CN110800791B - Automatic overturning type device for evenly coating sauce for batch processing of cooked meat - Google Patents

Automatic overturning type device for evenly coating sauce for batch processing of cooked meat Download PDF

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Publication number
CN110800791B
CN110800791B CN201911249915.5A CN201911249915A CN110800791B CN 110800791 B CN110800791 B CN 110800791B CN 201911249915 A CN201911249915 A CN 201911249915A CN 110800791 B CN110800791 B CN 110800791B
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sauce
device body
conveying
conveyer belt
conveying roller
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CN110800791A (en
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刘志伟
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Hunan Pro Snack Food Co ltd
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Hunan Pro Snack Food Co ltd
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    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C9/00Apparatus for tenderising meat, e.g. ham
    • A22C9/007Apparatus for tenderising meat, e.g. ham by beating

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  • Engineering & Computer Science (AREA)
  • Wood Science & Technology (AREA)
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  • Food Science & Technology (AREA)
  • Meat, Egg Or Seafood Products (AREA)

Abstract

The invention discloses an automatic turnover type uniform sauce smearing device for batch processing of cooked meat, which comprises a device body, a first motor, a second motor and a third motor, wherein a feeding opening is formed in the upper side of the device body, a sauce input pipe is inserted into the upper end of the device body, the lower end of the sauce input pipe is communicated with an opening in the upper end of a sauce branch pipe, and two groups of openings in the lower end of the sauce branch pipe are respectively and fixedly connected with openings in the upper ends of two groups of material bins. When the transmission shaft rotates to drive the second conveying roller to work, the sleeve block can be driven to rotate, so that the spring on the sleeve block drives the collision ball to knock the connecting rod, the vibration generated during collision is transmitted to the second conveying roller through the connecting rod, the first conveying belt on the second conveying roller vibrates, the dried meat slices on the first conveying belt resonate, and the sauce materials stained on the dried meat slices can be spread on the surfaces of the dried meat slices due to vibration and can accelerate the speed of permeating the dried meat slices, so that the interior of the dried meat slices can be tasty.

Description

Automatic overturning type device for evenly coating sauce for batch processing of cooked meat
Technical Field
The invention relates to the technical field of sauce coating devices for cooked meat processing, in particular to an automatic turnover type uniform sauce coating device for batch processing of cooked meat.
Background
The dried meat slice is cooked meat, when the dried meat slice is processed, sauce coating is carried out on the surface of the dried meat slice through the coating device, so that the surface of the dried meat slice has luster and the taste is improved, but the current coating device cannot ensure that the two sides of the dried meat slice are uniformly coated with the sauce, the sauce is usually liquid, and when the coating device is used, the consumption of a machine is difficult to control, so that the dried meat slice is frequently coated with too much sauce, the sauce coating is excessive, the taste of the dried meat slice is influenced, the sauce is wasted, and therefore the problem is solved by the automatic turnover type cooked meat batch processing sauce uniform coating device.
Disclosure of Invention
The invention aims to provide an automatic turnover type sauce uniform coating device for batch processing of cooked meat, which aims to solve the problems that when the conventional coating device provided in the background technology is used, the two surfaces of a dried meat slice cannot be uniformly coated with sauce, the sauce is usually liquid, and the consumption of a machine is difficult to control during coating, so that the dried meat slice is often coated with too much sauce, the taste of the dried meat slice is affected due to excessive coating of the sauce, and the sauce is wasted.
