A method for processing fresh tripe in slaughterhouse

By using a combined device of a rotating seat and a friction plate in the processing of fresh tripe in a slaughterhouse, rotation and extrusion friction of the tripe are achieved, the problem of low cleaning efficiency in the prior art is solved, and fast and effective impurity cleaning is achieved.

CN118415211BActive Publication Date: 2025-09-19重庆市巴南区动物疫病预防控制中心
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Patent Information

Application Number
CN202410716540.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-06-04
Publication Date
2025-09-19
Estimated Expiration
2044-06-04

AI Technical Summary

Technical Problem

The existing technology cannot quickly and effectively clean impurities on fresh tripe during processing in slaughterhouses, and the cleaning method is single and inefficient.

Method used

A method for processing fresh tripe in a slaughterhouse is adopted. The tripe is rotated and squeezed and rubbed in combination with a friction plate by moving a rotating seat on a rotating disk, thereby cleaning impurities that are difficult to remove.

Benefits of technology

The method realizes the rapid and effective cleaning of fresh tripe, improves the processing efficiency, and ensures that impurities on the surface of the tripe are completely removed.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a method for processing fresh tripe in a slaughterhouse, comprising the following steps: feeding and soaking, wherein water enters the interior of a barrel, and the water level is located at half the position of a rotating seat to complete the soaking; step two: stirring, wherein a rotating disk drives a stirring column to rotate between the rotating seats, and the stirring column is used to complete the stirring of the tripe, thereby achieving collision and stirring between the tripes; step three: extrusion and friction cleaning, wherein the rotating disk and the rotating seat are moved and dislocated by a stirring assembly and a displacement mechanism, and after the dislocation, the rotating disk squeezes the tripe between the rotating seat and the rotating disk, rubbing and squeezing. In this method for processing fresh tripe in a slaughterhouse, the rotating seat moves on the rotating disk, and the rotating disk rotates later to rotate the tripe through a friction plate, and extrudes and rubs while rotating to clean impurities on the tripe that are difficult to clean. The movement of the rotating seat enables the rotating disk to achieve two-way friction cleaning of the tripe inside the filter assembly.
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Description

Technical Field

[0001] The invention relates to the field of fresh tripe processing equipment, in particular to a method for processing fresh tripe in a slaughterhouse. Background Art

[0002] After the cattle are slaughtered in the slaughterhouse, the fresh tripe needs to be processed quickly to prepare for long-term storage. During the early processing of the tripe, the dirt inside the tripe needs to be quickly cleaned and discharged to provide suitable conditions for later processing.

[0003] According to a patent document with the existing publication number CN106071932A, a method for processing fresh tripe is disclosed, which includes the following steps: 1: washing the fresh tripe, filtering it, and draining it for later use; 2: sprinkling food-grade sodium bicarbonate powder on the surface of the fresh tripe prepared in step S1, wherein the weight ratio of the food-grade sodium bicarbonate powder is 2-8% of the total weight of the fresh tripe; and 3: placing the fresh tripe processed in step S2 into a tumbling machine, tumbling and kneading it at a temperature of 5-15°C for 5-20 minutes, and then allowing it to stand at room temperature for 10-50 minutes to allow the sodium bicarbonate to penetrate into the fresh tripe. and then washed with clean water. When using this technical solution, food-grade sodium bicarbonate powder is sprinkled on the surface of the fresh tripe, and the fresh tripe sprinkled with sodium bicarbonate powder is put into a tumbling machine and rubbed to allow the sodium bicarbonate to completely penetrate into the fresh tripe. The rubbed fresh tripe is then cut and packaged, and a composite phosphate solution is injected into the bag for soaking to achieve moisture retention of the fresh tripe. With respect to the above technical solution, this solution realizes processing for later consumption, but the fresh tripe cannot be quickly cleaned in the early stage, the cleaning method is single and cannot effectively remove impurities, which is inconvenient during use. Summary of the Invention

[0004] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide a method for processing fresh tripe in a slaughterhouse to solve the problems raised in the above-mentioned background technology. The present invention has a novel structure. When in use, the rotating seat moves on the rotating disk. The rotating disk rotates later to realize the rotation of the tripe through the friction plate. While rotating, it squeezes and rubs to clean impurities on the tripe that are difficult to clean. The movement of the rotating seat enables the rotating disk to realize two-way friction cleaning of the tripe inside the filter component.

