Cutting type meat food processing device
By designing a cutting meat food processing device, including a cutting unit and a placement unit, the problem of difficulty in completely removing duck feathers and inability to quickly cut in duck heads in the prior art is solved, and efficient cutting and cleaning of duck heads is achieved.
Patent Information
- Application Number
- CN202510507875.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-22
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2045-04-22
AI Technical Summary
The prior art is difficult to completely remove duck feathers when cutting duck heads, and it is impossible to achieve rapid slitting of duck heads and duck necks.
A cutting meat food processing device is designed, including a cutting unit and a placement unit. The cutting unit realizes the rotation and depth adjustment of the cutting knife through an electric push rod and gear system. The placing unit can independently place and flip the duck head, and the cutoff unit is used to synchronously cut the neck of the duck head.
The upper and lower parts of the duck head are achieved, and the two sides can be sliced without manually flipping the duck head. The duck feathers are cleaned by a spitting gun, ensuring thorough cleaning of the cutting area.
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Figure CN120113692A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of food processing, and specifically to a cutting-type meat food processing device. Background Art
[0002] Meat food, simply referred to as meat, is the subcutaneous tissue and muscle of animals, which can be eaten and contains rich protein, fat, B vitamins, and minerals. It is one of the most important types of food in the human diet. Common meat foods include pork, beef, mutton, and chicken, etc.
[0003] The prior art discloses a Chinese patent with the application number CN202410125082.6, a waste collection device for meat cutting and processing, and discloses that through the heating of the second heating wire, the hair is charred under high temperature until it is completely cleaned. By cleaning the hair, it effectively prevents the hair in the waste during meat cutting from affecting the later use of the meat.
[0004] Although the above device can remove the hair on the surface of the meat, there are still some defects in use:
[0005] 1. The above device removes the hair through the heating wire. However, by removing the hair on the surface of the meat through heat transfer, the hair removal effect cannot be guaranteed. And when it is applied to the treatment of duck feathers on the duck head, it is even more impossible to thoroughly clean the duck feathers on the duck head.
[0006] 2. When making hot marinated duck heads, in order to ensure uniform feeding of the duck heads, double-sided cutting needs to be performed on the top and bottom of the duck heads. However, most devices require manual turning of the duck heads and then sequential cutting, and when cutting, the excess neck part on the duck head cannot be processed, that is, the separation cutting of the duck neck and the duck head cannot be achieved. Summary of the Invention
[0007] The purpose of the present invention is to provide a cutting-type meat food processing device to solve the problem of quickly separating and cutting the duck head and the duck neck while performing double-sided cutting on the duck head as mentioned in the above background art.
[0008] The purpose of the present invention can be achieved through the following technical solutions:
[0009] A cutting - type meat food processing device, including an operation box. On both sides of the upper end surface of the operation box, baffles are slidably installed. On both sides outside the operation box, dovetail grooves are provided. In the dovetail grooves, dovetail blocks are slidably installed through electric sliders. On the upper end surfaces of the dovetail blocks, electric push plates are fixedly installed. Between the two electric push plates on both sides, a cutting unit is jointly installed. On both sides of the inner cavity of the operation box, circumferential grooves are provided. In the circumferential grooves, multiple groups of placement units are slidably installed through electric sliders. The placement units are used for placing duck heads during cutting. In the placement units, a truncation unit is provided, and the truncation unit is used for cutting and removing duck necks.
[0010] The cutting unit includes multiple externally - mounted frames placed at equal intervals. On the inner sides of the externally - mounted frames, T - shaped grooves are symmetrically provided. Between the two T - shaped grooves, a lifting frame is jointly slidably installed through an electric slider. On one side of the lifting frame, a motor is fixedly installed. The output end of the motor is fixedly installed with a cutting knife located in the middle of the lifting frame. At the end of the lifting frame far from the motor, an electric push rod is coaxially fixedly installed with the cutting knife. Above the electric push rod, a shaft rod rotatably connected to the lifting frame is provided. On the ends of the shaft rod and the electric push rod, gears that mesh with each other are fixedly installed.
