A device and method for slaughtering a large goose
Patent Information
- Application Number
- CN202511674533.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-14
- Publication Date
- 2026-09-29
- Estimated Expiration
- 2045-11-14
AI Technical Summary
[0003]现有的宰杀污水处理,通过沉淀进行固液分离后,再对污水进行消毒处理,沉淀无法在宰杀处完成,污水需要经过一定的运输管道后,才能到底沉淀池,这就使得污水中的血液和生物组织(内脏和羽毛等),除宰杀台外接触范围通过管道扩大,从而增加了细菌扩散范围,容易造成病菌传播,且沉淀池无法对血液和生物组织进行分离,所述且分离后也需要对沉淀池底部进行清理,以实现对血液和生物组织的收集,以便集中处理,操作较为繁琐
本发明中在宰杀台底部完成对宰杀污水的沉淀,以避免血液和生物组织等随着运输管道扩散污染范围,从而降低宰杀病菌的传播范围,进而降低因宰杀产生大面积病菌传播的可能,且沉淀过程中宰杀工作能够持续进行,通过上收集层和导液组件使得污水能够缓慢落入到下收集层,从而避免持续下流的污水干扰底部沉淀的进行,确保沉淀和上层宰杀的污水排放能够同步进行,不会互相干扰;
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Figure CN121369453B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of poultry disinfection equipment technology, specifically to a slaughtering and processing device and method for geese. Background Technology
[0002] The slaughter of geese must adhere to the principles of "humanity, safety, and hygiene." The core principle is to quickly render the goose unconscious, reduce its suffering, and ensure the cleanliness of the meat. To guarantee the taste, bleeding is often required after slaughter, and the wastewater in large slaughterhouses is often mixed with blood and biological tissues produced during the slaughter.
[0003] Existing slaughterhouse wastewater treatment methods involve solid-liquid separation through sedimentation followed by disinfection. However, sedimentation cannot be completed at the slaughtering site; the wastewater must travel through transport pipelines to reach the sedimentation tank. This means that blood and biological tissues (internal organs and feathers, etc.) in the wastewater are exposed to a wider area outside the slaughtering area, increasing the spread of bacteria and making it easier for pathogens to spread. Furthermore, the sedimentation tank cannot separate blood and biological tissues completely, and even after separation, the bottom of the sedimentation tank needs to be cleaned to collect the blood and biological tissues for centralized treatment, making the operation quite cumbersome. Summary of the Invention
[0004] The technical problem of the present invention is to provide a slaughtering and processing device and method for geese, which can separate the sediment and biological tissue from the blood on the slaughtering table without interfering with the normal slaughtering process, so as to quickly collect and package the biological tissue and blood for processing.
[0005] To achieve the above objectives, the present invention provides the following technical solution: a slaughtering and processing device for geese, comprising a slaughtering platform, wherein two sets of slaughtering panels are disposed on the surface of the slaughtering platform, the two sets of slaughtering panels are symmetrically arranged, and slaughter wastewater can flow into the interior of the slaughtering platform through the gap between the two sets of slaughtering panels. A filtration device is disposed inside the slaughtering platform, the filtration device comprising: The upper and lower collection layers are both disposable flexible plastics. The two ends of the upper and lower collection layers are fixed inside the slaughtering table by a liquid guiding assembly. The liquid guiding assembly can ensure that sewage flows slowly from both sides of the lower collection layer without interfering with the normal discharge rate of sewage. A support component is located between the upper and lower collection layers and is fixedly connected to the slaughtering station. The support component is capable of changing the shape of the upper and lower collection layers.
[0006] As a further embodiment of the present invention, the liquid guiding assembly includes an upper mounting plate and a lower mounting plate, and two sets of the upper mounting plate and the lower mounting plate are provided. The upper mounting plate is located at both ends of the upper collection layer, and the lower mounting plate is located at both ends of the lower collection layer. The upper mounting plate and the lower mounting plate are fixedly connected to the slaughtering table. A snap-fit ring is fixedly installed at the end of the upper mounting plate and the lower mounting plate away from the inner wall of the slaughtering table. Snap-fit posts are fixedly installed at both ends of the upper collection layer and the lower collection layer, and the snap-fit posts can be inserted into the snap-fit rings.
