CN115444120A - Fine grinding processing technology for chicken paste production - Google Patents

Fine grinding processing technology for chicken paste production Download PDF

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Publication number
CN115444120A
CN115444120A CN202211231025.3A CN202211231025A CN115444120A CN 115444120 A CN115444120 A CN 115444120A CN 202211231025 A CN202211231025 A CN 202211231025A CN 115444120 A CN115444120 A CN 115444120A
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China
Prior art keywords
barrel
fine grinding
chicken
grinding
abrasive
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Granted
Application number
CN202211231025.3A
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Chinese (zh)
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CN115444120B (en
Inventor
邓金影
李广礼
曾月洁
吴婉贞
朱世考
卢杨濠
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Guangdong Meiweiyuan Spice Co ltd
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Guangdong Meiweiyuan Spice Co ltd
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Priority to CN202211231025.3A priority Critical patent/CN115444120B/en
Publication of CN115444120A publication Critical patent/CN115444120A/en
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Publication of CN115444120B publication Critical patent/CN115444120B/en
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L27/00Spices; Flavouring agents or condiments; Artificial sweetening agents; Table salts; Dietetic salt substitutes; Preparation or treatment thereof
    • A23L27/20Synthetic spices, flavouring agents or condiments
    • A23L27/26Meat flavours
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L13/00Meat products; Meat meal; Preparation or treatment thereof
    • A23L13/40Meat products; Meat meal; Preparation or treatment thereof containing additives
    • A23L13/48Addition of, or treatment with, enzymes
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L13/00Meat products; Meat meal; Preparation or treatment thereof
    • A23L13/50Poultry products, e.g. poultry sausages
    • A23L13/52Comminuted, emulsified or processed products; Pastes; Reformed or compressed products from poultry meat
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C21/00Disintegrating plant with or without drying of the material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B02CRUSHING, PULVERISING, OR DISINTEGRATING; PREPARATORY TREATMENT OF GRAIN FOR MILLING
    • B02CCRUSHING, PULVERISING, OR DISINTEGRATING IN GENERAL; MILLING GRAIN
    • B02C23/00Auxiliary methods or auxiliary devices or accessories specially adapted for crushing or disintegrating not provided for in preceding groups or not specially adapted to apparatus covered by a single preceding group

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  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Health & Medical Sciences (AREA)
  • Nutrition Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Polymers & Plastics (AREA)
  • Microbiology (AREA)
  • Finish Polishing, Edge Sharpening, And Grinding By Specific Grinding Devices (AREA)
  • Meat, Egg Or Seafood Products (AREA)

Abstract

The invention relates to the technical field of meat food processing, in particular to a fine grinding processing technology for chicken cream production, which comprises the steps of firstly pouring boned chicken blocks into a fine grinding barrel, then starting an abrasive motor to drive an abrasive cover in the barrel to rotate, and further striking crushed chicken into a crushed shape to fall into a collecting barrel after the chicken falls into a crushing mechanism by a pair of cutting groups rotating along with the abrasive cover; and then injecting 1-2% of protease into the collecting barrel, starting a stirring motor to drive stirring blades to stir in a rotating manner, and simultaneously starting an electric heating pipe in a heating cover to heat the collecting barrel, so that enzymolysis is carried out on the chicken powder. The falling chicken blocks are gathered and finely ground by the fine grinding mechanism, then are thoroughly broken up and smashed by the crushing mechanism, finally fall into the collecting barrel and are subjected to enzymolysis by protease to form paste, and the mechanical cold treatment is performed, so that the efficiency is high, and the nutritional ingredients in the meat can be reserved.

Description

Fine grinding processing technology for chicken paste production
Technical Field
The invention relates to the technical field of meat food processing, in particular to a fine grinding processing technology for chicken paste production.
Background
The chicken paste is a seasoning prepared by enzymolysis of chicken serving as a raw material, and can better retain the inherent delicate flavor and nutritional ingredients of chicken. At present, chicken paste is mainly produced by boiling and extracting chicken for a long time.
The application number CN200310100532.4 discloses a chicken paste and a production method thereof, and provides a chicken paste which is produced by high-pressure cooking, pulping, enzymolysis, thermal reaction and a colloid mill.
However, if the time for high-pressure cooking is more than 2 hours, the loss of the nutrient components in the chicken is irreversible, so that the nutrient components in the chicken are reduced, and the chicken is enzymolyzed to prepare chicken paste, the nutrient value and the taste of the chicken paste are bound to be in an optimal state, and the time and energy consumption for long-time cooking is not an optimal choice.
Disclosure of Invention
In order to overcome the defects in the prior art, the invention aims to provide a fine grinding processing technology for chicken paste production, so as to solve the problems in the background technology.