[0005] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical scheme: a method for processing fresh tripe in a slaughterhouse, comprising the steps of: feeding and soaking, separating the opening and the tapered tube from the discharge port, and feeding water into the water inlet pipe after separation, and the water enters the interior of the barrel, and the water level is located at half the position of the rotating seat to complete the soaking; step two: stirring, the rotating disk drives the stirring column to rotate between the rotating seats, and the stirring column is used to complete the stirring of the tripe, so as to achieve collision stirring between the tripes; step three: extrusion friction cleaning, the stirring assembly and the rotating seat are moved and dislocated by the stirring assembly and the displacement mechanism, and after the dislocation, the rotating disk squeezes the tripe between the rotating seat and the rotating disk, rubs and squeezes it, and removes the difficult-to-clean substances on the tripe; step four: spray cleaning, the rotating disk and the stirring column stir the internal tripe while spraying water through the water nozzle on the arc plate to complete the flow cleaning of the tripe inside the filter assembly; step five: discharging, the filter assembly is rotated under the drive of the first power mechanism, and the feed port and the discharge port are aligned to complete the discharging.

[0006] Furthermore, when the tripe in the step one is soaked, the ring seat is rotated on the barrel body, and the inner wall of the ring seat contacts the bottom of the discharge port for sealing. A feed port is opened on the top of the filter assembly and is connected to the feed hopper. The tripe enters the interior of the filter assembly through the feed hopper and the feed port, and water is injected into the water inlet pipe to complete the soaking. At the same time, the output shaft on one side of the rotating disk is connected to the second power mechanism, and the second power mechanism provides power for the rotating disk. The power drives the rotating disk and the stirring column to rotate, and the rotation completes the stirring of the internal tripe, so that different positions of the tripe can be in contact with water to complete the soaking, and the soaking can preliminarily remove the substances adhering to the tripe.

[0007] Furthermore, after the soaking in the above step 1 is completed, the ring seat is rotated to make the conical tube contact with the discharge port, and the sealing ring on the inner wall of the ring seat is connected to the barrel body to achieve sealing of the ring seat as a whole, thereby ensuring that water or later tripe are discharged in a centralized manner. After the soaking is completed, the dirty water inside the barrel body is discharged from the drain pipe. During the discharge, the water nozzle sprays water to clean the inside of the barrel body again. The arc plates are distributed in a semicircle on the inner wall of the barrel body, which can complete the comprehensive cleaning of the filter assembly and the inner wall of the barrel body.

[0008] Furthermore, when the stirring is completed inside the step 2, one side of the rotating disk is movably installed on the rotating seat through the output shaft. The output shaft drives the rotating disk to rotate under the drive of the second power mechanism. The rotating disk completes the stirring of the tripe inside the filter component through the stirring column. The stirring and collision of the tripe facilitates the removal of impurities on the tripe. After the stirring is completed, the water outlet sprays water again to complete the cleaning of the tripe.

[0009] Furthermore, the step three requires that the tripe be squeezed in half inside the filter assembly by a rotating disk. The side of the rotating seat is connected to the displacement mechanism through a support ring. The displacement mechanism provides power for the movement of the rotating seat and the filter assembly. The displacement mechanism pushes the support ring and the rotating seat to move through the limit disk. At the same time, the rotating disk is movably installed inside the ring groove on the inner wall of the support ring to avoid damage to the limit disk when the rotating seat rotates later.

