CN114568457A - Full-automatic novel intelligent food encrusting machine - Google Patents

Full-automatic novel intelligent food encrusting machine Download PDF

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Publication number
CN114568457A
CN114568457A CN202210146737.9A CN202210146737A CN114568457A CN 114568457 A CN114568457 A CN 114568457A CN 202210146737 A CN202210146737 A CN 202210146737A CN 114568457 A CN114568457 A CN 114568457A
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CN
China
Prior art keywords
stuffing
groove
flower
conveyer belt
discharging
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Granted
Application number
CN202210146737.9A
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Chinese (zh)
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CN114568457B (en
Inventor
董凤彪
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Jiangyin Xingya Food Machinery Co ltd
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Jiangyin Xingya Food Machinery Co ltd
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Priority to CN202210146737.9A priority Critical patent/CN114568457B/en
Publication of CN114568457A publication Critical patent/CN114568457A/en
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Publication of CN114568457B publication Critical patent/CN114568457B/en
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    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21CMACHINES OR EQUIPMENT FOR MAKING OR PROCESSING DOUGHS; HANDLING BAKED ARTICLES MADE FROM DOUGH
    • A21C9/00Other apparatus for handling dough or dough pieces
    • A21C9/06Apparatus for filling pieces of dough such as doughnuts
    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21CMACHINES OR EQUIPMENT FOR MAKING OR PROCESSING DOUGHS; HANDLING BAKED ARTICLES MADE FROM DOUGH
    • A21C9/00Other apparatus for handling dough or dough pieces
    • A21C9/08Depositing, arranging and conveying apparatus for handling pieces, e.g. sheets of dough
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G15/00Conveyors having endless load-conveying surfaces, i.e. belts and like continuous members, to which tractive effort is transmitted by means other than endless driving elements of similar configuration
    • B65G15/30Belts or like endless load-carriers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G45/00Lubricating, cleaning, or clearing devices
    • B65G45/10Cleaning devices
    • B65G45/12Cleaning devices comprising scrapers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G45/00Lubricating, cleaning, or clearing devices
    • B65G45/10Cleaning devices
    • B65G45/22Cleaning devices comprising fluid applying means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G45/00Lubricating, cleaning, or clearing devices
    • B65G45/10Cleaning devices
    • B65G45/26Cleaning devices for gathering residue after cleaning
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65GTRANSPORT OR STORAGE DEVICES, e.g. CONVEYORS FOR LOADING OR TIPPING, SHOP CONVEYOR SYSTEMS OR PNEUMATIC TUBE CONVEYORS
    • B65G65/00Loading or unloading
    • B65G65/30Methods or devices for filling or emptying bunkers, hoppers, tanks, or like containers, of interest apart from their use in particular chemical or physical processes or their application in particular machines, e.g. not covered by a single other subclass
    • B65G65/34Emptying devices
    • B65G65/40Devices for emptying otherwise than from the top
    • B65G65/46Devices for emptying otherwise than from the top using screw conveyors

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Food Science & Technology (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

The invention relates to the technical field of encrusting machines, in particular to a full-automatic novel intelligent food encrusting machine, which comprises an auger stuffing guiding mechanism arranged on the top surface of a rack, and a pressurizing stuffing guiding pipe mechanism, a pattern pinching mechanism and a conveying belt mechanism which are arranged on the side surface of the rack, wherein two discharging ends of the auger stuffing guiding mechanism are respectively connected with two feeding ends of the pressurizing stuffing guiding pipe mechanism, the pattern pinching mechanism is positioned below the discharging end of the pressurizing stuffing guiding pipe mechanism, and the conveying belt mechanism is positioned below the pattern pinching mechanism; the encrusting machine disclosed by the invention is reasonable in structural design, realizes independent control of the material guiding speed of the stuffing and the wrapper and flexible control of the material guiding pressure, can effectively control and improve the production quality, broadens the applicability, can effectively meet the production requirement, is particularly suitable for making Yunnan ham moon cakes, and has the quality comparable to that of manual making.

Description

Full-automatic novel intelligent food encrusting machine
Technical Field
The invention relates to the technical field of encrusting machines, in particular to a full-automatic novel intelligent food encrusting machine.
Background
The encrusting machine can be used for various foods needing encrusting production, such as moon cakes and the like. The wrapper and the filling are combined, the wrapper is wrapped outside the filling, and the dough kneading is carried out.
The stuffing wrapping machine in the prior art has the problems that the material guiding speed of stuffing and skin materials can not be independently controlled, the material guiding pressure can not be flexibly controlled and the like due to the design defects, so that the production quality of equipment is unstable, the applicability is narrow, the production requirement cannot be effectively met, and a certain distance is reserved compared with the traditional manual production quality.
Therefore, a novel full-automatic intelligent food encrusting machine is provided for solving the problems.
Disclosure of Invention
The invention provides a full-automatic novel intelligent food stuffing wrapping machine, which aims to make up the defects of the prior art, solve the defects of the prior art, realize independent speed regulation of stuffing and skin material guiding and flexibly control the guiding pressure.
