CN113973861A - Continuous non-fried noodle extrusion molding machine - Google Patents

Continuous non-fried noodle extrusion molding machine Download PDF

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Publication number
CN113973861A
CN113973861A CN202111263913.9A CN202111263913A CN113973861A CN 113973861 A CN113973861 A CN 113973861A CN 202111263913 A CN202111263913 A CN 202111263913A CN 113973861 A CN113973861 A CN 113973861A
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China
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noodle
rack
frame
extrusion molding
molding machine
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CN202111263913.9A
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CN113973861B (en
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杨德良
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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
    • A21C9/02Apparatus for hanging or distributing strings of dough, such as noodles, spaghetti or macaroni, on bars
    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21CMACHINES OR EQUIPMENT FOR MAKING OR PROCESSING DOUGHS; HANDLING BAKED ARTICLES MADE FROM DOUGH
    • A21C11/00Other machines for forming the dough into its final shape before cooking or baking
    • A21C11/10Other machines for forming the dough into its final shape before cooking or baking combined with cutting apparatus
    • AHUMAN NECESSITIES
    • A21BAKING; EDIBLE DOUGHS
    • A21CMACHINES OR EQUIPMENT FOR MAKING OR PROCESSING DOUGHS; HANDLING BAKED ARTICLES MADE FROM DOUGH
    • A21C11/00Other machines for forming the dough into its final shape before cooking or baking
    • A21C11/16Extruding machines
    • 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
    • A21C9/04Apparatus for spreading granular material on, or sweeping or coating the surfaces of, pieces or sheets of dough

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  • Life Sciences & Earth Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Manufacturing And Processing Devices For Dough (AREA)

Abstract

The invention discloses a continuous non-fried noodle extrusion molding machine, which comprises: the flour spreading machine comprises an extrusion molding machine body, wherein a rack is installed on the lower side of the extrusion molding machine body, first conveying rollers are installed on the left side above the rack at equal intervals, and a flour spreading mechanism is arranged above the first conveying rollers; the flour pushing mechanism is arranged on the lower side of the first driving motor, and the first driving motor is mounted on the rack; the guide board, the inside rotation of guide board is connected with the second and passes the material roller. This continuous type non-fried noodle extrusion moulding machine effectively guides the conveying of noodless, and can spill on noodless and compaction flour in data send process, avoids the noodless after the shaping to bond each other, avoids influencing going on of follow-up operation, and noodless conveniently carry out the segmentation cutting after the shaping, automatic equivalent unloading, and the noodless of convenient equal length air-dry, continuous type operation, work efficiency is high.

Description

Continuous non-fried noodle extrusion molding machine
Technical Field
The invention relates to the technical field of non-fried noodle extrusion molding, in particular to a continuous non-fried noodle extrusion molding machine.
Background
The non-fried noodles are a food responding to healthy diet call of modern society, the dough is extruded to be strip-shaped, the noodles usually adopt continuous operation due to the manufacturing process, the dough is continuously extruded by an extrusion module for production, and continuous non-fried noodle extrusion molding machines on the market are various, but have some defects;
if the conveying of the noodles cannot be effectively guided, and the noodles are inconvenient to scatter and compact flour, the formed noodles are easy to bond with each other, the subsequent operation is influenced, the noodles are inconvenient to cut in sections after being formed, automatic equivalent blanking cannot be realized, the noodles with equivalent length are inconvenient to air-dry, and the working efficiency is low;
accordingly, we propose a continuous type non-fried noodle extrusion molding machine so as to solve the problems proposed in the above.
Disclosure of Invention
The invention aims to provide a continuous non-fried noodle extrusion molding machine, which solves the problems that the prior continuous non-fried noodle extrusion molding machine provided by the background art cannot effectively guide the conveying of noodles, is inconvenient to spread and compact flour on the noodles, the molded noodles are easy to bond with each other, the subsequent operation is influenced, the sectional cutting of the molded noodles is inconvenient, the automatic equivalent blanking cannot be realized, the noodles with equivalent length are inconvenient to air-dry, and the working efficiency is low.