In order to realize the purpose, the invention provides the following technical scheme: an automatic turnover type sauce material evenly coating device for batch processing of cooked meat, which comprises a device body, a first motor, a second motor and a third motor, wherein a feeding opening is formed in the upper side of the device body, a sauce material input pipe is inserted into the upper end of the device body, the lower end of the sauce material input pipe is communicated with an upper end opening of a sauce material branch pipe, two groups of openings at the lower end of the sauce material branch pipe are respectively and fixedly connected with upper end openings of two groups of component bins, the sauce material branch bin is fixedly arranged at the upper end of the inner wall of the feeding opening, a first discharging head is arranged at the lower end of the sauce material branch bin, a first conveying roller is arranged on the left side of the lower end of the feeding opening, the first conveying roller is arranged inside the device body through a bearing, a second conveying roller is arranged inside the device body through a bearing, a first conveying belt is wound on the second conveying roller and the first conveying roller, a guide roller is arranged, the back end of a central shaft of the second conveying roller is connected with the transmission shaft through a bevel gear, one end of the transmission shaft is inserted into the inner wall of the protective box through a bearing, the protective box is installed at the back end of the device body, a first motor is fixedly installed inside the protective box, the output end of the first motor is fixedly connected with the other end of the protective box, a sleeve block is sleeved on the transmission shaft, a spring is fixedly installed on the sleeve block, a collision ball is fixedly welded at the end of the spring, the transmission shaft is connected with the central shaft of a third conveying roller through the bevel gear, the third conveying roller is installed inside the device body through a bearing, the back end of the central shaft of the third conveying roller is connected with the back end of the central shaft of the second conveying roller through a connecting rod, a residual material recycling cavity is arranged inside the device body, and the residual material recycling cavity is positioned at the, the inside fixed mounting in clout recovery chamber has the filter screen, and the below of filter screen is provided with the second and goes out the stub bar, the second stub bar is installed on the lower extreme right side in clout recovery chamber, the back end in clout recovery chamber has seted up row cinder notch, the upper end central point of filter screen puts and is equipped with the pivot through the vertical insertion of bearing, and symmetrical welding has the brush hair board in the pivot, the upper end of pivot and the output end fixed connection of second motor, and second motor fixed mounting is in the inside of protecting crust, the fixed welding of protecting crust is at the lower extreme of fixed plate, and fixed welding is on the inner wall in clout recovery chamber in both ends around the fixed plate, the upper end of fixed plate is provided with first brush hair, the inside of device body installs the fourth transfer roller through the bearing, and twines on fourth transfer roller and the third transfer roller and have the second conveyer belt, the downside of second conveyer belt is provided with, and the drainage cavity is arranged in the device body, a first drainage port is formed in the lower end of the drainage cavity, second bristles are arranged on the upper side of the lower end of the drainage cavity, two sets of fifth conveying rollers are symmetrically arranged at the lower end of the interior of the device body through bearings, and are arranged in two sets of third conveying belts and left sides are wound on the fifth conveying rollers, the back ends of the central shafts of the fifth conveying rollers are fixedly connected with the output shafts of third motors, the third motors are fixedly arranged at the back ends of the device body, second drainage ports are formed in the lower ends of the third conveying belts, the lower sides of the back ends of the device body are formed in the second drainage ports, discharge ports are formed in the right ends of the fifth conveying rollers, and the discharge ports are arranged at the lower sides of the right ends of the.
Preferably, divide the feed bin to set up to the rectangle, divide the inside of feed bin to set up to hollow structure, divide the lower extreme equidistance of feed bin to install first discharge head, divide the width of feed bin and the width phase-match of first conveyer belt, the lower extreme in clout recovery chamber is installed according to the width equidistance of second conveyer belt to second discharge head.
Preferably, the rubber pad is pasted with the junction of transmission shaft to the cover piece, the outside of cover piece is encircleed the equidistance and is installed the spring and hit the ball, interval between connecting rod and the transmission shaft is less than hits the interval between ball and the transmission shaft, the center pin of second transfer roller and third transfer roller all sets up to hollow structure with the connecting rod, the both ends of connecting rod cup joint on second transfer roller and third transfer roller through the bearing.
Preferably, the small opening has been seted up to equal equidistance on second conveyer belt, third conveyer belt and the first conveyer belt, first conveyer belt and second conveyer belt all set up to the slope form, the height about first conveyer belt, the second conveyer belt sets up to the height about the height, the right-hand member upside of second conveyer belt is aimed at to the right-hand member of first conveyer belt, the left end of second conveyer belt is aimed at the left side of third conveyer belt.
Preferably, the leftovers recovery cavity left side diapire sets up the slope form into height from left to right low, the clouds recovery cavity diapire of filter screen downside sets up the slope form into height from left to right low, the filter screen sets up to semi-circle, the back of the body end edge height of filter screen flushes with the opening diapire of row cinder notch mutually, the brush hair board sets up to the upside shape assorted circular arc type with the filter screen.
Preferably, the upper ends of the first bristles are in contact with the lower surface of the first conveyor belt, and the upper ends of the second bristles are in contact with the lower surface of the second conveyor belt.
Preferably, the inner wall of the bottom end of the liquid guide cavity is inclined as the second conveying belt, the first liquid discharge port is formed in the lower end of the inner portion of the liquid guide cavity, the inner wall of the lower end of the device body is arc-shaped, and the second liquid discharge port is formed in the lowest position of the inner wall of the lower end of the device body.
