Gastric antrum and diverticulum cutting and pouching integrated machine

By designing an integrated machine for cutting the gizzard and crop, the problems of inaccurate positioning and low pass rate of existing equipment when cutting chicken gizzards have been solved, achieving efficient mass production and improved economic benefits.

CN224522263UActive Publication Date: 2026-07-21WEIFANG HUAHAI REFRIGERATION PURIFICATION EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WEIFANG HUAHAI REFRIGERATION PURIFICATION EQUIP CO LTD
Filing Date
2025-08-28
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing mechanized equipment for cutting chicken gizzards suffers from problems such as inaccurate cutting positions, low product qualification rates, and high installation difficulty, making it difficult to meet the needs of large-scale enterprises for mass production.

Method used

An integrated machine for cutting glands, stomach, and crop was designed, including a frame, a feeding hopper assembly, a conveying device, a gizzard clamping device, a crop cutting device, and a gland and stomach cutting device. The machine ensures cutting accuracy and efficiency through adjustable tilt angle, conveyor roller gap, synchronous belt gap, and blade height.

Benefits of technology

It improved production efficiency, reduced the difficulty of feeding materials, increased the product qualification rate, and enhanced the economic benefits of enterprises.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of cutting gland cutting gizzard integrated machine processing, cutting gland cutting gizzard integrated machine processing's chicken gizzard system includes chicken gizzard, gland and gizzard. Cutting gland cutting gizzard integrated machine includes rack, the front end of rack is provided with feed hopper assembly, feed hopper assembly includes feed hopper and the inclination angle adjusting mechanism of adjusting feed hopper inclination angle. Along the length direction of rack, conveying device is provided on rack, the rear end of conveying device is also provided with clamping gizzard device, conveying device and clamping gizzard device partially overlap;From front to back, cutting gizzard device and cutting gland device are also sequentially provided on rack;Gland discharge channel is also provided on rack, gland discharge channel is located below cutting gland device;Chicken gizzard discharge channel is also provided on rack, chicken gizzard discharge channel is located below clamping gizzard device, the inclination angle of the feed hopper of cutting gland cutting gizzard integrated machine of the utility model can be adjusted, to further can better cooperate with hoist work, reduce feeding difficulty, improve production efficiency, to further improve the economic benefit of enterprise.
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Description

Technical Field

[0001] This utility model belongs to the technical field of chicken gizzard processing equipment, specifically relating to an integrated machine for removing glands, stomach, and crop. Background Technology

[0002] A complete chicken gizzard system includes the gizzard, proventriculus, and crop. During the processing of the chicken gizzard system, these three parts need to be cut into separate components to produce different products.

[0003] Currently, the market mainly uses manual cutting to cut the three components, which is inefficient and unsuitable for large-scale mass production.

[0004] Some mechanized equipment has also appeared on the market, but due to the fixed position of the blade and the unreasonable structure of the equipment, when producing chicken gizzards of different sizes, the cutting position is often incorrect during the cutting process, resulting in the rupture of the crop, proventriculus and chicken gizzard products or the proventriculus on the chicken gizzard being too large, resulting in a relatively low product qualification rate.

[0005] The feed chutes of mechanized equipment on the market are all fixed. When installing them with an elevator, if the elevator is too high, additional accessories are needed to ensure that the chicken gizzard system can smoothly enter the feed chutes, which increases the installation difficulty.

[0006] The conveyor rollers of the mechanized equipment on the market are all fixed, and the gap between the two rollers is fixed. When producing chicken gizzards of different sizes, the cutting position at the rear end is inaccurate, resulting in a low product qualification rate.

[0007] When mechanical equipment on the market cuts the crop, it cuts directly. During the cutting process, the crop swings with the blade, resulting in inaccurate cutting position and a low product qualification rate.

[0008] When mechanical equipment on the market cuts proventriculus, it cuts directly. During the cutting process, the proventriculus swings with the blade, resulting in inaccurate cutting position and a low product qualification rate.