[0010] Furthermore, in step three, the displacement mechanism drives the rotating seat and the filter assembly to move through the support ring. When the rotating seat moves, the support tube is movably installed on the rotating column through the limit block. One end of the rotating column is installed on the first power mechanism. The limit block cooperates with the limit groove on the rotating column to provide rotational force for the support tube and the rotating seat, squeezing the tripe between the rotating disk and the rotating seat respectively. The stirring column moves on the rotating disk with the movement of the rotating seat. The rotating disk rotates in the later stage to realize the rotation of the tripe through the friction plate, and squeezes and rubs while rotating to clean impurities on the tripe that are difficult to clean. The movement of the rotating seat enables the rotating disk to achieve two-way friction cleaning of the tripe inside the filter assembly.

[0011] Furthermore, in step four, after the friction cleaning is completed inside step three, water is sprayed through the water nozzle on the arc plate. While spraying water, the rotating disk drives the stirring column to move the tripe inside the filter component to clean the internal impurities and achieve comprehensive cleaning of the tripe.

[0012] Furthermore, when discharging in step five, the filter assembly needs to be rotated, and the feed port on one side of the filter assembly needs to be rotated and moved to the bottom, and the tripe inside the filter assembly falls into the discharge port through the feed port. When discharging, the ring seat needs to be rotated, and the opening on the ring seat needs to be aligned with the discharge port to complete the discharge.

[0013] Furthermore, the friction plates inside the step three are respectively fixed at four positions of the rotating disk and the rotating seat, and the friction plates are soft rubber plates with grooves. The grooves contact the tripe to increase friction, thereby achieving friction cleaning of the tripe. The soft rubber plate squeezes the tripe to avoid damage to the tripe due to excessive squeezing force.

[0014] Furthermore, a fixing bolt is fixed on one side of the ring seat in step one, and the fixing bolt provides an extrusion fixing force after the ring seat is rotated, thereby realizing the switching and fixing of the position of the ring seat and the drain pipe.

[0015] Beneficial effects of the present invention: A method for processing fresh tripe in a slaughterhouse of the present invention comprises a barrel body; a fixed ring; a support frame; a ring seat; an opening; a feed hopper; a drain pipe; a water inlet pipe; a first power mechanism; a rotating column; a support pipe; a limiting groove; a limiting block; a rotating seat; a feed port; an arc-shaped plate; a water spray port; a second power mechanism; an output shaft; a rotating disk; a friction plate; an opening; a stirring column; a filter assembly; a discharge port; a displacement mechanism; a limiting disk; a support ring; a ring groove; a sealing ring; a conical tube; and a filter screen.

[0016] 1. A method for processing fresh tripe in a slaughterhouse. During soaking, the stirring rod on the rotating disk can be started to stir the tripe inside. The stirring can remove impurities adhering to the tripe and complete the preliminary cleaning. The curved plates are distributed in a semicircular shape on the top of the filter component, and the tripe inside the filter component can be fully sprayed and flushed through the water nozzle, which is convenient for later cleaning of the tripe when it flows.

[0017] 2. A method for processing fresh tripe in a slaughterhouse, wherein the rotating seat moves on the rotating disk, and the rotating disk rotates later to realize the rotation of the tripe through the friction plate, and squeezes and rubs while rotating to clean impurities on the tripe that are difficult to clean. The movement of the rotating seat enables the rotating disk to realize two-way friction cleaning of the tripe inside the filter component. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a structural schematic diagram of a method for processing fresh tripe in a slaughterhouse according to the present invention;

[0019] Figure 2 This is a three-dimensional structural diagram of equipment for a method for processing fresh tripe in a slaughterhouse according to the present invention;

[0020] Figure 3 This is a schematic diagram of the cross-sectional structure of a barrel of a method for processing fresh tripe in a slaughterhouse according to the present invention;

[0021] Figure 4 This is a schematic diagram of the three-dimensional structure of a rotating disk of a method for processing fresh tripe in a slaughterhouse according to the present invention;

[0022] Figure 5 This is a schematic diagram of the three-dimensional structure of a ring seat for a method for processing fresh tripe in a slaughterhouse according to the present invention;

[0023] Figure 6 This is a schematic diagram of the connection structure between the rotating column and the support pipe of a method for processing fresh tripe in a slaughterhouse according to the present invention;

[0024] Figure 7 This is a schematic diagram of the three-dimensional structure of a filtering component of a method for processing fresh tripe in a slaughterhouse according to the present invention;

