Beef cattle slaughtering viscera treatment device
By setting up a conveying mechanism on the outer wall of the division groove of the beef cattle slaughtering and treatment device, automatic transportation and collection of scraps is realized, solving the problem of large physical movement of staff during division, and improving the division efficiency and labor efficiency of staff.
Patent Information
- Application Number
- CN202422075984.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-27
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-27
AI Technical Summary
During the slaughtering and processing of beef cattle, when the staff divides the intestines of beef cattle, they need to turn around frequently and put the scraps into the collection box, resulting in large amounts of physical activity, affecting physical strength and division efficiency.
A beef cattle slaughtering internal organ treatment device is designed. The outer wall of the division groove is equipped with a conveying mechanism for conveying scraps. One end of the conveying mechanism extends to the side of the division groove, and a collection box is provided below one end, so that the staff can directly put the scraps into the conveying mechanism and automatically convey them to the collection box.
By reducing the physical activity of staff, the segmentation efficiency is improved and the labor intensity of staff is reduced.
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Figure CN222997302U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to beef cattle slaughtering technology, and particularly to an internal organ processing device for beef cattle slaughtering. Background Art
[0002] During the beef cattle slaughtering and processing process, after the intestines and stomach of the beef cattle are taken out, they directly fall into the chute and then slide along the chute into the internal organ processing device for manual segmentation.
[0003] As Figure 1 shown, a commonly used internal organ processing device at present includes a frame 1, a decomposition tank 2 is fixed on the frame 1, an installation port I 201 for connecting with the chute is arranged at the rear end of the decomposition tank 2, an installation port II 02 is opened at the left end of the decomposition tank 2, the installation port II 202 is connected with a beef tripe conveying structure, an installation port III 203 is opened at the front end of the left part of the decomposition tank 2, the installation port III 203 is connected with a beef intestine conveying structure, a spraying structure 3 connected with a water supply device is arranged on the decomposition tank 2, and a drain pipe is connected to the bottom of the decomposition tank 2. When in use, the frame 1 is placed above the drainage structure in the processing workshop, the drain pipe extends into the drainage structure. After the intestines and stomach of the beef cattle slide into the decomposition tank 2 from the chute, the staff stands at the front end of the decomposition tank 2 and holds a knife to segment the intestines and stomach of the beef cattle. First, the scraps connected to the intestines and stomach are cut off and placed into the collection box, and then the intestines and stomach are segmented. After segmentation, the beef tripe is pushed onto the beef tripe conveying structure, and the beef tripe conveying structure conveys the beef tripe to the beef tripe processing station. The beef intestine is pushed into the beef intestine conveying structure, and the beef intestine conveying structure conveys the beef intestine to the beef intestine processing station. Additionally, while segmenting, the spraying structure 3 sprays water to the bottom of the decomposition tank 2, the water flows towards the drain pipe position at the bottom of the decomposition tank 2, and the blood and water at the bottom of the decomposition tank 2 enter the drain pipe along with the water flow to achieve the effect of cleaning the blood and water.
[0004] However, during actual segmentation, the collection box for collecting scraps is usually directly placed on the side of the staff. When the scraps are cut off, the staff needs to hold the scraps by hand and turn around to put the scraps into the collection box, which not only has a large body movement range, affecting the physical strength of the staff, but also affects the segmentation efficiency of the staff. Utility Model Content
[0005] The present application provides an internal organ processing device for beef cattle slaughtering to solve the problem of large body movement range of the existing staff when segmenting the intestines and stomach of beef cattle.
[0006] The present application provides an internal organ processing device for beef cattle slaughtering, including a bracket, the upper end of the bracket is fixed with a segmentation tank, and the segmentation tank is provided with a first installation port, a second installation port and a third installation port;
[0007] On the outer wall of the dividing groove, a conveying mechanism for conveying scraps and distributed along its length direction is provided. One end of the conveying mechanism extends to the side of the dividing groove, and a collection box is arranged below one end of the conveying mechanism.
[0008] Optionally, the conveying mechanism includes a trough body, which is fixed on the outer wall of the dividing groove and distributed along the length direction of the dividing groove. The bottom of the trough body is of an inclined structure, and both the upper end and the inclined lower end of the trough body are of open structures;
[0009] The collection box is located below the inclined lower end of the trough body.
[0010] Optionally, the bottom of the dividing groove is composed of an inclined section and a horizontal section. A mesh plate is arranged between the inclined section and the horizontal section. A water collecting trough is arranged at the lower end of the mesh plate, and the water collecting trough extends above the inclined upper part of the trough body. The water collecting trough is provided with a water distribution port located inside the trough body;
[0011] Above the inclined upper part of the inclined section, a water spraying structure is provided.