The technical scheme adopted by the invention for solving the technical problems is as follows: a full-automatic novel intelligent food encrusting machine structurally comprises an auger stuffing guiding mechanism arranged on the top surface of a rack, and a pressurizing stuffing guiding pipe mechanism, a kneading flower mechanism and a conveying belt mechanism which are arranged on the side surface of the rack, wherein two discharge ends of the auger stuffing guiding mechanism are respectively connected with two feed ends of the pressurizing stuffing guiding pipe mechanism, the kneading flower mechanism is positioned below the discharge end of the pressurizing stuffing guiding pipe mechanism, and the conveying belt mechanism is positioned below the kneading flower mechanism;
the packing guide mechanism comprises two charging bucket components which are arranged symmetrically left and right, a pair of variable-pitch packing augers are arranged in the charging bucket components, the rear ends of the variable-pitch packing augers extend into a charging bucket gear box and are provided with gear sets, two pairs of variable-pitch packing augers are respectively connected with a stuffing guide motor through the gear sets at the rear ends in a transmission manner, a material shifting component is arranged in the front end of the charging bucket component, the material shifting components at two sides are connected through a material shifting gear box positioned between the two charging bucket components in a transmission manner, the material shifting gear box is connected with a material shifting motor through a transmission component, the front ends of the variable-pitch packing augers extend into a discharging bucket, a discharging variable-pitch packing auger vertical to the variable-pitch packing augers is arranged in the discharging bucket, the discharging ends of the discharging buckets at two sides are connected with a pressurizing stuffing guide pipe mechanism positioned between the discharging buckets at two sides, one end of the discharging variable-pitch packing auger extends to the communicating position of the discharging bucket and the pressurizing stuffing guide pipe mechanism, the other end of the transmission shaft is externally connected with a discharging gear box, and the discharging gear boxes on the two sides are respectively connected with a discharging motor through a transmission assembly; the material barrel component on one side is a leather material barrel, and the material barrel component on the other side is a stuffing material barrel;
the pressurizing stuffing guide pipe mechanism comprises a pipe body consisting of a stuffing guide pipe and a middle seat pipe which is coaxially sleeved at the outer side of the stuffing guide pipe, a wrapper inlet and a stuffing inlet are respectively arranged at the upper parts of the two sides of the pipe body, the stuffing inlet is communicated with the inner cavity of the stuffing guide pipe, the wrapper inlet is communicated with the inner cavity of the middle seat pipe and the stuffing guide pipe, a stirring blade is sleeved at the position close to the lower end in the cavity between the middle seat pipe and the stuffing guide pipe, the outer side surface of the stirring blade is connected with a stirring gear positioned outside the end part of the middle seat pipe, the stirring gear is meshed with a power gear positioned on the side surface of the middle seat pipe, the power gear is connected with a stuffing guide motor through a transmission assembly, and the stuffing discharge port at the bottom end of the stuffing guide pipe is higher than the wrapper discharge port formed by inward folding of the bottom end of the middle seat pipe.
Preferably, stirring vane includes the body, evenly is equipped with the flabellum of 3 slopes along the circumference on the body medial surface, is equipped with the mounting groove with stirring gear shape fit on the body lateral surface.
Preferably, the fan blades are rectangular, and an included angle of 45 degrees is formed between each fan blade and the central axis of the tube body.
Preferably, the flower pinching mechanism comprises a flower pinching cutter assembly arranged on the cutter seat disc and positioned on the outer side of the side face of the rack and a flower pinching driving mechanism arranged on the inner side of the side face of the rack and used for driving the flower pinching cutter assembly, the flower pinching driving mechanism comprises a main motor fixed on the rack, the output end of the main motor is downward and is in transmission connection with a spline main shaft through a transmission assembly, a cylindrical cam is arranged in the middle of the spline main shaft, a thimble is arranged at the bottom of the cutter seat disc and is in contact with a groove on the surface of the cylindrical cam, two sides of the cutter seat disc are in sliding connection with flower pinching slide rails fixed on the rack through connecting pieces, the top end of the spline main shaft is connected with the flower pinching cam, the flower pinching cam is connected with one end of a flower pinching connecting rod through the flower pinching driving assembly, the other end of the flower pinching connecting rod is in driving connection with the flower pinching cutter assembly, a gear at the bottom end of the spline main shaft is in meshing connection with a top flat bevel gear, the top flat bevel gear is coaxially connected with one side face at the bottom of the top flat mechanism through a transmission piece, the other side surface of the bottom end of the top flat mechanism is connected with a top flat slide rail fixed with the frame in a sliding way.
Preferably, hold between fingers colored sword subassembly including fixing the blade holder on the blade holder dish, establish the capstan in the blade holder top surface annular step, evenly open along the circumference on the capstan has a plurality of guide way, and coupling assembling passes the guide way and connects the colored sword of holding between the fingers that is located the blade holder dish inboard, is equipped with the connecting rod of being connected with the connecting rod of holding between the fingers colored on the capstan.
Preferably, the conveyer belt mechanism outside is equipped with the protection chamber, hold between the fingers the mechanism and install top one side at the protection chamber, conveyer belt mechanism is including the conveyer belt that the slope set up, the conveyer belt is close to the one end tilt up who holds between the fingers the mechanism, the conveyer belt top is close to the one side of holding between the fingers the mechanism and installs the water receiving chamber, the water receiving chamber passes through the water pipe and links to each other with external water pump, just the water receiving chamber bottom is connected with a set of evenly distributed's nozzle along conveyer belt width direction.
Preferably, set up respectively on the protection intracavity wall that the conveyer belt both sides correspond with conveyer belt shape assorted draw-in groove, inside the conveyer belt both sides extended to the draw-in groove respectively, and rotated respectively on the outer wall of the conveyer belt that is arranged in the draw-in groove and the inner wall and be connected with a set of evenly distributed's spin, the draw-in groove has seted up matched with roll groove with it with the corresponding position department of spin, the guide way has been seted up to the inner bottom of draw-in groove, the conveyer belt middle part is inlayed and is had flexible magnetic layer, the one end mid-mounting of conveyer belt has the electro-magnet, just the electro-magnet during operation can repel the flexible magnetic layer who sends the belt top.
Preferably, the bottom of the water receiving cavity is connected with a push rod, the bottom of the push rod is connected with a material storage cavity, an opening at the bottom of the material storage cavity is rotatably connected with a cylindrical roller, the side wall of the roller is attached to the inner wall of the material storage cavity, a group of feeding chutes which are annularly and uniformly distributed are formed in the side wall of the roller, and a group of scraping strips is connected to the outer wall of the material storage cavity.
Preferably, the inside sliding connection of chute feeder has the slide, the outer end of slide sets to with roller lateral wall shape assorted arc form, the slide lateral wall is laminated with the inner wall of chute feeder mutually, be connected with the elastic component between the inner of slide and chute feeder, be connected with the stopper on the outer end lateral wall of chute feeder respectively, the recess with stopper matched with has been seted up to the slide outer end, be connected with the magnetic sheet on the inner storage intracavity wall that corresponds of roller, the liquid leakage groove has been seted up on the magnetic sheet, magnetic sheet one side is connected with the dog, the dog sets to the arcwall face and laminates mutually with the lateral wall of roller with the one side that the magnetic sheet is close to the roller, the slide is the magnetism material, just can repel with it when the slide moves to magnetic sheet one side, be connected with a set of strickles on the storage chamber outer wall.
Preferably, an annular groove is formed in the roller, and a pressure relief groove communicated with the annular groove and the inner end of the feeding groove is formed in the roller.
The invention has the following beneficial effects:
1. the encrusting machine disclosed by the invention is reasonable in structural design, realizes independent control of the material guiding speed of stuffing and wrapper and flexible control of the material guiding pressure, can effectively control and improve the production quality, widens the applicability, can effectively meet the production requirement, is particularly suitable for making Yunnan ham moon cakes, and has the quality comparable to that of manual making.
