CN114931157A - Meat paste making machine for meat product production - Google Patents

Meat paste making machine for meat product production Download PDF

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Publication number
CN114931157A
CN114931157A CN202210560972.0A CN202210560972A CN114931157A CN 114931157 A CN114931157 A CN 114931157A CN 202210560972 A CN202210560972 A CN 202210560972A CN 114931157 A CN114931157 A CN 114931157A
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meat
processing
box
product production
set forth
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CN202210560972.0A
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CN114931157B (en
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徐惠
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Shantou Liujixiong Food Co ltd
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Individual
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    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C17/00Other devices for processing meat or bones
    • A22C17/0006Cutting or shaping meat
    • A22C17/0026Mincing and grinding meat

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

Abstract

The invention discloses a meat emulsion making machine for meat product production, which belongs to the technical field of food production making machines and comprises a meat treatment box, wherein a finished product box is arranged at the bottom of the meat treatment box, a meat inlet is communicated with the middle position of the outer side of the finished product box, a treatment plate is arranged in the meat treatment box in a sliding manner, the treatment plate is arranged in the meat treatment box in a sliding manner, a multi-point synchronous pressing balance mechanism is arranged at the upper side of the treatment plate and is used for pushing the treatment plate to slide up and down in a reciprocating manner, a continuous meat stacking reciprocating treatment mechanism is arranged at the bottom of the meat treatment box, and the multi-point synchronous pressing balance mechanism is arranged to drive a meat emulsion particle cutter on the treatment plate to move up and down for working, so that not only meat is cut by the meat emulsion particle cutter, but also the meat is rolled by pressure, thereby the meat can fully work and the treatment effect is improved, meanwhile, due to the balanced cooperation of multiple points, the processing can be performed without blind areas, and the processing efficiency is accelerated.