Compared with the prior art, the invention has the beneficial effects that: the automatic turnover type device for evenly coating sauce for batch processing of cooked meat is characterized in that sauce leakage is carried out at a material inlet by arranging a first material outlet head and a material distribution bin, so that sauce can be smeared on the upper surface of a dried meat slice carried on a first conveying belt when the dried meat slice passes through the first material outlet head, and a transmission shaft can drive a sleeve block to rotate when rotating to drive a second conveying roller to work, so that a spring on the sleeve block drives a collision ball to knock a connecting rod, vibration generated during collision is transmitted to the second conveying roller through the connecting rod, the first conveying belt on the second conveying roller vibrates, so that the dried meat slice on the first conveying belt resonates, and the sauce stained on the dried meat slice can be spread on the surface of the dried meat slice due to vibration and can accelerate the speed of permeating the dried meat slice, so that the inside of the dried meat slice can be tasty;
and the redundant sauce material can slide down from the dried meat slices to the first conveying belt through vibration and flow to the excess material recovery cavity through the first conveying belt, so that the dried meat slices are not stained with excessive sauce material to cause waste, when the dried meat slices are conveyed to the second conveying belt by the first conveying belt, the dried meat slices can vertically drop, when the lower end of the dried meat slices contacts the second conveying belt, the lower end of the dried meat slices can be driven by the second conveying belt moving leftwards to rotate, so that the inclined front surface of the dried meat slices is pasted on the second conveying belt and moves leftwards along with the second conveying belt, the sauce material entering the excess material recovery cavity can drop on the upper surface of the filter screen, the filter screen can filter the sauce residues stained in the sauce material, the filtered sauce material can enter the lower part of the filter screen and flows through the inclined inner wall at the bottom end of the excess material recovery cavity until the sauce material flows out of the second discharging head, and then the dried meat slices accepted by the second conveying belt turn over the surface, the original bottom surface of the dried meat slice is also stained with a certain amount of sauce during primary smearing, so that excessive sauce does not need to be smeared after the bottom surface is turned over, and the secondary sauce is adopted by the second discharging head, so that the amount of the sauce is less than that of the sauce for the first time, and the sauce is not excessive when the sauce is dripped on the second surface of the dried meat slice, so that the taste of the dried meat slice is prevented from being damaged due to the fact that the dried meat slice is stained with the excessive sauce, and the sauce which is excessive for the first time is utilized, so that waste is avoided;
in addition, as the connecting rod can also carry out vibration conduction on the third conveying roller when vibrating, the second conveying belt on the third conveying roller can also vibrate to ensure that sauce on the second surface of the dried meat slice can also be flattened, redundant sauce can flow in the liquid guide cavity through the second conveying belt and can flow from the first liquid discharge port along the inclined wall of the liquid guide cavity, after the dried meat slice is thrown into the third conveying belt by the second conveying belt, the dried meat slice is driven by the third conveying belt to be discharged from the discharge port, redundant sauce can drip from the third conveying belt through gravity in the process and flow from the second liquid discharge port along the inner bottom wall of the device body, the sauce flowing out of the first liquid discharge port and the second liquid discharge port can be collected and reused, and in addition, the first brush hair and the second brush hair can scrape the surfaces of the first conveying belt and the second conveying belt when moving respectively, so that the sauce stained on the first conveying belt and the second conveying belt is brushed down, and the leak holes of the first conveying belt and the second conveying belt can be cleaned, so that the leak holes of the first conveying belt and the second conveying belt are prevented from being blocked.
Description of the drawings:
in order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
FIG. 1 is a schematic sectional elevation view of the structure of the present invention;
FIG. 2 is an enlarged view of the structure A in FIG. 1;
FIG. 3 is a schematic rear view of the inventive structure;
FIG. 4 is a schematic structural diagram of the material distribution bin and the first discharging head of the invention;
FIG. 5 is a schematic view of the structure at B-B of the present invention;
FIG. 6 is an enlarged view of the structure of C in FIG. 1;
FIG. 7 is a schematic sectional top view of the structure of the invention at the residue recovery chamber;
fig. 8 is an enlarged schematic view of the structure D in fig. 1 according to the invention.