2. The invention can isolate the moon cakes from the outside through the protection cavity in the transportation process, reduce the condition that the processing quality of the moon cakes is influenced by external dust impurities or interference of human factors, simultaneously can clean the impurities and bacteria of the conveyor belt, improves the processing taste of the moon cakes, does not need to clean the conveyor belt at regular time manually, and greatly reduces the labor burden of workers.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without inventive exercise.
FIG. 1 is a schematic view showing the structure of a removing protective cavity of the encrusting machine according to the present invention;
FIG. 2 is a schematic structural view of the kneading mechanism of FIG. 1;
FIG. 3 is a schematic structural view of the knurling tool assembly of FIG. 2;
FIG. 4 is a schematic structural view (partial dissection) of the auger stuffing guiding mechanism in FIG. 1;
FIG. 5 is a schematic view of the pressurized stuffing guiding tube mechanism in FIG. 1;
FIG. 6 is a side cross-sectional structural schematic view of FIG. 5;
FIG. 7 is a schematic structural view of the stirring vane of FIG. 6;
FIG. 8 is a schematic view of the interior of the guard chamber of the present invention;
FIG. 9 is a schematic view of the structure of the present invention showing the engagement of the belt with the guard chamber;
FIG. 10 is an enlarged view at A in FIG. 8;
FIG. 11 is a schematic view showing the inner structure of the roller in the second embodiment;
in the figure: 1 is a frame, 2 is a packing auger stuffing guide mechanism, 21 is a charging basket component, 22 is a variable-pitch packing auger, 23 is a charging basket gear box, 24 is a material stirring component, 25 is a material stirring gear box, 26 is a discharging basket, 27 is a discharging variable-pitch packing auger, 3 is a pressurizing stuffing guide mechanism, 31 is a stuffing guide pipe, 32 is a middle seat pipe, 33 is a leather inlet, 34 is a stuffing inlet, 35 is a stirring blade, 351 is a pipe body, 352 is a fan blade, 353 is a mounting groove, 36 is a stirring gear, 37 is a power gear, 38 is a stuffing discharge hole, 39 is a leather discharge hole, 4 is a pattern kneading mechanism, 41 is a main motor, 42 is a pattern kneading knife component, 421 is a knife seat, 422 is a rotary disc, 423 is a pattern kneading knife, 424 is a connecting component, 425 is a guiding groove, 426 is a connecting rod, 43 is a knife seat disc, 44 is a spline main shaft, 45 is a cylindrical cam, 46 is a thimble, 47 is a pattern kneading cam, 48 is a pattern kneading connecting rod, 491 is a pattern kneading connecting rod 492, 491 is a lever connecting rod, 493 is an auxiliary lever, 410 is a top-flat bevel gear, 411 is a top-flat cam, 412 is a top-flat mechanism, 413 is a top-flat sliding rail, 414 is a kneading flower sliding rail, 5 is a conveying belt mechanism, 6 is a protective cavity, 61 is a conveying belt, 62 is a water receiving cavity, 63 is a nozzle, 64 is a clamping groove, 65 is a rolling ball, 66 is a guide groove, 67 is a flexible magnetic layer, 68 is an electromagnet, 69 is a push rod, 7 is a storage cavity, 71 is a roller, 72 is a feeding groove, 73 is a scraping strip, 74 is a sliding plate, 75 is an elastic element, 76 is a limiting block, 77 is a groove, 78 is a magnetic plate, 79 is a leakage groove, 80 is a stop block, 81 is an annular groove, and 82 is a pressure relief groove.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be obtained by a person skilled in the art without making any creative effort based on the embodiments in the present invention, belong to the protection scope of the present invention.
The first embodiment is as follows:
referring to fig. 1, the stuffing wrapping machine according to the present invention comprises a packing auger stuffing guiding mechanism 2 installed on the top surface of a frame 1, and a pressurizing stuffing guiding pipe mechanism 3, a kneading flower mechanism 4 and a conveying belt mechanism 5 installed on the side surface of the frame 1, wherein two discharging ends of the packing auger stuffing guiding mechanism 2 are respectively connected with two feeding ends of the pressurizing stuffing guiding pipe mechanism 3, the kneading flower mechanism 4 is located below the discharging end of the pressurizing stuffing guiding pipe mechanism 3, and the conveying belt mechanism 5 is located below the kneading flower mechanism 4.
As shown in FIG. 2, the flower pinching mechanism 4 comprises a flower pinching cutter assembly 42 arranged on a cutter seat disc 43 and positioned on the outer side of the side surface of the machine frame 1, and a flower pinching driving mechanism arranged on the inner side of the side surface of the machine frame 1 and used for driving the flower pinching cutter assembly 42, the flower pinching driving mechanism comprises a main motor 41 fixed on the machine frame 1, the output end of the main motor 41 is downwards connected with a spline main shaft 44 in a transmission way through a transmission assembly, a cylindrical cam 45 is arranged on the middle part of the spline main shaft 44, a thimble 46 is arranged at the bottom of the cutter seat disc 43 and contacts with a groove on the surface of the cylindrical cam 45, two sides of the cutter seat disc 43 are in sliding connection with flower pinching slide rails 414 fixed on the machine frame 1 through connecting pieces, the top end of the spline main shaft 44 is connected with a flower pinching cam 47, the flower pinching cam 47 is connected with one end of a flower pinching connecting rod 48 through the flower pinching transmission assembly, the other end of the flower pinching connecting rod 48 is in driving connection with the flower pinching cutter assembly 42, the bottom end of the spline main shaft 44 is in gear engagement with a top flat bevel gear 410, the top flat bevel gear 410 is coaxially connected with a top flat cam 411, the side surface of the top flat cam 411 is connected with one side surface of the bottom end of the top flat mechanism 412 through a transmission piece, and the other side surface of the bottom end of the top flat mechanism 412 is slidably connected with a top flat sliding rail 413 fixed with the frame 1.
When kneading flowers, the main motor 41 drives the spline main shaft 44 to rotate, the spline main shaft 44 drives the flower kneading cam 47 to rotate, the flower kneading cam 47 converts the rotation motion into the linear motion through the flower kneading transmission assembly (the main lever 491, the lever connecting rod 492 and the auxiliary lever 493, which is not described in detail in the prior art), and then drives the flower kneading cutter assembly 42 to form the cutter flower kneading motion through the flower kneading connecting rod 48.