[0012] Optionally, the water spraying structure includes a water spraying pipe for connecting with a water supply device. The water spraying pipe is distributed along the width direction of the dividing groove, and a plurality of spray heads which are equally spaced and can spray water downward are connected to the water spraying pipe.
[0013] Optionally, the collection box includes a box body, which is a hollow structure with an open upper end. A detachable water draining frame is arranged inside the box body. The bottom of the box body is of an inclined structure, and a drain port located below the water draining frame is arranged at the inclined lower end of the box body.
[0014] Optionally, the water draining frame is a net box structure with an open upper end, and an annular plate is sleeved and fixed at the upper end of the water draining frame;
[0015] After the water draining frame is located inside the box body, the annular plate is inserted into the upper end of the box body;
[0016] A handle is fixed at the upper end of the water draining frame.
[0017] Optionally, universal wheels are arranged at the four corner positions of the bottom of the box body, and a push handle is fixed on the outer wall of one end of the box body.
[0018] Compared with the prior art, the beneficial effects of this application are:
[0019] The beef cattle slaughter internal organ processing device provided by the present application is provided with a conveying mechanism on the outer wall of the cutting tank for conveying scraps and distributed along its length direction. One end of the conveying mechanism extends to the side of the cutting tank, and a collection box is arranged below one end of the conveying mechanism. When the staff cuts the intestines and stomachs of beef cattle, the conveying mechanism is located between the staff and the cutting tank. After the staff cuts off the scraps, the scraps can be directly placed on the conveying mechanism by hand movements, and then the scraps fall into the collection box through the conveying mechanism. Therefore, compared with the existing cutting method, the staff does not need to turn around to put the scraps into the box, which can not only reduce the movement range of the body, but also improve the cutting efficiency. Description of the Drawings
[0020] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required to be used in the description of the embodiments or the prior art. Obviously, the following drawings are some embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.
[0021] Figure 1 Structural schematic diagram of the existing internal organ processing device;
[0022] Figure 2 Stereoscopic structural schematic diagram of the beef cattle slaughter internal organ processing device provided by the embodiment of the present application;
[0023] Figure 3 Top view structural schematic diagram of the beef cattle slaughter internal organ processing device provided by the embodiment of the present application;
[0024] Figure 4 Partial front view sectional structural schematic diagram of the beef cattle slaughter internal organ processing device provided by the embodiment of the present application;
[0025] Figure 5 Partial side view sectional structural schematic diagram of the beef cattle slaughter internal organ processing device provided by the embodiment of the present application;
[0026] Figure 6 Exploded structural schematic diagram of the collection box of the beef cattle slaughter internal organ processing device provided by the embodiment of the present application.
[0027] Explanation of the reference numerals in the drawings: frame body 1, decomposition tank 2, installation opening Ⅰ 201, installation opening Ⅱ 202, installation opening Ⅲ 203, spraying structure 3;
[0028] Bracket 4;
[0029] Cutting tank 5, first installation opening 501, second installation opening 502, third installation opening 503, inclined section 504, horizontal section 505, mesh plate 506;
[0030] Conveyor mechanism 6, trough body 601;
[0031] Collection box 7, box body 701, water draining frame 702, drain opening 703, annular plate 704, handle 705, universal wheel 706, push handle 707;
[0032] Water collection trough 8, water distribution opening 801;
[0033] Spraying structure 9, spray water pipe 901, spray head 902. Specific implementation manner
[0034] To make the objectives, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below. Apparently, the described embodiments are some, but not all, of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments in the present application without creative efforts also belong to the scope of protection of the present application.
[0035] As Figures 2-6 shown:
[0036] A beef cattle slaughtering internal organ processing device provided by an embodiment of the present application includes a bracket 4. The upper end of the bracket 4 is fixed with a splitting trough 5. The splitting trough 5 is provided with a first installation opening 501, a second installation opening 502 and a third installation opening 503. Specifically, the first installation opening 501 is located at the rear end of the right section of the splitting trough 5, and the first installation opening 501 is connected to a slideway. The second installation opening 502 is at the left end of the splitting trough 5, and the second installation opening 502 is connected to a beef tripe conveying structure. The third installation opening 503 is at the front end of the left section of the splitting trough 5, and the third installation opening 503 is connected to a beef intestine conveying structure.
[0037] On the outer wall of the splitting trough 5, there is a conveyor mechanism 6 for conveying scraps and distributed along its length direction. Specifically, the conveyor mechanism 6 is located in front of the first installation opening 501.
[0038] One end of the conveyor mechanism 6 extends to the side of the splitting trough 5, and a collection box 7 is provided below one end of the conveyor mechanism 6. Specifically, the right end of the conveyor mechanism 6 extends to the right side of the splitting trough 5, and the collection box 7 is located below the right end of the conveyor mechanism 6.