In order to realize the purpose, the invention provides a fine grinding processing technology for producing chicken paste, which comprises the following steps:
s1, pouring boned chicken blocks into a fine grinding barrel in chicken paste production equipment, starting an abrasive motor to drive an abrasive cover in the barrel to rotate, and further extruding and grinding the chicken blocks into threads or particles together with an abrasive cylinder arranged on the inner wall of the barrel;
s2, allowing the chicken in the filiform or granular shape to fall through a gap between the grinding cover and the grinding cylinder;
s3, when the chicken in the step S2 falls into the crushing mechanism, further beating the crushed chicken into a crushed shape by a pair of cutting groups rotating along with the grinding cover;
s4, starting a driving rod motor to drive the scraping rod and the spiral plate to synchronously rotate, scraping the sticky powder on the inner wall of the fine grinding barrel, extruding and discharging along the axial direction of the spiral plate along with the rotation of the spiral plate, and falling into the material collecting barrel;
s5, injecting 1-2% of protease into the material collecting barrel, starting a stirring motor to drive a stirring blade to rotate and stir, and starting an electric heating pipe in a heating cover to heat the material collecting barrel so as to carry out enzymolysis on the minced chicken;
s6, after enzymolysis and cooling, starting a driving barrel motor to drive a driving gear to drive a rack at the bottom of the collecting barrel to move, and then moving the electric collecting barrel to a belt supporting position at the front end of the supporting frame;
s7, stopping driving the barrel motor, starting a hydraulic cylinder to drive the carrying belt to turn downwards, and further carrying the collecting barrel to turn downwards to finish automatic material pouring;
the chicken paste production equipment comprises a pair of support frames, a fine grinding barrel arranged at the top of the rear end of the support frames, and a rotatable fine grinding mechanism, a material crushing mechanism and a discharging mechanism which are sequentially arranged on a central shaft of the fine grinding barrel from top to bottom, wherein a support table is welded between the middle parts of the support frames, a material collecting barrel moving along the front-back direction of the support table is arranged on the support table, a barrel driving group is arranged at the bottom of the material collecting barrel, a stirring motor is installed at the top of the material collecting barrel, an output shaft of the stirring motor extends into the bottom of the material collecting barrel and is coaxially connected with stirring blades, a heating cover is sleeved outside the bottom of the material collecting barrel, an electric heating pipe is arranged in the heating cover, a supporting belt used for supporting and blocking the material collecting barrel is rotatably connected at the front end of the support table, and a hydraulic cylinder used for driving the supporting belt to turn over is hinged in a pit hole below the support table;
the fine grinding mechanism comprises a grinding material cover, a grinding material cylinder sleeved on the inner wall of the fine grinding barrel and a grinding material motor for driving the grinding material cover to rotate;
the material crushing mechanism comprises a pair of material cutting groups which are axially arranged at intervals and a linkage shaft which is used for suspending the pair of material cutting groups to synchronously rotate along with the fine grinding mechanism, and the pair of material cutting groups are arranged in a reverse rotation manner;
the discharging mechanism comprises a plurality of scraping rods attached to the inner wall of the fine grinding barrel, a driving rod motor used for driving the scraping rods to rotate and a plurality of spiral sheets coaxially arranged at the bottom ends of the scraping rods;
drive bucket group including along the radial support axle that sets up of collecting bucket, the gyro wheel that connects at support axle both ends, be the rack that sets up perpendicularly with the support axle, with rack toothing's drive gear and with drive gear coaxial coupling drive bucket motor.
As a further improvement of the technical scheme, the grinding material cover is of a cylindrical structure with a hollow interior and an opening in the bottom surface, the top of the grinding material cover is of a conical surface structure, a hanging pipe is welded at the center of the top of the grinding material cover, the top of the hanging pipe is arranged above the fine grinding barrel and is tightly sleeved with a transmission gear, the grinding material motor is fixedly connected with the top surface of the fine grinding barrel through a bolt, and the output shaft of the grinding material motor faces downwards and is coaxially connected with a driving gear meshed with the transmission gear.
As the further improvement of the technical scheme, the outer wall welding of abrasive material cover has the abrasive material ring, and the abrasive material ring adopts stainless steel to make cyclic annularly and its surface to be bump frosting surface structure, the abrasive material section of thick bamboo is ring structure and its upper end mouth internal diameter is greater than its middle part internal diameter, the abrasive material section of thick bamboo adopts stainless steel to make and its inner wall to be bump frosting surface structure.
As the further improvement of this technical scheme, the bottom endotheca of abrasive material cover is equipped with the bucket that grinds with that is used for increasing the fine grinding scope of axial, the outer wall welding of the bucket that grinds with have with the abrasive material ring with the material looks isostructure with grind the ring, it is connected with the trual pipe to rotate on the center pin of the bucket that grinds with, the trual pipe passes the radial welding in swinging head pipe and top and has the straight-bar, fine grinding barrel top outside symmetry is installed and is used for driving the electronic jar that the trual pipe goes up and down.
As a further improvement of the technical scheme, the inserting rods are symmetrically welded in the top of the grinding material cover, and the perforated blocks which are correspondingly inserted with the inserting rods are symmetrically welded on the inner side of the top surface of the grinding barrel.
As a further improvement of the present technical solution, the S2 includes the following steps:
s21, starting an electric cylinder to drive a supporting pipe to move downwards so as to drive a grinding barrel to move out of the bottom of the grinding material cover and synchronously rotate along with the grinding material cover;
s22, when the chicken in the filiform or granular shape falls to a gap between the grinding barrel and the grinding cylinder, further squeezing and grinding.