In the figure: 1. a device body; 2. a feeding port; 3. a sauce input pipe; 4. separating the sauce into pipes; 5. a material distributing bin; 6. a first discharge head; 7. a first transfer roller; 8. a second transfer roller; 9. a first conveyor belt; 10. a guide roller; 11. a drive shaft; 12. a protective box; 13. a first motor; 14. sleeving blocks; 15. a spring; 16. knocking the ball; 17. a third transfer roller; 18. a connecting rod; 19. a residual material recovery cavity; 20. filtering with a screen; 21. a second discharge head; 22. a slag discharge port; 23. a rotating shaft; 24. a bristle plate; 25. a second motor; 26. a protective shell; 27. a fixing plate; 28. a first bristle; 29. a fourth transfer roller; 30. a second conveyor belt; 31. a drainage cavity; 32. a first drain port; 33. a second bristle; 34. a fifth transfer roller; 35. a third conveyor belt; 36. a third motor; 37. a second liquid discharge port; 38. and (4) a discharge port.
The specific implementation mode is as follows:
the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-8, an embodiment of the present invention is shown: an automatic turnover type sauce even smearing device for batch processing of cooked meat foods comprises a device body 1, a first motor 13, a second motor 25 and a third motor 36, wherein a feeding port 2 is formed in the upper side of the device body 1, a sauce input pipe 3 is inserted into the upper end of the device body 1, the lower end of the sauce input pipe 3 is communicated with an upper end opening of a sauce branch pipe 4, two groups of openings at the lower end of the sauce branch pipe 4 are respectively and fixedly connected with upper end openings of two component material bins 5, the material branch bin 5 is fixedly arranged at the upper end of the inner wall of the feeding port 2, a first material outlet head 6 is arranged at the lower end of the material branch bin 5, the material branch bin 5 is rectangular, the inner part of the material branch bin 5 is of a hollow structure, the first material outlet heads 6 are arranged at equal intervals at the lower end of the material branch bin 5, the width of the material branch bin 5 is matched with the width of a first conveying belt 9, a second material outlet head 21 is arranged at the lower, the first discharging head 6 and the second discharging head 21 can be of a dropping type or a thin column type, the discharging amount needs to be matched with a certain speed of the first conveying belt 9 and the second conveying belt 30, so that the dried meat slices cannot be excessively stained with sauce when passing through the first discharging head 6 and the second discharging head 21, the structure enables the first discharging head 6 and the second discharging head 21 to uniformly perform sauce dripping on the dried meat slices on the first conveying belt 9 and the second conveying belt 30 respectively, and the width of the first discharging head 6 and the second discharging head 21 is enough to cover the dried meat slices transversely arranged on the first conveying belt 9 and the second conveying belt 30;
a first conveying roller 7 is arranged on the left side of the lower end of the feeding port 2, the first conveying roller 7 is arranged inside the device body 1 through a bearing, a second conveying roller 8 is arranged inside the device body 1 through a bearing, a first conveying belt 9 is wound on the second conveying roller 8 and the first conveying roller 7, a guide roller 10 is arranged in the middle section of the first conveying belt 9, the back end of the central shaft of the second conveying roller 8 is connected with a transmission shaft 11 through a bevel gear, one end of the transmission shaft 11 is inserted into the inner wall of a protective box 12 through a bearing, the protective box 12 is arranged at the back end of the device body 1, a first motor 13 is fixedly arranged inside the protective box 12, the output end of the first motor 13 is fixedly connected with the other end of the protective box 12, a sleeve block 14 is sleeved on the transmission shaft 11, a spring 15 is fixedly arranged on the sleeve block 14, a collision ball 16 is fixedly welded at the end of the spring 15, the transmission shaft 11 is connected with the central, the third conveying roller 17 is arranged inside the device body 1 through a bearing, the back end of a central shaft of the third conveying roller 17 is connected with the back end of a central shaft of the second conveying roller 8 through a connecting rod 18, a rubber pad is adhered at the joint of the sleeve block 14 and the transmission shaft 11, a spring 15 and a collision ball 16 are arranged on the outer side of the sleeve block 14 in an encircling and equidistant mode, the distance between the connecting rod 18 and the transmission shaft 11 is smaller than the distance between the collision ball 16 and the transmission shaft 11, the central shafts of the second conveying roller 8 and the third conveying roller 17 and the connecting rod 18 are both of a hollow structure, two ends of the connecting rod 18 are sleeved on the second conveying roller 8 and the third conveying roller 17 through bearings, the structure enables the sleeve block 14 to rotate through the spring 15 and the collision ball 16 when the transmission shaft 11 drives the sleeve block 14 to rotate, and the distance between the collision ball 16 and the transmission shaft 11 is, therefore, the collision ball 16 can collide with the connecting rod 18, meanwhile, the connecting rod 18 can increase the vibration when being collided through the hollow structure and transmit the vibration to the second conveying roller 8 and the third conveying roller 17, and the second conveying roller 8 and the third conveying roller 17 can also resonate through the hollow structure and transmit the vibration to the first conveying belt 9 and the second conveying belt 30 respectively;