[0011] In the middle of the shaft rod, a cam is fixedly installed. Above the cam, a fixed cylinder fixedly connected to the lifting frame is provided. In the middle of the fixed cylinder, a moving rod is slidably installed. In the middle of the upper end surface of the moving rod, a first solenoid valve is fixedly installed. Directly above the first solenoid valve, a second solenoid valve fixedly connected to the top of the inner cavity of the fixed cylinder is provided. On one side of the lifting frame, two symmetrically - arranged flushing plates are slidably installed through electric sliders. Between the two flushing plates, a water supply tank is jointly installed. The water supply tank is used for supplying water to the flushing plates. When the first solenoid valve contacts the second solenoid valve, it is used to open the flushing plates.
[0012] On one side of the externally - mounted frame, a side frame is fixedly installed. In the middle of the side frame, a rotating shaft is rotatably installed through a motor. In the middle of the rotating shaft, a control board is fixedly installed. On one side of the control board, a sleeve groove is provided, and the sleeve groove is used for sleeving the lifting frame.
[0013] On the side of the externally - mounted frame far from the side frame, a fixed frame is fixedly installed. In the middle of the lower end surface of the fixed frame, a cylinder is fixedly installed. In the middle of the lifting frame, a cleaning frame is slidably installed through an electric slider. In the cleaning frame, a cleaning sponge is detachably installed, and the cleaning frame is located directly above the cutting knife.
[0014] On both sides of the externally - mounted frame, lifting frames are rotatably installed through motors. Below the two lifting frames, a blowtorch is jointly installed.
[0015] The placement unit includes multiple U - shaped frames. On both sides of the upper end surfaces of the U - shaped frames, two symmetrically - arranged first rotating plates are rotatably installed. On both sides of the lower end surfaces of the U - shaped frames, two symmetrically - arranged second rotating plates are rotatably installed. On one side of each of the first rotating plate and the second rotating plate, a side groove is provided. In the side groove, a moving block is slidably installed. In the middle of one side of the U - shaped frame, a central wheel is rotatably installed through a motor.
[0016] On both sides of the central gear, there are side gears rotatably connected to the U-shaped frame. A rotating frame is coaxially and fixedly installed on the front side of the side gear. The rotating frame is respectively connected to the upper and lower moving blocks on the same side. On both sides of the U-shaped frame, two symmetrically arranged sliding rods are slidably installed through sliding sliders. On the side of the two sliding rods close to each other, two symmetrically arranged limiting plates are fixedly installed.
[0017] On both sides of the U-shaped frame, telescopic plates are symmetrically installed. A butting frame is fixedly installed between the two telescopic plates. The middle of the butting frame is annular and hollow. On one side of the butting frame, a rotating ring is rotatably installed through an electric slider. Inside the rotating ring, there are multiple clamping plates slidably connected to the butting frame. A pushing plate is jointly hinged between the rotating ring and the multiple clamping plates.
[0018] On the upper end surface of the butting frame, two symmetrically arranged top rods are fixedly installed. A cutting knife is slidably installed between the two top rods. A spring is sleeved outside the top rod and is located below the cutting knife. A cutting groove is opened on the lower end surface of the butting frame. On both sides of the cutting groove, there are lower rods fixed to the butting frame. A top plate is slidably installed between the two lower rods and is located in the cutting groove.
[0019] The beneficial effects of the present invention:
[0020] 1. Through the setting of the cutting unit, the duck heads in cutting-type food can be cut. Through the setting of the placing unit, a batch of duck heads can be independently placed for cutting. Moreover, the setting of the placing unit can also flip the whole duck heads after placement, so as to meet the one-time cutting of the upper and lower parts of the duck heads and meet different cutting requirements. At the same time, the cutting unit can be independently lifted to adjust different cutting depths. The setting of the truncating unit can, when cutting the duck heads, synchronously cut the redundant neck parts of the duck heads without moving them, and thus complete the cutting of different parts of the duck heads.
[0021] 2. By starting the motor to drive the cutting knife to rotate, the duck heads can be cut in a rotating manner. When the electric push rod is started, the gear at its end meshes with the gear on the shaft rod. When the cutting knife rotates, it synchronously drives the electric push rod to rotate. When the electric push rod rotates, it drives the shaft rod to rotate through the mutual meshing of the two gears. When the shaft rod rotates, it synchronously drives the cam to rotate. Since the cam slides below the moving rod, when the cam rotates, it drives the moving rod to move up and down in the fixed cylinder. When the moving rod moves upward, the first solenoid valve above it contacts the second solenoid valve. After the second solenoid valve contacts the first solenoid valve, it controls the two flushing plates to flush the surface of the cutting knife through electrical connection. By flushing the outside of the cutting knife, on the one hand, it can clean the tissue fibers of the duck heads adhering to the outside of the cutting knife during cutting. On the other hand, the water flowing down from the flushing plates when flushing the cutting knife onto the duck heads can also wash and clean the duck heads.