As this technical scheme's further improvement, blank group is that the annular is formed and whole outer end welding has the beaded finish by a plurality of twolip poles, and the inner welding of a plurality of twolip poles has face gear, the top of universal driving shaft and the top surface center welding who grinds the bucket with, it is a pair of the coaxial and relative setting of face gear, the face gear bottom surface welding that wherein lies in the top has ring and the radial both sides pole of ring to cup joint the linkage gear, and face gear and the ring that lie in the top cup joint and are rotatable with the universal driving shaft, and the face gear that lies in the below closely cup joints with the universal driving shaft, and the linkage gear meshes with two face gear simultaneously.
As a further improvement of the technical scheme, the bottom of the fine grinding barrel is a conical surface, a discharging pipe is arranged in the middle of the fine grinding barrel, a plurality of rotating frames which are sleeved with the discharging pipe are welded at the bottom ends of the scraping rods, toothed rings are tightly sleeved on the outer sides of the protruding ends of the bottoms of the rotating frames, a driving rod motor is fixedly connected to the outer wall of the discharging pipe through bolts, a driving gear meshed with the toothed rings is coaxially connected to the lower end of an output shaft of the driving rod motor, and a supporting ring used for supporting a spiral sheet is welded in the center of the top end of each rotating frame.
As a further improvement of this technical scheme, the top bilateral symmetry intercommunication of collecting bucket is equipped with the feed inlet and discharge mouth, the trunnion cup joints and is rotatable with heating mantle bottom surface welded rings, brace table top surface both sides are equipped with the track groove with the gyro wheel joint, drive the bucket motor and pass through bolt fixed connection in the front end bottom surface of brace table, and drive gear runs through a brace table top surface, track groove outside mid-mounting has and drives the proximity switch that the bucket motor passes through wire electric connection.
As the further improvement of this technical scheme, the piston rod top of pneumatic cylinder is articulated in the arc outside with holding in the palm, the both ends below welding of holding in the palm the area has the dwang, the bottom of dwang is passed through the pin with the front end both sides of propping up a supporting bench and is rotated and be connected, the front end welding of support frame has the arc pole, the radial both sides in top of collecting vessel are provided with the handrail wheel with support frame top surface roll connection.
Compared with the prior art, the invention has the following beneficial effects:
1. in this fine grinding processing technology of chicken cream production, through the fine grinding bucket that sets up, utilize the fine grinding mechanism in it to gather together the fine grinding to the chicken piece that falls into to when being used for adjusting the fine grinding through adding the flexible of grinding bucket, and then fully grinding, thoroughly break up through crushed aggregates mechanism again and smash the minced meat in the whereabouts, fall into the collecting bucket at last and add protease enzymolysis into the cream mud form, it is through mechanized cold treatment, efficient and can remain the nutrient composition in the meat.
2. In the fine grinding processing technology for producing the chicken paste, the barrel driving group is arranged, the barrel driving motor is used for driving the collecting barrel to move to the front end of the supporting platform, and the collecting barrel is used for dumping and unloading under the supporting of the supporting belt support and the hydraulic cylinder, so that the processing and blanking are trouble-saving and labor-saving, and the processing and blanking device has practical value.
Drawings
The drawings described herein are for illustration purposes only and are not intended to limit the scope of the present disclosure in any way. In addition, the shapes, the proportional sizes, and the like of the respective members in the drawings are merely schematic for facilitating the understanding of the present invention, and do not specifically limit the shapes, the proportional sizes, and the like of the respective members of the present invention. Those skilled in the art, having the benefit of the teachings of this invention, may choose from the various possible shapes and proportional sizes to implement the invention as a matter of case.
FIG. 1 is a schematic structural view of an integrally assembled receiving state of the present invention;
FIG. 2 is a schematic structural view of the integrally assembled material pouring state of the present invention;
FIG. 3 is a schematic view of an inner assembly structure of the fine grinding barrel according to the present invention;
FIG. 4 is a second schematic view of the internal assembly structure of the fine grinding barrel according to the present invention;
FIG. 5 is a plan view of an internal assembly structure of the barrel of the present invention;
FIG. 6 is a schematic view of the assembly structure of the fine grinding mechanism of the present invention;
FIG. 7 is a full sectional view of the abrasive ring of the present invention;
fig. 8 is a schematic view of a scrap mechanism assembly of the present invention;
FIG. 9 is a schematic view of the assembly structure of the discharging mechanism of the present invention;
FIG. 10 is a partially broken away view of an abrasive cover of the present invention;
FIG. 11 is a second partially broken away view of the abrasive cover of the present invention;
FIG. 12 is a partially exploded view of the grinding bowl of the present invention;
fig. 13 is a partially disassembled view of the crushing mechanism of the present invention;
FIG. 14 is a partially broken away view of the discharge mechanism of the present invention;
FIG. 15 is a schematic view of the support assembly of the present invention;
FIG. 16 is a schematic view of the assembled structure of the material collecting barrel and the barrel driving group;
FIG. 17 is a schematic view of the mounting structure of the carrier strip of the present invention.