the device comprises a device body 1, a remainder recovery cavity 19 is arranged inside the device body 1, the remainder recovery cavity 19 is positioned at the lower side of a first conveying belt 9, a filter screen 20 is fixedly arranged inside the remainder recovery cavity 19, a second discharging head 21 is arranged below the filter screen 20, the second discharging head 21 is arranged at the right side of the lower end of the remainder recovery cavity 19, a residue discharge port 22 is formed in the back end of the remainder recovery cavity 19, a rotating shaft 23 is vertically inserted in the upper center of the filter screen 20 through a bearing, brushing plates 24 are symmetrically welded on the rotating shaft 23, the left side bottom wall of the remainder recovery cavity 19 is arranged in an inclined shape with a high left side and a low right side, the bottom wall of the remainder recovery cavity 19 at the lower side of the filter screen 20 is arranged in an inclined shape with a high left side and a low right side, the filter screen 20 is arranged in a semicircular shape, the edge height of the back end of the filter screen 20 is flush with the opening bottom wall of the residue discharge port 22, the brushing plates 24 are arranged in an arc shape matched with, so that the sauce can leak out through the second material outlet head 21, and the semicircular surface of the filter screen 20 enables the sauce and the dried meat slice slag stained on the upper surface of the filter screen 20 to automatically move towards the edge of the filter screen 20, and when the brush hair plate 24 rotates, the dried meat slice slag retained on the surface of the filter screen 20 can be driven to rotate by the brush hair plate 24, and when the dried meat slice slag is aligned with the slag outlet 22, the dried meat slice slag can be pushed out by the brush hair plate 24 due to inertia and centrifugal force generated during rotation, and the brush hair at the lower end of the brush hair plate 24 can clean the filter holes of the filter screen 20, so that the filter holes of the filter screen 20 can be prevented from being blocked;
the upper end of the rotating shaft 23 is fixedly connected with the output end of the second motor 25, the second motor 25 is fixedly installed inside a protective shell 26, the protective shell 26 is fixedly welded at the lower end of a fixed plate 27, the front end and the rear end of the fixed plate 27 are fixedly welded on the inner wall of the excess material recovery cavity 19, first bristles 28 are arranged at the upper end of the fixed plate 27, a fourth conveying roller 29 is installed inside the device body 1 through a bearing, a second conveying belt 30 is wound on the fourth conveying roller 29 and the third conveying roller 17, a liquid guide cavity 31 is arranged at the lower side of the second conveying belt 30, the liquid guide cavity 31 is arranged inside the device body 1, a first liquid discharge port 32 is formed at the lower end of the liquid guide cavity 31, second bristles 33 are installed at the upper side of the lower end of the liquid guide cavity 31, the upper end of the first bristles 28 is contacted with the lower surface of the first conveying belt 9, and the upper end of the second bristles, the structure enables the first brush bristles 28 and the second brush bristles 33 to scrape and rub surfaces of the first conveyor belt 9 and the second conveyor belt 30 when the first conveyor belt 9 and the second conveyor belt 30 move respectively, so that sauce infected on the first conveyor belt 9 and the second conveyor belt 30 is brushed down, and leakage holes of the first conveyor belt 9 and the second conveyor belt 30 are cleaned, so that the leakage holes of the first conveyor belt 9 and the second conveyor belt 30 are prevented from being blocked;
two groups of fifth conveying rollers 34 are symmetrically arranged at the lower end in the device body 1 through bearings, a third conveying belt 35 is wound on the two groups of fifth conveying rollers 34, leak holes are formed in equal distances on the second conveying belt 30, the third conveying belt 35 and the first conveying belt 9, the first conveying belt 9 and the second conveying belt 30 are both arranged in an inclined shape, the first conveying belt 9 is high at the left and low at the right, the second conveying belt 30 is arranged in a low at the left and high at the right, the right end of the first conveying belt 9 is aligned to the upper side of the right end of the second conveying belt 30, and the left end of the second conveying belt 30 is aligned to the left side of the third conveying belt 35, so that sauce dropping on the excess material recovery cavity 19, the second conveying belt 30 and the third conveying belt 35 can be discharged through the leak holes, accumulation on the surfaces of the excess material recovery cavity 19, the second conveying belt 30 and the third conveying belt 35 is avoided, and the installation modes of the first conveying belt 9, the dried meat slices can be conveyed and turned over;
the back end of the central shaft of the left fifth conveying roller 34 is fixedly connected with the output shaft of the third motor 36, the third motor 36 is fixedly arranged at the back end of the device body 1, the lower end of the third conveying belt 35 is provided with a second liquid outlet 37, the second liquid outlet 37 is arranged at the lower side of the back end of the device body 1, the right end of the fifth conveying roller 34 is provided with a discharge port 38, the discharge port 38 is arranged at the lower side of the right end of the device body 1, the inner wall of the bottom end of the liquid guide cavity 31 is arranged in an inclined shape as the same as that of the second conveying belt 30, the first liquid outlet 32 is arranged at the lower end of the inner part of the liquid guide cavity 31, the inner wall of the lower end of the device body 1 is arranged in a circular arc shape, the second liquid outlet 37 is arranged at the lowest part of the inner wall of the lower end of the device body 1, the structure enables sauce flowing on the bottom wall of the liquid guide cavity 31 and, so that the staff can collect and reuse the sauce.