[0025] In the figure: 1. barrel body; 2. fixing ring; 3. support frame; 4. ring seat; 5. opening; 6. feed hopper; 7. drain pipe; 8. water inlet pipe; 9. first power mechanism; 10. rotating column; 11. support pipe; 12. limiting groove; 13. limiting block; 14. rotating seat; 15. feed port; 16. arc plate; 17. water spray port; 18. second power mechanism; 19. output shaft; 20. rotating disk; 21. friction plate; 22. opening; 23. stirring column; 24. filter assembly; 25. discharge port; 26. displacement mechanism; 27. limiting disk; 28. support ring; 29. ​​ring groove; 30. sealing ring; 31. tapered tube; 32. filter screen. DETAILED DESCRIPTION

[0026] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0027] See also Figures 1 to 7 The present invention provides a technical solution: a method for processing fresh tripe in a slaughterhouse, comprising the following steps: feeding and soaking, separating the opening 5 and the tapered tube 31 from the discharge port 25, and after separation, the water is fed into the water inlet pipe 6, and the water enters the interior of the barrel 1, and the water level is located at the half position of the rotating seat 14 to complete the soaking; step 2: stirring, the rotating disk 20 drives the stirring column 23 to rotate between the rotating seats 14, and the stirring column 23 is used to complete the stirring of the tripe, so as to achieve collision and stirring between the tripes; step 3: squeezing and friction cleaning, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 4: stirring and mixing, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 5: stirring and mixing, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 6: stirring and mixing, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 7: stirring and mixing, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 8: stirring and mixing, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 9: stirring and mixing, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 10: stirring and mixing, and the stirring component and the displacement mechanism 26 are used to realize the stirring of the tripe; step 11: stirring and mixing, and the stirring component and the displacement mechanism Now the rotating disk 20 and the rotating seat 14 are dislocated. After the dislocation, the rotating disk 20 squeezes the tripe between the rotating seat 14 and the rotating disk 20, rubs and squeezes it, and removes the difficult-to-clean substances on the tripe; Step four: spray cleaning, the rotating disk 20 and the stirring column 23 stir the internal tripe while spraying water through the water nozzle 17 on the arc plate 16 to complete the flow cleaning of the tripe inside the filter component 24; Step five: discharging, the filter component 14 is rotated under the drive of the first power mechanism 9, and the feed port 15 is aligned with the discharge port 25 to complete the discharge.

[0028] Furthermore, when the tripe in the step one is soaked, the ring seat 4 is rotated on the barrel body 1, and the inner wall of the ring seat 4 contacts the bottom of the discharge port 25 for sealing. A feed port 15 is opened on the top of the filter component 24 and is connected to the feed hopper 6. The tripe enters the interior of the filter component 24 through the feed hopper 6 and the feed port 15, and the water inlet pipe 6 is filled with water to complete the soaking. At the same time, the output shaft 19 on one side of the rotating disk 20 is connected to the second power mechanism 18, and the second power mechanism 18 provides power for the rotating disk 20. The power drives the rotating disk 20 and the stirring column 23 to rotate, and the rotation completes the stirring of the internal tripe, so that different positions of the tripe can be in contact with water to complete the soaking, and the soaking can preliminarily remove the substances adhering to the tripe.

[0029] After the immersion is completed in the first step, the ring seat 4 rotates to make the conical tube 31 contact with the discharge port 25, and the sealing ring 30 on the inner wall of the ring seat 4 is connected with the barrel body 1 to realize the sealing of the ring seat 4 as a whole, thereby ensuring that the water or the tripe in the later stage are discharged in a centralized manner. After the immersion is completed, the dirty water inside the barrel body 1 is discharged from the drain pipe 7. During the discharge, the water nozzle 17 sprays water to clean the inside of the barrel body 1 again. The arc plate 16 is distributed in a semicircle on the inner wall of the barrel body 1, which can complete the comprehensive cleaning of the filter assembly 14 and the inner wall of the barrel body 1. When the stirring is completed inside the step 2, one side of the rotating disk 20 is movably mounted on the rotating seat 14 through the output shaft 19. Driven by the second power mechanism 18, the output shaft 19 drives the rotating disk 20 to rotate. The rotating disk 20 completes the stirring of the tripe inside the filter assembly 14 through the stirring column 23. The stirring and collision of the tripe facilitates the removal of impurities on the tripe. After the stirring is completed, the water nozzle sprays water again to complete the cleaning of the tripe.