The various reference numbers in the figures mean:
100. a support frame; 101. a circular arc rod; 110. finely grinding the barrel; 111. a charging nozzle; 112. a discharge pipe; 120. a supporting seat; 130. a support table; 131. a track groove; 132. an arc block;
140. a collecting barrel; 141. a stirring motor; 142. a material inlet and a material outlet; 143. a heating mantle; 144. a hand supporting wheel; 150. carrying a belt; 151. rotating the rod; 160. a hydraulic cylinder; 170. a proximity switch;
200. a fine grinding mechanism; 210. an abrasive cover; 211. hanging a pipe; 212. a transmission gear; 213. an abrasive ring; 214. inserting a rod; 220. an abrasive motor; 230. a cylinder of abrasive material;
240. adding a grinding barrel; 241. a bearing; 242. a perforated block; 243. adding a grinding ring; 250. hosting; 260. an electric cylinder; 270. a material stirring ring;
300. a crushing mechanism; 310. a material cutting group; 311. a double-edged shaft; 312. a reinforcement ring; 313. a face gear; 320. a linkage shaft; 330. a linkage gear;
400. a discharging mechanism; 410. a scraping rod; 420. frame turning; 421. a toothed ring; 422. a ring; 430. a driving rod motor; 440. a spiral sheet;
500. a barrel driving group; 510. a supporting shaft; 520. a roller; 530. a rack; 540. a barrel driving motor; 550. the gear is driven.
Detailed Description
The details of the present invention will become more apparent in light of the accompanying drawings and description of specific embodiments thereof. However, the specific embodiments of the present invention described herein are for the purpose of illustration only and are not to be construed as limiting the invention in any way. Any possible variations based on the present invention may be conceived by the skilled person in the light of the teachings of the present invention, and these should be considered as falling within the scope of the present invention. It will be understood that when an element is referred to as being "disposed on" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "mounted," "connected," and "connected" are to be construed broadly and may include, for example, mechanical or electrical connections, communications between two elements, direct connections, and indirect connections through intervening media, as well as the detailed meanings of the terms as understood by those skilled in the art. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs.
As used herein, the terms "central axis," "longitudinal," "transverse," "length," "width," "thickness," "vertical," "horizontal," "front," "back," "upper," "lower," "left," "right," "top," "bottom," "inner," "outer," and the like are used in an orientation or positional relationship indicated based on the orientation or positional relationship as shown in the figures, merely to facilitate the description of the invention and to simplify the description, and are not intended to indicate or imply that the device or element so referred to must have a particular orientation, be constructed and operated in a particular orientation, and are not to be construed as limiting the invention. Further, in the description of the present invention, "a plurality" means two or more unless specifically defined otherwise.
Referring to fig. 1-17, the present invention provides a fine grinding process for chicken paste production, comprising the following steps:
s1, pouring boned chicken blocks into a fine grinding barrel 110 in chicken paste production equipment, starting an abrasive motor 220 to drive an abrasive cover 210 in the barrel to rotate, and further extruding and grinding the chicken blocks into filiform or granular shapes together with an abrasive barrel 230 arranged on the inner wall of the barrel;
s2, the chicken in the shape of threads or granules falls through the gap between the grinding cover 210 and the grinding cylinder 230;
s3, when the chicken in the S2 falls into the crushing mechanism 300, the pair of material cutting groups 310 rotating along with the grinding cover 210 further hit the crushed chicken to be crushed;
s4, the driving rod motor 430 is started again to drive the scraping rod 410 and the spiral piece 440 to rotate synchronously, the sticky crumbs on the inner wall of the fine grinding barrel 110 are scraped, and are extruded and discharged along the axial direction along with the rotation of the spiral piece 440 and fall into the material collecting barrel 140, so that the scattered minced meat can be cleaned;
s5, injecting 1-2% of protease into the collecting barrel 140, starting the stirring motor 141 to drive the stirring blades to rotate and stir, and simultaneously starting the electric heating pipe in the heating cover 143 to heat the collecting barrel 140 so that the chicken powder is subjected to enzymolysis to prepare chicken paste;
s6, after the enzymolysis and the cooling, starting a barrel driving motor 540 to drive a driving gear 550 to drive a rack 530 at the bottom of the material collecting barrel 140 to move, and further moving the electric material collecting barrel 140 to the supporting belt 150 at the front end of the supporting frame 100;
s7, stopping driving the barrel motor 540 and starting the hydraulic cylinder 160 to drive the carrying belt 150 to turn downwards, and further carrying the collecting barrel 140 to turn downwards to finish automatic material pouring, so that the material loading and unloading are trouble-saving and easy.
The chicken paste production equipment comprises a pair of support frames 100, a fine grinding barrel 110 arranged at the top of the rear end of the support frames 100, a rotatable fine grinding mechanism 200, a crushing mechanism 300 and a discharging mechanism 400, which are sequentially arranged on the central shaft of the fine grinding barrel 110 from top to bottom; the bottom of the fine grinding barrel 110 is sleeved with a support seat 120, and the support seat 120 is welded with the top surfaces of the pair of support frames 100; one side of the top of the fine grinding barrel 110 is communicated with a feeding nozzle 111;
a supporting table 130 is welded between the middle parts of the supporting frames 100, a material collecting barrel 140 which moves along the front-back direction of the supporting table 130 is arranged on the supporting table 130, a stirring motor 141 is installed at the top of the material collecting barrel 140, an output shaft of the stirring motor 141 extends into the bottom of the material collecting barrel 140 and is coaxially connected with stirring blades, a heating cover 143 is sleeved outside the bottom of the material collecting barrel 140, an electric heating pipe is arranged in the heating cover 143, and a supporting belt 150 which is used for supporting and blocking the material collecting barrel 140 is rotatably connected to the front end of the supporting table 130 so as to support the material collecting barrel 140 to stably turn on one side for discharging;
the pit hole below the support table 130 is hinged with a hydraulic cylinder 160 for driving the carrying belt 150 to turn over, and a hydraulic station powered by the hydraulic cylinder 160 is arranged on the ground, which is the prior art and is not described herein again.