[0009] In the process of cutting proventriculus, the mechanized equipment on the market has an unreasonable structure, which makes it easy for chicken gizzards to slip off the conveying structure, resulting in cutting failure and a low product qualification rate. Summary of the Invention

[0010] In view of the above-mentioned shortcomings of the existing technology, this utility model provides an integrated machine for removing glands, stomach and crop, which can reduce the difficulty of feeding materials, improve production efficiency, and thus improve the economic benefits of enterprises.

[0011] To solve the above-mentioned technical problems, the technical solution of this utility model is as follows:

[0012] A combined machine for removing the proventriculus and crop is provided. The chicken gizzard system processed by the machine includes the gizzard, proventriculus, and crop. The machine includes a frame, with a feeding hopper assembly at the front end of the frame. The feeding hopper assembly includes a feeding hopper and a tilting angle adjustment mechanism for adjusting the tilting angle of the feeding hopper. Along the length of the frame, a conveying device is provided, and a gizzard clamping device is provided at the rear end of the conveying device, with the conveying device and the gizzard clamping device partially overlapping. From front to back, a crop-cutting device and a proventriculus-cutting device are sequentially provided on the frame. A proventriculus discharge channel is also provided on the frame, located below the proventriculus-cutting device. A gizzard discharge channel is also provided on the frame, located below the gizzard clamping device.

[0013] Furthermore, the tilt angle adjustment mechanism includes an adjusting screw A, the upper end of which is hinged to the feed hopper, and the lower part of the adjusting screw A is threaded with two adjusting nuts A. The frame is provided with a frame hole A, and the adjusting screw A is inserted into the frame hole A and can move up and down. One adjusting nut A is located above the frame hole A, and the other adjusting nut A is located below the frame hole A. The outer diameter of the adjusting nut A is larger than the inner diameter of the frame hole A.

[0014] Furthermore, the conveying device includes a power component A and two meshing gears A. The power output shaft A of the power component A is connected to one of the gears A. The two gears A are respectively connected to conveying rollers. The two conveying rollers are arranged in parallel and there is a gap between them. The outer surface of both conveying rollers is provided with a spiral groove.

[0015] Furthermore, the clamping device includes a mounting frame, which is mounted on the frame. The mounting frame is provided with a power component B, two meshing gears B, and two synchronous belt assemblies. A power output gear is provided on the power output shaft B of the power component B. The power output gear meshes with one of the gears B. Each gear B drives the corresponding synchronous belt assembly to move. There is a gap between the two synchronous belt assemblies.

[0016] Furthermore, the mounting frame is also provided with an adjustment assembly for adjusting the gap between the two timing belts; the adjustment assembly includes two gap adjustment wheels, which are respectively located inside the corresponding timing belts, and the mounting frame is provided with a strip hole A, and the two gap adjustment wheels are movably constrained within the strip hole A through the gap adjustment wheel shaft.

[0017] Furthermore, two opposing guide members are provided below the synchronous belt assembly. The guide members are used to guide and support the chicken gizzards. The front end of the guide members is fixedly connected to the mounting frame, and the rear end of the guide members is located above the chicken gizzard discharge channel.

[0018] Furthermore, the clamping device also includes an adjustment structure for adjusting the spacing and height of the corresponding guide members. The adjustment structure includes a vertically arranged adjustment shaft, an adjustment plate horizontally arranged at the lower end of the adjustment shaft, a strip hole B on the mounting bracket, and the upper part of the adjustment shaft is movably constrained within the strip hole B.

[0019] Furthermore, each of the timing belt assemblies includes a timing belt A, and two scraper plates are rotatably disposed at the rear end of the mounting bracket, each of the scraper plates scraping material from the corresponding timing belt A.

[0020] Furthermore, the crop-cutting device includes a mounting plate movably connected to the frame. The height of the mounting plate on the frame is adjusted by a crop-cutting height adjustment mechanism. A power component C is provided on the mounting plate, and a blade A is connected to the output end of the power component C. Near the blade A, a nylon plate is also provided on the mounting plate. There is a gap between the blade A and the nylon plate for the crop to pass through. The crop-cutting height adjustment structure includes an adjusting screw B. The lower part of the adjusting screw B is fixedly connected to the mounting plate. A frame hole B is provided on the frame. The upper part of the adjusting screw B passes through the frame hole B and can move up and down. An adjusting nut B is threaded onto the adjusting screw B. The adjusting nut B is located above the frame hole B, and the outer diameter of the adjusting nut B is larger than the inner diameter of the frame hole B.

