Frozen chicken wing unfreezing and cleaning device

The combined thawing and cleaning device for frozen chicken wings uses a bubble-generating mechanism and periodic wing dislodging system to enhance thawing and cleaning efficiency, addressing inefficiencies and safety issues in traditional methods.

CN120304451AInactive Publication Date: 2025-07-15CHAOHU YIHONG FOOD CO LTD
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Patent Information

Application Number
CN202510728256.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-03
Publication Date
2025-07-15
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

In the prior art, the thawing and cleaning process of frozen chicken wings is inefficient, which can easily lead to adhesion of chicken wings, loss of nutrients, incomplete cleaning, and risk of chemical residues, affecting food safety and processing efficiency.

Method used

A frozen chicken wing thawing cleaning device is designed, integrating thawing and cleaning functions. By setting up a chain conveying mesh belt, heating coil, churning structure and impurity collection tank, the gas churning water flow and tumbling components are used to realize irregular movement of chicken wings and impurity collection, reducing adhesions and improving thawing and cleaning effects.

Benefits of technology

The thawing speed of chicken wings is accelerated, the impurities on the surface of chicken wings are effectively removed, the impurities on the surface of chicken wings are prevented from being re-adhesive, the cleaning effect is improved, high-quality raw materials are provided for subsequent processing, and the operation process is simplified.

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Abstract

The invention relates to the technical field of poultry processing, in particular to a frozen chicken wing unfreezing and cleaning device which comprises an unfreezing and cleaning tank, a chain conveying mesh belt is arranged on the surface of the unfreezing and cleaning tank through a roller set, the top of the chain conveying mesh belt is located in the unfreezing and cleaning tank, and the bottom of the chain conveying mesh belt is located below the unfreezing and cleaning tank. A heating coil is arranged at the bottom of the inner wall of the unfreezing and cleaning tank, the heating coil is connected with an external hot water supply device through a hot water circulating pump, and a turning structure is arranged in the unfreezing and cleaning tank and located at the top of the chain conveying mesh belt; the turning structure comprises an external pipe, the external pipe is bolted in the unfreezing cleaning tank, and the top of the external pipe is communicated with a plurality of connecting pipes. The unfreezing and cleaning device for the frozen chicken wings has the advantages that the unfreezing and cleaning functions are integrated, the problem of adhesion of the chicken wings can be effectively solved, efficient collection of impurities is achieved, and operation is easy and convenient.
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Description

Technical Field

[0001] The present invention relates to the technical field of poultry processing, and particularly to a freezing chicken wing thawing and cleaning device. Background Art

[0002] As is well known, in the food processing industry, the thawing and cleaning of frozen chicken wings are crucial pre - processing steps.

[0003] In terms of the thawing process, natural thawing takes a long time, not only with low efficiency but also creating a breeding ground for microorganisms, seriously affecting the quality of chicken wings. Although hydrolysis thawing can improve the speed, it still requires a relatively long thawing time, thus easily causing the loss of nutritional components of chicken wings and a deterioration in taste. Moreover, during these two traditional thawing processes, chicken wings often stick together due to low temperature, making the subsequent separation operation cumbersome and possibly causing damage to the chicken wings.

[0004] In terms of cleaning, the conventional methods have poor effects. Simple running water rinsing is difficult to thoroughly remove the dirt, blood, and microorganisms on the surface of chicken wings. Although chemical cleaning can enhance the cleaning power, there is a risk of chemical residue, which endangers food safety. Furthermore, traditional cleaning methods cannot effectively handle the impurities generated during cleaning, resulting in the easy attachment of impurities to the cleaned chicken wings, not only reducing the cleaning effect of chicken wings but also affecting subsequent processing. Summary of the Invention

[0005] (I) Technical Problems to be Solved

[0006] Aiming at the deficiencies of the prior art, the present invention provides a freezing chicken wing thawing and cleaning device, which integrates the functions of thawing and cleaning, can effectively solve the problem of chicken wing adhesion, realizes the efficient collection of impurities, and has the advantages of simple operation.

[0007] (II) Technical Solutions

[0008] The above - mentioned technical objectives of the present invention are achieved through the following technical solutions: A freezing chicken wing thawing and cleaning device, including a thawing and cleaning tank. The surface of the thawing and cleaning tank is provided with a chain conveyor belt through a roller set. The top of the chain conveyor belt is inside the thawing and cleaning tank, and the bottom of the chain conveyor belt is below the thawing and cleaning tank. A heating coil is arranged at the bottom of the inner wall of the thawing and cleaning tank, and the heating coil is connected to an external hot water supply device through a hot water circulation pump. A tumbling structure is arranged inside the thawing and cleaning tank, and the tumbling structure is above the chain conveyor belt.

[0009] The tumbling structure includes an external tube, which is bolted to the inside of the thawing and cleaning tank, and the top of the external tube is connected to a plurality of connecting tubes, the front and rear sides of the connecting tubes are longitudinally provided with a plurality of air holes, and both sides of the connecting tubes are provided with a plurality of toggle components, and the front and rear sides of the top of the inside of the thawing and cleaning tank are provided with impurity collection grooves.