Specifically, the fine grinding mechanism 200 includes an abrasive cover 210, an abrasive cylinder 230 sleeved on the inner wall of the fine grinding barrel 110, and an abrasive motor 220 for driving the abrasive cover 210 to rotate, the abrasive cylinder 230 is fixedly connected with the inner wall of the fine grinding barrel 110 through bolts, and the height of the abrasive cylinder 230 is 2 times of the height of the abrasive cover 210;
the material crushing mechanism 300 comprises a pair of material cutting groups 310 arranged at intervals in the axial direction and a linkage shaft 320 for suspending the pair of material cutting groups 310 to synchronously rotate along with the fine grinding mechanism 200, wherein the pair of material cutting groups 310 are arranged in a reverse rotation manner so as to crush falling shredded meat or meat particles in multiple directions and fully crush the shredded meat or the meat particles;
the discharging mechanism 400 comprises a plurality of scraping rods 410 attached to the inner wall of the fine grinding barrel 110, a rod driving motor 430 for driving the scraping rods 410 to rotate, and a plurality of spiral pieces 440 coaxially arranged at the bottom ends of the scraping rods 410, wherein the spiral pieces 440 can block the discharge port of the fine grinding barrel 110, and meanwhile, the spiral pieces 440 are used for pushing and discharging, so that the situation that minced meat is adhered to the discharge port of the fine grinding barrel 110 to cause blockage is avoided;
the bottom of the collecting barrel 140 is provided with a barrel driving group 500, the barrel driving group 500 comprises a supporting shaft 510 arranged along the radial direction of the collecting barrel 140, rollers 520 sleeved at two ends of the supporting shaft 510, a rack 530 vertically arranged with the supporting shaft 510, a driving gear 550 meshed with the rack 530, and a barrel driving motor 540 coaxially connected with the driving gear 550, wherein the length direction of the rack 530 is consistent with the length direction of the supporting table 130, the top surface of the middle part of the rack 530 is welded with a circular ring, the circular ring is sleeved with the supporting shaft 510, the front end and the rear end of the rack 530 are vertically bent upwards and welded with the bottom surface of the heating cover 143, so that the rack 530 is firmly connected with the heating cover 143.
It is worth to be noted that the grinding cover 210 is a hollow cylinder structure with an open bottom, the top of the grinding cover 210 is a conical surface structure, the center of the grinding cover is welded with the hanging tube 211, the conical surface is beneficial to sliding down to the inner wall of the fine grinding barrel 110 when chicken nuggets are put in, and then the chicken nuggets are guided to fall between the grinding cover 210 and the grinding barrel 230 so as to be ground;
the top of the hanging tube 211 is arranged above the fine grinding barrel 110 and is tightly sleeved with the transmission gear 212, the abrasive motor 220 is fixedly connected with the top surface of the fine grinding barrel 110 through a bolt, and the output shaft of the abrasive motor 220 is downward and is coaxially connected with a driving gear meshed with the transmission gear 212;
wherein the top of abrasive material cover 210 just is located the welding on the edge and has dialling the material ring 270, and the top surface of dialling the material ring 270 is equipped with a plurality of archs, and when it rotated along with abrasive material cover 210, because a plurality of bellied not flat structure, then can upwards pop open the chicken piece of piling up in abrasive material cover 210 and abrasive tube 230 top department for the chicken piece is not piled up.
Specifically, the outer wall of the abrasive cover 210 is welded with an abrasive ring 213, the abrasive ring 213 is made of stainless steel and has an annular outer surface with a salient point frosting surface structure, the abrasive cylinder 230 has an annular structure, and the inner diameter of the upper end opening of the abrasive cylinder is larger than the inner diameter of the middle part of the abrasive cylinder, so that chicken blocks are guided to enter between the abrasive cylinder 230 and the abrasive ring 213; grinding cylinder 230 adopts the stainless steel to make and its inner wall to be bump frosting face structure, because grinding cylinder 230 is fixed, extrudes the chicken through abrasive ring 213 and rotates the mill outside grinding cylinder 230 and press the shredding.
In addition, a grinding barrel 240 for increasing the axial fine grinding range is sleeved in the bottom of the grinding material cover 210, so that the time for grinding and crushing the chicken is increased, and the grinding machine can be adjusted according to the volume of the chicken;
the outer wall of the grinding barrel 240 is welded with a grinding ring 243 which is made of the same material and has the same structure as the abrasive ring 213, a supporting tube 250 is rotatably connected to the central shaft of the grinding barrel 240, a bearing 241 is coaxially connected to the center of the inner bottom surface of the grinding barrel 240, and the supporting tube 250 is tightly sleeved with the outer ring of the bearing 241, so that the supporting tube 250 is not driven to rotate when the grinding barrel 240 rotates along with the abrasive cover 210, and meanwhile, the supporting tube 250 can drive the grinding barrel 240 to lift to expand the fine grinding range;
the supporting tube 250 penetrates through the hanging tube 211, a straight rod is radially welded at the top end of the supporting tube 250, electric cylinders 260 for driving the supporting tube 250 to ascend and descend are symmetrically installed on the outer side of the top of the fine grinding barrel 110, and the top ends of piston rods of the electric cylinders 260 are welded with the end portions of the straight rods, so that the supporting tube 250 can be driven to ascend and descend to adjust the range of the grinding barrel 240 exposed out of the bottom of the abrasive cover 210.