Description

Meat paste making machine for meat product production
Technical Field
The invention relates to the technical field of food production and manufacturing machines, in particular to a meat emulsion manufacturing machine for meat product production.
Background
The meat emulsion is a pasty meat that is particulate in ground meat, and relatively speaking, the meat emulsion is in smaller particles. The meat paste is processed and produced through the meat blocks, so that the requirements of different product industries are met. The prior art publication No. CN211983548U provides a meat paste making machine for meat product production, the device cuts up meat by arranging a transverse knife and a vertical knife, the transverse knife and the vertical knife can not ensure that the meat is cut without blind areas, although a push plate which can be adjusted in a telescopic mode is added to extrude meat paste, the uniform refinement of the particle size of the meat paste is still difficult to ensure, so that larger meat particles exist after the meat is cut out, the requirement of the meat paste can not be met, meanwhile, the processing degree in a processing box can not be determined, the cutting processing work needs to be suspended for checking, and the processing efficiency is reduced. In view of this, we propose a meat emulsion maker for meat product production.
Disclosure of Invention
1. Technical problem to be solved
The present invention is directed to a meat emulsion manufacturing machine for meat product production, which solves the problems of the background art described above.
2. Technical scheme
A meat paste manufacturing machine for meat product production is disclosed, wherein a finished product box is arranged on the bottom surface of a meat treatment box, and a meat inlet is communicated with one side of the meat treatment box;
a processing plate is arranged in the meat processing box in a sliding manner, a multi-point synchronous pressure balancing mechanism is arranged on the upper side of the processing plate, and the processing plate is pushed to slide up and down in a reciprocating manner by the multi-point synchronous pressure balancing mechanism;
the multipoint synchronous pressure-applying balancing mechanism comprises a plurality of fixed seats arranged on the same side in the meat processing box, a turning frame is rotatably connected between two corresponding fixed seats, a cross column is rotatably connected in the turning frame, V-shaped adjusting blocks are arranged at two ends of one column strip of the cross column, the V-shaped adjusting blocks respectively positioned on the two cross columns are connected and fixed through connecting columns, a supporting rod is coaxially sleeved with the turning frame, and the supporting rod is connected with a processing plate;
one of the connecting columns is driven by a second motor, the cross columns connected in pairs rotate in opposite inclination directions by virtue of the V-shaped adjusting blocks, the adjacent turning frames in pairs are driven to reversely reciprocate, and then the adjacent supporting rods in pairs are driven to reversely reciprocate so as to push the processing plate to complete vertical reciprocating movement; meat handles the bottom of the case portion and is equipped with the reciprocal processing mechanism of meat of piling in succession, the reciprocal processing mechanism of meat of piling in succession includes the promotion piece of subtend sliding connection in meat handles the bottom of the case portion, the inside sliding connection of promotion piece has the triangle ejector pad.
The bottom surface of the processing plate is provided with a meat paste particle knife, the bottom of the meat processing box is provided with a plurality of qualified holes in a penetrating manner, and the qualified holes are communicated with the inside of the finished product box.
The V-shaped adjusting blocks on the cross column positioned at the two ends of the outer side are rotatably connected with the fixing seat, and the two V-shaped adjusting blocks connected on the cross column are symmetrical about the center of the cross column.
The output shaft of the second motor is sleeved with a bevel gear A, the outer side of one of the connecting columns is sleeved with a bevel gear B, and the bevel gear A is meshed with the bevel gear B.
The outer side of the turning frame is provided with a center shaft, the outer end of the center shaft penetrates through the inner wall of the fixing seat, extends to the outside and is sleeved with a supporting rod, the outer end of the supporting rod is rotatably connected with a limiting rod, and the limiting rod is rotatably connected with the processing plate.
Two the gag lever post outer end rotates to be connected, a plurality of square grooves A have been seted up on the treatment plate surface, the gag lever post outer end rotates with the hole of square groove A inner wall to be connected.
The cross post outside four corners department all is equipped with spacing dish, two on one of them cylindricality the spacing dish rotates with the diversion frame to be connected, the turn trough has been seted up to the inside one end of V type regulating block, the turn trough rotates with two spacing dishes on another cylindricality and is connected.
The inside evasion groove has all been seted up to the corresponding both sides of meat processing case, meat processing case one end is equipped with first motor, pile meat reciprocating treatment mechanism in succession still includes and rotate the post, it is connected with first motor output shaft coaxial to rotate the post, it is equipped with two promotion pieces to rotate the outside symmetry of post.