[0030] The filter assembly 14 is connected to the filter assembly 14 by the rotating disk 20. The side of the rotating seat 14 is connected to the displacement mechanism 26 by the support ring 28. The displacement mechanism 26 provides power for the movement of the rotating seat 14 and the filter assembly 14. One end of the displacement mechanism 26 is fixed to the inner wall of the barrel body 1 as a support point. The displacement mechanism 26 pushes the support ring 28 and the rotating seat 14 to move through the limit plate 27. At the same time, the rotating disk 20 is movably installed in the ring groove 29 on the inner wall of the support ring 28 to avoid damage to the limit plate 28 when the rotating seat 14 rotates later. In step three, the displacement mechanism 26 drives the rotating seat 14 and the filter assembly 24 to move through the support ring 28. When the rotating seat 14 moves, the support tube 11 is movably installed on the rotating column 10 through the limit block 13. One end of the rotating column 10 is installed on the first power mechanism 9. The limit block 13 cooperates with the limit groove 12 on the rotating column 10 to provide a rotating force for the support tube 11 and the rotating seat 14 to separate the tripe. The movement of the rotating seat 14 enables the rotating disc 20 to achieve two-way friction cleaning of the tripe inside the filter component 14. After the friction cleaning is completed in step 3, water is sprayed through the water nozzle 17 on the arc plate 16. While spraying water, the rotating disc 20 drives the stirring column 23 to move the tripe inside the filter component 14 to clean the impurities inside, thereby achieving comprehensive cleaning of the tripe. When discharging in step 5, the filter component 14 needs to be rotated, and the feed port 15 on one side of the filter component 14 rotates and moves to the bottom. The tripe inside the filter component 14 falls into the discharge port 25 through the feed port 15. When discharging, the ring seat 4 needs to be rotated, and the opening 5 on the ring seat 4 is aligned with the discharge port 25 to complete the discharge.

[0031] In this embodiment, the friction plate 21 inside the step three is respectively fixed at four positions of the rotating disk 20 and the rotating seat 14, and the friction plate 21 is a soft rubber plate with grooves. The grooves contact the tripe to increase the friction, thereby achieving friction cleaning of the tripe. The soft rubber plate squeezes the tripe to avoid damage to the tripe due to excessive squeezing force. A fixing bolt is fixed on one side of the ring seat 4 in the step one. The fixing bolt provides extrusion fixing force for the ring seat 4 after rotation, thereby achieving switching and fixing of the positions of the ring seat 4 and the drain pipe 7.