[0022] 3. The present invention drives the cleaning rack to move downward through the opening of the electric slider. After the cleaning rack moves downward, it is located outside the cutting knife. At this time, the sponge inside the cleaning rack acts on both side walls of the cutting knife. As the cutting knife rotates, the outside of the cutting knife comes into contact with the sponge inside the cleaning rack in sequence, thereby realizing the cleaning operation of the outside of the cleaning rack and the cutting knife. Since there will be duck feathers on the outside of the duck head before cutting, it is necessary to process them. When burning and singeing the duck feathers on the outside of the duck head, the motor is turned on to drive the lifting rack to flip. When the lifting rack flips, the blowtorch is rotated to the lower part of the cutting knife, and then the blowtorch is turned on to spray fire on the outside of the duck head, thereby singeing the remaining duck feathers on the duck head to make it thoroughly clean.
[0023] 4. Compared with the existing duck head cutting device, the present invention can meet the requirements of cutting the upper and lower surfaces of the duck head, and can meet the cutting of both sides of the duck head without manually flipping the duck head. By turning on the air cylinder and extending it downward, when the air cylinder moves downward, it presses the cutting-off knife. When the cutting-off knife is squeezed, it moves downward to cut the neck of the duck head. And when cutting the neck, the ejector plate in the cutting groove moves downward synchronously under the pressure of the cutting-off knife. When the cutting-off knife moves out of the cutting groove, the ejector plate moves upward to clean the impurities remaining in the cutting groove during cutting. BRIEF DESCRIPTION OF THE DRAWINGS
[0024] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings;
[0025] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0026] Figure 2 It is a schematic diagram of the front cross-sectional structure in the middle of the present invention;
[0027] Figure 3 It is a schematic diagram of the structure of the cutting unit of the present invention;
[0028] Figure 4 It is a schematic diagram of the side cross-sectional structure of the cutting unit of the present invention;
[0029] Figure 5 It is a schematic diagram of the structure of the placement unit of the present invention;
[0030] Figure 6 It is a schematic diagram of the partial structure of the placement unit of the present invention;
[0031] Figure 7 It is a schematic diagram of the rear structure of the cutting-off unit of the present invention;
[0032] Figure 8It is a schematic structural diagram of the front side of the truncation unit of the present invention.
[0033] The reference numerals in the figure are as follows:
[0034] 1. Operating box; 10. Dovetail groove; 11. Dovetail block; 12. Electric push plate; 20. Outer frame; 21. T-shaped groove; 22. Lifting frame; 23. Motor; 24. Cutting knife; 201. Side frame; 202. Rotating shaft; 203. Control board; 204. Sleeve groove; 25. Electric push rod; 251. Shaft rod; 252. Cam; 253. Fixed cylinder; 254. Moving rod; 255. First solenoid valve; 256. Second solenoid valve; 257. Flushing plate; 258. Water supply tank; 26. Cleaning frame; 27. Fixed frame; 28. Cylinder; 29. Lifting frame; 290. Blowtorch; 30. U-shaped frame; 31. First rotating plate; 32. Second rotating plate; 33. Side groove; 330. Moving block; 34. Center wheel; 35. Side wheel; 36. Rotating frame; 37. Slide bar; 38. Limiting plate; 40. Telescopic plate; 41. Abutting frame; 42. Rotating ring; 43. Clamping plate; 44. Pushing plate; 45. Top rod; 46. Truncation knife; 47. Cutting groove; 48. Lower rod; 49. Ejecting plate. Specific embodiments
[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention.
[0036] As shown in the attached Figure 1-8 figure, a cutting-type meat food processing device includes an operating box 1. Baffles are slidably installed on both sides of the upper end surface of the operating box 1. Dovetail grooves 10 are opened on both sides outside the operating box 1. Dovetail blocks 11 are slidably installed in the dovetail grooves 10 through electric sliders. An electric push plate 12 is fixedly installed on the upper end surface of the dovetail block 11. A cutting unit is commonly installed between the electric push plates 12 on both sides. Circumferential grooves are opened on both sides of the inner cavity of the operating box 1. Multiple groups of placing units are slidably installed in the circumferential grooves through electric sliders. The placing units are used for placing during the cutting of duck heads. A truncation unit is provided in the placing unit, and the truncation unit is used for cutting and removing duck necks.