Two annular curve grooves are symmetrically formed in the outer wall of the circumference of the rotating column, a cam is arranged on one side of the pushing block, the annular curve grooves are connected with the cam in a sliding mode, a guide groove is formed in the other side of the pushing block, and the guide groove is connected with a guide rail arranged on the inner wall of the meat processing box in a sliding mode.
The pushing block is internally clamped with a clamping block, the bottom surface of the clamping block is provided with a triangular pushing block, the surface of the clamping block is provided with a plurality of springs in a linear and equidistant mode, and the springs are fixedly connected with the inner wall of the square groove B.
3. Advantageous effects
Compared with the prior art, the invention has the advantages that:
(1) according to the invention, through the arrangement of the multipoint synchronous pressure-applying balancing mechanism, the meat emulsion particle cutter on the processing plate can be driven to move up and down for working, at the moment, not only is meat cut by the meat emulsion particle cutter, but also the meat is rolled by pressure, so that the meat can fully work, the processing effect is improved, and meanwhile, due to the multipoint balanced matching, the meat can be processed without blind areas, and the processing efficiency is accelerated.
(2) According to the invention, through the arrangement of the continuous meat stacking reciprocating processing mechanism, the processing plate is used for carrying out one-time rolling and cutting processing, and the continuous meat stacking reciprocating processing mechanism can stack meat on two sides towards the middle part so as to wait for the next processing, and the continuous meat stacking reciprocating processing mechanism fully simulates the situation that people repeatedly stack and stack meat when cutting meat stuffing, so that the processing efficiency and effect are further improved.
(3) According to the invention, the clamping block is clamped in the square groove B, the triangular push block is arranged on the bottom surface of the clamping block, the plurality of springs are linearly arranged on the surface of the clamping block at equal intervals, and the springs are fixedly connected with the inner wall of the square groove B, so that the triangular push block can only be attached to the bottom surface of the meat processing box when in use, and the meat can be fully pushed inwards; due to the arrangement of the avoiding groove, the triangular pushing block can be retracted to the inner side of the avoiding groove, and the blocking condition caused by descending of the processing plate is avoided; and the arrangement of the qualified holes enables meat emulsion with qualified size to pass through, so that the processing degree in the processing box is determined, the processed meat emulsion reaches the inside of the finished product box, and how to handle the meat emulsion can be mastered at any time.
Drawings
FIG. 1 is a schematic view of the overall structure of the present invention;
FIG. 2 is a cross-sectional view of the overall structure of the present invention;
FIG. 3 is a schematic structural diagram of a multipoint synchronous pressure-applying equalizing mechanism of the present invention;
FIG. 4 is a partially disassembled view of the multi-point synchronous pressure-applying equalizing mechanism of the present invention;
FIG. 5 is a disassembled view of the inner structure of the direction changing frame of the present invention;
FIG. 6 is an exploded view of the continuous meat mass reciprocating processing mechanism of the present invention;
the reference numbers in the figures illustrate: 1. a meat processing box; 101. processing the plate; 102. a meat emulsion granule knife; 103. a square groove A; 104. a qualified hole; 105. an avoiding groove; 106. a circular groove; 107. a chassis; 108. a first motor; 2. a finished product box; 3. a box door; 4. a meat inlet; 5. a multipoint synchronous pressure-applying balancing mechanism; 501. a fixed block; 502. a square cavity; 503. a machine cavity; 504. a second motor; 505. a bevel gear A; 506. connecting the columns; 507. a bevel gear B; 508. a fixed seat; 509. a turning frame; 5010. a middle shaft; 5011. a support bar; 5012. a limiting rod; 5013. a cross-shaped column; 5014. a limiting disc; 5015. a V-shaped adjusting block; 5016. rotating the groove; 6. a continuous meat stacking reciprocating treatment mechanism; 601. rotating the column; 602. an annular curved groove; 603. a pushing block; 604. a cam; 605. a guide groove; 606. a square groove B; 607. a clamping block; 608. a triangular push block; 609. a spring.
Detailed Description
Referring to fig. 1-6, the present invention provides a technical solution:
a meat paste manufacturing machine for meat product production comprises a meat processing box 1, as shown in figure 1, a finished product box 2 is arranged in the middle of the bottom surface of the meat processing box 1, a box door 3 is hinged in the middle of the outer side of the finished product box 2, a meat inlet 4 is communicated with the middle position of the outer side of the finished product box 2, as shown in figure 2, a processing plate 101 is arranged in the meat processing box 1 in a sliding mode, meat paste particle cutters 102 are arranged on the bottom surface of the processing plate 101, a plurality of square grooves A103 are formed in the surface of the processing plate 101, a multipoint synchronous pressure equalizing mechanism 5 is arranged on the upper side of the processing plate 101, as shown in figure 6, a plurality of qualified holes 104 are uniformly formed in the middle position of the bottom surface in the meat processing box 1, the qualified holes 104 are communicated with the inside of the finished product box 2, two avoiding grooves 105 are symmetrically formed in the meat processing box 1, a circular groove 106 is formed in one side in the meat processing box 1, a machine box A107 is arranged at one end outside the meat processing box 1, a first motor 108 is arranged in the machine box 107, the inner bottom surface of the meat processing box 1 is provided with a continuous meat stacking reciprocating processing mechanism 6.
