CN112155043B - Integral type meat grinder - Google Patents

Integral type meat grinder Download PDF

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Publication number
CN112155043B
CN112155043B CN202010872829.6A CN202010872829A CN112155043B CN 112155043 B CN112155043 B CN 112155043B CN 202010872829 A CN202010872829 A CN 202010872829A CN 112155043 B CN112155043 B CN 112155043B
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China
Prior art keywords
meat
shell
block
motor
ratchet cylinder
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CN202010872829.6A
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CN112155043A (en
Inventor
魏家聪
柳丽
徐壮
张哲衍
邱吉
王晶
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Ningbo University
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Ningbo University
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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
    • A22C17/12Apparatus for cutting-off rind
    • 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
    • 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
    • A22C17/0033Cutting slices out of a piece of meat
    • AHUMAN NECESSITIES
    • A22BUTCHERING; MEAT TREATMENT; PROCESSING POULTRY OR FISH
    • A22CPROCESSING MEAT, POULTRY, OR FISH
    • A22C17/00Other devices for processing meat or bones
    • A22C17/0093Handling, transporting or packaging pieces of 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 an integrated meat grinder which is characterized by comprising a shell, a rack, a meat block peeling mechanism, a meat block cutting mechanism and a meat grinding mechanism, wherein the rack, the meat block peeling mechanism, the meat block cutting mechanism and the meat grinding mechanism are arranged in the shell; the integral meat grinder has the advantages that when the integral meat grinder is used, only large pork blocks with skin are sent into the meat grinder, the pork blocks with skin can be automatically peeled, cut into pieces and ground, compared with the existing meat grinder, the integral meat grinder greatly reduces manpower and improves meat grinding efficiency.

Description

Integral type meat grinder
Technical Field
The invention relates to a meat grinder used in daily life, in particular to an integrated meat grinder.
Background
When meat products such as ham sausages, meatballs and sausages are manufactured, lump meat such as pork needs to be chopped into minced meat, and in order to save labor and time, a meat grinder is generally adopted to chop the minced meat at present. However, because the pigskin is thick and has good toughness, the pork is put into a meat grinder together with the pigskin, and the pigskin is found not to be well ground. Therefore, the conventional meat grinder needs to manually peel pork before grinding, cut large pork into small pieces and then put the small pieces into the meat grinder to grind, so that certain workload is brought to people, and the processing efficiency of the meat grinder is reduced.
Disclosure of Invention
The invention aims to provide an integrated meat grinder which can automatically perform peeling, slicing and meat grinding processing, liberates manpower and well improves meat grinding efficiency.
The technical scheme adopted by the invention for solving the technical problems is as follows: the integral meat grinder comprises a shell, and a rack, a meat block peeling mechanism, a meat block cutting mechanism and a meat grinding mechanism which are arranged in the shell, wherein the meat block peeling mechanism is in butt joint with the meat block cutting mechanism, the meat block cutting mechanism is in butt joint with the meat grinding mechanism, a meat block feeding hole is formed in the position, corresponding to the meat block peeling mechanism, on the shell, and a discharging hole of the meat grinding mechanism extends out of the shell.
Further, the meat piece peeling mechanism comprises a peeling blade, a meat feeding mechanism and a meat pushing mechanism for pushing the peeled meat pieces into the meat piece cutting mechanism, the meat feeding mechanism comprises an upper ratchet cylinder and a lower ratchet cylinder which are arranged oppositely, the upper ratchet cylinder and the lower ratchet cylinder are respectively and rotatably connected with the shell, the distance between the upper ratchet cylinder and the lower ratchet cylinder is slightly smaller than the thickness of the meat pieces, a cylinder rotating driving device is arranged in the shell, the peeling blade is positioned above the lower ratchet cylinder, the distance between the peeling blade and the lower ratchet cylinder is slightly larger than the thickness of pork skin, a blade rotating driving device is arranged on the rack, a thin plate is arranged above the peeling blade and extends into the meat piece cutting mechanism, and a meat skin discharging box with an opening at the lower end is fixedly arranged on the rack, the skin discharging box is butted with the lower ratchet cylinder, and the lower end of the skin discharging box extends out of the shell downwards.