[0039] During use, after the internal organs of the beef cattle are taken out, they slide into the cutting groove 5. The staff stands in front of the conveying mechanism 6, that is, the conveying mechanism 6 is located between the staff and the cutting groove 5, and the conveying mechanism 6 is in front of the staff. Then the staff first holds a knife to cut off the scraps connected to the internal organs. After the scraps are cut off, the staff directly places the scraps on the conveying mechanism 6 in front of the staff. The scraps fall into the collection box 7 through the conveying mechanism 6 for collecting the scraps. Then the staff holds a knife to cut the internal organs. After the cutting is completed, the beef tripe is pushed onto the beef tripe conveying structure, and the beef tripe conveying structure conveys the beef tripe to the beef tripe processing station, and the beef intestine is pushed into the beef intestine conveying structure, and the beef intestine conveying structure conveys the beef intestine to the beef intestine processing station.
[0040] For the beef cattle slaughter internal organ processing device provided in this embodiment, a conveying mechanism 6 for conveying scraps and distributed along its length direction is provided on the outer wall of the cutting groove 5. One end of the conveying mechanism 6 extends to the side of the cutting groove 5, and a collection box 7 is provided below one end of the conveying mechanism 6. When the staff cuts the internal organs of the beef cattle, after the staff cuts off the scraps, the staff can directly put the scraps on the conveying mechanism 6 by hand movement, and then the scraps fall into the collection box 7 through the conveying mechanism 6. Therefore, compared with the existing cutting method, the staff does not need to turn around to put the scraps into the box body 701, which can not only reduce the movement range of the body, but also improve the cutting efficiency.
[0041] In some embodiments of the present application, the conveying mechanism 6 includes a trough body 601. The trough body 601 is fixed on the outer wall of the cutting groove 5 and distributed along the length direction of the cutting groove 5. The bottom of the trough body 601 is of an inclined structure, and both the upper end and the inclined lower end of the trough body 601 are of open structures. The collection box 7 is located below the inclined lower end of the trough body 601.
[0042] In this embodiment, the bottom of the trough body 601 slopes downward from left to right. The upper end and the right end of the trough body 601 are open, and the collection box 7 is located below the right end of the trough body 601. The inclination angle of the bottom of the trough body 601 can be set according to actual use as long as it can ensure that the scraps can slide into the collection box 7 according to their own gravity.
[0043] During use, the cut-off scraps are directly put into the trough body 601. Since the bottom of the trough body 601 is inclined, after the scraps are put into the trough body 601, the scraps slide along the trough body 601 into the collection box 7 according to their own gravity, so as to achieve the effect of conveying the scraps.
[0044] In some embodiments of the present application, the bottom of the cutting groove 5 is composed of an inclined section 504 and a horizontal section 505.
[0045] Specifically, the trough 601 is located at the front end of the inclined section 504, the first mounting opening 501 is located at the rear end of the inclined section 504, the second mounting opening 502 is located at the left end of the horizontal section 505, and the third mounting opening 503 is located in front of the horizontal section 505. The inclined section 504 slopes downward from right to left, and the inclination angle of the inclined section 504 can be set according to actual use, as long as it is ensured that the connected intestines and guts fall onto the inclined section 504 and will not slide towards the horizontal section 505 due to their own gravity.
[0046] A wire mesh plate 506 is provided between the inclined section 504 and the horizontal section 505. A water collecting trough 8 is provided at the lower end of the wire mesh plate 506, and the water collecting trough 8 extends above the upper oblique part of the trough 601. The water collecting trough 8 is provided with a water distribution opening 801 located inside the trough 601. Specifically, the water collecting trough 8 is a hollow structure with an open upper end, and the upper end of the water collecting trough 8 is hermetically connected to the bottom of the dividing trough 5. The water distribution opening 801 is distributed along the width direction of the trough 601.
[0047] A water spraying structure 9 is provided above the upper oblique part of the inclined section 504. Specifically, the water spraying structure 9 is located above the right end of the inclined section 504.
[0048] In this embodiment, the water spraying structure 9 is connected to a water supply device, and the water supply device provides clean water for the water spraying structure 9.
[0049] During use, the taken-out intestines and guts slide into the inclined section 504 from the slideway. The staff performs the cutting work at the position of the inclined section 504. At the same time, the water spraying structure 9 sprays water onto the inclined section 504. The sprayed water falls onto the inclined section 504 and flows towards the position of the wire mesh plate 506. When the water flows towards the position of the wire mesh plate 506, the blood and water of the inclined section 504 flow towards the wire mesh plate 506 together with the water, and flow into the collection trough through the wire mesh plate 506. The water in the collection trough flows into the trough 601 from the water distribution opening 801, and then enters the collection box 7 along with the scraps along the trough 601, so as to be able to clean the blood and water of the inclined section 504 and the trough 601.