According to the invention, through the arrangement of the multipoint synchronous pressing balancing mechanism 5, the meat emulsion particle knife 102 on the processing plate 101 can be driven to move up and down for working, at the moment, the meat is cut by the meat emulsion particle knife 102, and meanwhile, the meat is rolled by pressure, so that the meat can fully work, the processing effect is improved, and meanwhile, due to the multipoint balanced matching, the meat can be processed without blind areas, and the processing efficiency is accelerated. Through the arrangement of the qualified holes 104, meat emulsion with qualified size can pass through, so that the processing degree in the processing box 1 is determined, the processed meat emulsion reaches the inside of the finished product box 2, and how to process the meat emulsion can be mastered at any time.
Further, as shown in fig. 3 to 5, the multipoint synchronous pressure-applying equalizing mechanism 5 includes a fixed block 501, a square cavity 502 is formed on one side inside the fixed block 501, a machine cavity 503 is formed on the other side inside the fixed block 501, a second motor 504 is arranged inside the machine cavity 503, an output shaft of the second motor 504 passes through an inner wall of the machine cavity 503 and extends into the square cavity 502 and is sleeved with a bevel gear a505, a connecting column 506 is rotatably arranged inside the square cavity 502, a bevel gear B507 is sleeved in the middle of the connecting column 506, the bevel gear a505 is engaged with the bevel gear B507, a plurality of fixed seats 508 are fixedly arranged on the top side inside the meat processing box 1, a direction-changing frame 509 is rotatably connected between two corresponding fixed seats 508, a cross column 5013 is rotatably connected inside the direction-changing frame 509, V-shaped adjusting blocks 5015 are arranged at two ends of one of the columns 5013, the V-shaped adjusting blocks 5015 respectively located on the two cross columns 5013 are connected and fixed through the connecting columns 506, the V-shaped adjusting blocks 5015 on the cross columns 5013 at the two outer ends are rotatably connected with the fixed seat 508, and the supporting rod 5011 is coaxially sleeved with the turning frame 509, so that the supporting rod 5011 can be directly connected with one side of the processing plate 101 in a sliding manner.
According to the invention, the output shaft of the second motor 504 rotates to drive the bevel gear A505 to rotate, and under the meshing transmission fit of the bevel gear A505 and the bevel gear B507, the bevel gear B507 is driven to rotate, so that the connecting column 506 rotates, the connecting column 506 rotates to drive the cross column 5013 to rotate through the V-shaped adjusting blocks 5015, and due to the arrangement of the V-shaped structure of the V-shaped adjusting blocks 5015, two V-shaped adjusting blocks 5015 connected to the cross column 5013 are symmetrical about the center of the cross column 5013, the V-shaped adjusting blocks 5015 connected in pairs are mirror images of each other, and from the movement form of a single cross column 5013, the movement tracks at two ends of the same cross column 5013 are circular but have a phase difference of 180 degrees, so that the cross column 5013 swings while rotating, and further drives the turning frame 509 to swing in a reciprocating manner; in combination with two adjacent cross columns 5013, the V-shaped adjusting blocks 5015 connected in pairs can drive the cross columns 5013 correspondingly connected to the two adjacent cross columns 5013, that is, the two adjacent cross columns 5013 rotate in the same direction and incline in opposite directions, and the shapes of the two adjacent cross columns 5013 at any time in the rotating process are mirror images of each other, so as to drive the two adjacent turning frames 509 to reversely swing in a reciprocating manner, and further drive the two adjacent supporting rods 5011 to also reversely swing in a reciprocating manner, so as to push the processing plate 101 to vertically slide in a reciprocating manner.
The connection between the supporting rod 5011 and the processing board 101 can also be a connection manner as shown in fig. 3, a middle shaft 5010 is arranged outside the turning frame 509, the outer end of the middle shaft 5010 penetrates through the inner wall of the fixing base 508 to extend to the outside and is sleeved with the supporting rod 5011, the outer end of the supporting rod 5011 is rotatably connected with two limiting rods 5012 through pin shafts, the outer ends of the two limiting rods 5012 are rotatably connected through pin shafts, and the outer end of the limiting rod 5012 is rotatably connected with a hole in the inner wall of the square groove a103 through a pin shaft.
The reciprocating swing of the turning frame 509 is transmitted to the supporting rods 5011 through the middle shaft 5010, so that the two supporting rods 5011 are driven to perform reverse reciprocating swing, and the limiting rods 5012 connected with the supporting rods are further driven to perform reverse reciprocating swing, so that the processing plate 101 is driven to perform vertical reciprocating motion to form rolling compaction.
It is worth noting that the limiting discs 5014 are arranged at four corners of the outer side of the cross column 5013, the limiting discs 5014 are rotatably connected with the turning frame 509, a rotating groove 5016 is formed in one end of the inner portion of the V-shaped adjusting block 5015, the rotating groove 5016 is rotatably connected with the limiting discs 5014, and the V-shaped adjusting block 5015 is coaxially connected with the connecting column 506.