[0021] Furthermore, the prostatectomy device includes a connecting plate movably connected to the frame. The height of the connecting plate on the frame is adjusted by a prostatectomy height adjustment mechanism. A power component D is provided on the connecting plate, and a blade B is connected to the output end of the power component D. A nylon plate is also provided on the frame near the blade B. A gap for the passage of the prostatectomy is provided between the blade B and the nylon plate. The prostatectomy height adjustment structure includes an adjusting screw C. The lower part of the adjusting screw C is fixedly connected to the connecting plate. A frame hole C is provided on the frame. The upper part of the adjusting screw C passes through the frame hole C and can move up and down. An adjusting nut C is threaded onto the adjusting screw C. The adjusting nut C is located above the frame hole C, and the outer diameter of the adjusting nut C is larger than the inner diameter of the frame hole C.

[0022] After adopting the above technical solution, the beneficial effects of this utility model are:

[0023] The integrated gizzard and crop removal machine processes chicken gizzards, including gizzards, proventriculus, and crop. The machine includes a frame with a feeding hopper assembly at its front end, comprising a feeding hopper and an angle adjustment mechanism. Along the length of the frame, a conveying device is mounted, with a gizzard clamping device at its rear end, partially overlapping with the conveying device. From front to back, a crop removal device and a proventriculus removal device are sequentially mounted on the frame. A proventriculus discharge channel is located below the proventriculus removal device, and a gizzard discharge channel is located below the gizzard clamping device. The adjustable angle of the feeding hopper in this integrated machine allows for better coordination with the elevator, reducing feeding difficulty, increasing production efficiency, and ultimately improving the company's economic benefits. Attached Figure Description

[0024] Figure 1 This is a perspective view of the integrated glandular gastrectomy and crop removal machine of this utility model;

[0025] Figure 2 This is a schematic diagram of the integrated glandular gastrectomy and crop removal machine of this utility model;

[0026] Figure 3 yes Figure 2 Rear view;

[0027] Figure 4 yes Figure 3 Top view;

[0028] Figure 5 yes Figure 4 An enlarged structural schematic diagram of the conveyor device in the middle;

[0029] Figure 6 yes Figure 1 An enlarged three-dimensional view of the central sacral ligament;

[0030] Figure 7 yes Figure 1 Enlarged structural schematic diagram of the central clamping device;

[0031] Figure 8 yes Figure 7 Side view;

[0032] Figure 9 yes Figure 7 Top view;

[0033] Figure 10 yes Figure 9 Partial structural diagram;

[0034] Figure 11 This is a three-dimensional diagram of part of the gizzard clamping device;

[0035] Figure 12 yes Figure 11 A magnified view of a portion of region A in the middle;

[0036] Figure 13 yes Figure 1 Enlarged perspective view of the crop-cutting apparatus;

[0037] Figure 14 yes Figure 1 Enlarged stereoscopic view of the transgastric organ;

[0038] Figure 15 yes Figure 1 An enlarged three-dimensional view of the gizzard system of the Chinese chicken;