[0032] The device provides the required electrical energy for the electrical appliances inside the device through an external power supply. When in use, the fresh tripe is placed inside the feed hopper 6, one end of the feed hopper 6 cooperates with the feed port 15, and the fresh tripe falls into the interior of the filter assembly 14, and the tripe after entering is located on both sides of the rotating disk 20, and then the ring seat 4 is rotated to match the inner wall of the ring seat 4 with the discharge port 25 at the bottom to seal the position of the discharge port 25, and the fixing bolt rotates on the ring seat 4, and the extrusion force of one end of the fixing bolt limits and fixes the ring seat 4, and water is introduced through the water inlet pipe 6. As the water is injected into the barrel body 1, the inside of the barrel body 1 is filled with water. The water level in the bottom gradually rises to the center half of the filter assembly 24, and the fresh tripe inside the filter assembly 24 is soaked. After soaking for a period of time, the tapered tube 31 on the ring seat 4 is moved to the bottom of the discharge port 25, and the control valve on the drain pipe 7 is opened to discharge the waste water after soaking from the drain pipe 7. After the soaking water is discharged, the water spray port 17 on the arc plate 16 sprays water to rinse the soaked tripe again. During the rinsing, the second power mechanism 18 is started, and the second power mechanism 18 drives the rotating disk 20 on the output shaft 19 to rotate. The rotating disk 20 rotates and drives the stirring column 23 to rotate at the same time. The tripe inside is stirred, and the impurities on the tripe are removed by collision again. After spraying and stirring for a period of time, the displacement mechanism 26 is started. The displacement mechanism 27 drives the support ring 28 and the filter assembly 24 to move left and right as a whole through the limit plate 27. When the filter assembly 24 moves left and right, the rotating disk 20 is fixed differently, and the tripe inside the filter assembly 24 is squeezed on one side of the rotating disk 20. The rotating disk 20 provides a support point for the tripe. The rotating disk 20 is started to rotate. The friction plate 21 on the rotating disk 20 squeezes and rubs the tripe, so that friction is also generated between the tripes, and the tripe is further cleaned. The rotating seat 1 4 moves left and right, the stirring column 23 moves inside the opening 22 along with the movement of the rotating seat 14, thereby ensuring sufficient extrusion contact between the rotating seat 14 and the rotating disk 20, and spraying water downward again through the water spray port 17 during friction, and the flushed water is discharged through the drain pipe. After the tripe processing is completed, the first power mechanism 9 is started to drive the rotating column 10 to rotate, and the rotating column 10 drives the support tube 11 to rotate. The support tube 11 rotates the feed port 15 on the filter component 24 to the position of the bottom discharge port 25, and the opening 5 on the ring seat 4 is also moved to the bottom of the discharge port 25, and the tripe inside is discharged from the inside of the opening 5.

[0033] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. It is obvious to those skilled in the art that the present invention is not limited to the details of the above exemplary embodiments, and that the present invention can be implemented in other specific forms without departing from the spirit or essential characteristics of the present invention. Therefore, from all points of view, the embodiments should be regarded as illustrative and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description, and it is intended that all changes that fall within the meaning and range of equivalents of the claims are included in the present invention. Any reference signs in the claims should not be construed as limiting the claim to which they relate.

[0034] In addition, it should be understood that although this specification is described in terms of implementation methods, not every implementation method contains only one independent technical solution. This narrative method of the specification is only for the sake of clarity. Those skilled in the art should regard the specification as a whole. The technical solutions in each embodiment can also be appropriately combined to form other implementation methods that can be understood by those skilled in the art.