[0007] As a further embodiment of the present invention, an outer guide plate and an inner guide plate are provided inside the slaughtering station at positions corresponding to the upper and lower mounting plates. The outer and inner guide plates are both inclined and their lower ends are close to each other to form a liquid guiding gap. Multiple sets of liquid guiding rollers are provided below the liquid guiding gap. The multiple sets of liquid guiding rollers are longitudinally distributed and are rotatably connected inside the slaughtering station. A baffle plate is provided on the lower mounting plate and is fixedly connected to the inner wall of the slaughtering station. Wastewater flowing down from the liquid guiding rollers can flow down to the collection layer through the gap between the lower end of the baffle plate and the lower mounting plate.
[0008] As a further embodiment of the present invention, the support assembly includes an inner mounting plate and an abutment shaft. The inner mounting plate is fixedly connected to the inner wall of the slaughtering table. Multiple sets of telescopic rods are equidistantly mounted on the inner mounting plate. Both ends of the telescopic rods are extendable and the extended ends are fixedly connected to the abutment shaft. The abutment shaft can conform to the surfaces of the upper and lower collection layers.
[0009] As a further embodiment of the present invention, the upper surface of the upper collecting layer is provided with multiple sets of collecting grooves, both the upper collecting layer and the lower collecting layer are elastic, and the collecting grooves automatically expand when the upper collecting layer is stretched.
[0010] As a further embodiment of the present invention, vertical partitions are fixedly installed on the upper surface of the upper mounting plate, and multiple sets of mounting holes are provided on the vertical partitions. An embedded ring is fixedly installed in each mounting hole, and a rotating column is rotatably installed inside the embedded ring. Multiple sets of plug-in nails are fixedly installed on the outer surface of the rotating column. One end of the vertical partition extends outside the slaughtering table and is fixedly connected to a handle.
[0011] As a further embodiment of the present invention, side rinsing components are fixedly installed on both sides of the upper surface of the slaughtering platform, and side rinsing nozzles are fixedly installed on each side rinsing component. A mounting frame is arranged across the upper surface of the slaughtering platform, and multiple sets of clamping components are slidably arranged on the mounting frame. The lower end of the mounting frame is slidably connected to the slaughtering platform, and a suction pipe is fixedly installed on one side of the slaughtering platform.
[0012] As a further embodiment of the present invention, a sealing cover is rotatably connected to one side of the slaughtering platform, and a sealing gasket is provided at the connection between the sealing cover and the slaughtering platform.
[0013] The telescopic rod is controlled separately at its upper and lower ends. The telescopic rod consists of an upper cylinder and a lower cylinder. The upper cylinder can drive the upper contact shaft to move up and down, and the lower cylinder can drive the lower contact shaft to move up and down. An upper filter plate is fixedly installed inside the slaughtering platform at the position between the slaughtering panel and the upper collection layer.
[0014] A method for slaughtering and processing geese, the specific steps of which are as follows: Step 1: Slaughter the goose on the slaughtering panel and hang it on the clamps to bleed it. Step 2: Open the side flushing unit and flush the wastewater generated during slaughtering to allow it to flow from between the two slaughtering panels into the slaughtering station. Step 3: Slaughter wastewater first flows into the upper filter plate and falls into the upper collection layer surface through its upper filter holes; Step 4: As the wastewater flows to both sides along the slope of the upper collection layer, the upper collection layer contracts via the telescopic rod, allowing some biological tissue to enter the collection tank. Step 5: The wastewater mixed with blood slowly flows into the lower collection layer through the liquid guiding component and flows to the middle of the lower collection layer; Step Six: The wastewater in the lower collection layer settles and separates into layers, while the upper wastewater enters the wastewater disinfection equipment for treatment through a suction pipe.