[0037] Through the setting of the cutting unit, the duck heads in the cut-class food can be cut. Through the setting of the placement unit, a batch of duck heads can be independently placed for cutting. Moreover, the setting of the placement unit can also flip the whole duck head after placement, so as to meet the one-time cutting of the upper and lower parts of the duck head and meet different cutting requirements. At the same time, the cutting unit can be independently lifted and lowered to adjust different cutting depths. The setting of the truncation unit can cut the redundant neck part of the duck head synchronously during cutting without moving it, and the cutting of different parts of the duck head can be completed.
[0038] As shown in the Figure 2 attachment 3 As shown in the figure, the cutting unit includes a plurality of outer frames 20 placed at equal intervals. T-shaped grooves 21 are symmetrically opened inside the outer frames 20. A lifting frame 22 is slidably installed between the two T-shaped grooves 21 through electric sliders. A motor 23 is fixedly installed on one side of the lifting frame 22. The output end of the motor 23 is fixedly installed with a cutting knife 24 located in the middle of the lifting frame 22. An electric push rod 25 is coaxially fixedly installed at the end of the lifting frame 22 away from the motor 23 and the cutting knife 24. Above the electric push rod 25, there is a shaft rod 251 rotatably connected to the lifting frame 22. Gears that mesh with each other are fixedly installed at the ends of the shaft rod 251 and the electric push rod 25.
[0039] By starting the motor 23 to drive the cutting knife 24 to rotate, the duck head can be cut in a rotating manner. When the electric push rod 25 is started, the gear at its end meshes with the gear on the shaft rod 251. When the cutting knife 24 rotates, it synchronously drives the electric push rod 25 to rotate. When the electric push rod 25 rotates, it drives the shaft rod 251 to rotate through the mutual meshing of the two gears. When the shaft rod 251 rotates, it synchronously drives the cam 252 to rotate. Since the cam 252 slides below the moving rod 254, when the cam 252 rotates, it drives the moving rod 254 to move up and down in the fixed cylinder 253. When the moving rod 254 moves upward, the first solenoid valve 255 above it contacts the second solenoid valve 256. After the second solenoid valve 256 contacts the first solenoid valve 255, it controls the two flushing plates 257 to flush the surface of the cutting knife 24 through electrical connection. By flushing the outside of the cutting knife 24, on the one hand, it can clean the tissue fibers of the duck head adhering to the outside of the cutting knife 24 during cutting. On the other hand, the water flowing downward from the flushing of the cutting knife 24 by the flushing plate 257 onto the duck head can also wash and clean the duck head.
[0040] In the middle of the shaft rod 251, a cam 252 is fixedly installed. Above the cam 252, there is a fixed cylinder 253 fixed to the lifting frame 22. In the middle of the fixed cylinder 253, a moving rod 254 is slidably installed. In the middle of the upper end face of the moving rod 254, a first solenoid valve 255 is fixedly installed. Directly above the first solenoid valve 255, there is a second solenoid valve 256 fixedly connected to the top of the inner cavity of the fixed cylinder 253. On one side of the lifting frame 22, two symmetrically arranged flushing plates 257 are slidably installed through electric sliders. Between the two flushing plates 257, a water supply tank 258 is jointly installed. The water supply tank 258 is used to supply water to the flushing plates 257. When the first solenoid valve 255 contacts the second solenoid valve 256, it is used to open the flushing plates 257.
[0041] On one side of the outer frame 20, a side frame 201 is fixedly installed. In the middle of the side frame 201, a rotating shaft 202 is rotatably installed through a motor. In the middle of the rotating shaft 202, a control board 203 is fixedly installed. On one side of the control board 203, a sleeve groove 204 is provided. The sleeve groove 204 is used to sleeved the lifting frame 22.