The working principle is as follows: when the device is used, the switches of the first motor 13, the second motor 25 and the third conveyer belt 35 are firstly opened, sauce is filled through the sauce input pipe 3, then the dried meat slices are arranged and placed on the first conveyer belt 9, when the first motor 13 works, the transmission shaft 11 is driven to rotate, the transmission shaft 11 drives the second conveyer roller 8 and the third conveyer roller 17 to rotate through the bevel gear, the sleeve block 14 sleeved on the transmission shaft 11 also drives the collision ball 16 to rotate through the spring 15, the connection rod 18 is knocked when the collision ball 16 rotates, the connection rod 18 transmits vibration generated during knocking to the second conveyer roller 8 and the third conveyer roller 17, so that the first conveyer belt 9 on the second conveyer roller 8 and the second conveyer belt 30 on the third conveyer roller 17 resonate, when the second conveyer roller 8 rotates, the connection rod is matched with the first conveyer roller 7 to drive the first conveyer belt 9 to convey the dried meat slices to the right, when the dried meat slices pass through the lower end of the storage bin 5, the sauce material input into the sauce material input pipe 3 can drop on the upper surface of the dried meat slice through the first material outlet head 6 on the material distribution bin 5, the sauce material polluted on the dried meat slice is flattened on the surface of the dried meat slice due to the vibration of the first conveying belt 9 and can accelerate the speed of permeating the dried meat slice, and the redundant sauce material can slide down onto the first conveying belt 9 from the dried meat slice through the vibration and flows into the excess material recovery cavity 19 through the first conveying belt 9, then the dried meat slice can be conveyed onto the second conveying belt 30 by the first conveying belt 9, in the process, because of the height difference of the first conveying belt 9 and the second conveying belt 30, the dried meat slice has a vertical process, when the lower end of the dried meat slice contacts the second conveying belt 30, the third conveying roller 17 can be matched with the fourth conveying roller 29 to drive the second conveying belt 30 to rotate when rotating, and the lower end of the dried meat slice can be driven to the left by the upper surface of the second conveying belt 30, so that the dried meat slice turns over, the original upper surface of the dried meat slice is attached to the second conveying belt 30, then the second conveying belt 30 drives the dried meat slice to convey leftwards and downwards, the sauce entering the excess material recovery cavity 19 falls on the filter screen 20, the filter screen 20 filters the minced dried meat slice on the sauce, the filtered sauce drops on the inclined wall at the bottom end of the excess material recovery cavity 19 and flows out through the second discharging head 21, so that when the second conveying belt 30 drives the dried meat slice to pass through the second discharging head 21, the second discharging head 21 can coat the sauce on the original bottom surface of the dried meat slice, so that the two sides of the sauce are both stained with the sauce, and the connecting rod 18 can also vibrate and conduct the sauce to the third conveying roller 17 when vibrating, so that the second conveying belt 30 on the third conveying roller 17 can also vibrate, so that the sauce on the second surface of the dried meat slice can also spread out, and the redundant sauce can flow in the liquid guide cavity 31 through the second conveying belt 30, and will flow from the first drainage port 32 along the inclined wall of the liquid guide cavity 31, after the second conveyor belt 30 drops the dried meat slices onto the third conveyor belt 35, the dried meat slices will be driven by the third conveyor belt 35 and sent out from the discharge port 38, and in this process, the excessive sauce will drop from the third conveyor belt 35 by gravity, and flow from the second drainage port 37 along the inner bottom wall of the device body 1, and the sauce flowing from the first drainage port 32 and the second drainage port 37 can be collected and utilized again, in addition, the first brush bristles 28 and the second brush bristles 33 will rub the surfaces of the first conveyor belt 9 and the second conveyor belt 30 when moving respectively, so that the sauce stained on the first conveyor belt 9 and the second conveyor belt 30 is brushed down, and the leakage holes of the first conveyor belt 9 and the second conveyor belt 30 will be cleaned, so as to prevent the leakage holes of the first conveyor belt 9 and the second conveyor belt 30 from being blocked, still, the second motor 25 during operation can drive pivot 23 and rotate, pivot 23 can drive brush hair board 24 and rotate on the surface of filter screen 20, make the dried meat slice sediment that is detained on the filter screen 20 surface can be driven by brush hair board 24 and rotate, and when the dried meat slice sediment aims at row cinder notch 22 department, can be pushed out by brush hair board 24 because of inertia and the centrifugal force that produces during the rotation, and the brush hair of brush hair board 24 lower extreme can clear up the filtration pore of filter screen 20, can prevent that the filtration pore of filter screen 20 from appearing blockking up, above is the whole theory of operation of invention.
