noted that, since the n-shaped fixing frame 37 has multiple cylinders 38, multiple bodies inside the large boiling pot 1 will be clamped. When the body is placed on the material conveying structure, it is necessary to control the cylinders 38 from bottom to top to recover the piston ends in sequence;
[0066] The material conveying structure: left conveying structure 40, right conveying structure 41;
[0067] The left conveying structure 40 and the right conveying structure 41 have the same structure and are respectively located on the left and right sides of the large boiling pot 1, wherein the right conveying structure 41 is located between a pair of electric rails 35, and the left conveying structure 40 is located on one side of the loading structure;
[0068] The left conveying structure 40 is composed of a chain conveyor and a plurality of protrusions 42 located on the conveying chain. The plurality of protrusions 42 have an angle of 30-60 degrees relative to the conveying chain.
[0069] Specifically, a pair of electric rails 35 extend from one end of the right conveying structure 41 to one end of the left conveying structure 40 .
[0070] It should be noted that the above technical solution can achieve the initial movement of the carcass on the material movement structure to the dumping structure by means of the salvaging structure;
[0071] Specifically, the movable column 32 is composed of two columns that are movably assembled together.
[0072] Specifically, the height of the n-type fixing frame 37 is greater than the height of the portal frame.
[0073] A process for harmless treatment of poultry and livestock, comprising the following steps:
[0074] Specifically, the heights of the plurality of springs gradually decrease from one end to the other end of the movable seat 19 .
[0075] S1: First, the bodies are manually piled on one side of the equipment, placed on the material transport structure, and then loaded using the loading system;
[0076] S2: The loading structure transports the body only inside a large boiling pot 1, control the sealing structure to achieve sealing, and use the support structure to achieve the heating structure on the jacking;
[0077] S3: The heating structure contacts the bottom of a large boiling pot, and then the heating component heats the body inside a large boiling pot at a temperature greater than 100 degrees Celsius, and controls the pressure pump 2 to pressurize the interior of a large boiling pot;
[0078] S4: After the corpse is processed, the automatic sealing structure is opened and the corpse is salvaged onto the material transport structure for transport;
[0079] S5: Decompose the carcass after high temperature and high pressure treatment and store the product in cold storage to keep it fresh.
[0080] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.
Claims
1. An integrated livestock and poultry harmless treatment device, comprising a large boiling pot and a pressure pump, characterized in that: The pressure pump is arranged on one side of the large boiling pot, a material conveying structure is arranged on one side of the large boiling pot, a feeding system is arranged between the material conveying structure and the large boiling pot, an automatic sealing structure is arranged on the large boiling pot, a stable support structure is arranged at the bottom of the large boiling pot, and a heating structure is arranged on the stable support structure; The stable support structure comprises: a support seat, four threaded cylinders, four meshing cylinders, an internal gear, four external gears, and a meshing motor; The four threaded cylinders are located at the bottom of the support seat, and the four meshing cylinders are installed in the inside of the four threaded cylinders through threaded engagement. The lower ends of the four meshing cylinders are connected to the support platform, and the bottom of the support platform is provided with an annular groove, and the bottom of the internal gear is provided with a sliding ring, and the sliding ring is provided in the annular groove. The interior of the support platform is provided with a mounting groove, and the meshing motor is provided in the mounting groove. The driving end of the meshing motor is provided with a meshing gear, and the four external gears are sleeved on the meshing cylinders, and the outer wall surface of the internal gear is provided with teeth meshing with the external gear at equal angles, and the teeth mesh with the four external gears; The support base is provided with a plurality of telescopic columns, the large boiling pot is provided on the plurality of telescopic columns, and the heating structure is located between the plurality of telescopic columns; The heating structure includes: a heat conducting sheet, a docking station, a multi-layer heating sheet, two contact switches, and two contact posts; The large boiling pot is provided with a door-shaped frame structure connected to the ground, the heat conducting sheet is embedded in the end of the heating box, the heat conducting sheet is located at the end of the docking platform, the bottom of the large boiling pot is provided with a contact platform, the contact platform can wrap the docking platform, the multi-layer heating sheet is located inside the heating box, the two contact switches are located at the end of the heating box, the two contact posts are located at the bottom of the large boiling pot, and the two contact posts can contact the two contact switches; The feeding system comprises: a moving unit and a dumping unit; The mobile unit comprises: a back frame, a pair of auxiliary guide rods, a mobile seat, a linear module translation stage, a connector, and a pair of guide rails; The back frame is installed obliquely on one side of the boiling pot and is connected to the door-shaped frame. The pair of auxiliary guide rods are arranged on the back frame. The pair of guide rails are located between the upper and lower ends of the back frame. The bottom of the movable seat is movably connected to the pair of guide rails. The left and right ends of the movable seat are mounted on a pair of auxiliary guide rods. The linear module translation platform is located at the bottom of the back frame. The moving end of the linear module translation platform is connected to the bottom of the movable seat through a connector. The dumping unit is arranged on the movable seat.