[0042] When the cutting knife 24 is opened to adjust the cutting depth of the duck head, the motor is started. When the motor is started, it drives the rotating shaft 202 to rotate. When the rotating shaft 202 rotates, it synchronously drives the control board 203 to rotate. When the control board 203 rotates, it lifts the lifting frame 22 through the sleeve groove 204. At this time, the lifting frame 22 is controlled by the control board 203 to drive the lifting frame 22 to slide up and down in the T-shaped groove 21. When the lifting frame 22 slides up and down, it synchronously moves the position of the cutting knife 24, so as to realize the adjustment of the cutting depth when the cutting knife 24 cuts.
[0043] On the side of the outer frame 20 away from the side frame 201, a fixed frame 27 is fixedly installed. In the middle of the lower end face of the fixed frame 27, a cylinder 28 is fixedly installed. In the middle of the lifting frame 22, a cleaning frame 26 is slidably installed through an electric slider. A cleaning sponge is detachably installed in the cleaning frame 26. The cleaning frame 26 is located directly above the cutting knife 24.
[0044] The electric slider is started to drive the cleaning frame 26 to move down. After the cleaning frame 26 moves down, it is located outside the cutting knife 24. At this time, the sponge inside the cleaning frame 26 acts on the two side walls of the cutting knife 24. As the cutting knife 24 rotates, the outside of the cutting knife 24 sequentially contacts the sponge inside the cleaning frame 26, so as to realize the cleaning operation of the outside of the cleaning frame 26 and the cutting knife 24.
[0045] On both sides of the outer frame 20, a lifting frame 29 is rotatably installed through a motor. A blowtorch 290 is jointly installed at the lower part of the two lifting frames 29.
[0046] Since there will be duck feathers on the outside of the duck head before cutting, it needs to be processed. When burning the duck feathers on the outside of the duck head, the motor is turned on to drive the lifting frame 29 to turn. When the lifting frame 29 turns, the blowtorch 290 is rotated to the lower part of the cutting knife 24. Then the blowtorch 290 is turned on to spray fire on the outside of the duck head, so as to burn the remaining duck feathers on the duck head and make it completely clean.
[0047] As shown in the Figure 4 、 5 figure, the placing unit includes a plurality of U-shaped frames 30. On both sides of the upper end surface of the U-shaped frame 30, two symmetrically arranged first rotating plates 31 are rotatably installed. On both sides of the lower end surface of the U-shaped frame 30, two symmetrically arranged second rotating plates 32 are rotatably installed. On one side of each of the first rotating plate 31 and the second rotating plate 32, a side groove 33 is formed. A moving block 330 is slidably installed in the side groove 33. In the middle of one side of the U-shaped frame 30, a central wheel 34 is rotatably installed through a motor.
[0048] On both sides of the central wheel 34, side wheels 35 rotatably connected to the U-shaped frame 30 are provided. On the front side of the side wheel 35, a rotating frame 36 is coaxially and fixedly installed. The rotating frame 36 is respectively connected to the upper and lower two moving blocks 330 on the same side. On both sides of the U-shaped frame 30, two symmetrically arranged sliding rods 37 are slidably installed through sliding blocks. On the side of the two sliding rods 37 close to each other, two symmetrically arranged limiting plates 38 are fixedly installed.
[0049] Through the setting of a plurality of placing units, a batch of duck heads can be placed. When the electric slider is turned on to drive multiple groups of placing units to move to the lower part of the cutting unit in sequence, the cutting unit cuts the duck heads on the placing units. Through the setting of the first rotating plate 31 and the second rotating plate 32, they can always be switched alternately with each other. Therefore, when cutting the top of the duck head, the first rotating plate 31 and the U-shaped frame 30 are perpendicular to each other, which is convenient for cutting the top of the duck head. When the placing unit rotates in the circumferential groove until the second rotating plate 32 faces the cutting unit, at this time the motor is turned on to drive the central wheel 34 to rotate. When the central wheel 34 rotates, it drives the two side wheels 35 on both sides to rotate through meshing. At this time, the two side wheels 35 rotate close to each other. At this time, the two rotating frames 36 on the two side wheels 35 rotate close to each other synchronously. At this time, the two first rotating plates 31 are closed, and the two opposite second rotating plates 32 are opened. At this time, the cutting unit is convenient for cutting the lower part of the duck head. Compared with the existing duck head cutting device, the present invention can meet the requirements of cutting the upper and lower surfaces of the duck head, and can meet the requirements of cutting both sides of the duck head without manually flipping the duck head.