Claims

1. A method for processing fresh tripe in a slaughterhouse, characterized by: The method comprises the following steps: feeding and soaking the material, separating the opening and the tapered tube from the discharge port, and then feeding water into the water inlet pipe after separation, so that the water enters the interior of the barrel and the water level is at the half position of the rotating seat to complete the soaking; Step 2: Stirring. The rotating disk drives the stirring column to rotate between the rotating seats. The stirring column is used to move the tripe, thereby achieving collision and stirring between the tripes. Step 3: Extrusion and friction cleaning: The stirring component and the displacement mechanism are used to achieve the movement and dislocation between the rotating disk and the rotating seat. After the dislocation, the rotating disk squeezes the tripe between the rotating seat and the rotating disk, rubbing and squeezing it to remove the difficult-to-clean substances on the tripe. Step 4: Spray cleaning, the rotating disk and the stirring column stir the internal tripe while spraying water through the water spray port on the curved plate to complete the flow cleaning of the tripe inside the filter assembly; Step five: discharging. Driven by the first power mechanism, the filter assembly is rotated, and the feed port is aligned with the discharge port to complete the discharging. When the tripe in step one is soaked, the ring seat is rotated on the barrel body, and the inner wall of the ring seat contacts the bottom of the discharge port for sealing. A feed port is opened on the top of the filter assembly and is connected to the feed hopper. The tripe enters the interior of the filter assembly through the feed hopper and the feed port, and water is injected into the water inlet pipe to complete the soaking. At the same time, the output shaft on one side of the rotating disk is connected to the second power mechanism. The second power mechanism provides power to the rotating disk, and the power drives the rotating disk and the stirring column to rotate. The rotation completes the stirring of the internal tripe, so that different positions of the tripe can be in contact with water. After the soaking is completed, the substances adhering to the tripe are preliminarily removed by soaking. After the soaking in the above step 1 is completed, the ring seat is rotated to make the conical tube contact with the discharge port, and the sealing ring on the inner wall of the ring seat is connected to the barrel body to realize the sealing of the ring seat as a whole, thereby ensuring that the water or the tripe in the later stage is discharged in a centralized manner. After the soaking is completed, the dirty water inside the barrel body is discharged from the drain pipe. When discharging, the water nozzle sprays water to clean the inside of the barrel body again. The arc plates are distributed in a semicircle on the inner wall of the barrel body, which can complete the comprehensive cleaning of the filter assembly and the inner wall of the barrel body. When the stirring is completed inside the step 2, one side of the rotating disk is movably mounted on the rotating seat through the output shaft. In the second power mechanism The output shaft drives the rotating disk to rotate under the drive of the output shaft, and the rotating disk completes the stirring of the tripe inside the filter assembly through the stirring column. The stirring and collision of the tripe facilitates the removal of impurities on the tripe. After the stirring is completed, the water outlet sprays water again to complete the cleaning of the tripe. The step three requires the rotating disk to realize half-squeezing of the tripe inside the filter assembly. The side of the rotating seat is connected to the displacement mechanism through the support ring. The displacement mechanism provides power for the movement of the rotating seat and the filter assembly. The displacement mechanism pushes the support ring and the rotating seat to move through the limit plate. At the same time, the rotating seat is movably installed in the ring groove on the inner wall of the support ring to avoid the limit plate caused by the late rotation of the rotating seat Damage, step three displacement mechanism drives the rotating seat and the filter assembly to move through the support ring. When the rotating seat moves, the support tube is movably installed on the rotating column through the limit block. One end of the rotating column is installed on the first power mechanism. The limit block cooperates with the limit groove on the rotating column to provide rotational force for the support tube and the rotating seat, squeezing the tripe between the rotating disk and the rotating seat respectively. The stirring column moves on the rotating disk with the movement of the rotating seat. The rotating disk rotates in the later stage to realize the rotation of the tripe through the friction plate. While rotating, it squeezes and rubs to clean the impurities on the tripe that are difficult to clean. The movement of the rotating seat enables the rotating disk to realize two-way friction cleaning of the tripe inside the filter assembly.

2. The method for processing fresh tripe in a slaughterhouse according to claim 1, wherein: In the fourth step, after the friction cleaning is completed in the third step, water is sprayed through the water nozzle on the arc plate. While spraying water, the rotating disk drives the stirring column to move the tripe inside the filter component, clean the internal impurities, and achieve comprehensive cleaning of the tripe.

3. The method for processing fresh tripe in a slaughterhouse according to claim 1, wherein: When discharging in step five, the filter assembly needs to be rotated, and the feed port on one side of the filter assembly needs to be rotated and moved to the bottom. The tripe inside the filter assembly falls into the discharge port through the feed port. When discharging, the ring seat needs to be rotated, and the opening on the ring seat needs to be aligned with the discharge port to complete the discharge.

4. The method for processing fresh tripe in a slaughterhouse according to claim 1, wherein: The friction plates inside the step three are respectively fixed at four positions of the rotating disk and the rotating seat, and the friction plates are soft rubber plates with grooves. The grooves contact the tripe to increase friction, thereby achieving friction cleaning of the tripe. The soft rubber plate squeezes the tripe to avoid damage to the tripe due to excessive squeezing force.

5. The method for processing fresh tripe in a slaughterhouse according to claim 1, wherein: A fixing bolt is fixed on one side of the ring seat in step one, and the fixing bolt provides an extrusion fixing force after the ring seat is rotated, thereby realizing the switching and fixing of the position of the ring seat and the drain pipe.

Citation Information

Patent Citations

  • Method for treating fresh tripes

    CN106071932A

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    CN109730127A

  • High-speed rail pier underwater structure detection equipment

    CN116223259A