Novel flexible forming and worm-shaped wobble plate automatic drawing machine and implementation method
Through multi-stage flexible molding and worm-shaped swaying technology, the problem of sticking knives and rollers and unstable taste in mechanized production of strips is solved, automatic production and quality consistency is achieved, and production efficiency and taste quality are improved.
Patent Information
- Application Number
- CN202510926928.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-04
- Publication Date
- 2025-08-15
AI Technical Summary
The existing strip production has low mechanization degree, low production efficiency, poor taste quality, and inconsistent standardization. In addition, traditional noodles machines are prone to sticking to the knife and roller when producing strips, resulting in the inability to produce large-scale production.
Multi-stage flexible molding technology and worm-shaped placing technology are adopted to realize multiple flexible stretching and volute-shaped placement of the strip blank through flexible molding device and worm-shaped placing device, solving the problem of sticking to the knife and roller, and maintaining a smooth and vigorous taste.
The automatic production of pull strips is realized, the problem of sticking knives and rollers is solved, the traditional taste is maintained, and deformation is prevented during storage and transportation is improved, and the production efficiency and quality consistency is improved.
Smart Images

Figure CN120477221A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of food machinery, and more particularly to a novel flexible forming and spiral-shaped automatic noodle-drawing machine and an implementation method thereof. Background Art
[0002] The production of noodle strips has always been done by hand, from mixing the dough, kneading the dough, letting it rise, making the strips, applying oil to plating. Due to its complicated production process and uneven technology, the taste is unstable and the quality is not uniform. Although some noodle-making machines have appeared on the market, they are all modified from noodle machines. Due to the high moisture content of traditional noodle strips, they are easy to stick to the knife and roller when produced by noodle machines. In order to solve the problem of sticking to the knife and roller, the only way to produce them is to reduce the moisture content and extrude the strips. However, after reducing the moisture content, the strips will become hard and cannot be stretched. Furthermore, the extruded strips lose their traditional smooth and chewy taste due to hardening. In short, the production of noodle strips with noodle machines has the disadvantages of low mechanization, low production efficiency, poor taste quality, and non-uniform standardization, which have so far restricted the large-scale production of noodle strips.
[0003] By adopting multi-stage flexible forming technology and snail-shaped plating technology, the pulled noodles are stretched flexibly multiple times and naturally formed by the dough tissue. This not only solves the problem of sticking to the knife and roller during the production process, but also solves the problem of the noodles becoming hard due to extrusion and losing their smooth and chewy taste. The use of snail-shaped plating technology can prevent the noodles from being deformed during storage and transportation, affecting the appearance and stretching effect of the noodles.
[0004] Therefore, how to provide a new type of automatic strip drawing machine with flexible forming and spiral swinging and its implementation method is one of the technical problems that need to be solved urgently in this field. Summary of the Invention
[0005] In view of this, the present invention provides a novel flexible forming and spiral swing plate automatic drawing machine and implementation method. The purpose is to solve the above-mentioned deficiencies.
[0006] In order to solve the above technical problems, the present invention adopts the following technical solutions:
[0007] A novel automatic strip drawing machine with flexible forming and snail-shaped swinging plate is characterized by comprising: a frame, a flexible forming device, and a snail-shaped swinging plate device.
[0008] Preferably, the volute wobble plate device comprises: a conjoined seat, a volute wobble plate offset mechanism; the volute wobble plate offset mechanism comprises: an offset gear, an offset rack, and a volute wobble plate offset motor;
[0009] The offset rack is fixed on the frame; the offset gear is fixed on the output end of the volute wobble plate offset motor; the volute wobble plate offset motor is fixed on the conjoined seat; the offset rack is meshed with the offset gear.