[0050] In some embodiments of the present application, the water spraying structure 9 includes a spray water pipe 901 for connecting to a water supply device. The spray water pipe 901 is distributed along the width direction of the dividing trough 5. A plurality of nozzles 902 that are equally spaced and can spray water downward are connected to the spray water pipe 901, so as to be able to spray water evenly onto the inclined section 504.
[0051] In some embodiments of the present application, the collection box 7 includes a box body 701. The box body 701 is a hollow structure with an open upper end. A detachable water draining frame 702 is provided inside the box body 701, which is convenient for dumping scraps. The bottom of the box body 701 is an inclined structure, and a drain port 703 located below the water draining frame 702 is provided at the lower inclined end of the box body 701.
[0052] In this embodiment, the frame is placed at the position of the drainage ditch in the processing workshop. After the box body 701 is located below the right end of the tank body 601, the drain port 703 can be aligned with the drainage ditch.
[0053] During use, water and scraps enter the water drainage frame 702. The scraps are collected inside the water drainage frame 702. The water passes through the water drainage frame 702 and falls to the bottom of the box body 701, and then flows into the drainage ditch after drainage, thereby realizing the separation of water and scraps.
[0054] In some embodiments of the present application, the water drainage frame 702 is a net box structure with an open upper end, which is used to improve the water drainage effect. A ring plate 704 is sleeved and fixed at the upper end of the water drainage frame 702. After the water drainage frame 702 is located inside the box body 701, the ring plate 704 is inserted into the upper end of the box body 701, which is convenient for disassembling and assembling the water drainage frame 702.
[0055] A handle 705 is fixed at the upper end of the water drainage frame 702, which is convenient for lifting and placing the water drainage frame 702.
[0056] In order to facilitate the movement of the box body 701, in some embodiments of the present application, universal wheels 706 are provided at the four corner positions of the bottom of the box body 701, and a push handle 707 is fixed on the outer wall of one end of the box body 701.
Claims
1. A beef cattle slaughter viscera processing device, comprising a bracket (4), a dividing groove (5) fixed at the upper end of the bracket (4), and a first mounting opening (501), a second mounting opening (502) and a third mounting opening (503) provided on the dividing groove (5), characterized in that: A conveying mechanism (6) for conveying scraps and distributed along the length direction of the dividing groove (5) is provided on the outer wall of the dividing groove (5); one end of the conveying mechanism (6) extends to the side of the dividing groove (5); and a collection box (7) is provided below one end of the conveying mechanism (6).
2. The beef cattle slaughter viscera processing device according to claim 1, characterized in that: The conveying mechanism (6) comprises a trough body (601), the trough body (601) being fixed on the outer wall of the dividing groove (5) and distributed along the length direction of the dividing groove (5), the bottom of the trough body (601) being an inclined structure, and the upper end and the oblique lower end of the trough body (601) being both open structures; The collection box (7) is located below the oblique lower end of the tank body (601).
3. The beef cattle slaughter viscera processing device according to claim 2, characterized in that: The bottom of the dividing groove (5) is composed of an inclined section (504) and a horizontal section (505); a mesh plate (506) is provided between the inclined section (504) and the horizontal section (505); a water collecting groove (8) is provided at the lower end of the mesh plate (506); the water collecting groove (8) extends to the upper oblique part of the groove body (601); and the water collecting groove (8) is provided with a water distribution port (801) located in the groove body (601); A water spray structure (9) is provided above the inclined upper portion of the inclined section (504).
4. The beef cattle slaughter viscera processing device according to claim 3, characterized in that: The water spray structure (9) comprises a water spray pipe (901) for connecting to a water supply device, the water spray pipe (901) being distributed along the width direction of the dividing groove (5), and the water spray pipe (901) being connected to a plurality of spray heads (902) which are distributed at equal distances and can spray water downwards.
5. The beef cattle slaughter viscera processing device according to claim 1, characterized in that: The collecting box (7) comprises a box body (701), the box body (701) is a hollow structure with an opening at the upper end, a detachable drain frame (702) is provided inside the box body (701), the bottom of the box body (701) is an inclined structure, and a drainage outlet (703) located below the drain frame (702) is provided at the inclined lower end of the box body (701).
6. The beef cattle slaughter viscera processing device according to claim 5, characterized in that: The drain frame (702) is a mesh box structure with an open upper end, and a ring plate (704) is sleeved and fixed on the upper end of the drain frame (702); After the drain frame (702) is located inside the box body (701), the annular plate (704) is plugged into the upper end of the box body (701); A handle (705) is fixed to the upper end of the drain frame (702).
7. The beef cattle slaughter viscera processing device according to claim 5, characterized in that: Universal wheels (706) are provided at the four corners of the bottom of the box (701), and a push handle (707) is fixed to the outer wall of one end of the box (701).