It will be evident to those skilled in the art that the invention is not limited to the details of the foregoing illustrative embodiments, and that the present invention may be embodied in other specific forms without departing from the spirit or essential attributes thereof. The present embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. Any reference sign in a claim should not be construed as limiting the claim concerned.

Claims (6)

1. The utility model provides an automatic device is evenly paintd to convertible meat prepared food batch processing sauce material, includes device body (1), first motor (13), second motor (25) and third motor (36), its characterized in that: the device is characterized in that a feeding port (2) is formed in the upper side of the device body (1), a sauce input pipe (3) is inserted into the upper end of the device body (1), the lower end of the sauce input pipe (3) is communicated with an upper end opening of a sauce branch pipe (4), two groups of openings of the lower end of the sauce branch pipe (4) are respectively and fixedly connected with an upper end opening of a two-component material bin (5), the material branch bin (5) is fixedly arranged at the upper end of the inner wall of the feeding port (2), a first discharging head (6) is arranged at the lower end of the material branch bin (5), a first conveying roller (7) is arranged on the left side of the lower end of the feeding port (2), the first conveying roller (7) is arranged inside the device body (1) through a bearing, a second conveying roller (8) is arranged inside the device body (1) through a bearing, and a first conveying belt (9) is wound on the second conveying roller (8) and the first conveying roller (7, guide roll (10) is installed in the middle section of first conveyer belt (9), the center pin back end of second transfer roller (8) is connected through bevel gear and transmission shaft (11), and the one end of transmission shaft (11) is inserted through the bearing and is established in the inner wall of protective housing (12), the back end at device body (1) is installed in protective housing (12), the inside fixed mounting of protective housing (12) has first motor (13), and the output of first motor (13) and the other end fixed connection of protective housing (12), sleeve block (14) has been cup jointed on transmission shaft (11), and sleeve block (14) fixed mounting has spring (15), the end fixed welding of spring (15) has collision ball (16), transmission shaft (11) is connected through the center pin of bevel gear and third transfer roller (17), and third transfer roller (17) installs the inside at device body (1) through the bearing, the center shaft back end of the third conveying roller (17) is connected with the center shaft back end of the second conveying roller (8) through a connecting rod (18), a residual material recovery cavity (19) is arranged inside the device body (1), the residual material recovery cavity (19) is located on the lower side of the first conveying belt (9), a filter screen (20) is fixedly arranged inside the residual material recovery cavity (19), a second discharging head (21) is arranged below the filter screen (20), the second discharging head (21) is arranged on the right side of the lower end of the residual material recovery cavity (19), a slag discharge opening (22) is formed in the back end of the residual material recovery cavity (19), a rotating shaft (23) is vertically inserted into the center position of the upper end of the filter screen (20) through a bearing, a brush hair plate (24) is symmetrically welded on the rotating shaft (23), and the upper end of the rotating shaft (23) is fixedly connected with the output end of a second motor (25), and the second motor (25) is fixedly arranged in the protective shell (26), the protective shell (26) is fixedly welded at the lower end of the fixed plate (27), the front end and the rear end of the fixed plate (27) are fixedly welded on the inner wall of the excess material recovery cavity (19), first bristles (28) are arranged at the upper end of the fixed plate (27), a fourth conveying roller (29) is arranged in the device body (1) through a bearing, a second conveying belt (30) is wound on the fourth conveying roller (29) and the third conveying roller (17), a liquid guide cavity (31) is arranged at the lower side of the second conveying belt (30), the liquid guide cavity (31) is arranged in the device body (1), a first liquid discharge port (32) is arranged at the lower end of the liquid guide cavity (31), second bristles (33) are arranged at the upper side of the lower end of the liquid guide cavity (31), two groups of fifth bristles (34) are symmetrically arranged at the lower end in the device body (1) through a bearing, a third conveying belt (35) is wound on the two groups of fifth