[0050] As shown in the Figure 6 、 7As shown, telescopic plates 40 are symmetrically installed on both sides of the U-shaped frame 30, and an abutment frame 41 is fixedly installed between the two telescopic plates 40. The middle part of the abutment frame 41 is a ring-shaped hollow setting, and a swivel 42 is rotatably installed on one side of the abutment frame 41 through an electric slider. A plurality of clamping plates 43 slidably connected to the abutment frame 41 are provided on the inner side of the swivel 42, and a pushing plate 44 is hinged between the swivel 42 and the plurality of clamping plates 43.
[0051] Through the setting of the abutment frame 41, the excess neck of the duck's head can be placed in the circular hole in the middle of the abutment frame 41, and then the telescopic plate 40 is opened and retracted to make the abutment frame 41 contact with the duck's head, and the electric slider is opened to drive the swivel 42 to rotate. When the swivel 42 rotates, the pushing plate 44 brings the multiple clamping plates 43 closer to each other, so that the multiple clamping plates 43 can stably clamp the outside of the duck's neck, so as to cut the excess neck of the duck's head, thereby making it more flexible when processing the duck's head.
[0052] As attached Figure 7 , 8 As shown, two symmetrically arranged top rods 45 are fixedly installed on the upper end surface of the abutment frame 41, a cutting knife 46 is slidably installed between the two top rods 45, a spring located below the cutting knife 46 is sleeved on the outside of the top rod 45, a cutting groove 47 is opened on the lower end surface of the abutment frame 41, lower rods 48 fixed to the abutment frame 41 are provided on both sides of the cutting groove 47, and an ejection plate 49 located in the cutting groove 47 is slidably installed between the two lower rods 48.
[0053] The cylinder 28 is opened and extends downward. When the cylinder 28 moves downward, it presses the cutting knife 46. When the cutting knife 46 is squeezed, it moves downward to cut the neck of the duck head. When the neck is cut, the ejector plate 49 in the cutting groove 47 is pressed by the cutting knife 46 and moves downward synchronously. When the cutting knife 46 moves out of the cutting groove 47, the ejector plate 49 moves upward to clean the impurities remaining in the cutting groove 47 during cutting.
[0054] During use, the activation of the motor 23 drives the cutting knife 24 to rotate, enabling rotational cutting of the duck head. When the electric push rod 25 is activated, the gear at its end meshes with the gear on the shaft rod 251. As the cutting knife 24 rotates, it synchronously drives the electric push rod 25 to rotate. When the electric push rod 25 rotates, the mutual meshing between the two gears drives the shaft rod 251 to rotate. When the shaft rod 251 rotates, it synchronously drives the cam 252 to rotate. Since the cam 252 slides below the moving rod 254, the rotation of the cam 252 drives the moving rod 254 to move up and down within the fixed cylinder 253. When the moving rod 254 moves upward, the first solenoid valve 255 above it contacts the second solenoid valve 256. After the second solenoid valve 256 contacts the first solenoid valve 255, it controls the two flushing plates 257 to flush the surface of the cutting knife 24 through electrical connection. By flushing the outside of the cutting knife 24, on the one hand, it can clean the tissue fibers of the duck head adhering to the outside of the cutting knife 24 during cutting. On the other hand, the water flowing downward from the flushing of the cutting knife 24 by the flushing plate 257 onto the duck head can also wash and clean the duck head;
[0055] When the cutting depth of the cutting knife 24 for cutting the duck head is adjusted, the motor is activated. When the motor is activated, it drives the rotating shaft 202 to rotate. When the rotating shaft 202 rotates, it synchronously drives the control board 203 to rotate. When the control board 203 rotates, it lifts the lifting frame 22 through the sleeve groove 204. At this time, the lifting frame 22 is controlled by the control board 203 to drive the lifting frame 22 to slide up and down within the T-shaped groove 21. When the lifting frame 22 slides up and down, it synchronously moves the position of the cutting knife 24, thereby realizing the adjustment of the cutting depth of the cutting knife 24 during cutting. The electric slider is activated to drive the cleaning frame 26 to move downward. After the cleaning frame 26 moves downward, it is located outside the cutting knife 24. At this time, the sponge inside the cleaning frame 26 acts on both side walls of the cutting knife 24. As the cutting knife 24 rotates, the outside of the cutting knife 24 sequentially contacts the sponge inside the cleaning frame 26, thereby realizing the cleaning operation between the cleaning frame 26 and the outside of the cutting knife 24;