The thimble 46 moves up and down on the cylindrical cam 45, and transmits the displacement power to the cutter head seat 43, so that all the components mounted on the cutter head seat 43 move up and down together to form the 'nodding' action in the kneading process.
The spline main shaft 44 transmits power to the top flat cam 411 through a top flat bevel gear pair (the top flat bevel gear 410 and the gear at the bottom end of the spline main shaft 44 which are meshed with each other), and the top flat mechanism 412 moves up and down under the driving of the top flat cam 411.
As shown in fig. 3, the kneading flower-shaped cutter assembly 42 includes a cutter holder 421 fixed on the cutter holder disk 43, a rotary disk 422 is arranged in a step ring of the top surface of the cutter holder 421, a plurality of guide grooves 425 are uniformly formed on the rotary disk 422 along the circumferential direction, the connecting assembly 424 passes through the guide grooves to connect the kneading flower-shaped cutters 423 located on the inner side of the cutter holder disk 43, and a connecting rod 426 connected with the kneading flower-shaped connecting rod 48 is arranged on the rotary disk 422.
Connecting assembly 424 is prior art and includes outer hex bolts, spacers, capstan guide shaft keys, pinch knife guides, guide key pins.
As shown in figure 4, the packing auger stuffing guiding mechanism 2 comprises two charging basket assemblies 21 which are arranged in bilateral symmetry, a pair of variable-pitch packing augers 22 are arranged in the charging basket assemblies 21, the rear ends of the variable-pitch packing augers 22 extend into a charging basket gear box 23 and are provided with gear sets, the two pairs of variable-pitch packing augers 22 are respectively connected with a stuffing guiding motor through the gear sets at the rear ends in a transmission manner, a material stirring assembly 24 is arranged in the front end of each charging basket assembly 21, the material stirring assemblies 24 at two sides are in transmission connection through a material stirring gear box 25 positioned between the two charging basket assemblies 21, the material stirring gear box 25 is connected with a material stirring motor through a transmission assembly, the front ends of the variable-pitch packing augers 22 extend into a discharging basket 26, a discharging variable-pitch packing auger 27 perpendicular to the variable-pitch packing augers 22 is arranged in the discharging basket 26, the discharging ends of the discharging baskets 26 at two sides are connected with a pressurizing stuffing guiding pipe mechanism 3 positioned between the discharging baskets 26 at two sides, one end of the discharging variable-pitch packing auger 27 extends to the communicating part of the discharging basket 26 and the pressurizing stuffing guiding pipe mechanism 3, The other end is externally connected with a discharging gear box, and the discharging gear boxes on the two sides are respectively connected with a discharging motor through a transmission assembly.
One side of the charging basket component 21 is a leather charging basket, and the other side of the charging basket component 21 is a filling charging basket.
When stuffing is guided, the two independent stuffing guiding motors respectively provide power for the variable-pitch packing augers 22 in the left and right charging basket assemblies, so that the independent speed regulation of the variable-pitch packing augers 22 in the left and right charging basket assemblies is realized, the independent material shifting motors provide power for the material shifting gear box 25, and the material shifting gear box 25 drives the material shifting assemblies 24 on the two sides to rotate for material shifting.
As shown in fig. 5 and 6, the pressurized stuffing guiding tube mechanism includes a tube body composed of a stuffing guiding tube 31 and a middle base tube 32 coaxially and spacedly sleeved outside the stuffing guiding tube 31, wherein the upper parts of both sides of the tube body are respectively provided with a skin inlet 33 and a stuffing inlet 34, the stuffing inlet 34 is communicated with the inner cavity of the stuffing guiding tube 31, the skin inlet 33 is communicated with the cavity between the middle base tube 32 and the stuffing guiding tube 31, a stirring blade 35 is sleeved near the lower end in the cavity between the middle base tube 32 and the stuffing guiding tube 31, the outer side surface of the stirring blade 35 is connected with a stirring gear 36 positioned outside the end of the middle base tube 32, the stirring gear 36 is engaged and connected with a power gear 37 positioned on the side surface of the middle base tube 32, the power gear 37 is connected with a stuffing guiding motor (not shown) through a transmission assembly, and a stuffing discharging port 38 at the bottom end of the stuffing guiding tube 31 is higher than a skin discharging port 39 formed by inward folding of the bottom end of the middle base tube 32.
As shown in fig. 7, the stirring blade 35 includes a tube 351, 3 inclined blades 352 are uniformly provided on the inner surface of the tube 351 in the circumferential direction, and a mounting groove 353 which is matched with the stirring gear 36 in shape is provided on the outer surface of the tube 351.
The blades 352 are rectangular in shape, and the blades 352 are preferably angled at about 45 degrees relative to the central axis of the tube 351.
When guiding stuffing, stuffing enters the stuffing guiding pipe 31 through the stuffing inlet 34 at the side of the middle base pipe 32 and the stuffing guiding pipe 31 to form stuffing columns, and wrapper enters the cavity between the inner wall of the middle base pipe 32 and the outer wall of the stuffing guiding pipe 31 through the wrapper inlet 33 at the other side to form wrapper columns, and finally, wrapper wrapping and stuffing are extruded through the bottom outlet.
The power gear 37 provides power for the stirring gear 36, the stirring gear 36 drives the internal stirring blades 35 to do circular motion, the stirring blades 35 pressurize and extrude the materials between the middle seat pipe 32 and the stuffing guide pipe 31, stirring and rounding are achieved, the materials are uniform and smooth, and the manual production can be compared with the manual production.