In order to achieve the purpose, the invention provides the following technical scheme: a continuous non-fried noodle extrusion molder comprising:
the flour spreading machine comprises an extrusion molding machine body, wherein a rack is installed on the lower side of the extrusion molding machine body, first conveying rollers are installed on the left side above the rack at equal intervals, and a flour spreading mechanism is arranged above the first conveying rollers;
the flour pushing mechanism is arranged on the lower side of the first driving motor, and the first driving motor is mounted on the rack;
the guide plate is internally and rotatably connected with a second material conveying roller, wherein the second material conveying roller is tightly arranged in the guide plate, and the guide plate is obliquely distributed on the rack;
the output end of the second driving motor is provided with a tangent plane mechanism, the second driving motor is fixed above the left side of the rack, and a supporting mechanism is arranged below the left side of the rack;
the supporting frame is fixed on the left side of the rack, a clamping groove in the outer side of the supporting frame is connected with a transmission belt, and an installation mechanism is arranged on the left side of the supporting frame;
the noodle airing frame is disassembled on the supporting frame through the mounting mechanism, and noodle airing grooves connected with the noodle airing rod clamping grooves are formed in the upper portion of the noodle airing frame at equal intervals.
Preferably, spill flour mechanism and include flour agitator and feed opening, the limiting plate has all been welded to both sides around the outside of first material transfer roller, and the upside of first material transfer roller is provided with flour agitator, the downside welding of flour agitator has the feed opening, and wherein the length of feed opening is less than the inboard length of limiting plate.
Preferably, the flour pushing mechanism comprises a linkage worm, a linkage worm wheel, a connecting frame and a flour pushing roller, the linkage worm is installed at the output end of the first driving motor, the linkage worm wheel rotating on the frame is connected to the right side of the linkage worm in a meshed mode, the connecting frame is integrally arranged on the lower side of the linkage worm wheel, and the flour pushing roller in contact with the noodles is rotatably connected to the inner side of the connecting frame.
Preferably, tangent plane mechanism includes fifth wheel, connection fan, head rod, second connecting rod, connecting plate and blade, the fifth wheel is installed to second driving motor's output, and the outside meshing of fifth wheel is connected with and realizes the pivoted connection fan in the frame, the outside welding of connection fan has the second connecting rod, and the top middle part rotation of second connecting rod is connected with the head rod, and wherein head rod and second connecting rod intercrossing set up.
Preferably, the right end of the first connecting rod slides on the rack, the left end of the first connecting rod rotates on the connecting plate, the left end of the second connecting rod slides on the connecting plate, and the blade is fixed on the inner side of the connecting plate and is also mounted on the rack.
Preferably, the supporting mechanism comprises a containing frame, a noodle airing rod, a push plate and an electric telescopic rod, the noodle airing rod is arranged in the containing frame closely, the containing frame closely has an L-shaped structure, a right side clamping groove of the noodle airing rod is connected with the push plate, and the electric telescopic rod fixed on the rack is installed on the right side of the push plate.
Preferably, the outside of drive belt is provided with the hookup that is "J" font structure, and the hookup sets up about the centrosymmetry of drive belt, drive belt and hookup all around the symmetry set up, and the position of hookup and the position of push pedal crisscross distribution each other.
Preferably, installation mechanism is including an installation section of thick bamboo, installation pole and supporting spring, all weld an installation section of thick bamboo about the left side of support frame, and the inside draw-in groove in left side of an installation section of thick bamboo is connected with the installation pole that longitudinal section is "L" font structure.
Preferably, a supporting spring is fixed on the left side above the mounting rod, a noodle airing frame is arranged inside the supporting spring, the top end of the supporting spring is fixed on the noodle airing frame, and the mounting rod is in sliding connection with the noodle airing frame.