[0056] Since there will be duck feathers on the outside of the duck head before cutting, it needs to be processed. When burning and singeing the duck feathers on the outside of the duck head, the motor is activated to drive the lifting frame 29 to flip. When the lifting frame 29 flips, it rotates the blowtorch 290 below the cutting knife 24. Subsequently, the blowtorch 290 is activated to spray fire on the outside of the duck head, thereby singeing the remaining duck feathers on the duck head to make it thoroughly clean;
[0057] The setting of multiple placement units can place a batch of duck heads. When the electric slider is turned on to drive multiple groups of placement units to move sequentially below the cutting unit, the cutting unit cuts the duck heads on the placement units. Through the setting of the first rotating plate 31 and the second rotating plate 32, they can always be alternately converted. Therefore, when cutting the top of the duck head, the first rotating plate 31 and the U-shaped frame 30 are perpendicular to each other, which is convenient for cutting the top of the duck head. When the placement unit rotates in the circumferential groove until the second rotating plate 32 faces the cutting unit, the motor is turned on to drive the central wheel 34 to rotate. When the central wheel 34 rotates, it drives the side wheels 35 on both sides to rotate through meshing. At this time, the two side wheels 35 rotate towards each other. At this time, the two rotating frames 36 on the two side wheels 35 rotate towards each other synchronously. At this time, the two first rotating plates 31 are closed, and the two opposite second rotating plates 32 are opened. At this time, the cutting unit is convenient for cutting the lower part of the duck head. Compared with the existing duck head cutting device, the present invention can meet the requirements of cutting the upper and lower surfaces of the duck head, and can meet the cutting of both sides of the duck head without manually flipping the duck head;
[0058] The setting of the abutting frame 41 can place the redundant neck part of the duck head at the circular hole in the middle of the abutting frame 41. Then, by turning on the telescopic plate 40 to retract, the abutting frame 41 is in contact with the duck head. By turning on the electric slider to drive the rotating ring 42 to rotate, when the rotating ring 42 rotates, the push plate 44 makes the multiple clamping plates 43 approach each other, so that the multiple clamping plates 43 stably clamp the outside of the duck neck, so as to cut the redundant neck part of the duck head, making the processing of the duck head more flexible. Two symmetrically arranged top rods 45 are fixedly installed on the upper end surface of the abutting frame 41. A cutting knife 46 is slidably installed between the two top rods 45. A spring is sleeved on the outside of the top rod 45 and is located below the cutting knife 46. A cutting groove 47 is opened on the lower end surface of the abutting frame 41. Lower rods 48 fixed to the abutting frame 41 are arranged on both sides of the cutting groove 47. A top plate 49 located in the cutting groove 47 is slidably installed between the two lower rods 48.
[0059] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed.
Claims
1. A cutting meat food processing device, comprising an operating box (1), characterized in that: Baffles are slidably mounted on both sides of the upper end surface of the operation box (1), dovetail grooves (10) are provided on both sides of the outside of the operation box (1), a dovetail block (11) is slidably mounted in the dovetail groove (10) via an electric slider, an electric push plate (12) is fixedly mounted on the upper end surface of the dovetail block (11), a cutting unit is installed between the electric push plates (12) on both sides, an annular groove is provided on both sides of the inner cavity of the operation box (1), a plurality of placement units are slidably mounted in the annular groove via an electric slider, the placement unit is used for placing the duck head when cutting, a cutting unit is provided in the placement unit, and the cutting unit is used for cutting and removing the duck neck.
2. A cut meat food processing device according to claim 1, characterized in that: The cutting unit comprises a plurality of equidistantly arranged external frames (20), the inner side of the external frames (20) being symmetrically provided with T-shaped slots (21), a lifting frame (22) being slidably mounted between two T-shaped slots (21) via an electric slider, a motor (23) being fixedly mounted on one side of the lifting frame (22), a cutting knife (24) located in the middle of the lifting frame (22) being fixedly mounted on the output end of the motor (23), an electric push rod (25) being coaxially fixedly mounted on one end of the lifting frame (22) away from the motor (23) and the cutting knife (24), a shaft rod (251) being rotatably connected to the lifting frame (22) being provided above the electric push rod (25), and mutually meshing gears being fixedly mounted on the ends of the shaft rod (251) and the electric push rod (25).