[0039] In the diagram, 1. Frame; 2. Gizzard system; 21. Gizzard; 22. Glandular stomach; 23. Croup; 3. Feed hopper assembly; 31. Feed hopper; 32. Adjusting screw A; 33. Adjusting nut A; 4. Conveying device; 41. Power component A; 42. Power output shaft A; 43. Gear A; 44. Conveying roller; 5. Gizzard clamping device; 51. Mounting bracket; 511. Slotted hole A; 512. Slotted hole B; 52. Power component B; 53. Gear B; 54. Drive wheel A; 55. Driven wheel A; 56. Synchronous belt A; 57. Spacing adjustment wheel; 58. Guide component; 59. Scraper; 510. Adjusting... 5101. Shaft; 50. Adjusting plate; 6. Power output gear; 6. Croup cutting device; 61. Mounting plate; 62. Power component C; 63. Blade A; 64. Drive wheel B; 65. Driven wheel B; 66. Synchronous belt B; 67. Nylon plate A; 68. Adjusting screw B; 69. Adjusting nut B; 7. Water spraying device; 71. Valve; 72. Water spraying pipe; 721. Water spraying hole; 8. Gizzard cutting device; 81. Connecting plate; 82. Power component D; 83. Blade B; 84. Nylon plate B; 85. Adjusting screw C; 86. Adjusting nut C; 9. Gizzard discharge channel; 10. Chicken gizzard discharge channel. Detailed Implementation

[0040] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0041] Combination Figure 1 as well as Figure 15 As shown in the figure, the chicken gizzard system 2 processed using the integrated machine for removing the proventriculus and crop of this utility model includes a chicken gizzard 21, a proventriculus 22, and a crop 23.

[0042] Combination Figure 1 , Figure 2 , Figure 3 , Figure 4 as well as Figure 15As shown, the integrated gastrectomy and crop removal machine includes a frame 1, and a feeding hopper assembly 3 is provided at the front end of the frame 1. The feeding hopper assembly 3 includes a feeding hopper 31 and a tilt angle adjustment mechanism for adjusting the tilt angle of the feeding hopper. The front end of the feeding hopper 31 is connected to the tilt angle adjustment mechanism, and the rear end of the feeding hopper 31 is hinged to the frame 1.

[0043] Preferably, the tilt angle adjustment mechanism includes an adjusting screw A 32, the upper end of which is hinged to the feed hopper 31. Two adjusting nuts A 33 are threadedly connected to the lower part of the adjusting screw A 31. The adjusting screw A 32 is inserted into a frame hole A on the frame 1 and can move up and down. One adjusting nut A 33 is located above the frame hole A, and the other adjusting nut A 33 is located below the frame hole A. The outer diameter of the adjusting nut A 33 is larger than the inner diameter of the frame hole A. The two adjusting nuts A 33 are screwed on as needed to adjust to a suitable position, and the upper end of the adjusting screw A 32 is hinged to the feed hopper 31. At this point, the tilt angle adjustment of the feed hopper 31 is complete.

[0044] The tilt angle of the feed hopper 31 is adjusted by the tilt angle adjustment mechanism so as to better cooperate with the elevator (not shown in the figure) and so that the chicken gizzard system carried by the elevator can enter the feed hopper 31 more smoothly.

[0045] Along the length of the frame 1, a conveying device 4 is installed on the frame 1. A gizzard clamping device 5 is also installed at the rear end of the conveying device 4, and the conveying device 4 and the gizzard clamping device 5 partially overlap. From front to back, a crop cutting device 6 and a proventriculus cutting device 8 are also installed on the frame 1 in sequence. A proventriculus discharge channel 9 is also installed on the frame 1, located below the proventriculus cutting device 8. A gizzard discharge channel 10 is also installed on the frame 1, located below the gizzard clamping device 5.

[0046] Combination Figure 1 , Figure 4 as well as Figure 5 As shown, the conveying device 4 includes a power component A 41 and two meshing gears A 43. The power output shaft A 42 of the power component A 41 is fixedly connected to one of the gears A 43. The two gears A 43 are respectively connected to conveying rollers 44. The two conveying rollers 44 are arranged in parallel and have a gap between them. The crop 23 and proventriculus 22 of the gizzard system 2 are smaller than the gizzard 21. The crop 23 and proventriculus 22 hang down below the two conveying rollers 44 through the gap. The outer surface of the two conveying rollers 44 is provided with spiral grooves. The two conveying rollers 44 rotate to convey the gizzard system 2 from front to back.

[0047] The rear ends of the two conveying rollers 44 are rotatably mounted on the frame 1. Two elongated holes are provided on the frame 1. The two conveying rollers 44 are rotatably constrained in the corresponding elongated holes. By adjusting the position of the two conveying rollers 44 in the corresponding elongated holes, the size of the gap between the two conveying rollers 44 can be adjusted.