As shown in fig. 8-10, a protective cavity 6 is provided outside the conveyor belt mechanism 5, the flower pinching mechanism 4 is installed on one side of the top end of the protective cavity 6, the conveyor belt mechanism 5 includes an obliquely arranged conveyor belt 61, one end of the conveyor belt 61 close to the flower pinching mechanism 4 is inclined upward, a water receiving cavity 62 is installed on one side of the top end of the conveyor belt 61 close to the flower pinching mechanism 4, the water receiving cavity 62 is connected with an external water pump through a water pipe, and a group of nozzles 63 which are uniformly distributed are connected to the bottom end of the water receiving cavity 62 along the width direction of the conveyor belt 61; when the moon cake conveying device works, the conveying belt 61 used for conveying moon cakes in the prior art is often exposed to the external environment, so that the moon cakes on the conveying belt 61 are easily influenced by dust impurities or human factors, and bacteria and moon cake residues are easily remained when the conveying belt 61 is used for a long time, so that the processing quality and the taste of the moon cakes are influenced; when the stuffing wrapping machine works, moon cakes are processed by the pattern pinching mechanism 4 and then fall onto the conveying belt 61 in the protection cavity 6, so that the moon cakes can be isolated from the outside through the protection cavity 6 in the transportation process, the condition that the processing quality of the moon cakes is influenced by external dust impurities or interference of human factors is reduced, meanwhile, when the conveying belt 61 needs to be cleaned after being used for a long time, the water pump fills water into the water receiving cavity 62, the moving conveying belt 61 is automatically washed through the nozzle 63 at the bottom end of the water receiving cavity 62, the impurities and bacteria in the conveying belt 61 can be cleaned, the processing taste of the moon cakes is improved, meanwhile, the conveying belt 61 does not need to be cleaned manually at regular time, the labor burden of workers is greatly reduced, meanwhile, water flow is sprayed from the nozzle 63 and can flow to the other end of the conveying belt 61 along the inclined conveying belt 61 and is collected, reduce flowing everywhere of rivers and cause the condition of pollution to the processing scene, the conveyer belt 61 of slope simultaneously can reduce rivers and remain in piling up on the surface to make conveyer belt 61 can be quicker drying after washing, reduce breeding of bacterium, thereby make the encrusting machine add man-hour more sanitary to the moon cake.
Clamping grooves 64 matched with the shape of the conveyor belt 61 are formed in the inner walls of the protection cavities 6 corresponding to the two sides of the conveyor belt 61 respectively, the two sides of the conveyor belt 61 extend into the clamping grooves 64 respectively, a group of uniformly distributed rolling balls 65 are rotatably connected to the outer wall and the inner wall of the conveyor belt 61 in the clamping grooves 64 respectively, rolling grooves matched with the clamping grooves 64 and the rolling balls 65 are formed in the positions, corresponding to the rolling balls 65, of the clamping grooves 64, guide grooves 66 are formed in the bottoms of the inner ends of the clamping grooves 64, flexible magnetic layers 67 are embedded in the middle of the conveyor belt 61, an electromagnet 68 is installed in the middle of one end of the conveyor belt 61, and the flexible magnetic layers 67 at the top end of the conveyor belt 61 can be repelled when the electromagnet 68 works; when the cleaning machine works, when the spray head cleans the moving conveyor belt 61, because the side edge of the conveyor belt 61 extends into the clamping groove 64, the water flow at the side edge of the conveyor belt 61 can flow into the guide groove 66 in the clamping groove 64, and intensively flows to the end part of the conveyor belt 61 along the inclined guide groove 66 and is collected, the condition that the water flow flows from the side edge of the conveyor belt 61 around is reduced, meanwhile, the conveyor belt 61 can roll in the rolling groove through the rolling ball 65 during moving, the friction resistance during relative movement between the conveyor belt 61 and the clamping groove 64 is greatly reduced, and after the cleaning of the conveyor belt 61 is finished, the electromagnet 68 works and repels the flexible magnetic layer 67 in the top conveyor belt, so that the flexible magnetic layer 67 moves to one side far away from the electromagnet 68 and drives the middle part of the conveyor belt 61 to swell, and the residual water drops of the conveyor belt 61 can flow to the clamping grooves 64 at both sides, subsequently through the motion of control conveyer belt 61, make the conveyer belt 61 middle part that electro-magnet 68 can drive the motion swell in proper order, thereby can carry out abundant efficient clearance to conveyer belt 61 surface remaining water droplet, further reduce breeding of bacterium on conveyer belt 61, and drive conveyer belt 61 middle part through mutually supporting of electro-magnet 68 and flexible magnetic layer 67 and swell, it leads to the great and the condition of wearing and tearing of conveyer belt 61 running resistance to reduce conveyer belt 61 through external extrusion structure direct extrusion, thereby make the clear up work of conveyer belt 61 surface water droplet can effectual going on smoothly.
The bottom end of the water receiving cavity 62 is connected with a push rod 69, the bottom end of the push rod 69 is connected with a material storage cavity 7, an opening at the bottom end of the material storage cavity 7 is rotatably connected with a cylindrical roller 71, the side wall of the roller 71 is attached to the inner wall of the material storage cavity 7, a group of feeding grooves 72 which are uniformly distributed in an annular mode are formed in the side wall of the roller 71, and a group of scraping strips 73 are connected to the outer wall of the material storage cavity 7; during operation, before the sprayer washes the conveying belt 61, the push rod 69 pushes the storage cavity 7 to move downwards, the roller 71 and the scraping strip 73 are attached to the conveying belt 61, then the conveying belt 61 can drive the roller 71 to roll during movement, when the feed chute 72 on the roller 71 moves to the inside of the storage cavity 7, cleaning liquid stored in the feed chute 72 in advance can flow into the feed chute 72, then the roller 71 can synchronously drive the feed chute 72 to move to the position where the conveying belt 61 is attached in subsequent rotation, so that the cleaning liquid in the feed chute can flow into the conveying belt 61, then the scraping strip 73 can push and scrape the accumulated cleaning liquid on the conveying belt 61 evenly on the surface of the conveying belt 61, and scrape and sweep residual impurities on the surface of the conveying belt 61, and then the conveying belt 61 is cleaned through subsequent sprayers, so that the cleaning effect of the conveying belt 61 is greatly improved.
The feeding groove 72 is connected with a sliding plate 74 in a sliding manner, the outer end of the sliding plate 74 is arranged in an arc shape matched with the shape of the side wall of the roller 71, the side wall of the sliding plate 74 is attached to the inner wall of the feeding groove 72, an elastic piece 75 is connected between the sliding plate 74 and the inner end of the feeding groove 72, the side wall of the outer end of the feeding groove 72 is respectively connected with a limiting block 76, the outer end of the sliding plate 74 is provided with a groove 77 matched with the limiting block 76, the inner wall of the storage cavity 7 corresponding to the inner end of the roller 71 is connected with a magnetic plate 78, the magnetic plate 78 is provided with a liquid leakage groove 79, one side of the magnetic plate 78 is connected with a stop block 80, the stop block 80 and one side of the magnetic plate 78 close to the roller 71 are arranged in an arc shape and attached to the side wall of the roller 71, the sliding plate 74 is made of a magnetic material, and the sliding plate 74 can repel the side of the magnetic plate 78 when moving to one side of the magnetic plate 78, the outer wall of the material storage cavity 7 is connected with a group of scraping strips 73; during operation, because it contains the air to rotate in the chute 72 of storage cavity 7, influence the cleaning solution and effectively flow in to chute 72, through setting up the inside structure of chute 72 this moment, when chute 72 is located the one side that is close to magnetic sheet 78, magnetic sheet 78 repels slide 74 and compresses elastic component 75 this moment, make slide 74 effectual to chute 72 internal motion and inhale the cleaning solution, later on when chute 72 drives the cleaning solution and changes out storage cavity 7 from the arcwall face of dog 80, compressed elastic component 75 can promote slide 74 to chute 72 outer end this moment, thereby make the washing liquid in chute 72 can more fully effectual discharge, slide 74 can play the shutoff effect to the notch of chute 72 simultaneously, reduce the inside condition of influencing follow-up transport cleaning solution because of remaining the air of chute 72.