Further, the cylinder rotation driving device comprises a first motor, a driving gear and a driven gear, the first motor is horizontally and fixedly arranged in the shell, the driving gear and the driven gear are respectively and rotatably connected with the shell, the driving gear is coaxially and fixedly connected with a driving shaft of the first motor, the driven gear is meshed with the driving gear, and the driving gear and the driven gear are respectively and correspondingly connected with the upper ratchet cylinder and the lower ratchet cylinder through belt pulley assemblies to drive the upper ratchet cylinder and the lower ratchet cylinder to rotate.
Furthermore, the blade rotation driving device is a second motor vertically fixed on the rack, and a driving shaft of the second motor is coaxially and fixedly connected with the peeling blade.
Further, the meat pushing mechanism comprises a third motor, a first rotary table, a first push rod and a first push block, the third motor is vertically fixed in the shell, the first rotary table is coaxially and fixedly connected with a driving shaft of the third motor, one end of the first push rod is eccentrically hinged on the first rotary table, a first swing groove is formed in the rear end of the first push block, the other end of the first push rod extends into the first swing groove and is hinged with the first push block, a first guide rail is fixedly arranged on the rack, the first push block and the first guide rail are in sliding fit along the meat conveying direction of the meat conveying mechanism, when the first push block slides, the meat passes through the space between the upper ratchet cylinder and the lower ratchet cylinder and is pushed into the meat cutting mechanism, and a baffle plate for preventing the meat blocks from falling is fixedly arranged at one end, far away from the first push block, of the thin plate.
Furthermore, the meat cutting mechanism comprises a pressing block, a cutter group and a meat conveying mechanism, the meat conveying mechanism comprises a fourth motor, a first belt wheel, a second belt wheel and a plurality of conveying belts, the plurality of conveying belts are matched with the first belt wheel and the second belt wheel, a gap is formed between every two adjacent conveying belts, the upper part of each conveying belt is positioned right above the thin plate, the fourth motor is fixed in the shell and drives the first belt wheel to rotate through a belt pulley assembly, the pressing block is positioned right above the conveying belts, a pressing block up-and-down driving mechanism is arranged in the shell, the cutter group comprises a plurality of parallel cutters, a cutter translation driving mechanism is arranged on the rack and pushes the cutters to move in the gap along the conveying direction of the conveying belts, the pressing block is provided with slots, the number and the positions of the slots correspond to those of the cutters, the cutters are prevented from interfering with the pressing block when moving, and a stop block is integrally arranged at the rear end of the pressing block.
Further, the pressing block up-and-down driving mechanism comprises an air cylinder, the air cylinder is vertically fixed in the shell, and the pressing block is fixedly connected with a piston rod of the air cylinder.
Further, the cutter translation driving mechanism comprises a fifth motor, a second rotary table, a second push rod and a second push block, the fifth motor is vertically fixed in the shell, the second rotary table is coaxially and fixedly connected with a driving shaft of the fifth motor, one end of the second push rod is eccentrically hinged to the second rotary table, a second swing groove is formed in the rear end of the second push block, the other end of the second push rod extends into the second swing groove and is hinged to the second push block, a second guide rail is fixedly arranged on the rack, the second push block is in sliding fit with the second guide rail along the conveying direction of the conveying belt, and the cutter group is fixed at the front end of the second push block.
Further, the casing on be provided with the exerted meat platform that pushes away, the casing correspond the one end of conveyer belt be provided with the feed opening, the feed opening be located push away directly over the meat platform, minced steak mechanism including a hank section of thick bamboo and auger, a hank section of thick bamboo level fix the casing in, a hank section of thick bamboo on the fixed feeding portion that is provided with, the open end of feeding portion be located push away on the meat platform, the auger set up in a hank section of thick bamboo and with a hank section of thick bamboo rotate and be connected, the fourth motor pass through the drive of belt pulley assembly the auger rotate, the auger orientation the coaxial fixed reamer that is provided with in one end of the discharge gate of a hank section of thick bamboo, the discharge gate of a hank section of thick bamboo fixed be provided with and stretch out the outer hole eye board of casing.
Compared with the prior art, the integral meat grinder has the advantages that when the integral meat grinder is used, only large pork blocks with skin are fed into the meat grinder, the skin can be automatically peeled, the pork blocks can be automatically cut, and meat grinding can be automatically carried out.