Compared with the prior art, the invention has the beneficial effects that: the continuous non-fried noodle extrusion molding machine effectively guides the conveying of noodles, and can scatter and compact flour on the noodles in the conveying process, so that the molded noodles are prevented from being bonded with each other, the subsequent operation is prevented from being influenced, the noodles are conveniently cut in sections after being molded, the material is automatically fed in an equivalent amount, the noodles with equivalent length are conveniently dried in the air, the continuous operation is realized, and the working efficiency is high;
1. the noodle conveying device is provided with a flour stirring machine, a linkage worm and a flour pushing roller, the flour stirring machine can effectively guide the conveying of noodles through first material conveying rollers which are distributed at equal intervals, flour can be spread on the noodles in the conveying process, the linkage worm is meshed and connected with a linkage turbine to drive the flour pushing roller to roll, the formed noodles are prevented from being bonded with each other, and the subsequent operation is prevented from being influenced;
2. the noodle cutting machine is provided with a connecting wheel, a first connecting rod and a connecting plate, the connecting wheel is meshed with the connecting fan, a second connecting rod fixed on the connecting fan is rotatably connected with the first connecting rod, and the connecting plate can be driven to move through a linkage mechanism formed by combining the connecting wheel, the connecting fan, the first connecting rod, the second connecting rod and the connecting plate, so that sectional cutting and automatic equivalent blanking can be conveniently carried out after noodles are formed;
3. be provided with drive belt, support frame and push pedal, drive the fixed connection in the outside through the drive belt and collude the removal, the connection colludes and is connected with the face pole draw-in groove that dries in the air to the face pole that will dry in the air colludes the area and from holding the frame, and the cooperation tangent plane mechanism of face pole that dries in the air makes things convenient for the noodless of peer length to air-dry, continuous type operation, work efficiency is high.
Drawings
FIG. 1 is a schematic front view of the present invention;
FIG. 2 is a schematic side view of a cross-sectional structure of the flour spreading mechanism of the present invention;
FIG. 3 is a schematic front view of a flour pushing mechanism according to the present invention;
FIG. 4 is a schematic view of the connection structure of the guide plate and the second feed roller according to the present invention;
FIG. 5 is a schematic top view of the cutting mechanism of the present invention;
FIG. 6 is a schematic view of the overall structure of the supporting mechanism of the present invention;
FIG. 7 is a schematic view of the overall structure of the belt and hook assembly of the present invention;
FIG. 8 is a schematic view of the mounting mechanism of the present invention.
In the figure: 1. an extrusion molding machine body; 2. a frame; 3. a first transfer roller; 4. a limiting plate; 5. a flour stirring machine; 6. a feeding port; 7. a first drive motor; 8. linking a worm; 9. linking a turbine; 10. a connecting frame; 11. a flour pushing roller; 12. a guide plate; 13. a second transfer roller; 14. a second drive motor; 15. a connecting wheel; 16. a connecting fan; 17. a first connecting rod; 18. a second connecting rod; 19. a connecting plate; 20. a blade; 21. a containing rack; 22. airing the noodle rods; 23. pushing the plate; 24. an electric telescopic rod; 25. a transmission belt; 26. a support frame; 27. a connecting hook; 28. mounting the cylinder; 29. mounting a rod; 30. a support spring; 31. a noodle airing rack; 32. and (6) a noodle airing 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 derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
Referring to fig. 1-8, the present invention provides a technical solution: the utility model provides a continuous type non-fried dough extrusion moulding machine, including extrusion moulding machine body 1, frame 2, first conveying roller 3, limiting plate 4, flour agitator 5, feed opening 6, first driving motor 7, interlock worm 8, interlock turbine 9, link 10, push away flour roller 11, guide plate 12, second conveying roller 13, second driving motor 14, fifth wheel 15, connect fan 16, first connecting rod 17, second connecting rod 18, connecting plate 19, blade 20, hold frame 21, dry in the air a pole 22, push pedal 23, electric telescopic handle 24, drive belt 25, support frame 26, connect and collude 27, installation cylinder 28, installation rod 29, supporting spring 30, dry in the air a face frame 31 and dry in the air a face groove 32:
the device comprises an extrusion molding machine body 1, wherein a rack 2 is installed on the lower side of the extrusion molding machine body 1, first conveying rollers 3 are installed on the left side above the rack 2 at equal intervals, and a flour scattering mechanism is arranged above the first conveying rollers 3;
the flour pushing mechanism is arranged on the lower side of the first driving motor 7, wherein the first driving motor 7 is installed on the rack 2;
the guide plate 12, the inside of the guide plate 12 connects with the second to pass the feed roller 13 rotatably, wherein the second to pass the feed roller 13 and arrange closely in the guide plate 12, the guide plate 12 is distributed on the stander 2 slantingly;
the output end of the second driving motor 14 is provided with a tangent plane mechanism, the second driving motor 14 is fixed above the left side of the frame 2, and a supporting mechanism is arranged below the left side of the frame 2;
the supporting frame 26 is fixed on the left side of the rack 2, a clamping groove in the outer side of the supporting frame 26 is connected with a transmission belt 25, and an installation mechanism is arranged on the left side of the supporting frame 26;
the noodle airing frame 31 is disassembled on the supporting frame 26 through the installation mechanism, and noodle airing grooves 32 connected with the clamping grooves of the noodle airing rods 22 are formed above the noodle airing frame 31 at equal intervals.