Example two:
referring to fig. 11, an annular groove 81 is formed inside the roller 71, and a pressure relief groove 82 communicating the annular groove 81 with the inner end of the feeding groove 72 is formed inside the roller 71; during operation, when the sliding plate 74 in the storage cavity 7 slides towards the inner end of the corresponding feeding groove 72 under the action force of the magnetic plate 78, the gas in the feeding groove 72 can be pressed into the feeding groove 72 outside the storage cavity 7 through the pressure relief groove 82 and the annular groove 81, so that the gas pressure in the feeding groove 72 inside and outside the storage cavity 7 can be synchronously adjusted, the sliding plate 74 in the feeding groove 72 can move more easily and effectively, and the working effect of the roller 71 is greatly improved.
The working principle is as follows: when kneading flowers, the main motor 41 drives the spline main shaft 44 to rotate, the spline main shaft 44 drives the flower kneading cam 47 to rotate, the flower kneading cam 47 converts the rotary motion into linear motion through the flower kneading transmission assembly (the main lever 491, the lever connecting rod 492 and the auxiliary lever 493, which is not described in detail in the prior art), and then drives the flower kneading cutter assembly 42 to form cutter flower kneading motion through the flower kneading connecting rod 48; the thimble 46 moves up and down on the cylindrical cam 45, and transfers the displacement power to the cutter head seat 43, so that all the components arranged on the cutter head seat 43 move up and down together to form the 'nodding' action in the kneading process; the spline main shaft 44 transmits power to the top flat cam 411 through a top flat bevel gear pair (a top flat bevel gear 410 and a gear at the bottom end of the spline main shaft 44 which are meshed with each other), and the top flat mechanism 412 moves up and down under the driving of the top flat cam 411; when stuffing is guided, the two independent stuffing guiding motors respectively provide power for the variable-pitch packing augers 22 in the left and right charging bucket assemblies, so that the independent speed regulation of the variable-pitch packing augers 22 in the left and right charging bucket assemblies is realized, the independent material shifting motors provide power for the material shifting gear box 25, and the material shifting gear box 25 drives the material shifting assemblies 24 on the two sides to rotate for material shifting; the power gear 37 gives power to the stirring gear 36, the stirring gear 36 drives the internal stirring blades 35 to do circular motion, and the stirring blades 35 pressurize and extrude the materials between the middle seat pipe 32 and the stuffing guide pipe 31, so that stirring and rounding are realized, and the materials are uniform and smooth and can be compared with manual production; moon cakes drop onto the conveying belt 61 in the protective cavity 6 after being processed by the pattern pinching mechanism 4, so that the moon cakes can be isolated from the outside through the protective cavity 6 in the transportation process, the condition that the processing quality is influenced by external dust impurities or interference of human factors is reduced, meanwhile, when the conveying belt 61 needs to be cleaned after being used for a long time, the water pump fills water into the water receiving cavity 62 and automatically washes the moving conveying belt 61 through the nozzle 63 at the bottom end of the water receiving cavity 62, so that the impurities and bacteria in the conveying belt 61 can be cleaned, the processing taste of the moon cakes is improved, meanwhile, the conveying belt 61 does not need to be cleaned manually at regular time, the labor burden of workers is greatly reduced, meanwhile, water flow is sprayed out from the nozzle 63 and can flow to the other end of the conveying belt 61 along the inclined conveying belt 61 and be collected, and the condition that the processing site is polluted due to flowing of the water flow is reduced, meanwhile, the inclined conveying belt 61 can reduce the accumulation and residue of water flow on the surface, so that the conveying belt 61 can be dried more quickly after being washed, the breeding of bacteria is reduced, and the stuffing wrapping machine is more sanitary when processing moon cakes; when the spray head cleans the moving conveyor belt 61, because the side edge of the conveyor belt 61 extends to the inside of the clamping groove 64, the water flow at the side edge of the conveyor belt 61 can flow into the guide groove 66 in the clamping groove 64, and intensively flows to the end part of the conveyor belt 61 along the inclined guide groove 66 and is collected, the situation that the water flow flows from the side edge of the conveyor belt 61 all around is reduced, meanwhile, the conveyor belt 61 can roll in the rolling groove through the rolling balls 65 when moving, the friction resistance during the relative movement between the conveyor belt 61 and the clamping groove 64 is greatly reduced, and after the cleaning of the conveyor belt 61 is finished, the electromagnet 68 works and repels the flexible magnetic layer 67 in the top conveyor belt, so that the flexible magnetic layer 67 moves to the side far away from the electromagnet 68 and drives the middle part of the conveyor belt 61 to swell, and the residual water drops of the conveyor belt 61 can flow to the clamping grooves 64 at both sides, then, by controlling the movement of the conveyor belt 61, the electromagnet 68 can drive the middle part of the conveyor belt 61 to sequentially bulge, so that the residual water drops on the surface of the conveyor belt 61 can be cleaned fully and efficiently, the breeding of bacteria on the conveyor belt 61 is further reduced, the middle part of the conveyor belt 61 is bulged by the mutual matching of the electromagnet 68 and the flexible magnetic layer 67, the conditions of large running resistance and abrasion of the conveyor belt 61 caused by the direct extrusion of the conveyor belt 61 through an external extrusion structure are reduced, and the cleaning work of the water drops on the surface of the conveyor belt 61 can be smoothly and effectively carried out; before the spray head washes the conveyor belt 61, the push rod 69 pushes the storage cavity 7 to move downwards, the roller 71 and the scraping strip 73 are attached to the conveyor belt 61, then the conveyor belt 61 can drive the roller 71 to roll when moving, when the feed chute 72 on the roller 71 moves to the inside of the storage cavity 7, cleaning liquid pre-stored in the storage cavity can flow into the feed chute 72, then the roller 71 can synchronously drive the feed chute 72 to move to the position attached to the conveyor belt 61 in subsequent rotation, so that the cleaning liquid in the storage cavity can flow into the conveyor belt 61, then the scraping strip 73 can push and scrape the cleaning liquid accumulated on the conveyor belt 61 evenly on the surface of the conveyor belt 61 and scrape residual impurities on the surface of the conveyor belt 61, and then the conveyor belt 61 is cleaned through the subsequent spray head, so that the cleaning effect of the conveyor belt 61 is greatly improved; because it contains the air to rotate the chute 72 of storage cavity 7, influence the cleaning solution and effectively flow in to chute 72, through setting up the inside structure of chute 72 this moment, when chute 72 is located the one side that is close to magnetic sheet 78, magnetic sheet 78 repels slide 74 and compresses elastic component 75 this moment, make slide 74 effectual to chute 72 internal motion and inhale the cleaning solution, later when chute 72 drives the cleaning solution and changes out storage cavity 7 from the arcwall face of dog 80, compressed elastic component 75 can promote slide 74 to chute 72 outer end this moment, thereby make the washing liquid in chute 72 can more fully effectual discharge, slide 74 can play the shutoff effect to the notch of chute 72 simultaneously, reduce the inside condition of influencing follow-up transport cleaning solution because of remaining the air of chute 72.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, and that various changes and modifications may be made without departing from the spirit and scope of the invention as defined by the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (10)