Further, the insert rods 214 are symmetrically welded in the top of the abrasive cover 210, and the perforated blocks 242 correspondingly inserted into the insert rods 214 are symmetrically welded on the inner side of the top surface of the grinding barrel 240, so that the grinding barrel 240 can rotate along with the abrasive cover 210, and the grinding barrel 240 can axially move.
Specifically, S2 includes the following steps:
s21, starting the electric cylinder 260 to drive the supporting pipe 250 to move downwards so as to drive the grinding barrel 240 to move out of the bottom of the grinding material cover 210 and synchronously rotate along with the grinding material cover 210;
s22, the chicken to be filiform or granular falls to the gap between the grinding barrel 240 and the grinding cylinder 230, and is further crushed and ground.
It is worth to say that the material cutting group 310 is composed of a plurality of double-edge rods 311 in an annular shape, the outer end of the whole body is welded with a reinforcing ring 312, the outer diameter of the reinforcing ring 312 is larger than the inner diameter of the bottom end of the grinding cylinder 230, so that falling chicken can fall into the rotating range of the double-edge rods 311 and then be smashed;
the inner ends of the double-edge rods 311 are welded with end face gears 313, a pair of end face gears 313 are coaxial and are arranged oppositely, the bottom face of the end face gear 313 located above is welded with a circular ring, linkage gears 330 are sleeved on rods on two radial sides of the circular ring, the end face gear 313 located above and the circular ring are sleeved with the linkage shaft 320 and can rotate, the end face gear 313 located below is tightly sleeved with the linkage shaft 320, the top of the linkage shaft 320 is welded with the center of the top face of the grinding barrel 240, the linkage shaft 320 and the end face gear 313 located below rotate synchronously with the grinding barrel 240, the linkage gears 330 are meshed with the two end face gears 313 simultaneously, the linkage gears 330 are used for driving the end face gear 313 located above and the end face gear 313 located below to rotate reversely, and the double-edge rods 311 located above and below can break the falling chicken in multiple directions.
Further, the bottom of the fine grinding barrel 110 is a conical surface, the middle of the fine grinding barrel is provided with a material outlet pipe 112, the bottom ends of the material scraping rods 410 are welded with a rotating frame 420 sleeved with the material outlet pipe 112, the outer side of the protruding end of the bottom of the rotating frame 420 is tightly sleeved with a toothed ring 421, a driving rod motor 430 is fixedly connected to the outer wall of the material outlet pipe 112 through a bolt, the lower end of an output shaft of the driving rod motor is coaxially connected with a driving gear meshed with the toothed ring 421, a supporting ring 422 used for supporting the spiral piece 440 is welded in the center of the top end of the rotating frame 420, namely, the top end of a central shaft of the spiral piece 440 is tightly sleeved with the supporting ring 422, and the rotating frame 420 drives the spiral piece 440 to rotate.
Specifically, the two sides of the top of the collecting barrel 140 are symmetrically communicated with feed and discharge ports 142, one of which is used for butting against the discharge pipe 112 to receive minced meat; the supporting shaft 510 is rotatably sleeved with a hanging ring welded on the bottom surface of the heating cover 143, two sides of the top surface of the supporting table 130 are provided with track grooves 131 clamped with the rollers 520, and the front ends of the track grooves 131 are welded with arc blocks 132 for blocking the rollers 520;
the barrel driving motor 540 is fixedly connected to the front bottom surface of the support platform 130 through bolts, and the driving gear 550 penetrates through the top surface of the support platform 130 so as to be meshed with the rack 530, so as to drive the collecting barrel 140 to transfer discharging; as is well known to those skilled in the art, the proximity switch 170 electrically connected to the barrel driving motor 540 is installed in the middle of the outer side of the track groove 131 through a wire, and as long as it approaches a certain distance from a metal object, it can send a proximity signal, and a contact in the proximity switch will act to trigger the power-on operation or power-off stop of an electrical appliance connected to the proximity switch, so as to automatically control the movement of a driven element connected to the electrical appliance, wherein the barrel driving motor 540 is a forward and reverse motor, and the roller 520 is made of iron material, and when the material collecting barrel 140 is driven to reset, the roller 520 moves to the proximity switch 170 to trigger the barrel driving motor 540 to stop operating, so as to ensure that the material inlet/outlet 142 is aligned to the material outlet 112 to receive material.
It is worth noting that the top end of the piston rod of the hydraulic cylinder 160 is hinged to the arc-shaped outer side of the supporting belt 150, the rotating rods 151 are welded below the two ends of the supporting belt 150, the bottom end of each rotating rod 151 is rotatably connected with the two sides of the front end of the supporting table 130 through pins, the arc rods 101 are welded at the front end of the supporting frame 100, the handrail wheels 144 which are in rolling connection with the top surface of the supporting frame 100 are arranged on the two radial sides of the top of the collecting barrel 140, the center distance between the handrail wheels 144 and the rollers 520 is equal to the rotating radius of the rotating rods 151, and the arc rods 101 are coaxial and the same in diameter with the rotating rods 151, so that the collecting barrel 140 rolls on the supporting frame 100 and the arc rods 101 on the handrail wheels 144 and is stably turned to a turning state from a translation state, and material pouring is smooth.