[0015] Compared with the prior art, the beneficial effects of the present invention are: In this invention, the wastewater from slaughtering is settled at the bottom of the slaughtering platform to prevent blood and biological tissues from spreading and contaminating the area through the transport pipeline, thereby reducing the spread of slaughtering pathogens and the possibility of large-scale pathogen transmission caused by slaughtering. Furthermore, the slaughtering process can continue during the sedimentation process. The wastewater can slowly fall into the lower collection layer through the upper collection layer and the liquid guiding component, thereby preventing the continuous flow of wastewater from interfering with the bottom sedimentation process. This ensures that the sedimentation and the discharge of wastewater from the upper slaughtering layer can proceed synchronously without mutual interference. In this invention, slaughter wastewater falls into the slaughtering platform through the slaughtering panel. The wastewater first flows to the surface of the upper collection layer. The upper collection layer is continuously stretched and contracted by the support components, allowing biological tissue in the wastewater to remain on the surface of the upper collection layer. The wastewater mixed with blood flows to the lower collection layer through the liquid guiding components at both ends of the upper collection layer. The wastewater mixed with blood settles on the lower collection layer, causing the blood and water to separate, thus separating the biological tissue and blood in the wastewater. The biological tissue is retained on the upper collection layer, while the blood settles on the lower collection layer. Both the upper and lower collection layers are disposable plastic sheets. After sprinkling quicklime on the upper and lower collection layers, the user can quickly classify and collect the biological tissue and blood in the wastewater by rolling up the upper and lower collection layers, reducing the tediousness of cleaning the sedimentation tank. Attached Figure Description
[0016] To more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the vertical partition in this invention; Figure 3 For the present invention Figure 2 A partial structural diagram at point A in the middle; Figure 4 This is a schematic diagram of the upper collection layer in this invention; Figure 5 In this invention Figure 4 A partial structural diagram at point B in the middle; Figure 6 This is a three-dimensional cross-sectional schematic diagram of the structure of the present invention; Figure 7 For the present invention Figure 6 A partial structural diagram at point C; Figure 8 For the present invention Figure 6 A partial structural diagram at point D; Figure 9 This is a two-dimensional cross-sectional schematic diagram of the structure of the present invention; Figure 10 This is a flowchart of the invention's operation.
[0018] The attached diagram lists the components represented by each number as follows: 1. Slaughtering table; 2. Side rinsing component; 3. Side rinsing nozzle; 4. Slaughtering panel; 5. Mounting frame; 6. Clamping component; 7. Sealing cap; 8. Handle; 9. Vertical partition; 10. Upper filter plate; 11. Embedded ring; 12. Rotating column; 13. Insert pin; 14. Upper collection layer; 15. Snap-fit column; 16. Collection trough; 17. Lower mounting plate; 18. Snap-fit ring; 19. Lower collection layer; 20. Inner mounting plate; 21. Telescopic rod; 22. Abutment shaft; 23. Suction pipe; 24. Upper mounting plate; 25. Barrier plate; 26. Outer guide plate; 27. Inner guide plate; 28. Liquid guide roller. Detailed Implementation
[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0020] Please see Figures 1-10 This invention provides a technical solution: a slaughtering and processing device for geese, including a slaughtering platform 1, with two sets of slaughtering panels 4 symmetrically arranged on the surface of the slaughtering platform 1. Slaughter wastewater can flow into the interior of the slaughtering platform 1 through the gap between the two sets of slaughtering panels 4. A filtration device is installed inside the slaughtering platform 1, and the filtration device includes: The upper collection layer 14 and the lower collection layer 19 are both disposable flexible plastics. The two ends of the upper collection layer 14 and the lower collection layer 19 are fixed inside the slaughtering table 1 by the liquid guiding assembly. The liquid guiding assembly can ensure that the sewage flows slowly from both sides of the lower collection layer 19 without interfering with the normal discharge speed of the sewage. A support component is located between the upper collection layer 14 and the lower collection layer 19 and is fixedly connected to the slaughtering table 1. The support component is capable of changing the shape of the upper collection layer 14 and the lower collection layer 19.