Drawings
FIG. 1 is a schematic view of the overall external structure of the present invention;
FIG. 2 is a schematic view of the present invention with the housing removed;
FIG. 3 is a second schematic structural view of the present invention with the housing removed;
FIG. 4 is a schematic structural view of a briquette according to the present invention.
Detailed Description
The invention is described in further detail below with reference to the accompanying examples.
As shown in the figure, the integrated meat grinder comprises a shell 1, a rack 11, a meat block peeling mechanism, a meat block cutting mechanism and a meat grinding mechanism, wherein the rack 11, the meat block peeling mechanism, the meat block cutting mechanism and the meat grinding mechanism are arranged in the shell 1, the meat block peeling mechanism and the meat block cutting mechanism are in butt joint, the meat block cutting mechanism and the meat grinding mechanism are in butt joint, a meat block feeding hole 12 is formed in the position, corresponding to the meat block peeling mechanism, of the shell 1, and a discharging hole of the meat grinding mechanism extends out of the shell 1.
The following is an explanation of the specific structure and connection relationship of the meat piece peeling mechanism, the meat piece splitting mechanism and the meat mincing mechanism:
the meat piece peeling mechanism comprises a peeling blade 2, a meat conveying mechanism and a meat pushing mechanism used for pushing peeled meat pieces into the meat piece cutting mechanism, the meat conveying mechanism comprises an upper ratchet cylinder 3 and a lower ratchet cylinder 4 which are arranged in an up-and-down opposite mode, the upper ratchet cylinder 3 and the lower ratchet cylinder 4 are respectively in rotating connection with the shell 1, the distance between the upper ratchet cylinder 3 and the lower ratchet cylinder 4 is slightly smaller than the thickness of the meat pieces, a cylinder rotating driving device is arranged in the shell 1 and comprises a first motor (not shown in the figure), a driving gear 5 and a driven gear 6, the first motor is horizontally and fixedly arranged in the shell 1, the driving gear 5 and the driven gear 6 are respectively in rotating connection with the shell 1, the driving gear 5 is coaxially and fixedly connected with a driving shaft of the first motor, the driven gear 6 is meshed with the driving gear 5, the driving gear 5 and the driven gear 6 are respectively in one-to-one correspondence with the upper ratchet cylinder 3, the lower ratchet cylinder 4 through belt pulley assemblies, The lower ratchet cylinder 4 is connected to drive the upper ratchet cylinder 3 and the lower ratchet cylinder 4 to rotate, the peeling blade 2 is positioned above the lower ratchet cylinder 4, the distance between the peeling blade 2 and the lower ratchet cylinder 4 is slightly larger than the thickness of pork skin, the rack 11 is vertically fixed with the second motor 21, the driving shaft of the second motor 21 is coaxially and fixedly connected with the peeling blade 2, the thin plate 7 is arranged above the peeling blade 2, the thin plate 7 is fixed on the rack 11 and extends into the meat block cutting mechanism, one side of the thin plate 7 facing the lower ratchet cylinder 4 is provided with an inclined surface to facilitate the meat blocks to be pushed onto the thin plate 7, the rack 11 is fixedly provided with a meat skin discharging box 13 with an opening at the lower end, the meat skin discharging box 13 is butted with the lower ratchet cylinder 4, the lower end of the meat skin discharging box 13 extends downwards out of the shell 1, the meat pushing mechanism comprises a third motor 8, a first rotating disc 9, a first push rod 10 and a first push block 14, the third motor 8 is vertically fixed in the housing 1, the first rotary table 9 is coaxially and fixedly connected with a driving shaft of the third motor 8, one end of a first push rod 10 is eccentrically hinged on the first rotary table 9, a first swing groove 141 is arranged at the rear end of a first push block 14, the other end of the first push rod 10 extends into the first swing groove 141 and is hinged with the first push block 14, a first guide rail 15 is fixedly arranged on the rack 11, the first push block 14 and the first guide rail 15 are in sliding fit along the meat feeding direction of the meat feeding mechanism, when the first push block 14 slides, a ratchet passes through the upper ratchet cylinder 3 and the lower ratchet cylinder 4 and pushes the meat to the meat splitting mechanism, and a baffle 71 for preventing the meat from falling is fixedly arranged at one end of the thin plate 7, which is far away from the first push block 14.