All articles and references, including patent applications and publications, disclosed herein are hereby incorporated by reference for all purposes. The term "consisting essentially of 8230comprises the elements, components or steps identified and other elements, components or steps which do not materially affect the basic novel characteristics of the combination. The use of the terms "comprising" or "including" to describe combinations of elements, components, or steps herein also contemplates embodiments that consist essentially of such elements, components, or steps. By using the term "may" herein, it is intended to indicate that any of the described attributes that "may" include are optional. A plurality of elements, components, parts or steps can be provided by a single integrated element, component, part or step. Alternatively, a single integrated element, component, part or step may be divided into separate plural elements, components, parts or steps. The disclosure of "a" or "an" to describe an element, ingredient, component or step is not intended to foreclose other elements, ingredients, components or steps.
The above embodiments are merely illustrative of the technical concepts and features of the present invention, and the purpose of the embodiments is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (10)

1. A fine grinding processing technology for producing chicken paste is characterized by comprising the following steps: the method comprises the following steps:
s1, pouring boned chicken blocks into a fine grinding barrel (110) in chicken paste production equipment, starting an abrasive motor (220) to drive an abrasive cover (210) in the barrel to rotate, and further extruding and grinding the chicken blocks into threads or particles together with an abrasive cylinder (230) arranged on the inner wall of the barrel;
s2, enabling the chicken in the filiform or granular shape to fall through the gap between the grinding cover (210) and the grinding cylinder (230);
s3, when the chicken in the S2 falls into the crushing mechanism (300), further striking the crushed chicken into a crushed shape by a pair of material cutting groups (310) rotating along with the grinding cover (210);
s4, the driving rod motor (430) is started again to drive the scraping rod (410) and the spiral piece (440) to rotate synchronously, sticky crushed powder on the inner wall of the fine grinding barrel (110) is scraped, and the crushed powder is extruded and discharged along the axial direction of the spiral piece (440) along with the rotation of the spiral piece (440) and falls into the material collecting barrel (140);
s5, injecting 1% -2% of protease into the collecting barrel (140), starting a stirring motor (141) to drive stirring blades to rotate and stir, and simultaneously starting an electric heating pipe in a heating cover (143) to heat the collecting barrel (140) so that the chicken powder is subjected to enzymolysis;
s6, after enzymolysis and cooling, starting a barrel driving motor (540) to drive a driving gear (550) to drive a rack (530) at the bottom of the material collecting barrel (140) to move, and further moving the electric material collecting barrel (140) to a supporting belt (150) at the front end of the supporting frame (100);
s7, stopping driving the barrel motor (540) and starting the hydraulic cylinder (160) to drive the carrying belt (150) to turn downwards, and further carrying the collecting barrel (140) to turn downwards to finish automatic material pouring;
the chicken paste production equipment comprises a pair of support frames (100), a fine grinding barrel (110) arranged at the top of the rear end of the pair of support frames (100), and a rotatable fine grinding mechanism (200), a crushing mechanism (300) and a discharging mechanism (400) which are sequentially arranged on a central shaft of the fine grinding barrel (110) from top to bottom, wherein a support table (130) is welded between the middle parts of the pair of support frames (100), a material collecting barrel (140) moving along the front-back direction of the support table (130) is arranged on the support table (130), a barrel driving group (500) is arranged at the bottom of the material collecting barrel (140), a stirring motor (141) is installed at the top of the material collecting barrel (140), an output shaft of the stirring motor (141) extends into the bottom of the material collecting barrel (140) and is coaxially connected with stirring blades, a heating cover (143) is sleeved outside the bottom of the material collecting barrel (140), an electric heating pipe is arranged inside the heating cover (143), a support belt (150) used for supporting and blocking the material collecting barrel (140) is rotatably connected to the front end of the support table (130), and a hydraulic cylinder (160) used for driving the support belt to turn over is hinged in a pit hole (150) below the support table (130);
the fine grinding mechanism (200) comprises an abrasive cover (210), an abrasive cylinder (230) sleeved on the inner wall of the fine grinding barrel (110) and an abrasive motor (220) used for driving the abrasive cover (210) to rotate;
the crushing mechanism (300) comprises a pair of cutting groups (310) which are axially arranged at intervals and a linkage shaft (320) which is used for suspending the pair of cutting groups (310) to synchronously rotate along with the fine grinding mechanism (200), and the pair of cutting groups (310) are arranged in a reverse rotation manner;
the discharging mechanism (400) comprises a plurality of scraping rods (410) attached to the inner wall of the fine grinding barrel (110), a rod driving motor (430) used for driving the scraping rods (410) to rotate and a spiral sheet (440) coaxially arranged at the bottom ends of the scraping rods (410);
the barrel driving group (500) comprises a supporting shaft (510) which is radially arranged along the collecting barrel (140), rollers (520) which are sleeved at two ends of the supporting shaft (510), racks (530) which are vertically arranged with the supporting shaft (510), a driving gear (550) which is meshed with the racks (530) and a barrel driving motor (540) which is coaxially connected with the driving gear (550).