[0010] The above technical scheme is adopted, by setting a tumbling structure composed of an external pipe, a connecting pipe, an air hole, a toggle component and an impurity collecting groove, and by introducing gas into the external pipe and the connecting pipe, the gas can be discharged from the air hole, so that bubbles are generated in the water in the thawing and cleaning groove, and the thawing and cleaning water is caused to tumble and flow, so that the chicken wings move irregularly in the thawing and cleaning groove, thereby accelerating the thawing of the chicken wings and removing impurities on the surface of the chicken wings. While the airflow flows, it will drive the toggle component to contract and expand periodically. Therefore, toggling the chicken wings can not only assist the tumbling of the thawing and cleaning water, but also directly act on the chicken wings, effectively reducing the adhesion between the chicken wings, and, through the cooperation of the connecting pipe and the toggle component, the airflow distribution in the thawing and cleaning groove is more uniform, further improving the thawing and cleaning effects, and the tumbling of the bubbles will carry the impurities on the surface of the chicken wings to the water surface, and cooperate with the impurity collection groove to effectively collect the impurities to prevent the impurities from re-attaching to the chicken wings, significantly improving the cleaning effect, and providing high-quality raw materials for subsequent processing.

[0011] The present invention is further configured as follows: the toggle assembly includes a fixed frame, the fixed frame is bolted to both sides of the inner wall of the connecting tube, and a partition is bolted inside the fixed frame, a pushing member is provided on the side of the partition close to the inner wall of the connecting tube, and the side of the pushing member away from the partition extends to the outside of the connecting tube and is rotatably connected to an extrusion member, and an opening member is provided at the bottom inside the fixed frame.

[0012] By adopting the above technical solution, a toggle assembly is set up, and part of the airflow in the connecting pipe enters the fixed frame through the opening piece. The opening piece will periodically open and close the airflow channel of the fixed frame under the action of the airflow. When opened, the airflow enters the interior of the fixed frame and is divided into two parts under the action of the partition. One part enters the cavity formed between the partition and the connecting pipe and moves, and contacts with the pushing piece, which can push the pushing piece to slide in this cavity. The pushing piece will drive the extruding piece to move in the direction of the connecting pipe to contract through the rotation connection with the extruding piece. When the opening piece closes the fixed frame, the extruding piece will automatically reset due to the disappearance of the airflow pressure, thereby toggling the chicken wings. Therefore, with the periodic opening and closing of the opening piece, the toggle assembly can be periodically contracted and expanded. Therefore, toggling the chicken wings can not only assist in the churning of the thawing and washing water, but also directly act on the chicken wings, effectively reducing the adhesion between the chicken wings.

[0013] The present invention is further configured as follows: the extrusion member includes a connecting block, the connecting block is bolted to the connecting tube on one side close to the connecting tube, a movable plate is rotatably connected inside the connecting block, a fixed plate is bolted to the front side of the connecting tube, arc-shaped guide rods are bolted on both sides of the fixed plate, and the arc-shaped guide rods pass through the interior of the movable plate on one side close to the movable plate and extend to the outside thereof, an elastic sleeve is sleeved on the surface of the arc-shaped guide rod, and the elastic sleeve is connected to the fixed plate and the movable plate on one side close to the two, respectively.

[0014] By adopting the above technical solution, an extrusion piece is set, and when the pushing piece drives the movable plate to move, the movable plate rotates around the connecting block and moves toward the connecting pipe, and the arc-shaped guide rod provides guidance for the rotation of the movable plate. During the movement of the movable plate, the elastic sleeve will be squeezed to shrink and store energy. When the airflow stops or decreases, the pushing piece will release the pull on the movable plate, so that the elastic force of the elastic sleeve will reset the movable plate, thereby making the movable plate periodically move the chicken wings, effectively reducing the adhesion between the chicken wings, and will not cause damage to the chicken wings. In addition, the contact with the chicken wings can also have the effect of removing impurities on the surface of the chicken wings.

[0015] The present invention is further configured as follows: the opening member includes an air guide frame, the air guide frame is bolted to the bottom of the fixed frame, and the bottom inside the fixed frame is rotatably connected with an opening plate, a connecting shaft is passed through the inside of the opening plate, and the side of the connecting shaft away from the air guide frame is rotatably connected to the inner wall of the connecting pipe, and the side of the connecting shaft close to the air guide frame extends to the interior of the air guide frame and is sleeved with a fan structure.

[0016] By adopting the above technical solution, by setting an opening piece, when part of the airflow enters the air guide frame, it will blow the fan structure to rotate, and drive the opening plate to rotate in the fixed frame through the connecting shaft. When the opening plate is released from the sealing of the opening plate, the airflow will enter the fixed frame and cause the pushing piece to drive the extrusion piece to move. When the opening plate is closed to the fixed frame, the extrusion piece will be reset due to the disappearance of the airflow, thereby achieving the effect of the extrusion piece periodically moving the chicken wings.

[0017] The present invention is further configured as follows: the two air guide frames are symmetrically distributed along the axis of the connecting pipe, an air flow channel is formed between opposite sides of the two fixed frames, and the air flow channel is connected to the air hole, and the cross-section of the elastic sleeve is configured in a corrugated shape.