[0021] During operation, the slaughter wastewater in this invention falls into the slaughtering platform 1 through the slaughtering panel 4. The wastewater first flows to the surface of the upper collection layer 14. The upper collection layer 14 is continuously stretched and contracted by the support components, so that the biological tissue in the wastewater can remain on the surface of the upper collection layer 14. The wastewater mixed with blood flows to the lower collection layer 19 through the liquid guiding components at both ends of the upper collection layer 14. The wastewater mixed with blood and water will produce sedimentation on the lower collection layer 19, causing the blood and water to separate, thus separating the biological tissue and blood in the wastewater. The biological tissue is retained on the upper collection layer 14, while the blood settles on the lower collection layer 19. Both the upper collection layer 14 and the lower collection layer 19 are disposable plastic sheets. After sprinkling quicklime on the upper collection layer 14 and the lower collection layer 19, the user can quickly classify and collect the biological tissue and blood in the wastewater by rolling up the upper collection layer 14 and the lower collection layer 19, and reduce the tediousness of cleaning the sedimentation tank. In this invention, the wastewater from slaughtering is settled at the bottom of the slaughtering platform 1 to prevent blood and biological tissues from spreading and contaminating the area through the transport pipeline, thereby reducing the spread of slaughtering pathogens and the possibility of large-scale pathogen transmission caused by slaughtering. Furthermore, the slaughtering work can continue during the sedimentation process. The wastewater can slowly fall into the lower collection layer 19 through the upper collection layer 14 and the liquid guiding component, thereby preventing the continuous flow of wastewater from interfering with the sedimentation at the bottom and ensuring that the sedimentation and the discharge of wastewater from the upper slaughtering layer can be carried out synchronously without mutual interference.
[0022] As a further embodiment of the present invention, the liquid guiding assembly includes an upper mounting plate 24 and a lower mounting plate 17. Both the upper mounting plate 24 and the lower mounting plate 17 are provided in two sets. The upper mounting plate 24 is located at both ends of the upper collecting layer 14, and the lower mounting plate 17 is located at both ends of the lower collecting layer 19. Both the upper mounting plate 24 and the lower mounting plate 17 are fixedly connected to the slaughtering table 1. A snap-fit ring 18 is fixedly installed at one end of the upper mounting plate 24 and the lower mounting plate 17 away from the inner wall of the slaughtering table 1. Snap-fit posts 15 are fixedly installed at both ends of the upper collecting layer 14 and the lower collecting layer 19. The snap-fit posts 15 can be inserted into the snap-fit ring 18.
[0023] During operation, the upper collection layer 14 and the lower collection layer 19 of this invention are fixed to the upper mounting plate 24 and the lower mounting plate 17 by the snap-fit posts 15, which facilitates the quick replacement and disassembly of the upper collection layer 14 and the lower collection layer 19. Since the upper collection layer 14 and the lower collection layer 19 are both disposable consumables, the difficulty of cleaning the inside of the slaughtering station can be reduced. The upper collection layer 14 and the lower collection layer 19 can also be used directly as packaging bags for sediment to facilitate the subsequent processing of sediment and reduce the possibility of the spread of pathogens.
[0024] As a further embodiment of the present invention, an outer guide plate 26 and an inner guide plate 27 are provided inside the slaughtering station 1 at positions corresponding to the upper mounting plate 24 and the lower mounting plate 17. The outer guide plate 26 and the inner guide plate 27 are both inclined and their lower ends are close to each other to form a liquid guiding gap. Multiple sets of liquid guiding rollers 28 are provided below the liquid guiding gap. The multiple sets of liquid guiding rollers 28 are longitudinally distributed and are rotatably connected to the inside of the slaughtering station 1. A baffle plate 25 is provided on the lower mounting plate 17. The baffle plate 25 is fixedly connected to the inner wall of the slaughtering station 1. The sewage flowing down from the liquid guiding rollers 28 can flow down to the lower collection layer 19 through the gap between the lower end of the baffle plate 25 and the lower mounting plate 17.
[0025] During operation, the upper collection layer 14 of this invention has a raised center, which allows sewage to slide down to both ends of the upper collection layer 14. After passing through the upper mounting plate 24, the water falls between the outer guide plate 26 and the inner guide plate 27, allowing the falling water to pass through the gap between the outer guide plate 26 and the inner guide plate 27. The water then passes through multiple sets of guide rollers 28 (limiting baffles are set on both sides of the guide rollers 28, not shown in the figure). The water drives the guide rollers 28 to rotate, reducing the impact force of the water falling onto the lower mounting plate 17 and reducing water splashing. The water falling onto the lower mounting plate 17 slowly passes through the gap between it and the baffle plate 25, and falls along the surface of the lower mounting plate 17 onto the lower collection layer 19, preventing the falling water from impacting the upper clear liquid of the lower collection layer 19, thus avoiding the problem of the sewage that has already settled and separated becoming turbid again.