2. The fine grinding processing technology for producing chicken paste according to claim 1, characterized in that: abrasive cover (210) are inside cavity and bottom surface open-ended drum structure, the top of abrasive cover (210) is conical surface structure and center welding has dropper (211), the top of dropper (211) is arranged in the top of fine grinding bucket (110) and is closely cup jointed drive gear (212), abrasive motor (220) passes through bolt fixed connection with fine grinding bucket (110) top surface, the output shaft of abrasive motor (220) is down and coaxial coupling has the driving gear with drive gear (212) meshing.
3. The fine grinding processing technology for producing chicken paste according to claim 2, characterized in that: the outer wall welding of abrasive material cover (210) has abrasive material ring (213), and abrasive material ring (213) adopt stainless steel to make cyclic annularly and its surface to be bump frosting surface structure, abrasive material section of thick bamboo (230) are ring structure and its upper port internal diameter is greater than its middle part internal diameter, abrasive material section of thick bamboo (230) adopt the stainless steel to make and its inner wall to be bump frosting surface structure.
4. The fine grinding processing technology for producing chicken paste according to claim 3, characterized in that: the bottom endotheca of abrasive material cover (210) is equipped with and is used for increasing grinding bucket (240) that add of the fine grinding scope of axial, the outer wall welding of grinding bucket (240) have with abrasive material ring (213) with grinding ring (243) of material with the structure, it is connected with trusteeship (250) to rotate on the center pin of grinding bucket (240), trusteeship (250) pass hanging tube (211) and the radial welding in top has the straight-bar, electronic jar (260) that are used for driving trusteeship (250) to go up and down are installed to fine grinding bucket (110) top outside symmetry.
5. The fine grinding processing technology for producing chicken meat paste of claim 4, which is characterized in that: insert rods (214) are symmetrically welded in the top of the grinding cover (210), and perforated blocks (242) which are correspondingly inserted into the insert rods (214) are symmetrically welded on the inner side of the top surface of the grinding barrel (240).
6. The fine grinding processing technology for producing chicken paste according to claim 5, characterized in that: the S2 comprises the following steps:
s21, starting an electric cylinder (260) to drive a supporting pipe (250) to move downwards so as to drive a grinding barrel (240) to move out of the bottom of the grinding material cover (210) and synchronously rotate along with the grinding material cover (210);
s22, when the chicken in the filiform or granular shape falls to a gap between the grinding barrel (240) and the grinding cylinder (230), the chicken is further extruded and ground.
7. The fine grinding processing technology for producing chicken meat paste of claim 4, which is characterized in that: blank group (310) are the annular by a plurality of twolip poles (311) and form and whole outer end welding has strengthening ring (312), and the inner welding of a plurality of twolip poles (311) has face gear (313), the top of universal driving shaft (320) and the top surface center welding that adds grinding barrel (240) are a pair of face gear (313) is coaxial and relative setting, and wherein face gear (313) the bottom surface welding that is located the top has link gear (330) of ring and the radial both sides pole cover of ring, and face gear (313) and the ring that are located the top cup joint and are rotatable with universal driving shaft (320), and face gear (313) and universal driving shaft (320) that are located the below closely cup joint, and link gear (330) mesh simultaneously with two face gear (313).
8. The fine grinding processing technology for producing chicken paste according to claim 1, characterized in that: the bottom of fine grinding bucket (110) is the conical surface and its middle part is equipped with discharging pipe (112), and is a plurality of the bottom welding of scraping material pole (410) has commentaries on classics frame (420) that cup joints with discharging pipe (112), it has ring gear (421) closely to change frame (420) bottom protrusion end outside, driving rod motor (430) have with ring gear (421) meshed driving gear through bolt fixed connection in discharging pipe (112) outer wall and its output shaft lower extreme coaxial coupling, it has trunnion ring (422) that is used for supporting flight (440) to change the welding in the top center of frame (420).
9. The fine grinding processing technology for producing the chicken paste according to claim 1, which is characterized in that: the top bilateral symmetry intercommunication of collecting bucket (140) is equipped with into discharge gate (142), bearing pin (510) cup joint and rotatable with heating mantle (143) bottom surface welded rings, brace table (130) top surface both sides are equipped with track groove (131) with gyro wheel (520) joint, drive bucket motor (540) through bolt fixed connection in the front end bottom surface of brace table (130), and drive gear (550) run through brace table (130) top surface, track groove (131) outside mid-mounting have with drive bucket motor (540) through wire electric connection proximity switch (170).
10. The fine grinding processing technology for producing the chicken paste according to claim 1, which is characterized in that: the piston rod top of pneumatic cylinder (160) is articulated with the support area (150) arc outside, the welding of both ends below of holding in the palm area (150) has dwang (151), the bottom of dwang (151) is passed through the pin rotation with the front end both sides of propping up a supporting bench (130) and is connected, the front end welding of support frame (100) has circular arc pole (101), the radial both sides in top of collecting bucket (140) are provided with handrail wheel (144) with support frame (100) top surface roll connection.
CN202211231025.3A 2022-10-08 2022-10-08 Fine grinding processing technology for chicken paste production Active CN115444120B (en)

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