[0018] By adopting the above technical solution, the airflow in the connecting pipe flows to the two fixed frames respectively. Since the two air guide frames are symmetrically distributed, the airflow is evenly distributed in the two fixed frames to drive the pushing member to work, and the corrugated cross-section of the elastic sleeve gives it good elasticity and buffering performance, which plays a buffering and resetting role during the rotation of the movable plate.

[0019] The present invention is further configured as follows: the pushing member includes a sliding plate, which is slidably arranged in a cavity between the partition and the fixed frame, a rotating frame is bolted to a side of the movable plate close to the connecting tube, and a movable rod is rotatably connected to the inside of the rotating frame, the movable rod extends to the inside of the fixed frame on a side close to the connecting tube and is bolted to a matching block, two pushing blocks are bolted to the top of the sliding plate, and the pushing blocks are used in conjunction with the matching blocks.

[0020] By adopting the above technical solution, a pushing member is set. When the airflow enters the cavity between the partition and the fixed frame, it will push the sliding plate to move, so that the sliding plate pushes the two pushing blocks to move, and the pushing blocks contact the matching blocks through the inclined surfaces, pushing the matching blocks to move, thereby driving the movable rod and the rotating frame to move, so that the movable plate rotates around the connecting block and moves toward the connecting pipe. When the airflow disappears, the push on the sliding plate will be lost. Therefore, under the action of gravity, the sliding plate will quickly reset, so that the matching blocks and the movable rods will release the pull on the movable plate, so that the movable plate can be quickly reset, thereby achieving the effect of making the extrusion member move the chicken wings.

[0021] The present invention is further configured such that: the opposite sides of the pushing block and the matching block are both provided with inclined surfaces, and the two are in sliding contact via the inclined surfaces.

[0022] By adopting the above technical solution, the transmission between the pushing block and the matching block is made smoother and more efficient through the design of the inclined surface, thereby ensuring that the extrusion piece can accurately move the chicken wings and avoiding damage to the chicken wings caused by unstable transmission.

[0023] The present invention is further configured as follows: the front side of the external tube is connected to a fixed cylinder, and a piston is slidably arranged inside the fixed cylinder, the front side of the piston is rotatably connected to a connecting rod, and the left side of the connecting rod is rotatably connected to a turntable 1, and the left side of the turntable 1 is externally connected to a driving motor.

[0024] By adopting the above technical solution, the turntable is driven to rotate by a driving motor, and the turntable drives the piston to reciprocate in the fixed cylinder through the connecting rod. Since a one-way valve structure is arranged on the rear side of the fixed cylinder, the reciprocating motion of the piston will cause the air pressure of the air entering the fixed cylinder to change, thereby generating an airflow, which enters the connecting pipe through the external pipe, is discharged through the air holes on the connecting pipe, and drives the toggle assembly to achieve the churning of the water in the thawing and cleaning tank.

[0025] The present invention is further configured as follows: The impurity collection tank includes a tank body, the tank bodies are respectively bolted to the front side and the rear side of the inner top of the thawing and cleaning tank, a filter plate is bolted to the bottom inside the tank body, scraping plates are arranged on both opposite sides of the two tank bodies, and swing arms are bolted to both sides of the top of the scraping plates. A fixed rod is rotatably connected to the bottom inside the swing arms, and the side of the fixed rod close to the inner wall of the thawing and cleaning tank is bolted thereto. A output shaft is rotatably arranged on the left side of the top of the thawing and cleaning tank, and a second turntable is rotatably connected to the right side of the output shaft. A push column is bolted to the bottom on the right side of the second turntable, and the push column is located inside the left swing arm. A push hole for cooperating with the push column is formed in the top inside the left swing arm.

[0026] By adopting the above technical solution, through the setting of the impurity collection tank, due to the action of bubbles, the water flow in the thawing and cleaning tank will churn, carrying the impurities in the water to the water surface, and under the continuous churning of the water flow, the impurities will be pushed to both sides. Thus, the impurities are collected by the tank body, and the collected impurities are filtered by the filter plate inside the tank body to prevent the impurities from mixing into the cleaning water again. During the collection, through an externally connected driving device, such as a driving motor driving a connecting shaft to drive the turntable to rotate, the second turntable drives the push column to move in the push hole, enabling the swing arm to drive the scraping plate to swing reciprocally with the fixed rod as the fulcrum. The scraping plate scrapes the impurities on the water surface into the impurity collection tank during the swinging process, preventing the impurities from reattaching to the chicken wings, significantly improving the cleaning effect, and providing high-quality raw materials for subsequent processing.

[0027] The present invention is further configured as follows: A synchronous pulley is sleeved on the surface of the output shaft, and a synchronous belt is wound between the two synchronous pulleys.

[0028] By adopting the above technical solution, the setting of the synchronous pulley and the synchronous belt enables the two second turntables to work synchronously, improving the impurity collection effect.