[0048] A water spraying device 7 is installed above the conveying device 4. The water spraying device 7 includes a water spraying pipe 72, which is arranged along the front-to-back direction. Multiple water spraying holes 721 are spaced apart on the lower surface of the water spraying pipe 72. A valve 71 is also installed on the water spraying pipe 72 to control the water flow and volume. Opening the valve 71 sprays water onto the two conveying rollers 44, which allows the glandular stomach 22 and crop 23 to slide down more smoothly.

[0049] A water tank is also installed on the frame 1, and the water tank is located below the conveying device 4.

[0050] Combination Figure 1 , Figure 6 , Figure 7 , Figure 8 , Figure 9 , Figure 10 , Figure 11 as well as Figure 12 As shown, the clamping device 5 includes a mounting frame 51, which is fixedly mounted on the frame 1. A power component B 52, two meshing gears B53, and two synchronous belt assemblies are mounted on the mounting frame 51. A power output gear 50 is fixedly mounted on the power output shaft B of the power component B 52. The power output gear 50 meshes with one of the gears B53. Each gear B 53 drives the corresponding synchronous belt assembly to move. There is a gap between the two synchronous belt assemblies.

[0051] The timing belt assembly includes a driving pulley A 54 and a driven pulley A 55. The driving pulley A 54 and gear B 53 are mounted on the same shaft. The driven pulley A 55 is rotatably mounted on the mounting bracket 51. The driving pulley A 54 rotates as gear B 53 rotates. The timing belt A 56 is wound around both the driving pulley A 54 and the driven pulley A 55. There is a gap between the two timing belts A 56.

[0052] The two synchronous belts A 56 overlap with the two conveyor rollers 44, and the two synchronous belts A 56 are located above the two conveyor rollers 44.

[0053] Preferably, the mounting bracket 51 is further provided with an adjustment assembly for adjusting the gap between the two synchronous belts A 56. The adjustment assembly includes two pitch adjustment wheels 57, which are respectively located inside the corresponding synchronous belts A 56. The mounting bracket 51 is provided with a strip-shaped hole A 511, and the two pitch adjustment wheels 57 are movably constrained within the strip-shaped hole A 511 by pitch adjustment wheel shafts. After adjusting the position of the two pitch adjustment wheels 57 as needed, the position of the two pitch adjustment wheel shafts is fixed, and the pitch adjustment wheels 57 rotate on the corresponding pitch adjustment wheel shafts.

[0054] Preferably, two opposing guide members 58 are provided below the synchronous belt assembly. The guide members 58 guide and support the gizzards 21. The front end of each guide member 58 is fixedly connected to the mounting bracket 51, and the rear end of each guide member 58 is a free end, located above the gizzard discharge channel 10. The rear end of each guide member 58 is bent downwards. The guide members 58 are preferably made of reinforcing steel.

[0055] More preferably, the clamping device 5 further includes an adjustment structure for adjusting the spacing and height of the corresponding guide members 58. The adjustment structure includes a vertically arranged adjustment shaft 510, and an adjustment plate 5101 is horizontally arranged at the lower end of the adjustment shaft 510. The adjustment shaft 510 and the adjustment plate 5101 are preferably an integral structure, and the two guide members 58 are located between the two adjustment shafts 510. The mounting bracket 51 is provided with a strip hole B 512, and the upper part of the adjustment shaft 510 is movably constrained within the strip hole B 512. The two adjustment shafts 510 move in the corresponding strip hole B 512 to adjust the spacing between the two guide members 58. The two adjustment plates 5101 respectively support the corresponding guide members 58. The height of the corresponding guide members 58 is adjusted by lifting or lowering the corresponding adjustment shafts 510. After adjusting the spacing and height of the two guide members 58 as needed, the upper part of the adjustment shaft 510 is locked and fixed with a nut.

[0056] Two scraper plates 59 are rotatably mounted at the rear end of the mounting frame 51. Each scraper plate 59 scrapes the corresponding synchronous belt A56 to remove the waste material remaining on the synchronous belt A56.