The meat cutting mechanism comprises a pressing block 16, a cutter group and a meat conveying mechanism, the meat conveying mechanism comprises a fourth motor 17, a first belt wheel 18, a second belt wheel 19 and a plurality of conveying belts 20, the plurality of conveying belts 20 are matched with the first belt wheel 18 and the second belt wheel 19, a gap is formed between every two adjacent conveying belts 20, the upper portion of each conveying belt 20 is located right above the thin plate 7, the fourth motor 17 is fixed in the shell 1, the fourth motor 17 drives the first belt wheel 18 to rotate through the belt wheel assemblies, the pressing block 16 is located right above the conveying belts 20, a vertically fixed air cylinder 29 is arranged in the shell 1, the pressing block 16 is fixedly connected with a piston rod of the air cylinder 29, the cutter group comprises a plurality of parallel cutters 22, a cutter translation driving mechanism is arranged on the rack 11 to push the cutters 22 to move in the gap along the conveying direction of the conveying belts 20, a groove 161 is formed in the pressing block 16, the number and the position of the slots 161 correspond to those of the cutters 22, so as to prevent the cutters 22 from interfering with the pressing block 16 when moving, the rear end of the pressing block 16 is integrally provided with a stop block 162, the cutter translation driving mechanism comprises a fifth motor 23, a second turntable 24, a second push rod 25 and a second push block 26, the fifth motor 23 is vertically fixed in the housing 1, the second turntable 24 is coaxially and fixedly connected with a driving shaft of the fifth motor 23, one end of the second push rod 25 is eccentrically hinged on the second turntable 24, the rear end of the second push block 26 is provided with a second swing groove 261, the other end of the second push rod 25 extends into the second swing groove 261 and is hinged with the second push block 26, the frame 11 is fixedly provided with a second guide rail 27, the second push block 26 is in sliding fit with the second guide rail 27 along the conveying direction of the conveyor belt 20, the cutter group is fixed at the front end of the second push block 26, the frame 11 is fixedly provided with a photoelectric sensor (not shown in the figure), for detecting whether a meat mass is being fed onto the conveyor 20.
The meat mincing machine is characterized in that an exposed meat pushing platform 100 is arranged on a shell 1, a feed opening 101 is formed in one end, corresponding to a conveyor belt 20, of the shell 1, the feed opening 101 is located right above the meat pushing platform 100, a meat mincing mechanism comprises a mincing barrel 28 and an auger (not shown in the figure), the mincing barrel 28 is horizontally fixed in the shell 1, a feeding portion 281 is fixedly arranged on the mincing barrel 28, the open end of the feeding portion 281 is located on the meat pushing platform 100, the auger is arranged in the mincing barrel 28 and is rotatably connected with the mincing barrel 28, a fourth motor 17 drives the auger to rotate through a belt pulley assembly, a reamer (not shown in the figure) is coaxially and fixedly arranged at one end, facing a discharge opening of the mincing barrel 28, of the auger is coaxially and fixedly provided with a reamer (not shown in the figure), and an eyelet plate 282 extending out of the shell 1 is fixedly arranged at the discharge opening of the mincing barrel 28.
In the above embodiment, in addition to the structure shown in the drawings, for the meat piece peeling mechanism, an adjusting mechanism may be further provided between the upper ratchet cylinder 3 and the housing 1, so that the upper and lower positions of the upper ratchet cylinder 3 are adjustable to adjust the distance between the upper ratchet cylinder 3 and the lower ratchet cylinder 4, and the meat piece peeling mechanism is used for peeling meat pieces with different thicknesses. In addition, an arc-shaped observation groove 30 can be formed in the position, facing the second rotary disc 24, of the shell 1 and used for observing the moving position of the second push rod 25, and when the second push rod 25 is not reset in time, the whole meat grinder can be stopped in time.