[0029] (III) Beneficial effects

[0030] Compared with the prior art, the present invention provides a frozen chicken wing thawing and cleaning device, which has the following beneficial effects:

[0031] The frozen chicken wing thawing and cleaning device is provided with a tumbling structure composed of an external pipe, a connecting pipe, an air hole, a toggle component and an impurity collecting groove. By introducing gas into the external pipe and the connecting pipe, the gas can be discharged from the air hole, so that bubbles are generated in the water in the thawing and cleaning groove, and the thawing and cleaning water is caused to tumble and flow, so that the chicken wings move irregularly in the thawing and cleaning groove, thereby accelerating the thawing of the chicken wings and removing impurities on the surface of the chicken wings. The airflow will drive the toggle component to contract and expand periodically while flowing, so to toggle the chicken wings, which can not only assist the tumbling of the thawing and cleaning water, but also directly act on the chicken wings, effectively reducing the adhesion between the chicken wings, and through the cooperation of the connecting pipe and the toggle component, the airflow distribution in the thawing and cleaning groove is more uniform, further improving the thawing and cleaning effects, and the tumbling of the bubbles will carry the impurities on the surface of the chicken wings to the water surface, and the impurities can be effectively collected in cooperation with the impurity collecting groove to prevent the impurities from re-attaching to the chicken wings, significantly improving the cleaning effect, and providing high-quality raw materials for subsequent processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0033] Figure 2 It is a schematic diagram of the connection between the tumbling structure and the thawing and cleaning tank in the present invention;

[0034] Figure 3 It is a connection schematic diagram of the connecting pipe and the toggle assembly in the present invention;

[0035] Figure 4 is a schematic diagram of the extrusion structure of the present invention;

[0036] Figure 5 For the present invention Figure 3 The enlarged schematic diagram of point A in the middle;

[0037] Figure 6 It is a schematic diagram of the connection between the opening member and the fixed frame in the present invention;

[0038] Figure 7 It is a schematic diagram of the connection between the external pipe and the fixed tube in the present invention;

[0039] Figure 8 It is a partial connection schematic diagram of the impurity collection tank and the thawing and cleaning tank in the present invention.

[0040] In the figure: 1, thawing and cleaning tank; 2, chain conveyor belt; 3, tumbling structure; 4, external pipe; 5, connecting pipe; 6, air hole; 7, toggle assembly; 71, fixed frame; 72, partition; 73, pusher; 731, sliding plate; 732, rotating frame; 733, movable rod; 734, matching block; 735, pusher; 74, extrusion member; 741, connecting block; 742, movable plate; 743, fixed plate; 744, arc guide rod; 7 45. Elastic sleeve; 75. Opening piece; 751. Air guide frame; 752. Opening plate; 753. Connecting shaft; 754. Fan structure; 8. Impurity collecting tank; 81. Tank body; 82. Filter plate; 83. Scraper; 84. Swing arm; 85. Fixed rod; 86. Output shaft; 87. Turntable 2; 88. Push column; 89. Push hole; 9. Fixed cylinder; 10. Piston; 11. Connecting rod; 12. Turntable 1; 13. Synchronous wheel; 14. Synchronous belt. DETAILED DESCRIPTION

[0041] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0042] Example 1

[0043] See also Figure 1-7 A frozen chicken wing thawing and cleaning device comprises a thawing and cleaning tank 1, a surface of the thawing and cleaning tank 1 is provided with a chain conveyor mesh belt 2 through a roller group, the top of the chain conveyor mesh belt 2 is located inside the thawing and cleaning tank 1, and the bottom of the chain conveyor mesh belt 2 is located below the thawing and cleaning tank 1, a heating coil is provided at the bottom of the inner wall of the thawing and cleaning tank 1, and the heating coil is connected to an external hot water supply device through a hot water circulation pump, and a tumbling structure 3 is provided inside the thawing and cleaning tank 1, and the tumbling structure 3 is located at the top of the chain conveyor mesh belt 2;

[0044] The tumbling structure 3 includes an external pipe 4, which is bolted to the inside of the thawing and cleaning tank 1, and the top of the external pipe 4 is connected to a plurality of connecting pipes 5, the front and rear sides of the connecting pipe 5 are longitudinally provided with a plurality of air holes 6, and both sides of the connecting pipe 5 are provided with a plurality of toggle components 7. The front and rear sides of the top of the thawing and cleaning tank 1 are provided with impurity collecting tanks 8. By setting the tumbling structure 3 composed of the external pipe 4, the connecting pipe 5, the air holes 6, the toggle components 7 and the impurity collecting tank 8, the gas is introduced into the external pipe 4 and the connecting pipe 5, and the gas can be discharged from the air holes 6, so that bubbles are generated in the water in the thawing and cleaning tank 1, and the thawing and cleaning water is tumbled and flowed, so that the chicken wings are moved in the thawing and cleaning tank 1. The chicken wings are moved irregularly, thereby accelerating the thawing of the chicken wings and removing impurities on the surface of the chicken wings. The airflow will drive the periodic contraction and expansion of the toggling component 7 while flowing. Therefore, toggling the chicken wings can not only assist the thawing and washing water to churn, but also directly act on the chicken wings, effectively reducing the adhesion between the chicken wings. Moreover, through the cooperation of the connecting pipe 5 and the toggling component 7, the airflow distribution in the thawing and washing tank 1 is more uniform, further improving the thawing and washing effects, and the churning of the bubbles will carry the impurities on the surface of the chicken wings to the water surface, and cooperate with the impurity collection tank 8 to effectively collect impurities to prevent impurities from re-attaching to the chicken wings, significantly improving the cleaning effect, and providing high-quality raw materials for subsequent processing.