As in the attached figure 2, the flour scattering mechanism comprises a flour stirring machine 5 and a feed opening 6, limiting plates 4 are welded on the front side and the rear side of the outside of the first material conveying roller 3, the flour stirring machine 5 is arranged on the upper side of the first material conveying roller 3, the feed opening 6 is welded on the lower side of the flour stirring machine 5, and the length of the feed opening 6 is smaller than that of the inner side of the limiting plate 4.
As shown in fig. 3, the flour pushing mechanism comprises a linkage worm 8, a linkage worm wheel 9, a connecting frame 10 and a flour pushing roller 11, the linkage worm 8 is installed at the output end of the first driving motor 7, the linkage worm wheel 9 rotating on the rack 2 is connected to the right side of the linkage worm 8 in a meshing manner, the connecting frame 10 is integrally arranged on the lower side of the linkage worm wheel 9, and the flour pushing roller 11 contacting with the noodles is rotatably connected to the inner side of the connecting frame 10.
As shown in fig. 5, the tangent plane mechanism includes a connection wheel 15, a connection fan 16, a first connection rod 17, a second connection rod 18, a connection plate 19 and a blade 20, the connection wheel 15 is installed at the output end of the second driving motor 14, the connection fan 16 rotating on the rack 2 is engaged and connected to the outer side of the connection wheel 15, the second connection rod 18 is welded to the outer side of the connection fan 16, the first connection rod 17 is rotatably connected to the middle of the upper portion of the second connection rod 18, and the first connection rod 17 and the second connection rod 18 are arranged in an intersecting manner.
As shown in fig. 5, the right end of the first connecting rod 17 slides on the frame 2, the left end of the first connecting rod 17 rotates on the connecting plate 19, the left end of the second connecting rod 18 slides on the connecting plate 19, and the blade 20 is fixed on the inner side of the connecting plate 19, wherein the blade 20 is also mounted on the frame 2.
As shown in fig. 6, the supporting mechanism comprises a containing frame 21, a noodle airing rod 22, a push plate 23 and an electric telescopic rod 24, the noodle airing rod 22 is closely arranged inside the containing frame 21, the containing frame 21 is closely in an L-shaped structure, a right clamping groove of the noodle airing rod 22 is connected with the push plate 23, and the electric telescopic rod 24 fixed on the rack 2 is installed on the right side of the push plate 23.
As shown in fig. 7, the outer side of the transmission belt 25 is provided with a connection hook 27 in a "J" shape, the connection hook 27 is symmetrically arranged about the center of the transmission belt 25, the transmission belt 25 and the connection hook 27 are symmetrically arranged front and back, and the positions of the connection hook 27 and the position of the push plate 23 are distributed in a staggered manner.
As shown in fig. 7, the mounting mechanism includes a mounting cylinder 28, a mounting rod 29 and a supporting spring 30, the mounting cylinder 28 is welded to the upper and lower sides of the left side of the supporting frame 26, and the mounting rod 29 with an L-shaped longitudinal section is connected to the internal slot of the left side of the mounting cylinder 28.