[0057] Combination Figure 1 as well as Figure 13 As shown, preferably, the crop cutting device 6 includes a mounting plate 61 movably connected to the frame 1. The height of the mounting plate 61 on the frame 1 is adjusted by a crop cutting height adjustment mechanism. A power component C 62 is provided on the mounting plate 61, and a blade A 63 is connected to the output end of the power component C 62. Near the blade A 63, a nylon patch A 67 is also provided on the mounting plate 61. There is a gap between the blade A 63 and the nylon patch A 67 for the crop 23 to pass through.

[0058] Preferably, the power component C 62 drives the blade A 63 to rotate via a synchronous belt structure. Specifically, a drive wheel B 64 is provided at the power output end of the power component C 62, and a driven wheel B 65 is rotatably mounted on the mounting plate 61. A synchronous belt B 66 is wound around the drive wheel B 64 and the driven wheel B 65. The blade B 63 and the driven wheel B 65 are mounted on the same shaft. When the drive wheel B 65 rotates, it drives the driven wheel B 65 to rotate via the synchronous belt B 66, thereby driving the blade B 63 to rotate.

[0059] The crop height adjustment structure includes an adjusting screw B 68, the lower part of which is fixedly connected to a mounting plate 61. The mounting plate 61 has a mounting hole into which the lower part of the adjusting screw B 68 is inserted. Two nuts are threadedly connected to the lower part of the adjusting screw B 68, one above the mounting hole and the other below. The outer diameter of both nuts is larger than the inner diameter of the mounting hole. A frame hole B is provided on the frame 1. The upper part of the adjusting screw B 68 passes through the frame hole B and can move up and down. An adjusting nut B 69 is threadedly connected to the adjusting screw B 68, located above the frame hole B. The outer diameter of the adjusting nut B 69 is larger than the inner diameter of the frame hole B. When adjusting the height of the crop cutting device, loosen the adjusting nut B, move the adjusting screw B up or down, and after adjusting to the appropriate position, tighten the adjusting nut B69. After the height adjustment is completed, fix the crop cutting device 6 on the frame.

[0060] Combination Figure 1 as well as Figure 14 As shown, the gastrectomy device 8 includes a connecting plate 81 movably connected to the frame 1. The height of the connecting plate 81 on the frame 1 is adjusted by the gastrectomy height adjustment mechanism.

[0061] A power component D 82 is provided on the connecting plate 81. The output end of the power component D 82 is connected to the blade B 83. Near the blade B 83, a nylon plate B 84 is also provided on the frame 1. There is a gap between the blade B 83 and the nylon plate B 84 for the passage of the glandular stomach 22.

[0062] The height adjustment structure for the prostatectomy includes an adjusting screw C 85. The lower part of the adjusting screw C 85 is fixedly connected to a connecting plate 81. The connecting plate 81 preferably has a connecting plate hole through which the adjusting screw C 85 passes. Two nuts are preferably threadedly connected to the lower part of the adjusting screw C 85, one nut located above the connecting plate hole and the other below it, with the outer diameter of both nuts larger than the inner diameter of the connecting plate hole. A frame hole C is provided on the frame 1. The upper part of the adjusting screw C 85 passes through the frame hole C and can move up and down. An adjusting nut C 86 is threadedly connected to the adjusting screw C 85, located above the frame hole C, with the outer diameter of the adjusting nut C 86 larger than the inner diameter of the frame hole C. When the height of the prostatectomy device 8 needs to be adjusted, first loosen the adjusting nut C 86, move the adjusting screw C 85 up or down, adjust to the appropriate position, then tighten the adjusting nut C 86 again. After adjustment, fix the prostatectomy device 8 on the frame.

[0063] The power components A 41, B 52, C 62 and D 82 in the integrated gland removal, gastrectomy and crop removal machine of this utility model are motor reducers or other conventional power components that can provide power, which will not be described in detail here.

[0064] In the integrated machine for removing glands, stomach, and crop, the frame holes A, B, and C of this invention can also be elongated holes.