[0045] The toggle assembly 7 comprises a fixed frame 71, which is bolted to both sides of the inner wall of the connecting tube 5, and a partition 72 is bolted inside the fixed frame 71, a pushing member 73 is provided on the side of the partition 72 close to the inner wall of the connecting tube 5, and the pushing member 73 extends to the outside of the connecting tube 5 on the side away from the partition 72 and is rotatably connected to an extrusion member 74, and an opening member 75 is provided at the bottom of the fixed frame 71. By setting the toggle assembly 7, part of the airflow in the connecting tube 5 enters the fixed frame 71 through the opening member 75. The opening member 75 will periodically open and close the airflow channel of the fixed frame 71 under the action of the airflow. When opened, the airflow enters the interior of the fixed frame 71 and, under the action of the partition 72, This airflow is divided into two parts, one part enters the cavity formed between the partition 72 and the connecting tube 5 and moves, and contacts with the pushing member 73, which can push the pushing member 73 to slide in this cavity, and the pushing member 73 is connected with the extruding member 74 through rotation, which will drive the extruding member 74 to move toward the connecting tube 5 and shrink. When the opening member 75 closes the fixed frame 71, the extruding member 74 will automatically reset due to the disappearance of the airflow pressure, thereby toggling the chicken wings. Therefore, with the periodic opening and closing of the opening member 75, the toggling component 7 can be periodically contracted and expanded. Therefore, toggling the chicken wings can not only assist in the churning of the thawing and washing water, but also directly act on the chicken wings, effectively reducing the adhesion between the chicken wings.

[0046] The extrusion piece 74 includes a connection block 741, and the connection block 741 is bolted to the connection pipe 5 on one side thereof. The connection block 741 is rotatably connected to a movable plate 742 inside. A fixed plate 743 is bolted to the front side of the connection pipe 5. Both sides of the fixed plate 743 are bolted to arc-shaped guide rods 744, and the side of the arc-shaped guide rod 744 close to the movable plate 742 passes through the inside of the movable plate 742 and extends to the outside thereof. The surface of the arc-shaped guide rod 744 is sleeved with an elastic sleeve 745, and the side of the elastic sleeve 745 close to the fixed plate 743 and the movable plate 742 is respectively connected to the two. By setting the extrusion piece 74, when the pusher 73 drives the movable plate 742 to rotate, the movable plate 742 can be rotated to rotate. When the movable plate 742 moves, the movable plate 742 rotates around the connecting block 741 and moves toward the connecting tube 5, and the arc-shaped guide rod 744 provides guidance for the rotation of the movable plate 742. During the movement of the movable plate 742, the elastic sleeve 745 will be squeezed to shrink and store energy. When the airflow stops or decreases, the pusher 73 will release the pull on the movable plate 742, so that the elastic force of the elastic sleeve 745 will reset the movable plate 742, so that the movable plate 742 periodically moves the chicken wings, effectively reducing the adhesion between the chicken wings without causing damage to the chicken wings, and the contact with the chicken wings can also have the effect of removing impurities on the surface of the chicken wings.

[0047] The opening member 75 includes an air guide frame 751, which is bolted to the bottom of the fixed frame 71, and the bottom of the fixed frame 71 is rotatably connected to an opening plate 752, and the interior of the opening plate 752 is penetrated by a connecting shaft 753, and the side of the connecting shaft 753 away from the air guide frame 751 is rotatably connected to the inner wall of the connecting pipe 5, and the side of the connecting shaft 753 close to the air guide frame 751 extends to the interior thereof and is sleeved with a fan structure 754. By setting the opening member 75, when When part of the airflow enters the air guide frame 751, it will blow the fan structure 754 to rotate, and drive the opening plate 752 to rotate in the fixed frame 71 through the connecting shaft 753. When the opening plate 752 is released from the sealing of the opening plate 752, the airflow will enter the fixed frame 71 to make the pushing member 73 drive the extruding member 74 to move. When the opening plate 752 is closed to the fixed frame 71, the extruding member 74 will be reset due to the disappearance of the airflow, thereby achieving the effect of the extruding member 74 periodically moving the chicken wings.

[0048] Among them, the two air guide frames 751 are symmetrically distributed along the axis of the connecting pipe 5, an air flow channel is formed between the opposite sides of the two fixed frames 71, and the air flow channel is connected with the air hole 6. The cross-section of the elastic sleeve 745 is corrugated, and the air flow in the connecting pipe 5 flows to the two fixed frames 71 respectively. Since the two air guide frames 751 are symmetrically distributed, the air flow is evenly distributed in the two fixed frames 71, pushing the pushing member 73 to work, and the corrugated cross-section of the elastic sleeve 745 gives it good elasticity and buffering performance, which plays a buffering and resetting role during the rotation of the movable plate 742.