[0026] As a further embodiment of the present invention, the support assembly includes an inner mounting plate 20 and an abutment shaft 22. The inner mounting plate 20 is fixedly connected to the inner wall of the slaughtering table 1. Multiple sets of telescopic rods 21 are equidistantly installed on the inner mounting plate 20. Both ends of the telescopic rods 21 can be extended and the extended ends are fixedly connected to the abutment shaft 22. The abutment shaft 22 can conform to the surfaces of the upper collection layer 14 and the lower collection layer 19.
[0027] During operation, the upper collection layer 14 and the lower collection layer 19 are extended and opened by the telescopic rod 21. After extension, the middle of the upper collection layer 14 is raised and the middle of the lower collection layer 19 is recessed. The protrusion of the upper collection layer 14 allows sewage to flow along the surface of the upper collection layer 14 to both ends, and the concavity of the lower collection layer 19 allows sewage to gather towards the middle position, increasing the available sedimentation area of sewage and increasing sedimentation efficiency.
[0028] As a further embodiment of the present invention, multiple sets of material collection grooves 16 are provided on the upper surface of the upper collection layer 14. Both the upper collection layer 14 and the lower collection layer 19 are elastic, and the material collection grooves 16 automatically expand when the upper collection layer 14 is stretched.
[0029] During operation, the upper collection layer 14 of this invention is driven by the upper cylinder of the telescopic rod 21. The upper cylinder continuously extends and retracts, thereby causing the collection trough 16 of the upper collection layer 14 to continuously expand and contract (the telescopic rod 21 extends, the collection trough 16 expands, the telescopic rod 21 shortens, the collection trough 16 contracts). During the opening and closing of the collection trough 16, the biological tissue in the sewage flowing over the surface of the upper collection layer 14 automatically falls into the collection trough 16 for collection. The collection trough 16 prevents the biological tissue from falling with the sewage to the liquid guiding component.
[0030] As a further embodiment of the present invention, vertical partitions 9 are fixedly installed on the upper surface of the upper mounting plate 24. Multiple sets of mounting holes are opened on the vertical partitions 9, and embedded rings 11 are fixedly installed on each mounting hole. Rotating columns 12 are rotatably installed inside the embedded rings 11. Multiple sets of plug pins 13 are fixedly installed on the outer surface of the rotating columns 12. One end of the vertical partitions 9 extends to the outside of the slaughtering table 1 and is fixedly connected to a handle 8.
[0031] During operation, the present invention further captures biological tissues in sewage through the vertical partition 9. Sewage passes through the embedded ring 11 on the vertical partition 9. When passing through, the biological tissues in the sewage are inserted into the tissue by the plug pins 13 on the rotating column 12, thereby further storing the biological tissues in the rotating column 12. This also further cleans the biological tissues in the sewage, making the separation of biological tissues and blood water in the sewage more thorough. The handle 8 allows users to quickly install and remove the vertical partition 9.
[0032] As a further embodiment of the present invention, side rinsing components 2 are fixedly installed on both sides of the upper surface of the slaughtering table 1, and side rinsing nozzles 3 are fixedly installed on each side rinsing component 2. A mounting frame 5 is arranged across the upper surface of the slaughtering table 1, and multiple sets of clamping components 6 are slidably arranged on the mounting frame 5. The lower end of the mounting frame 5 is slidably connected to the slaughtering table 1, and a suction pipe 23 is fixedly installed on one side of the slaughtering table 1.
[0033] During operation, the clear liquid above the sediment in the lower collection layer 19 of this invention is drawn into the disinfection equipment through the suction pipe 23. At this time, most of the biological tissues and blood in the sewage are collected by the upper collection layer 14 and the lower collection layer 19, which greatly reduces the content of pathogens in the water and also reduces the difficulty of water treatment.
[0034] As a further embodiment of the present invention, a sealing cover 7 is rotatably connected to one side of the slaughtering table 1, and a sealing gasket is provided at the connection between the sealing cover 7 and the slaughtering table 1.