[0065] The process of processing chicken gizzards using the integrated desiccant, gastrectomy, and crop removal machine of this invention is described in detail below:

[0066] After adjusting the tilt angle of the feed hopper 31, the gap between the two conveyor rollers 44, the gap between the two synchronous belts A56, the height of the crop cutting device 6, and the height of the glandular stomach cutting device 8, open the valve 71 and the water spray pipe 72 of the water spray device 7 starts spraying water.

[0067] The elevator transports the chicken gizzard system 2 to be processed to the feed hopper 31. The height of the conveyor roller 44 is lower than the height of the feed hopper 31. The chicken gizzard system 2 falls onto the two conveyor rollers 44 and is conveyed from front to back under the action of the conveyor rollers 44. It is then conveyed to the crop cutting device 6. The blade A 63 cuts off the crop 23. During the cutting process, the use of the nylon plate A 67 effectively prevents the crop 23 from swinging with the blade A 63, and the crop 23 is cut off smoothly. The cut crop 23 falls into the water tank along with the water. The gizzard system 2, with its crop 23 removed, continues to be conveyed on the two conveyor rollers 44 until it is clamped by the two synchronous belts A 56 and supported by the two guide members 58. It continues to move to the proventriculus cutting device 8, where the blade B 83 cuts the proventriculus 22 at an angle. During the cutting process, the use of the nylon plate B 84 effectively prevents the proventriculus 22 from swinging with the blade B 83, thus smoothly cutting the proventriculus 22. The cut proventriculus 22 falls into the proventriculus discharge channel 9 and is discharged. The gizzard 21 continues to move until it detaches from the synchronous belts A 56 and the guide members 58 and falls into the gizzard discharge channel 10 and is discharged.

[0068] The technical features with serial numbers mentioned in this manual (such as adjusting screw A, adjusting nut A, power component A, power output shaft A, gear A, slot A, slot B, power component B, gear B, driving wheel A, driven wheel A, synchronous belt A, power component C, blade A, driving wheel B, driven wheel B, synchronous belt B, nylon plate A, adjusting screw B, adjusting nut B, power component D, blade B, nylon plate B, adjusting screw C, adjusting nut C, etc.) are only for distinguishing the technical features and do not represent the positional relationship, installation sequence, or working sequence of the technical features.

[0069] In the description of this specification, it should be understood that the orientation or positional relationship described by terms such as "front", "back", "above", and "below" is based on the orientation or positional relationship shown in the accompanying drawings. It is only for the convenience of describing this utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of this utility model.

[0070] This utility model is not limited to the specific embodiments described above. Any modifications made by those skilled in the art based on the above concept without creative effort shall fall within the protection scope of this utility model.

Claims

1. A combined machine for removing proventriculus and crop, wherein the chicken gizzard system processed by the combined machine includes the gizzard, proventriculus, and crop; characterized in that, The integrated machine for removing the prostate and crop includes a frame. A feeding hopper assembly is located at the front end of the frame, comprising a feeding hopper and a tilting angle adjustment mechanism for adjusting the tilt angle of the feeding hopper. A conveying device is mounted on the frame along its length, and a gizzard clamping device is located at the rear end of the conveying device, with the conveying device and the gizzard clamping device partially overlapping. From front to back, a crop-cutting device and a prostate-stomach-removing device are sequentially mounted on the frame. A prostate-stomach discharge channel is also provided on the frame, located below the prostate-stomach-removing device. A gizzard discharge channel is also provided on the frame, located below the gizzard clamping device.

2. The integrated machine for removing glands, stomach, and crop as described in claim 1, characterized in that, The tilt angle adjustment mechanism includes an adjusting screw A, the upper end of which is hinged to the feed hopper, and two adjusting nuts A threadedly connected to the lower part of the adjusting screw A. The frame is provided with a frame hole A, and the adjusting screw A is inserted into the frame hole A and can move up and down. One adjusting nut A is located above the frame hole A, and the other adjusting nut A is located below the frame hole A. The outer diameter of the adjusting nut A is larger than the inner diameter of the frame hole A.