[0049] The pusher 73 includes a sliding plate 731, which is slidably arranged in the cavity between the partition plate 72 and the fixed frame 71. The movable plate 742 is bolted to a rotating frame 732 on one side close to the connecting pipe 5, and the rotating frame 732 is rotatably connected to a movable rod 733 inside. The movable rod 733 extends to the inside of the fixed frame 71 on one side close to the connecting pipe 5 and is bolted to a matching block 734. Two pushing blocks 735 are bolted to the top of the sliding plate 731, and the pushing blocks 735 are used in conjunction with the matching blocks 734. By setting the pusher 73, when the airflow enters the cavity between the partition plate 72 and the fixed frame 71, it will push the sliding plate 742. 31 moves, so that the sliding plate 731 pushes the two pushing blocks 735 to move, and the pushing block 735 contacts the matching block 734 through the inclined surface, pushing the matching block 734 to move, thereby driving the movable rod 733 and the rotating frame 732 to move, so that the movable plate 742 rotates around the connecting block 741 and moves toward the connecting pipe 5. When the airflow disappears, the push on the sliding plate 731 will be lost. Therefore, under the action of gravity, the sliding plate 731 will quickly reset, so that the matching block 734 and the movable rod 733 release the pull on the movable plate 742, so that the movable plate 742 can be quickly reset, thereby achieving the effect of making the extrusion member 74 move the chicken wings.

[0050] Among them, the pushing block 735 and the matching block 734 are both provided with inclined surfaces on the opposite sides, and the two are in sliding contact through the inclined surfaces. The design of the inclined surfaces makes the transmission between the pushing block 735 and the matching block 734 smoother and more efficient, ensuring that the extrusion piece 74 can accurately move the chicken wings, avoiding damage to the chicken wings caused by unstable transmission.

[0051] Among them, the front side of the external tube 4 is connected to the fixed cylinder 9, and the inside of the fixed cylinder 9 is slidably provided with a piston 10, the front side of the piston 10 is rotatably connected to the connecting rod 11, and the left side of the connecting rod 11 is rotatably connected to the turntable 12, the left side of the turntable 12 is externally connected to the driving motor, and the turntable 12 is driven by the driving motor to rotate, and the turntable 12 drives the piston 10 to reciprocate in the fixed cylinder 9 through the connecting rod 11. Since a one-way valve structure is arranged on the rear side of the fixed cylinder 9, the reciprocating motion of the piston 10 will cause the air pressure of the air entering the fixed cylinder 9 to change, thereby generating an airflow, so that the airflow enters the connecting tube 5 through the external tube 4, and the airflow is discharged through the air hole 6 on the connecting tube 5 and drives the toggle component 7 to move, so as to realize the churning of water in the thawing and cleaning tank 1.

[0052] The working principle of this embodiment is as follows: the hot water circulation pump is started, and the hot water in the external hot water supply device flows into the heating coil at the bottom of the thawing and cleaning tank 1 to heat the water in the thawing and cleaning tank 1 to create a suitable thawing temperature environment, and then the turntable 12 is driven to rotate by the external driving motor, and the turntable 12 drives the piston 10 to reciprocate in the fixed cylinder 9 through the connecting rod 11. The one-way valve structure on the rear side of the fixed cylinder 9 causes the air pressure change of the air entering the fixed cylinder 9 to generate airflow, and the airflow enters the connecting pipe 5 through the external pipe 4, and then is discharged from the air holes 6 longitudinally opened on the front and rear sides of the connecting pipe 5, generating a large number of bubbles in the water in the thawing and cleaning tank 1, causing the thawing and cleaning water to churn and flow. The surging water flow drives the frozen chicken wings to perform irregular movements in the thawing and cleaning tank 1, the chicken wings are fully in contact with the warm water, the heat is quickly transferred, and the thawing process of the chicken wings is accelerated; at the same time, part of the airflow in the connecting pipe 5 enters the fixed frame 71 through the opening piece 75, and when the airflow enters the air guide frame 751, the fan structure 754 is blown to rotate, and the fan structure 754 drives the opening plate 752 to rotate in the fixed frame 71 through the connecting shaft 753. When the opening plate 752 releases the seal on the fixed frame 71, the airflow enters the interior of the fixed frame 71. Under the action of the partition 72, the airflow is divided into two parts, and a part of the airflow enters the cavity formed between the partition 72 and the connecting pipe 5, pushing the sliding The movable plate 731 slides in the cavity, and the two pushing blocks 735 bolted on the top of the sliding plate 731 contact the matching block 734 through the inclined surface and push it to move. The matching block 734 drives the movable rod 733 and the rotating frame 732 to move, so that the movable plate 742 rotates around the connecting block 741 and moves toward the connecting pipe 5, squeezing the elastic sleeve 745 to shrink and store energy. When the opening plate 752 closes the fixed frame 71, the sliding plate 731 is reset under the action of gravity due to the disappearance of the airflow, and the matching block 734 and the movable rod 733 release the pull on the movable plate 742. The elastic force of the elastic sleeve 745 resets the movable plate 742. In this way, with the periodic opening and closing of the opening member 75, the squeezing and pressing of the elastic sleeve 745 are performed. The pressing piece 74 periodically moves the chicken wings, which not only assists the thawing water to churn, but also directly acts on the chicken wings, effectively reducing the adhesion between the chicken wings and further accelerating the thawing speed; and the water flow generated by the churning of bubbles will continuously flush the surface of the chicken wings, flushing away dirt, blood and other impurities on the surface of the chicken wings, and the contact between the extrusion piece 74 and the chicken wings during the periodic stirring of the chicken wings can further remove impurities on the surface of the chicken wings and enhance the cleaning effect. Finally, the chain conveyor belt 2 moves slowly under the drive of the roller group, driving the chicken wings placed thereon to move in the thawing and cleaning tank 1, so that all parts of the chicken wings can be fully flushed and cleaned by the water flow and bubbles, ensuring comprehensive cleaning.