According to the invention, the limiting disc 5014 is rotationally connected with the turning frame 509, and the rotating slot 5016 is rotationally connected with the limiting disc 5014, so that the cross column 5013 can rotate at an angle in the turning frame 509 to adapt to the change of the angle.
In addition, pile meat reciprocating treatment mechanism 6 in succession includes and rotate post 601, rotates post 601 and first motor 108 output shaft coaxial coupling, rotates post 601 outside symmetry and is equipped with two and promotes piece 603, promotes piece 603 one side and is equipped with cam 604, promotes the piece 603 opposite side and has seted up guide slot 605, promotes the piece 603 bottom surface middle part and has seted up square groove B606.
According to the invention, through the arrangement of the continuous meat stacking reciprocating processing mechanism 6, the continuous meat stacking reciprocating processing mechanism 6 can perform one-time rolling and cutting processing on the processing plate 101, meat on two sides can be stacked towards the middle part through the continuous meat stacking reciprocating processing mechanism 6, after stacking is completed, the two pushing blocks 603 move reversely to the avoiding groove 105, so that the movement of the multipoint synchronous pressing balancing mechanism 5 is prevented from being blocked, the next processing is waited, and the continuous meat stacking reciprocating processing mechanism 6 fully simulates a scene that people repeatedly stack and cut meat stuffing, so that the processing efficiency and effect are further improved.
In addition, two annular curved grooves 602 are symmetrically formed in the outer wall of the circumference of the rotating column 601, the annular curved grooves 602 are slidably connected with the cam 604, and the guide groove 605 is slidably connected with a guide rail arranged on the inner wall of the meat processing box 1.
According to the invention, the two annular curved grooves 602 are symmetrically formed in the outer circumferential wall of the rotating column 601, so that the cam 604 can drive the triangular push block 608 to move inwards at the same time.
In addition, a clamping block 607 is clamped in the square groove B606, a triangular pushing block 608 is arranged on the bottom surface of the clamping block 607, a plurality of springs 609 are linearly arranged on the surface of the clamping block 607 at equal intervals, and the springs 609 are fixedly connected with the inner wall of the square groove B606.
According to the invention, the triangular push block 608 can only be attached to the bottom surface of the meat processing box when the meat processing box is used by arranging the spring 609, so that meat can be fully pushed inwards.
Furthermore, a plurality of comb blades can be arranged on the side surface of the triangular push block 608 close to the side surface, and the comb blades can be used for cutting the stacked meat in the whole process of stacking the meat from two sides to the middle part, so as to further improve the meat paste cutting effect.
When the meat emulsion manufacturing machine for meat product production is needed, firstly, raw meat is put into the meat processing box 1 through the meat inlet 4, at this time, the output shaft of the second motor 504 is driven to rotate by the controller, the output shaft of the second motor 504 penetrates through the inner wall of the machine cavity 503 to extend into the square cavity 502 and is sleeved with the bevel gear A505, so that the bevel gear A505 is driven to rotate, the bevel gear A505 is meshed with the bevel gear B507, so that the bevel gear B507 is driven to rotate, the connecting column 506 rotates, the V-shaped adjusting block 5015 drives the cross column 5013 to rotate, the V-shaped adjusting block 5015 can realize rotation in opposite inclination directions, the turning frames 509 adjacent to each other are driven to perform reverse reciprocating swing, and further the supporting rods 5011 adjacent to each other are driven to perform reverse reciprocating swing likewise, so as to push the processing plate 101 to perform up-and-down reciprocating movement to form rolling compaction, due to the arrangement of the qualified holes 104, meat emulsion with qualified size can pass through, so that the processing degree in the processing box 1 is determined, the processed meat emulsion reaches the interior of the finished product box 2, and the processing effect can be mastered at any time;
after the multipoint synchronous pressure equalizing mechanism 5 drives the processing plate 101 to roll meat for a certain time, the first motor 108 is driven to rotate, the rotating column 601 is coaxially connected with the output shaft of the first motor 108, the rotating column 601 is driven to rotate, the outer wall of the circumference of the rotating column 601 is symmetrically provided with two annular curve grooves 602, the triangular pushing block 608 is driven to move inwards simultaneously under the action of the cam 604, the situation that people repeatedly pile up and pile when cutting meat stuffing is fully simulated, the processing efficiency and effect are further improved, the next rolling processing is waited, the triangular pushing block can be retracted to the inner side of the groove by the arrangement of the avoiding groove, the blocking situation when the processing plate descends is avoided, and the triangular pushing block 608 can only be attached to the bottom surface of the meat processing box when the processing plate is used by the arrangement of the spring 609 to inwards push the meat fully, the treated meat emulsion is allowed to reach the inside of the finished product bin.