As shown in fig. 8, a supporting spring 30 is fixed on the left side above the mounting rod 29, a noodle airing frame 31 is arranged inside the supporting spring 30, the top end of the supporting spring 30 is fixed on the noodle airing frame 31, and the mounting rod 29 is slidably connected on the noodle airing frame 31.
Firstly, as shown in the attached drawing 1, pouring dough into an extrusion molding machine body 1, extruding the dough by the extrusion molding machine body 1 to form the dough into strips, uniformly distributing first material conveying rollers 3 above the extrusion molding machine body 1 at intervals, conveying the continuously extruded noodles by the first material conveying rollers 3, as shown in the attached drawing 4, fixing a guide plate 12 which is obliquely arranged above the left side of a rack 2, guiding the noodles by the leftmost first material conveying rollers 3 to fall on the guide plate 12, closely arranging second material conveying rollers 13 inside the guide plate 12, rotating the second material conveying rollers 13 inside the guide plate 12, assisting the movement of the noodles by the second material conveying rollers 13, cutting the noodles by a noodle cutting mechanism, then falling the cut noodles on a noodle airing rod 22 and falling on a noodle airing frame 31 by the guidance of a left transmission belt 25;
as shown in attached figures 1 and 2, flour is poured into a flour stirring machine 5, a packing auger arranged in the flour stirring machine 5 stirs the flour, the flour is scattered, the difficulty in blanking caused by flour accumulation is avoided, the flour is blanked through a blanking port 6 and falls on noodles conveyed by a first conveying roller 3, limiting plates 4 are arranged on the front side and the rear side of the outer portion of the first conveying roller 3, the limiting plates 4 limit the noodles, the noodles are prevented from being deviated and falling off, and the flour can be effectively scattered on all the noodles due to the fact that the length of the cross section of the blanking port 6 is smaller than the length of the inner side of each limiting plate 4;
then as shown in the attached drawing 3, a first driving motor 7 is turned on, the first driving motor 7 drives a linkage worm 8 installed at the output end to rotate, the first driving motor 7 is a servo motor and drives the linkage worm 8 to rotate clockwise and anticlockwise alternately, the linkage worm 8 drives a small-amplitude linkage turbine 9 meshed and connected with the outer side to rotate, a connecting frame 10 fixed at the bottom of the linkage turbine 9 drives a flour pushing roller 11 to move in a small amplitude, the flour pushing roller 11 rolls on the noodles and compacts the flour, the situation that the flour is only paved on the noodles in a virtual mode is avoided, waste and air pollution are reduced, the distance between the flour pushing roller 11 and the noodles is proper, the noodles cannot be broken, and the flour can be effectively compacted;
as shown in fig. 5, when flour passes through the noodle cutting mechanism, the second driving motor 14 is turned on, the second driving motor 14 drives the connecting wheel 15 installed at the output end thereof to rotate, the connecting wheel 15 drives the connecting fan 16 engaged therewith to rotate on the frame 2, the second connecting rod 18 fixed on the connecting fan 16 rotates around the frame 2, the left end of the second connecting rod 18 slides on the connecting plate 19, the second connecting rod 18 drives the first connecting rod 17 to rotate, the left end of the first connecting rod 17 rotates on the connecting plate 19, the right end of the first connecting rod 17 slides on the frame 2, since the first connecting rod 17 and the second connecting rod 18 are combined to form an "X" shaped structure, when the distance between the first connecting rod 17 and the second connecting rod 18 decreases, the first connecting rod 17 and the second connecting rod 18 pull the connecting plate 19 to move, the connecting plate 19 drives the blade 20 fixed thereto to move to the right side, the blade 20 cuts the noodles and cuts the noodles;