conveying rollers (34), the back end of the central shaft of the fifth conveying roller (34) on the left side is fixedly connected with an output shaft of a third motor (36), the third motor (36) is fixedly installed at the back end of the device body (1), a second liquid discharge port (37) is formed in the lower end of the third conveying belt (35), the second liquid discharge port (37) is formed in the lower side of the back end of the device body (1), a discharge port (38) is formed in the right end of the fifth conveying roller (34), and the discharge port (38) is formed in the lower side of the right end of the device body (1); the junction of cover piece (14) and transmission shaft (11) is pasted and is had the rubber pad, the outside of cover piece (14) is encircleed the equidistance and is installed spring (15) and hit ball (16), interval between connecting rod (18) and transmission shaft (11) is less than the interval of hitting between ball (16) and transmission shaft (11), the center pin and connecting rod (18) of second transfer roller (8) and third transfer roller (17) all set up to hollow structure, the both ends of connecting rod (18) are cup jointed on second transfer roller (8) and third transfer roller (17) through the bearing.
2. The automatic turnover type device for evenly coating sauce for batch processing of cooked meat food as claimed in claim 1, wherein the device comprises: divide feed bin (5) to set up to the rectangle, the inside of dividing feed bin (5) sets up to hollow structure, divide the lower extreme equidistance of feed bin (5) to install first stub bar (6), divide the width of feed bin (5) and the width phase-match of first conveyer belt (9), the second goes out stub bar (21) and installs the lower extreme in clout recovery chamber (19) according to the width equidistance of second conveyer belt (30).
3. The automatic turnover type device for evenly coating sauce for batch processing of cooked meat food as claimed in claim 1, wherein the device comprises: the small opening has been seted up to equidistance on second conveyer belt (30), third conveyer belt (35) and first conveyer belt (9), first conveyer belt (9) and second conveyer belt (30) all set up to the slope form, first conveyer belt (9) high right side is low, second conveyer belt (30) set up to low right side height in a left side, the right-hand member upside of second conveyer belt (30) is aimed at to the right-hand member of first conveyer belt (9), the left end of second conveyer belt (30) is aimed at the left side of third conveyer belt (35).
4. The automatic turnover type device for evenly coating sauce for batch processing of cooked meat food as claimed in claim 1, wherein the device comprises: the left side diapire that the chamber (19) was retrieved to the clout sets up the slope form into height in the left side, clout retrieval chamber (19) diapire of filter screen (20) downside sets up the slope form into height in the left side, filter screen (20) set up to semi-circular, the back end edge height of filter screen (20) flushes mutually with the opening diapire of row cinder notch (22), brush hair board (24) set up to the upside shape assorted circular arc type with filter screen (20).
5. The automatic turnover type device for evenly coating sauce for batch processing of cooked meat food as claimed in claim 1, wherein the device comprises: the upper ends of the first bristles (28) are in contact with the lower surface of the first conveyor belt (9), and the upper ends of the second bristles (33) are in contact with the lower surface of the second conveyor belt (30).
6. The automatic turnover type device for evenly coating sauce for batch processing of cooked meat food as claimed in claim 1, wherein the device comprises: the bottom inner wall of drain chamber (31) sets up to the slope form the same with second conveyer belt (30), the inside lower extreme in drain chamber (31) is seted up in first drainage port (32), the lower extreme inner wall of device body (1) sets up to arc, the lower extreme inner wall minimum department at device body (1) is seted up in second drainage port (37).
CN201911249915.5A 2019-12-09 2019-12-09 Automatic overturning type device for evenly coating sauce for batch processing of cooked meat Active CN110800791B (en)

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CN111194877A (en) * 2020-03-16 2020-05-26 北京瀚林源科技有限公司 Food tenderizing device and method thereof
CN111418620A (en) * 2020-04-09 2020-07-17 广东真美食品股份有限公司 Dried meat slice production method and device
CN114145318B (en) * 2021-12-14 2022-07-26 济南大鹏机械设备有限公司 Fried equipment of rice crust gets with stir-fry function

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CN1711032A (en) * 2002-11-01 2005-12-21 福瑞托-雷北美有限公司 Seasoning recovery and recycle
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