1. The utility model provides a full-automatic novel intelligent food encrusting machine which characterized in that: the filling machine comprises a packing auger stuffing guide mechanism (2) arranged on the top surface of a rack (1), and a pressurizing stuffing guide pipe mechanism (3), a flower pinching mechanism (4) and a conveying belt mechanism (5) which are arranged on the side surface of the rack (1), wherein two discharge ends of the packing auger stuffing guide mechanism (2) are respectively connected with two feed ends of the pressurizing stuffing guide pipe mechanism (3), the flower pinching mechanism (4) is positioned below the discharge end of the pressurizing stuffing guide pipe mechanism (3), and the conveying belt mechanism (5) is positioned below the flower pinching mechanism (4);
the packing auger stuffing guide mechanism (2) comprises two charging basket components (21) which are arranged in bilateral symmetry, a pair of variable-pitch packing augers (22) are arranged in the charging basket components (21), the rear ends of the variable-pitch packing augers (22) extend into a charging basket gear box (23) and are provided with gear sets, the two pairs of variable-pitch packing augers (22) are respectively connected with a stuffing guide motor through the gear sets at the rear ends in a transmission manner, a material stirring component (24) is arranged in the front end of the charging basket component (21), the material stirring components (24) at two sides are in transmission connection through a material stirring gear box (25) positioned between the two charging basket components (21), the material stirring gear box (25) is connected with a material stirring motor through a transmission component, the front end of the variable-pitch packing auger (22) extends into a discharging basket (26), a discharging variable-pitch packing auger (27) which is vertical to the variable-pitch packing auger (22) is arranged in the discharging basket (26), the discharging ends at two sides are connected with a stuffing guide pipe mechanism (3) positioned between the discharging baskets (26), one end of the discharging variable-pitch auger (27) extends to the communication position of the discharging barrel (26) and the pressurizing stuffing guide pipe mechanism (3), the other end is externally connected with a discharging gear box, and the discharging gear boxes on the two sides are respectively connected with a discharging motor through a transmission assembly; the charging basket component (21) on one side is a leather charging basket, and the charging basket component (21) on the other side is a stuffing charging basket;
the pressurizing stuffing guide pipe mechanism (3) comprises a pipe body consisting of a stuffing guide pipe (31) and a middle base pipe (32) coaxially sleeved on the outer side of the stuffing guide pipe (31) at intervals, the upper parts of the two sides of the pipe body are respectively provided with a skin material inlet (33) and a stuffing material inlet (34), the stuffing material inlet (34) is communicated with the inner cavity of the stuffing guide pipe (31), the skin material inlet (33) is communicated with the cavity between the middle base pipe (32) and the stuffing guide pipe (31), a stirring blade (35) is sleeved in the cavity between the middle base pipe (32) and the stuffing guide pipe (31) and close to the lower end, the outer side surface of the stirring blade (35) is connected with a stirring gear (36) positioned outside the end part of the middle base pipe (32), the stirring gear (36) is meshed and connected with a power gear (37) positioned on the side surface of the middle base pipe (32), the power gear (37) is connected with a stuffing guide motor through a transmission assembly, and a bottom end discharge port (38) of the stuffing guide pipe (31) is higher than a skin material discharge port (39) formed by folding the bottom end of the middle base pipe (32) inwards.
2. The full-automatic novel intelligent food encrusting machine as claimed in claim 1, wherein the stirring blade (35) comprises a tube body (351), 3 inclined blades (352) are uniformly arranged on the inner side surface of the tube body (351) along the circumferential direction, and an installation groove (353) matched with the stirring gear (36) in shape is arranged on the outer side surface of the tube body (351).
3. The full-automatic novel intelligent food encrusting machine according to claim 2, wherein the fan blades (352) are rectangular, and the included angle between the fan blades (352) and the central axis of the tube body (351) is 45 °.
4. A novel full-automatic intelligent food encrusting machine according to any one of claims 1 to 3, characterized in that the kneading flower mechanism (4) comprises a kneading flower knife component (42) arranged on a knife seat disk (43) and positioned on the outer side of the side surface of the machine frame (1) and a kneading flower driving mechanism arranged on the inner side of the side surface of the machine frame (1) and driving the kneading flower knife component (42), the kneading flower driving mechanism comprises a main motor (41) fixed on the machine frame (1), the output end of the main motor (41) faces downwards and is in transmission connection with a spline main shaft (44) through a transmission component, a cylindrical cam (45) is arranged on the middle part of the spline main shaft (44), a thimble (46) is arranged at the bottom of the knife seat disk (43) and is in contact with a groove on the surface of the cylindrical cam (45), the two sides of the knife seat disk (43) are in sliding connection with a kneading flower slide rail (414) fixed on the machine frame (1) through connecting pieces, the top end of the spline main shaft (44) is connected with the kneading flower cam (47), hold between fingers colored cam (47) and connect through holding between the fingers colored drive assembly and hold between the fingers colored connecting rod (48) one end, hold between the fingers colored connecting rod (48) other end drive connection and hold between the fingers colored sword subassembly (42), flat bevel gear (410) in top is connected in spline main shaft (44) bottom gear engagement, flat bevel gear (410) coaxial coupling in top is flat cam (411), flat cam (411) side in top is connected flat mechanism (412) bottom side through the driving medium, flat mechanism (412) bottom another side and the flat slide rail (413) sliding connection in top fixed with frame (1) in top.