3. The cut meat food processing device according to claim 2, characterized in that: A cam (252) is fixedly installed in the middle of the shaft rod (251), a fixed cylinder (253) fixed to the lifting frame (22) is provided above the cam (252), a moving rod (254) is slidably installed in the middle of the fixed cylinder (253), a first solenoid valve (255) is fixedly installed in the middle of the upper end surface of the moving rod (254), a second solenoid valve (256) fixedly connected to the top of the inner cavity of the fixed cylinder (253) is provided directly above the first solenoid valve (255), two symmetrically arranged flushing plates (257) are slidably installed on one side of the lifting frame (22) through an electric slider, a water supply box (258) is installed between the two flushing plates (257), and the water supply box (258) is used to supply water to the flushing plates (257). When the first solenoid valve (255) contacts the second solenoid valve (256), it is used to open the flushing plates (257).
4. The cut meat food processing device according to claim 3, characterized in that: A side frame (201) is fixedly mounted on one side of the external frame (20), a rotating shaft (202) is rotatably mounted in the middle of the side frame (201) through a motor, a control board (203) is fixedly mounted in the middle of the rotating shaft (202), a sleeve groove (204) is provided on one side of the control board (203), and the sleeve groove (204) is used for sleeve mounting of the lifting frame (22).
5. The cut meat food processing device according to claim 4, characterized in that: A fixing frame (27) is fixedly mounted on one side of the external frame (20) away from the side frame (201); a cylinder (28) is fixedly mounted on the middle part of the lower end surface of the fixing frame (27); a cleaning frame (26) is slidably mounted on the middle part of the lifting frame (22) via an electric slider; a cleaning sponge is detachably mounted in the cleaning frame (26); and the cleaning frame (26) is located directly above the cutting knife (24).
6. The cut meat food processing device according to claim 5, characterized in that: Lifting frames (29) are installed on both sides of the external frame (20) through motor rotation, and a flamethrower (290) is installed together at the lower part of the two lifting frames (29).
7. The cut meat food processing device according to claim 1, characterized in that: The placement unit comprises a plurality of U-shaped frames (30), wherein two symmetrically arranged first rotating plates (31) are rotatably mounted on both sides of the upper end surface of the U-shaped frame (30), and two symmetrically arranged second rotating plates (32) are rotatably mounted on both sides of the lower end surface of the U-shaped frame (30), and a side groove (33) is provided on one side of the first rotating plate (31) and the second rotating plate (32), and a moving block (330) is slidably mounted in the side groove (33), and a central wheel (34) is rotatably mounted on the middle part of one side of the U-shaped frame (30) through a motor.
8. The cut meat food processing device according to claim 7, characterized in that: Side wheels (35) rotatably connected to the U-shaped frame (30) are provided on both sides of the center wheel (34); a rotating frame (36) is coaxially fixedly installed on the front side of the side wheel (35); the rotating frame (36) is respectively connected to the upper and lower moving blocks (330) on the same side thereof; two symmetrically arranged sliding rods (37) are slidably installed on both sides of the U-shaped frame (30) through sliding sliders; two symmetrically arranged limiting plates (38) are fixedly installed on the adjacent sides of the sliding rods (37) on both sides.
9. The cut meat food processing device according to claim 8, characterized in that: Telescopic plates (40) are symmetrically installed on both sides of the U-shaped frame (30), and an abutment frame (41) is fixedly installed between the two telescopic plates (40). The middle part of the abutment frame (41) is an annular hollow setting. A rotating ring (42) is rotatably installed on one side of the abutment frame (41) through an electric slider. A plurality of clamping plates (43) slidably connected to the abutment frame (41) are arranged inside the rotating ring (42), and a pushing plate (44) is hingedly connected between the rotating ring (42) and the plurality of clamping plates (43).
10. The cut meat food processing device according to claim 9, characterized in that: The upper end surface of the abutment frame (41) is fixedly mounted with two symmetrically arranged top rods (45), a cutting knife (46) is slidably mounted between the two top rods (45), a spring located below the cutting knife (46) is sleeved on the outside of the top rod (45), a cutting groove (47) is formed on the lower end surface of the abutment frame (41), lower rods (48) fixed to the abutment frame (41) are arranged on both sides of the cutting groove (47), and an ejection plate (49) located in the cutting groove (47) is slidably mounted between the two lower rods (48).
Citation Information
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