[0035] During operation, the slaughtering table 1 is opened by the sealing cover 7 to facilitate cleaning and replacement of the upper collection layer 14 and lower collection layer 19 inside the slaughtering table 1.
[0036] As a further embodiment of the present invention, the telescopic rod 21 is controlled separately at its upper and lower ends. The telescopic rod 21 is composed of an upper cylinder and a lower cylinder. The upper cylinder can drive the upper contact shaft 22 to move up and down, and the lower cylinder can drive the lower contact shaft 22 to move up and down. An upper filter plate 10 is fixedly installed inside the slaughtering table 1 at the position between the slaughtering panel 4 and the upper collection layer 14.
[0037] During operation, the upper cylinder controls the surface tension of the upper collecting layer 14 and the lower cylinder controls the surface tension of the lower collecting layer 19. The upper cylinder continuously extends and retracts, while the lower cylinder drives the lower collecting layer 19 to reach the specified tension and then maintains stability.
[0038] A method for slaughtering and processing geese, the specific steps of which are as follows: Step 1: Slaughter the goose on the slaughtering panel 4, and hang the slaughtered goose on the clamp 6 to bleed it. Step 2: Open the side flushing unit 2, and let the sewage generated during slaughter flow into the slaughtering table 1 from between the two sets of slaughtering panels 4 through the flushing water; Step 3: Slaughter wastewater first flows into the upper filter plate 10 and falls into the surface of the upper collection layer 14 through its upper filter holes; Step 4: As the wastewater flows to both sides along the slope of the upper collection layer 14, the upper collection layer 14 contracts through the telescopic rod 21, allowing some biological tissue to enter the collection tank 16. Step 5: The wastewater mixed with blood slowly flows into the lower collection layer 19 through the liquid guiding component and flows to the middle of the lower collection layer 19; Step 6: The sewage on the lower collection layer 19 settles and separates, and the upper sewage enters the sewage disinfection equipment for treatment through the suction pipe 23.
[0039] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A slaughtering and processing device for geese, comprising a slaughtering table (1), characterized in that: The slaughtering platform (1) is provided with two sets of slaughtering panels (4) on its surface. The two sets of slaughtering panels (4) are symmetrically arranged. Slaughter wastewater can flow into the slaughtering platform (1) through the gap between the two sets of slaughtering panels (4). The slaughtering platform (1) is provided with a filtration device, which includes an upper collection layer (14) and a lower collection layer (19). The upper collection layer (14) and the lower collection layer (19) are both disposable flexible plastics. The two ends of the upper collection layer (14) and the lower collection layer (19) are fixed inside the slaughtering platform (1) by a liquid guiding component. The liquid guiding component can ensure that the wastewater flows slowly from both sides of the lower collection layer (19) without interfering with the normal discharge speed of the wastewater. A support assembly is located between the upper collection layer (14) and the lower collection layer (19) and is fixedly connected to the slaughtering table (1). The support assembly is capable of changing the shape of the upper collection layer (14) and the lower collection layer (19). The liquid guiding assembly includes an upper mounting plate (24) and a lower mounting plate (17). The upper mounting plate (24) and the lower mounting plate (17) are each provided in two sets. The upper mounting plate (24) is located at both ends of the upper collection layer (14), and the lower mounting plate (17) is located at both ends of the lower collection layer (19). The upper mounting plate (24) and the lower mounting plate (17) are both fixedly connected to the slaughtering table (1). The ends of the upper mounting plate (24) and the lower mounting plate (17) away from the inner wall of the slaughtering table (1) are both fixedly installed with snap rings (18). The ends of the upper collection layer (14) and the lower collection layer (19) are both fixedly installed with snap posts (15). The snap posts (15) can be inserted into the snap rings (18). The slaughtering platform (1) is provided with an outer guide plate (26) and an inner guide plate (27) at positions corresponding to the upper mounting plate (24) and the lower mounting plate (17). The outer guide plate (26) and the inner guide plate (27) are both inclined and their lower ends are close to each other to form a liquid guiding gap. Multiple sets of liquid guiding rollers (28) are provided below the liquid guiding gap. The multiple sets of liquid guiding rollers (28) are longitudinally distributed. The liquid guiding rollers (28) are rotatably connected to the inside of the slaughtering platform (1). A baffle plate (25) is provided on the lower mounting plate (17). The baffle plate (25) is fixedly connected to the inner wall of the slaughtering platform (1). The sewage flowing down from the liquid guiding rollers (28) can flow down to the lower collection layer (19) through the gap between the lower end of the baffle plate (25) and the lower mounting plate (17). Vertical partitions (9) are fixedly installed on the upper surface of the upper mounting plate (24). Multiple sets of mounting holes are opened on the vertical partitions (9). An embedded ring (11) is fixedly installed on each mounting hole. A rotating column (12) is rotatably installed inside the embedded ring (11). Multiple sets of plug pins (13) are fixedly installed on the outer surface of the rotating column (12). One end of the vertical partition (9) extends to the outside of the slaughtering table (1) and is fixedly connected to a handle (8).