Claims (10)

1. A meat paste maker for meat product production, comprising a meat processing box, characterized in that: a finished product box is arranged on the bottom surface of the meat processing box, and a meat inlet is communicated with one side of the meat processing box;
a processing plate is arranged in the meat processing box in a sliding manner, a multi-point synchronous pressure balancing mechanism is arranged on the upper side of the processing plate, and the processing plate is pushed to slide up and down in a reciprocating manner by the multi-point synchronous pressure balancing mechanism;
the multipoint synchronous pressure application balancing mechanism comprises a plurality of fixing seats arranged on the same side in the meat processing box, a turning frame is rotatably connected between two corresponding fixing seats, cross columns are rotatably connected in the turning frame, V-shaped adjusting blocks are arranged at two ends of one column strip of each cross column, the V-shaped adjusting blocks respectively positioned on the two cross columns are connected and fixed through connecting columns, supporting rods are coaxially sleeved with the turning frame, and the supporting rods are connected with a processing plate;
one of the connecting columns is driven by a second motor, the cross columns connected in pairs rotate in opposite inclination directions by virtue of the V-shaped adjusting blocks, the adjacent turning frames in pairs are driven to reversely reciprocate, and then the adjacent supporting rods in pairs are driven to reversely reciprocate so as to push the processing plate to complete vertical reciprocating movement; meat handles the bottom of the case portion and is equipped with the reciprocal processing mechanism of meat of piling in succession, the reciprocal processing mechanism of meat of piling in succession includes that subtend sliding connection has the promotion piece in meat handles the bottom of the case portion, it has triangle ejector pad to promote inside sliding connection of piece.
2. The meat emulsion maker for meat product production as set forth in claim 1, wherein: the meat paste particle knife is arranged on the bottom surface of the processing plate, a plurality of qualified holes are formed in the bottom of the meat processing box in a penetrating mode, and the qualified holes are communicated with the inside of the finished product box.
3. The meat emulsion maker for meat product production as set forth in claim 1, wherein: the V-shaped adjusting blocks on the cross column positioned at the two ends of the outer side are rotatably connected with the fixing seat, and the two V-shaped adjusting blocks connected on the cross column are symmetrical about the center of the cross column.
4. The meat emulsion maker for meat product production as set forth in claim 3, wherein: the output shaft of the second motor is sleeved with a bevel gear A, the outer side of one of the connecting columns is sleeved with a bevel gear B, and the bevel gear A is meshed with the bevel gear B.
5. The meat emulsion maker for meat product production as set forth in claim 3, wherein: the outer side of the turning frame is provided with a center shaft, the outer end of the center shaft penetrates through the inner wall of the fixing seat, extends to the outside and is sleeved with a supporting rod, the outer end of the supporting rod is rotatably connected with a limiting rod, and the limiting rod is rotatably connected with the processing plate.
6. The meat emulsion maker for meat product production as set forth in claim 5, wherein: two the gag lever post outer end rotates to be connected, a plurality of square grooves A have been seted up on the treatment plate surface, the gag lever post outer end rotates with the hole of square groove A inner wall to be connected.
7. The meat emulsion maker for meat product production as set forth in claim 3, wherein: the cross post outside four corners department all is equipped with spacing dish, two on one of them cylindricality the spacing dish rotates with the diversion frame to be connected, the turn trough has been seted up to the inside one end of V type regulating block, the turn trough rotates with two spacing dishes on another cylindricality and is connected.
8. The meat emulsion maker for meat product production as set forth in claim 1, wherein: the inside evasion groove has all been seted up to the corresponding both sides of meat processing case, meat processing case one end is equipped with first motor, pile meat reciprocating treatment mechanism in succession still includes and rotate the post, it is connected with first motor output shaft coaxial to rotate the post, it is equipped with two promotion pieces to rotate the outside symmetry of post.
9. The meat emulsion maker for meat product production as set forth in claim 8, wherein: two annular curve grooves are symmetrically formed in the outer wall of the circumference of the rotating column, a cam is arranged on one side of the pushing block, the annular curve grooves are connected with the cam in a sliding mode, a guide groove is formed in the other side of the pushing block, and the guide groove is connected with a guide rail arranged on the inner wall of the meat processing box in a sliding mode.
10. The meat emulsion maker for meat product production as set forth in claim 8, wherein: the inside card of promotion piece is equipped with the fixture block, the fixture block bottom surface is equipped with the triangle ejector pad, the fixture block surface is linear equidistant and is provided with a plurality of springs, the spring is fixed with square groove B inner wall connection.
CN202210560972.0A 2022-05-23 2022-05-23 Meat paste manufacturing machine for meat food production Active CN114931157B (en)

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CN117256657B (en) * 2023-10-16 2024-05-14 黑龙江八一农垦大学 Meat paste processing equipment

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