In the above embodiment, the working process of the integrated meat grinder is as follows: the pork blocks are fed into a space between an upper ratchet cylinder 3 and a lower ratchet cylinder 4 in a shell 1 from a pork block feeding hole 12, the pork blocks are conveyed to a thin plate 7 forwards through the occlusion and relative rotation of the upper ratchet cylinder 3 and the lower ratchet cylinder 4, a skinning blade 2 rotates rapidly during conveying to cut and remove pigskins below the pork blocks, the cut pigskins are driven by the lower ratchet cylinder 4 to be fed into a pork skin discharging box 13 to be discharged out of the shell 1, when a photoelectric sensor detects that the pork blocks are conveyed onto a conveyor belt 20, a cylinder 29 is controlled to work to drive a pressing block 16 to move downwards to press the skinned pork blocks, then a fifth motor 23 is controlled to work to drive a second rotating disc 24 to rotate, a cutter group is pushed to move horizontally through the matching of a second push rod 25 and a second push block 26, a cutter 22 moves in the conveying direction of the conveyor belt 20 in a gap between the conveyor belts 20, the pork pieces are cut, when the cutter 22 cuts the pork pieces, the stop block 162 at the rear end of the pressing block 16 can stop the pork pieces to prevent the pork pieces from moving backwards due to stress, so that the pork pieces are cut smoothly, then the fourth motor 17 is controlled to drive the conveyor belt 20 to move, the cut pork pieces are conveyed to the feed opening 101 of the shell 1 and fall on the meat pushing platform 100, then the pork pieces are pushed into the grinding drum 28 from the feed part 281 by an operator, and the pork pieces are ground and extruded out of the hole plate 282 through the matching effect of the auger and the reamer. When the photoelectric sensor does not detect the pork pieces on the conveyor belt 20, the third motor 8 is controlled to work to drive the first rotary disc 9 to rotate, the first push block 14 is pushed to move along the conveying direction of the pork pieces through the first push rod 10, the first push block 14 penetrates through the space between the upper ratchet cylinder 3 and the lower ratchet cylinder 4 and pushes the pork pieces on the thin plate 7 onto the conveyor belt 20, and then the air cylinder 29 is controlled to work to drive the press block 16 to press downwards to perform subsequent slitting.
The scope of the present invention includes, but is not limited to, the above embodiments, and the present invention is defined by the appended claims, and any alterations, modifications, and improvements that may occur to those skilled in the art are all within the scope of the present invention.

Claims (7)

1. An integrated meat grinder comprises a shell, a rack, a meat peeling mechanism, a meat cutting mechanism and a meat grinding mechanism, wherein the rack, the meat peeling mechanism, the meat cutting mechanism and the meat grinding mechanism are arranged in the shell, the meat peeling mechanism is in butt joint with the meat cutting mechanism, a meat feed inlet is formed in the position, corresponding to the meat peeling mechanism, of the shell, a discharge outlet of the meat grinding mechanism extends out of the shell, the meat peeling mechanism comprises a peeling blade, a meat conveying mechanism and a meat pushing mechanism used for pushing peeled meat into the meat cutting mechanism, the meat conveying mechanism comprises an upper ratchet cylinder and a lower ratchet cylinder which are in up-and-down dead joint, the upper ratchet cylinder and the lower ratchet cylinder are respectively in rotating connection with the shell, and the distance between the upper ratchet cylinder and the lower ratchet cylinder is slightly smaller than the thickness of the meat, the meat and skin cutting machine is characterized in that a cylinder rotation driving device is arranged in the shell, the peeling blade is positioned above the lower ratchet cylinder, the distance between the peeling blade and the lower ratchet cylinder is slightly larger than the thickness of pork skin, a blade rotation driving device is arranged on the rack, a thin plate is arranged above the peeling blade, the thin plate extends into the meat block cutting mechanism, a meat and skin discharging box with an opening at the lower end is fixedly arranged on the rack, the meat and skin discharging box is in butt joint with the lower ratchet cylinder, and the lower end of the meat and skin discharging box extends out of the shell downwards: the meat pushing mechanism comprises a third motor, a first rotating disc, a first push rod and a first push block, the third motor is vertically fixed in the shell, the first rotary disc is coaxially and fixedly connected with a driving shaft of the third motor, one end of the first push rod is eccentrically hinged on the first rotary disc, the rear end of the first push block is provided with a first swing groove, the other end of the first push rod extends into the first swing groove and is hinged with the first push block, the frame is fixedly provided with a first guide rail, the first push block is in sliding fit with the first guide rail along the meat conveying direction of the meat conveying mechanism, when the first pushing block slides, the meat block is pushed into the meat block splitting mechanism by passing through the space between the upper ratchet cylinder and the lower ratchet cylinder, and a baffle plate for preventing the meat blocks from falling is fixedly arranged at one end, far away from the first push block, of the thin plate.