2. The slaughtering and processing device for geese according to claim 1, characterized in that: The support assembly includes an inner mounting plate (20) and an abutment shaft (22). The inner mounting plate (20) is fixedly connected to the inner wall of the slaughtering table (1). Multiple sets of telescopic rods (21) are installed at equal intervals on the inner mounting plate (20). Both ends of the telescopic rods (21) can be extended and the extended ends are fixedly connected to the abutment shaft (22). The abutment shaft (22) can adhere to the surfaces of the upper collection layer (14) and the lower collection layer (19).
3. The slaughtering and processing device for geese according to claim 2, characterized in that: The upper collecting layer (14) has multiple sets of collecting troughs (16) on its upper surface. Both the upper collecting layer (14) and the lower collecting layer (19) are elastic. When the upper collecting layer (14) is stretched, the collecting troughs (16) automatically expand.
4. The slaughtering and processing device for geese according to claim 3, characterized in that: The upper surface of the slaughtering table (1) is fixedly equipped with side rinsing components (2) on both sides, and side rinsing nozzles (3) are fixedly installed on each side rinsing component (2). A mounting frame (5) is arranged across the upper surface of the slaughtering table (1). Multiple sets of clamping components (6) are slidably arranged on the mounting frame (5). The lower end of the mounting frame (5) is slidably connected to the slaughtering table (1). A suction pipe (23) is fixedly installed on one side of the slaughtering table (1).
5. The slaughtering and processing device for geese according to claim 4, characterized in that: A sealing cover (7) is rotatably connected to one side of the slaughtering table (1), and a sealing gasket is provided at the connection between the sealing cover (7) and the slaughtering table (1).
6. The slaughtering and processing device for geese according to claim 5, characterized in that: The telescopic rod (21) is controlled separately at its upper and lower ends. The telescopic rod (21) is composed of an upper cylinder and a lower cylinder. The upper cylinder can drive the upper contact shaft (22) to move up and down, and the lower cylinder can drive the lower contact shaft (22) to move up and down. The upper filter plate (10) is fixedly installed inside the slaughtering table (1) at the position between the slaughtering panel (4) and the upper collection layer (14).
7. A method for slaughtering and processing geese, applicable to the goose slaughtering and processing apparatus described in claim 6, characterized in that: The specific steps for slaughtering and processing this goose are as follows: Step 1: Slaughter the goose on the slaughtering panel (4) and hang the slaughtered goose on the clamp (6) to bleed it. Step 2: Open the side flushing unit (2) and flush the wastewater generated during slaughter to flow into the slaughtering table (1) between the two sets of slaughtering panels (4); Step 3: Slaughter wastewater first flows into the upper filter plate (10) and falls into the surface of the upper collection layer (14) through its upper filter holes; Step 4: As the wastewater flows to both sides along the slope of the upper collection layer (14), the upper collection layer (14) is contracted by the telescopic rod (21), allowing some biological tissue to enter the collection tank (16). Step 5: The wastewater mixed with blood slowly flows into the lower collection layer (19) through the liquid guiding component and flows into the middle of the lower collection layer (19); Step 6: Sewage sedimentation and stratification on the lower collection layer (19) and upper sewage enter the sewage disinfection equipment for treatment through the suction pipe (23).
Citation Information
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