2. The livestock harmless integrated treatment equipment according to claim 1, characterized in that: The dumping unit comprises: a bottom plate, a plurality of shock-absorbing springs, a shock-absorbing bed, a flip gear, a meshing rack, and a hydraulic cylinder; The base plate is connected to the movable seat through a pin shaft, the plurality of shock-absorbing springs are installed between the shock-absorbing bed and the base plate, the flipping gear is connected to one end of the pin shaft, the hydraulic cylinder is arranged on the outer wall of the movable seat, the piston end of the hydraulic cylinder is connected to the meshing rack, the meshing rack can be engaged with the flipping gear, and the base plate can rotate along the pin shaft.
3. The livestock harmless integrated treatment equipment according to claim 1, characterized in that: The automatic sealing structure includes a sealing portion and a salvaging portion; The sealing part includes: a heightening frame, a pair of telescopic motors, a support plate, a movable column, and a sealing end cover; The raising frame is arranged on one side of the large boiling pot, a pair of telescopic motors are located at the end of the raising frame, the movable column is located between the support plate and the sealing end cover, the interior of the movable column is a cavity structure, the driving motor is arranged inside the movable column, the driving end of the driving motor is connected to the sealing end cover, and the end of the large boiling pot has an opening for the sealing end cover to enter.
4. The integrated livestock and poultry harmless treatment equipment according to claim 3, characterized in that: The salvage unit includes: a salvage frame, a pair of electric rails, a lifting motor, an N-shaped fixing frame, a plurality of cylinders, and a plurality of insertion rods; A pair of electric rails are laid on both sides of the large boiling pot respectively. The bottom of the salvage frame is connected to the pair of electric rails. The lifting motor is located at the upper end of the salvage frame. The N-shaped fixed frame is located on the telescopic end of the lifting motor. The several cylinders are located on the outer wall of the N-shaped fixed frame, and the piston end penetrates the frame body and is connected to the insertion rod.
5. The integrated livestock and poultry harmless treatment equipment according to claim 1, characterized in that: The material conveying structure: left conveying structure, right conveying structure; The left conveying structure and the right conveying structure have the same structure and are respectively located on the left and right sides of the large boiling pot, wherein the right conveying structure is located between a pair of electric rails, and the left conveying structure is located on one side of the loading structure; The left conveying structure is composed of a chain conveyor and a plurality of protrusions located on the conveying chain, and the plurality of protrusions have an angle of 30-60 degrees relative to the conveying chain.
6. The integrated livestock and poultry harmless treatment equipment according to claim 5, characterized in that: A pair of electric rails extends from one end of the right conveying structure to one end of the left conveying structure.
7. The integrated livestock and poultry harmless treatment equipment according to claim 3, characterized in that: The movable column is composed of two columns that are movably assembled together.
8. The integrated livestock and poultry harmless treatment equipment according to claim 4, characterized in that: The height of the n-type fixing frame is greater than that of the portal frame.
9. A method for harmless treatment of livestock and poultry using the apparatus according to any one of claims 1 to 8, characterized in that: The following steps are involved: S1: First, the bodies are manually piled on one side of the equipment, placed on the material transport structure, and then loaded using the loading system; S2: The loading structure transports the body into the large boiling pot, controls the sealing structure to achieve sealing, and uses the stable support structure to achieve the jacking of the heating structure; S3: The heating structure contacts the bottom of the large boiling pot, and then the heating component heats the body inside the large boiling pot to a temperature greater than 100 degrees, and controls the pressure pump to pressurize the inside of the large boiling pot; S4: After the corpse is processed, the automatic sealing structure is opened and the corpse is salvaged onto the material transport structure for transport; S5: Decompose the carcass after high temperature and high pressure treatment and store the product in cold storage to keep it fresh.
Citation Information
Patent Citations
Harmless integrated treatment equipment for livestock
CN216064826U