3. The integrated machine for removing glands, stomach, and crop as described in claim 1, characterized in that, The conveying device includes a power component A and two meshing gears A. The power output shaft A of the power component A is connected to one of the gears A. The two gears A are respectively connected to conveying rollers. The two conveying rollers are arranged in parallel and there is a gap between them. The outer surface of the two conveying rollers is provided with a spiral groove.

4. The integrated machine for removing glands, stomach, and crop as described in claim 1, characterized in that, The clamping device includes a mounting frame, which is mounted on the frame. The mounting frame is provided with a power component B, two meshing gears B, and two synchronous belt assemblies. The power output shaft B of the power component B is provided with a power output gear, which meshes with one of the gears B. Each gear B drives the corresponding synchronous belt assembly to move, and there is a gap between the two synchronous belt assemblies.

5. The integrated machine for removing glands, stomach, and crop as described in claim 4, characterized in that, The mounting frame is also provided with an adjustment assembly for adjusting the gap between the two timing belts; the adjustment assembly includes two gap adjustment wheels, which are respectively located inside the corresponding timing belts. The mounting frame is provided with a strip hole A, and the two gap adjustment wheels are movably constrained within the strip hole A through the gap adjustment wheel shaft.

6. The integrated machine for removing glands, stomach, and crop as described in claim 4, characterized in that, Below the synchronous belt assembly, there are two opposing guide members. The guide members are used to guide and support the chicken gizzards. The front end of the guide members is fixedly connected to the mounting frame, and the rear end of the guide members is located above the chicken gizzard discharge channel.

7. The integrated machine for removing glands, stomach, and crop as described in claim 6, characterized in that, The clamping device further includes an adjustment structure for adjusting the spacing and height of the corresponding guide members. The adjustment structure includes a vertically arranged adjustment shaft, an adjustment plate horizontally arranged at the lower end of the adjustment shaft, a strip hole B on the mounting bracket, and the upper part of the adjustment shaft is movably constrained within the strip hole B.

8. The integrated machine for removing glands, stomach, and crop as described in claim 4, characterized in that, Each of the timing belt assemblies includes a timing belt A, and the rear end of the mounting bracket is rotatably equipped with two scraper blades, each of the scraper blades scraping the corresponding timing belt A.

9. The integrated machine for removing glands, stomach, and crop as described in claim 1, characterized in that, The crop-cutting device includes a mounting plate movably connected to the frame. The height of the mounting plate on the frame is adjusted by a crop-cutting height adjustment mechanism. A power component C is provided on the mounting plate, and a blade A is connected to the output end of the power component C. Near the blade A, a nylon plate is also provided on the mounting plate. There is a gap between the blade A and the nylon plate for the crop to pass through. The crop-cutting height adjustment structure includes an adjusting screw B. The lower part of the adjusting screw B is fixedly connected to the mounting plate. A frame hole B is provided on the frame. The upper part of the adjusting screw B passes through the frame hole B and can move up and down. An adjusting nut B is threaded onto the adjusting screw B. The adjusting nut B is located above the frame hole B, and the outer diameter of the adjusting nut B is larger than the inner diameter of the frame hole B.

10. The integrated machine for removing glands, stomach, and crop as described in claim 1, characterized in that, The prostatectomy device includes a connecting plate movably connected to the frame. The height of the connecting plate on the frame is adjusted by a prostatectomy height adjustment mechanism. A power component D is provided on the connecting plate, and a blade B is connected to the output end of the power component D. A nylon plate is also provided on the frame near the blade B. There is a gap between the blade B and the nylon plate for the passage of the prostatectomy. The prostatectomy height adjustment structure includes an adjusting screw C. The lower part of the adjusting screw C is fixedly connected to the connecting plate. A frame hole C is provided on the frame. The upper part of the adjusting screw C passes through the frame hole C and can move up and down. An adjusting nut C is threaded onto the adjusting screw C. The adjusting nut C is located above the frame hole C, and the outer diameter of the adjusting nut C is larger than the inner diameter of the frame hole C.