[0053] Example 2

[0054] refer to Figure 8, A frozen chicken wing thawing and cleaning device further includes an impurity collection tank 8. Among them, the impurity collection tank 8 includes a tank body 81, and the tank body 81 is respectively bolted to the front side and the rear side of the inner top of the thawing and cleaning tank 1. A filter plate 82 is bolted to the bottom inside the tank body 81. Scrapers 83 are arranged on both opposite sides of the two tank bodies 81, and swing arms 84 are bolted to both sides of the top of the scraper 83. A fixed rod 85 is rotatably connected to the bottom inside the swing arm 84, and the side of the fixed rod 85 close to the inner wall of the thawing and cleaning tank 1 is bolted to it. A output shaft 86 is rotatably arranged on the left side of the top of the thawing and cleaning tank 1, and a second turntable 87 is rotatably connected to the right side of the output shaft 86. A push column 88 is bolted to the bottom right side of the second turntable 87, and the push column 88 is located inside the left swing arm 84. A push hole 89 for cooperating with the push column 88 is formed in the top inside the left swing arm 84. By setting the impurity collection tank 8, due to the action of bubbles, the water flow in the thawing and cleaning tank 1 will churn, carrying the impurities in the water to the water surface, and under the continuous churning of the water flow, the impurities will be pushed to both sides. Thus, the impurities are collected by the tank body 81, and the collected impurities are filtered by the filter plate 82 inside the tank body 81 to prevent the impurities from mixing into the cleaning water again. During the collection, through an external driving device, such as a driving motor driving the connecting shaft 753 to drive the turntable to rotate, the second turntable 87 drives the push column 88 to move in the push hole 89, enabling the swing arm 84 to drive the scraper 83 to swing reciprocally with the fixed rod 85 as the fulcrum. The scraper 83 scrapes the impurities on the water surface into the impurity collection tank 8 during the swinging process, preventing the impurities from reattaching to the chicken wings, significantly improving the cleaning effect, and providing high-quality raw materials for subsequent processing.

[0055] Among them, a synchronous pulley 13 is sleeved on the surface of the output shaft 86, and a synchronous belt 14 is wound between the two synchronous pulleys 13. The setting of the synchronous pulley 13 and the synchronous belt 14 enables the two second turntables 87 to work synchronously, improving the impurity collection effect.

[0056] Working principle of this embodiment: Since the churning of bubbles will carry the impurities washed off from the surface of the chicken wings towards the water surface, under the continuous churning action of the water flow, the impurities are pushed towards the thawing and cleaning tank 1. The tank bodies 81 provided on the front side and the rear side of the inner top of the thawing and cleaning tank 1 collect the impurities. The filter plate 82 bolted to the bottom inside the tank body 81 filters the collected impurities to prevent the impurities from mixing into the cleaning water again. During the collection, an externally connected driving device (such as a driving motor) drives the output shaft 86 to drive the second turntable 87 on the front side or the rear side to rotate. The pushing column 88 bolted to the bottom right of the second turntable 87 moves in the pushing hole 89 inside the left swing arm 84, causing the swing arm 84 to drive the scraper 83 to swing reciprocally with the fixed rod 85 as the fulcrum. During the swinging process of the scraper 83, the impurities on the water surface are scraped into the impurity collection tank 8, further preventing the impurities from reattaching to the chicken wings, thereby significantly improving the cleaning effect and providing high-quality raw materials for subsequent processing. At the same time, the synchronous wheels 13 sleeved on the surface of the connecting shaft 753 and the wound synchronous belt 14 enable the two second turntables 87 to work synchronously, improving the collection effect of the impurities.

[0057] This specific embodiment is only an explanation of the present invention and is not a limitation thereof. After reading this specification, those skilled in the art can make modifications to this embodiment without creative contributions as needed. Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A frozen chicken wing thawing and cleaning device, comprising a thawing and cleaning tank (1), characterized in that: The surface of the thawing and cleaning tank (1) is provided with a chain conveyor mesh belt (2) via a roller group, the top of the chain conveyor mesh belt (2) is located inside the thawing and cleaning tank (1), and the bottom of the chain conveyor mesh belt (2) is located below the thawing and cleaning tank (1), a heating coil is provided at the bottom of the inner wall of the thawing and cleaning tank (1), and the heating coil is connected to an external hot water supply device via a hot water circulation pump, and a tumbling structure (3) is provided inside the thawing and cleaning tank (1), and the tumbling structure (3) is located at the top of the chain conveyor mesh belt (2); The tumbling structure (3) comprises an external pipe (4), the external pipe (4) is bolted to the inside of the thawing and cleaning tank (1), and the top of the external pipe (4) is connected to a plurality of connecting pipes (5), the front and rear sides of the connecting pipe (5) are longitudinally provided with a plurality of air holes (6), both sides of the connecting pipe (5) are provided with a plurality of toggle components (7), and the front and rear sides of the top of the thawing and cleaning tank (1) are provided with impurity collection grooves (8).