as shown in the attached drawings 1, 6 and 7, the transmission belt 25 continuously runs, the outer side of the transmission belt 25 moves in the form of the connecting hooks 27 arranged in central symmetry, a plurality of noodle airing rods 22 are placed in the containing frame 21, the noodle airing rod 22 at the rightmost side is connected with the clamping groove of the push plate 23, when the connecting hooks 27 move to the right side of the transmission belt 25, the connecting hooks 27 in the J-shaped structure can be connected with the clamping grooves of the noodle airing rods 22, the connecting hooks 27 continue to move to hook the noodle airing rods 22 and drive the noodle airing rods 22 to move, so that the noodle airing rods 22 at the leftmost side in the containing frame 21 are separated from the clamping grooves of the containing frame 21, then the electric telescopic rod 24 pushes the push plate 23 to move, the push plate 23 pushes the noodle airing rods 22 to move, the position is automatically compensated, when the connecting hooks 27 hook the noodle rods 22 and drive the noodle rods 22 to start moving to the left side, the left side of the noodle airing rods 22 is covered by the noodle strips, at this time, the second driving motor 14 runs, the connecting plate 19 is driven to move, the blade 20 cuts off the noodles, and the noodle airing rod 22, the supporting mechanism and the noodle cutting mechanism are matched with each other to realize continuous operation;
as shown in the attached drawing 1, the driving belt 25 drives the noodle airing bars 22 connected with the clamping grooves on the inner sides of the connecting hooks 27 to move to the top point of the driving belt 25, the noodle airing bars 22 naturally fall down and fall on the noodle airing frame 31, noodle airing grooves 32 are formed in the upper side of the noodle airing frame 31 at equal intervals, the noodle airing bars 22 can be effectively supported, the position of the noodle airing bars 22 is manually adjusted, when the noodle airing grooves 32 formed in the noodle airing frame 31 are fully hung, as shown in the attached drawing 8, the mounting bars 29 are pulled upwards to enable the mounting bars 29 to be separated from being connected with the clamping grooves of the mounting cylinders 28, the mounting bars 29 compress the supporting springs 30 and slide on the noodle airing frame 31, the mounting bars 29 are loosened, the supporting springs 30 push the mounting bars 29 to reset, the noodle airing frame 31 can be pushed away, a new noodle airing frame 31 is replaced, the position of the mounting bars 29 is adjusted, the elastic action of the supporting springs 30 pushes the mounting bars 29 to be connected with the clamping grooves of the mounting cylinders 28, the noodle airing frame 31 is fixed on the supporting frame 26, the stability of the noodle airing frame 31 can be ensured, and shaking is avoided.
This is the entire operation of the continuous non-fried noodle extrusion molding machine and is not described in detail in this specification as it is well known to those skilled in the art.
The standard parts used in the invention can be purchased from the market, the special-shaped parts can be customized according to the description of the specification and the accompanying drawings, the specific connection mode of each part adopts conventional means such as bolts, rivets, welding and the like mature in the prior art, the machines, the parts and equipment adopt conventional models in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, so that the detailed description is omitted.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that various changes in the embodiments and/or modifications of the invention can be made, and equivalents and modifications of some features of the invention can be made without departing from the spirit and scope of the invention.

Claims (9)

1. A continuous non-fried noodle extrusion molding machine, comprising:
the device comprises an extrusion molding machine body (1), wherein a rack (2) is installed on the lower side of the extrusion molding machine body (1), first conveying rollers (3) are installed on the left side above the rack (2) at equal intervals, and a flour scattering mechanism is arranged above the first conveying rollers (3);
the flour pushing mechanism is arranged on the lower side of the first driving motor (7), wherein the first driving motor (7) is installed on the rack (2);
the guide plate (12), the inside of the guide plate (12) is rotatably connected with a second material conveying roller (13), wherein the second material conveying roller (13) is closely arranged in the guide plate (12), and the guide plate (12) is obliquely distributed on the rack (2);
the cutting surface mechanism is mounted at the output end of the second driving motor (14), the second driving motor (14) is fixed above the left side of the rack (2), and a supporting mechanism is arranged below the left side of the rack (2);
the supporting frame (26) is fixed on the left side of the rack (2), a clamping groove in the outer side of the supporting frame (26) is connected with a transmission belt (25), and an installation mechanism is arranged on the left side of the supporting frame (26);
the noodle airing rack (31) is disassembled on the supporting frame (26) through an installation mechanism, and noodle airing grooves (32) connected with the clamping grooves of the noodle airing rods (22) are formed in the upper portion of the noodle airing rack (31) at equal intervals.