2. An integrated meat grinder as claimed in claim 1, characterised in that: the cylinder rotation driving device comprises a first motor, a driving gear and a driven gear, the first motor is horizontally and fixedly arranged in the shell, the driving gear and the driven gear are respectively and rotatably connected with the shell, the driving gear is coaxially and fixedly connected with a driving shaft of the first motor, the driven gear is meshed with the driving gear, and the driving gear and the driven gear are respectively and correspondingly connected with the upper ratchet cylinder and the lower ratchet cylinder through belt pulley assemblies to drive the upper ratchet cylinder and the lower ratchet cylinder to rotate.
3. An integrated meat grinder as claimed in claim 1, characterised in that: the blade rotation driving device is a second motor vertically fixed on the rack, and a driving shaft of the second motor is coaxially and fixedly connected with the peeling blade.
4. An integrated meat grinder as claimed in claim 1, characterised in that: the meat cutting mechanism comprises a pressing block, a cutter group and a meat conveying mechanism, the meat conveying mechanism comprises a fourth motor, a first belt wheel, a second belt wheel and a plurality of conveying belts, the plurality of conveying belts are matched with the first belt wheel and the second belt wheel, a gap is formed between every two adjacent conveying belts, the upper part of each conveying belt is positioned right above the thin plate, the fourth motor is fixed in the shell and drives the first belt wheel to rotate through a belt pulley assembly, the pressing block is positioned right above the conveying belts, an up-and-down pressing block driving mechanism is arranged in the shell, the cutter group comprises a plurality of parallel cutters, a cutter translation driving mechanism is arranged on the rack and pushes the cutters to move in the gap along the conveying direction of the conveying belts, the pressing block is provided with slots, the number and the positions of the slots correspond to those of the cutters, the cutters are prevented from interfering with the pressing block when moving, and a stop block is integrally arranged at the rear end of the pressing block.
5. An integrated meat grinder as claimed in claim 4, characterised in that: the pressing block up-and-down driving mechanism comprises an air cylinder, the air cylinder is vertically fixed in the shell, and the pressing block is fixedly connected with a piston rod of the air cylinder.
6. An integrated meat grinder as claimed in claim 4, characterised in that: the cutter translation driving mechanism comprises a fifth motor, a second rotary table, a second push rod and a second push block, the fifth motor is vertically fixed in the shell, the second rotary table is fixedly connected with the driving shaft of the fifth motor in a coaxial mode, one end of the second push rod is eccentrically hinged to the second rotary table, a second swing groove is formed in the rear end of the second push block, the other end of the second push rod extends into the second swing groove and is hinged to the second push block, a second guide rail is fixedly arranged on the rack, the second push block is in sliding fit with the second guide rail along the conveying direction of the conveying belt, and the cutter group is fixed at the front end of the second push block.
7. An integrated meat grinder as claimed in claim 4, characterised in that: the casing on be provided with the exerted meat platform that pushes away, the casing correspond the one end of conveyer belt be provided with the feed opening, the feed opening be located push away directly over the meat platform, minced steak mechanism include a hank section of thick bamboo and auger, a hank section of thick bamboo level fix the casing in, a hank section of thick bamboo on the fixed feeding portion that is provided with, the open end of feeding portion be located push away on the meat platform, the auger set up in a hank section of thick bamboo and with a hank section of thick bamboo rotate and connect, the fourth motor pass through the belt pulley subassembly drive the auger rotate, the auger orientation the coaxial fixed reamer that is provided with in one end of the discharge gate of a hank section of thick bamboo, the discharge gate of a hank section of thick bamboo fixed be provided with and stretch out the outer eyelet board of casing.
CN202010872829.6A 2020-08-26 2020-08-26 Integral type meat grinder Active CN112155043B (en)

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