2. The defrosting and cleaning device for frozen chicken wings according to claim 1, wherein: The toggle assembly (7) comprises a fixed frame (71), the fixed frame (71) being bolted to two sides of the inner wall of the connecting tube (5), and a partition (72) being bolted inside the fixed frame (71), a pusher (73) being provided on a side of the partition (72) close to the inner wall of the connecting tube (5), and a side of the pusher (73) away from the partition (72) extending to the outside of the connecting tube (5) and being rotatably connected to an extrusion member (74), and an opening member (75) being provided at the bottom inside the fixed frame (71).

3. The thawing and cleaning device for frozen chicken wings according to claim 2, characterized in that: The extrusion member (74) comprises a connection block (741), wherein the connection block (741) is bolted to the connection tube (5) at one side thereof, a movable plate (742) is rotatably connected to the interior of the connection block (741), a fixed plate (743) is bolted to the front side of the connection tube (5), arc-shaped guide rods (744) are bolted to both sides of the fixed plate (743), and the arc-shaped guide rods (744) at one side thereof, which is close to the movable plate (742), penetrates the interior of the movable plate (742) and extends to the outside thereof, an elastic sleeve (745) is sleeved on the surface of the arc-shaped guide rod (744), and the elastic sleeve (745) is respectively connected to the fixed plate (743) and the movable plate (742) at one side thereof.

4. A frozen chicken wing thawing and cleaning device according to claim 3, characterized in that: The opening member (75) comprises an air guide frame (751), the air guide frame (751) being bolted to the bottom of the fixed frame (71), and the bottom of the fixed frame (71) being rotatably connected to an opening plate (752), the interior of the opening plate (752) being connected through a connecting shaft (753), and the side of the connecting shaft (753) away from the air guide frame (751) being rotatably connected to the inner wall of the connecting pipe (5), and the side of the connecting shaft (753) close to the air guide frame (751) extending to the interior of the air guide frame and being sleeved with a fan structure (754).

5. The thawing and cleaning device for frozen chicken wings according to claim 4, wherein: The two air guide frames (751) are symmetrically distributed along the axis of the connecting pipe (5), an air flow channel is formed between opposite sides of the two fixed frames (71), and the air flow channel is connected to the air hole (6), and the cross-section of the elastic sleeve (745) is arranged in a corrugated shape.

6. The thawing and cleaning device for frozen chicken wings according to claim 3, wherein: The driving member (73) includes a sliding plate (731), the sliding plate (731) is slidably arranged in the cavity between the partition plate (72) and the fixed frame (71), a rotating frame (732) is bolted to one side of the movable plate (742) close to the connecting pipe (5), and a movable rod (733) is rotatably connected inside the rotating frame (732). One side of the movable rod (733) close to the connecting pipe (5) extends into the fixed frame (71) and is bolted with a matching block (734). Two pushing blocks (735) are bolted to the top of the sliding plate (731), and the pushing blocks (735) are used in cooperation with the matching block (734).

7. The defrosting and cleaning device for frozen chicken wings according to claim 6, wherein: Both opposite sides of the pushing block (735) and the matching block (734) are provided with inclined surfaces, and the two are in sliding contact through the inclined surfaces.

8. A defrosting and cleaning device for frozen chicken wings according to claim 1, characterized in that: A fixed cylinder (9) is communicated with the front side of the outer connecting pipe (4), and a piston (10) is slidably arranged inside the fixed cylinder (9). A connecting rod (11) is rotatably connected to the front side of the piston (10), and a first turntable (12) is rotatably connected to the left side of the connecting rod (11). A driving motor is externally connected to the left side of the first turntable (12).

9. The thawing and cleaning device for frozen chicken wings according to claim 1, wherein: The impurity collection tank (8) includes a tank body (81), the tank body (81) is bolted to the front side and the rear side of the inner top of the thawing and cleaning tank (1) respectively. A filter plate (82) is bolted to the bottom inside the tank body (81). Scrapers (83) are arranged on both opposite sides of the two tank bodies (81), and swing arms (84) are bolted to both sides of the top of the scraper (83). A fixed rod (85) is rotatably connected to the bottom inside the swing arm (84), and one side of the fixed rod (85) close to the inner wall of the thawing and cleaning tank (1) is bolted to it. An output shaft (86) is rotatably arranged on the left side of the top of the thawing and cleaning tank (1), and a second turntable (87) is rotatably connected to the right side of the output shaft (86). A pushing column (88) is bolted to the bottom right side of the second turntable (87), and the pushing column (88) is located inside the left swing arm (84). A pushing hole (89) for cooperating with the pushing column (88) is formed in the top inside the left swing arm (84).

10. A frozen chicken wing thawing and cleaning device according to claim 9, characterized in that: A synchronous pulley (13) is sleeved on the surface of the output shaft (86), and a synchronous belt (14) is wound between the two synchronous pulleys (13).