5. The full-automatic novel intelligent food encrusting machine according to claim 4, wherein the kneading flower cutter assembly (42) comprises a cutter holder (421) fixed on a cutter holder disc (43), a rotary disc (422) is arranged in a step of a top surface annular of the cutter holder (421), a plurality of guide grooves (425) are uniformly formed in the rotary disc (422) along the circumferential direction, the connecting assembly (424) penetrates through the guide grooves to be connected with the kneading flower cutter (423) positioned on the inner side of the cutter holder disc (43), and a connecting rod (426) connected with the kneading flower connecting rod (48) is arranged on the rotary disc (422).
6. The full-automatic novel intelligent food encrusting machine according to claim 5, characterized in that: conveyer belt mechanism (5) outside is equipped with protection chamber (6), hold between the fingers top one side at protection chamber (6) in colored mechanism (4), conveyer belt mechanism (5) are including conveyer belt (61) that the slope set up, conveyer belt (61) are close to the one end tilt up who holds between the fingers colored mechanism (4), conveyer belt (61) top is close to the one side of holding between the fingers colored mechanism (4) and installs water collecting chamber (62), water collecting chamber (62) lead to pipe links to each other with external water pump, just water collecting chamber (62) bottom is connected with a set of evenly distributed's nozzle (63) along conveyer belt (61) width direction.
7. The full-automatic novel intelligent food encrusting machine according to claim 6, wherein: offer respectively on the protection chamber (6) inner wall that conveyer belt (61) both sides correspond with conveyer belt (61) shape assorted draw-in groove (64), conveyer belt (61) both sides extend to draw-in groove (64) inside respectively, and rotate respectively on the outer wall of conveyer belt (61) that is arranged in draw-in groove (64) and the inner wall and be connected with a set of evenly distributed spin (65), draw-in groove (64) and spin (65) corresponding position department offer with it matched with roll groove, guide way (66) have been seted up to the inner bottom of draw-in groove (64), conveyer belt (61) middle part is inlayed and is had flexible magnetic layer (67), the one end mid-mounting of conveyer belt (61) has electro-magnet (68), just electro-magnet (68) during operation can repel flexible magnetic layer (67) on conveyer belt (61) top.
8. The full-automatic novel intelligent food encrusting machine according to claim 7, characterized in that: the bottom of water receiving cavity (62) is connected with push rod (69), the bottom of push rod (69) is connected with storage cavity (7), the bottom opening part of storage cavity (7) rotates and is connected with cylindric roller (71), the lateral wall of roller (71) is laminated with the inner wall of storage cavity (7) mutually, a set of annular equipartition chute feeder (72) have been seted up on the lateral wall of roller (71), be connected with a set of strickle (73) on storage cavity (7) outer wall.
9. The full-automatic novel intelligent food encrusting machine according to claim 8, characterized in that: the roller feeding device is characterized in that a sliding plate (74) is slidably connected inside the feeding groove (72), the outer end of the sliding plate (74) is arranged to be arc-shaped matched with the side wall of the roller (71), the side wall of the sliding plate (74) is attached to the inner wall of the feeding groove (72), an elastic piece (75) is connected between the sliding plate (74) and the inner end of the feeding groove (72), the side wall of the outer end of the feeding groove (72) is respectively connected with a limiting block (76), the outer end of the sliding plate (74) is provided with a groove (77) matched with the limiting block (76), the inner wall of the storage cavity (7) corresponding to the inner end of the roller (71) is connected with a magnetic plate (78), the magnetic plate (78) is provided with a liquid leakage groove (79), one side of the magnetic plate (78) is connected with a stop block (80), the stop block (80) and one surface, close to the roller (71), of the magnetic plate (78) are arranged to be arc-shaped surface and are attached to the side wall of the roller (71), the sliding plate (74) is made of magnetic material, and the sliding plate (74) can repel the magnetic plate (78) when moving to one side.
10. The full-automatic novel intelligent food encrusting machine according to claim 9, characterized in that: an annular groove (81) is formed in the roller (71), and a pressure relief groove (82) communicated with the annular groove (81) and the inner end of the feeding groove (72) is formed in the roller (71).
CN202210146737.9A 2022-02-17 2022-02-17 Full-automatic intelligent food encrusting machine Active CN114568457B (en)

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6170391B1 (en) * 1999-06-09 2001-01-09 Industrial Catering, Inc. Method and apparatus for preparing a folded food product
JP2006084688A (en) * 2004-09-15 2006-03-30 Fuji Xerox Co Ltd Cleaning device
CN207383486U (en) * 2017-07-27 2018-05-22 苏州稻香村食品有限公司 One kind pinches colored transmission device
CN211631562U (en) * 2017-11-27 2020-10-09 四川省温馨雅园食品有限公司 Multifunctional dual-stuffing encrusting machine
CN211687121U (en) * 2019-12-23 2020-10-16 上农农业科技江苏股份有限公司 Special lifting machine of food production line
CN215583031U (en) * 2021-06-25 2022-01-21 江阴市星亚食品机械有限公司 Packing machine auger leads filling mechanism
CN215583032U (en) * 2021-06-25 2022-01-21 江阴市星亚食品机械有限公司 Pressurizing stuffing guiding pipe mechanism of stuffing wrapping machine

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6170391B1 (en) * 1999-06-09 2001-01-09 Industrial Catering, Inc. Method and apparatus for preparing a folded food product
JP2006084688A (en) * 2004-09-15 2006-03-30 Fuji Xerox Co Ltd Cleaning device
CN207383486U (en) * 2017-07-27 2018-05-22 苏州稻香村食品有限公司 One kind pinches colored transmission device
CN211631562U (en) * 2017-11-27 2020-10-09 四川省温馨雅园食品有限公司 Multifunctional dual-stuffing encrusting machine
CN211687121U (en) * 2019-12-23 2020-10-16 上农农业科技江苏股份有限公司 Special lifting machine of food production line
CN215583031U (en) * 2021-06-25 2022-01-21 江阴市星亚食品机械有限公司 Packing machine auger leads filling mechanism
CN215583032U (en) * 2021-06-25 2022-01-21 江阴市星亚食品机械有限公司 Pressurizing stuffing guiding pipe mechanism of stuffing wrapping machine

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