2. A continuous non-fried noodle extrusion molding machine as set forth in claim 1 wherein: spill flour mechanism and include flour agitator (5) and feed opening (6), limiting plate (4) have all been welded to both sides around the outside of first material transfer roller (3), and the upside of first material transfer roller (3) is provided with flour agitator (5), the downside welding of flour agitator (5) has feed opening (6), and wherein the length of feed opening (6) is less than limiting plate (4) inboard length.
3. A continuous non-fried noodle extrusion molding machine as set forth in claim 1 wherein: the noodle pushing mechanism comprises a linkage worm (8), a linkage worm wheel (9), a connecting frame (10) and a noodle pushing roller (11), the linkage worm (8) is installed at the output end of the first driving motor (7), the right side of the linkage worm wheel (8) is meshed and connected with the linkage worm wheel (9) which rotates on the rack (2), the connecting frame (10) is integrally arranged on the lower side of the linkage worm wheel (9), and the noodle pushing roller (11) which is in contact with noodles is rotatably connected to the inner side of the connecting frame (10).
4. A continuous non-fried noodle extrusion molding machine as set forth in claim 1 wherein: tangent plane mechanism includes fifth wheel (15), connects fan (16), head rod (17), second connecting rod (18), connecting plate (19) and blade (20), fifth wheel (15) are installed to the output of second driving motor (14), and the outside meshing of fifth wheel (15) is connected with and realizes pivoted connection fan (16) on frame (2), the outside welding of connecting fan (16) has second connecting rod (18), and the top middle part rotation of second connecting rod (18) is connected with head rod (17), wherein head rod (17) and second connecting rod (18) intercrossing sets up.
5. A continuous non-fried noodle extrusion molding machine according to claim 4, wherein: the right end of the first connecting rod (17) slides on the rack (2), the left end of the first connecting rod (17) rotates on the connecting plate (19), the left end of the second connecting rod (18) slides on the connecting plate (19), a blade (20) is fixed on the inner side of the connecting plate (19), and the blade (20) is also mounted on the rack (2).
6. A continuous non-fried noodle extrusion molding machine as set forth in claim 1 wherein: the supporting mechanism comprises a containing frame (21), a noodle airing rod (22), a push plate (23) and an electric telescopic rod (24), the noodle airing rod (22) is closely arranged in the containing frame (21), the containing frame (21) is closely of an L-shaped structure, a right side clamping groove of the noodle airing rod (22) is connected with the push plate (23), and the electric telescopic rod (24) fixed on the rack (2) is installed on the right side of the push plate (23).
7. A continuous non-fried noodle extrusion molding machine as set forth in claim 1 wherein: the outside of drive belt (25) is provided with connection hook (27) that are "J" font structure, and connects and collude (27) and set up about the centrosymmetry of drive belt (25), drive belt (25) and connection hook (27) are symmetrical around all to be set up, and the position of connecting and colluding (27) and the position of push pedal (23) crisscross distribution each other.
8. A continuous non-fried noodle extrusion molding machine as set forth in claim 1 wherein: installation mechanism is including installation section of thick bamboo (28), installation pole (29) and supporting spring (30), all weld installation section of thick bamboo (28) about the left side of support frame (26), and the inside draw-in groove in left side of installation section of thick bamboo (28) is connected with installation pole (29) that the longitudinal section is "L" font structure.
9. A continuous non-fried noodle extrusion molding machine according to claim 8, wherein: a supporting spring (30) is fixed on the left side above the mounting rod (29), a noodle airing frame (31) is arranged inside the supporting spring (30), the top end of the supporting spring (30) is fixed on the noodle airing frame (31), and the mounting rod (29) is in sliding connection with the noodle airing frame (31).
CN202111263913.9A 2021-10-28 2021-10-28 Continuous non-fried noodle extrusion molding machine Active CN113973861B (en)

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CN113973861B CN113973861B (en) 2022-08-16

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Cited By (1)

* Cited by examiner, † Cited by third party
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