[0010] Preferably, the volute wobble plate device further comprises: a guide rail, a volute wobble plate rotating mechanism, and a slider; the volute wobble plate rotating mechanism comprises: a tray, a turntable, a turntable shaft, a clamping claw, a slide bar, a tension and retraction spring, a clamping claw rotating plate, a volute wobble plate rotating motor, and a rotating plate lever; the tray is placed on the upper end surface of the turntable; the handle of the clamping claw is located below the turntable, and the hook at the upper end of the clamping claw bends and extends to the top surface of the turntable and hooks to the outer periphery of the tray;
[0011] The handle of the clamping claw is fixedly connected to one end of the slide rod; the other inner end of the slide rod is in contact with the clamping claw rotating plate; the clamping claw rotating plate is sleeved on the turntable shaft; one end of the rotating plate lever is fixed to the clamping claw rotating plate;
[0012] The compression spring is arranged on the lower end surface of the turntable, and the compression spring is arranged parallel to the slide rod; one end of the compression spring is connected to the claw, and the other end of the compression spring is connected to the claw rotating plate;
[0013] The top end of the turntable shaft is fixedly connected to the lower end surface of the turntable, and the lower end of the turntable shaft is connected to the output end of the spiral wobble plate rotating motor;
[0014] The spiral wobble plate rotating motor is fixed on the one-piece seat; a slider is provided on the lower end surface of the one-piece seat; the slider is embedded in the guide rail; the guide rail is fixed on the frame; the one-piece seat is slidably connected to the guide rail through the slider.
[0015] Preferably, the flexible forming device comprises: an obliquely arranged strand guide groove, two horizontally symmetrically arranged flexible forming shafts, two horizontally symmetrically arranged flexible forming wheels, a sprocket, two horizontally symmetrically arranged synchronous gears and a flexible forming motor;
[0016] The two flexible forming shafts and the strand guide groove are fixedly connected to the frame through a flexible forming mechanism seat, and the strand guide groove is arranged above the two flexible forming shafts; the two flexible forming wheels are respectively arranged on the flexible forming shafts, and the wheel gaps of the two flexible forming wheels are arranged corresponding to the notches of the strand guide groove;
[0017] The two synchronous gears are respectively arranged at one side end of the flexible forming shaft, and the two synchronous gears are engaged with each other for transmission; the sprocket is arranged at the other end of one flexible forming shaft; the flexible forming motor is fixedly connected to the frame, and the output end of the flexible forming motor is connected to the sprocket through a chain.
[0018] Preferably, the flexible forming device is arranged in an array of multiple levels from top to bottom; the wheel gap of the flexible forming wheel at each level is arranged corresponding to the notch of the strand guide groove, and the wheel gap of the flexible forming wheel at multiple levels and the notch of the strand guide groove gradually shrink from top to bottom; the output end of the flexible forming device is arranged corresponding to the spiral swing plate device.
[0019] Preferably, the top-level sprocket is connected to the output end of the flexible molded motor through a chain; and the multi-level sprockets are connected to each other through chain transmission.
[0020] Preferably, it further comprises: a feeding conveyor belt; the output end of the feeding conveyor belt is arranged corresponding to the notch of the top-level strand guide groove.
[0021] A novel method for implementing a flexible forming and spiral-shaped swing plate automatic drawing machine includes the following steps:
[0022] S1, placing the strand on the feeding conveyor belt;
[0023] S2, turn on the power supply of the automatic strip drawing machine, and the flexible forming motor, the volute swing plate rotation motor, and the volute swing plate offset motor start to rotate at the same time;
[0024] S3, the feeding conveyor belt transports the strand toward the top guide wheel;
[0025] S4, after the strands are flexibly formed by multi-stage flexible forming wheels, they gradually become thinner to meet the requirements of finished strands;
[0026] S5, the finished strip falls from the final flexible forming wheel to the tray;
[0027] S6. Under the combined action of the rotation of the spiral swing plate rotating motor and the offset drive of the spiral swing plate offset motor, the finished pull strips are placed in the tray in a spiral shell shape, realizing the automated production of the pull strips and the uniform and neat placement of the pull strips on the tray.
[0028] Compared with the prior art, the present invention has achieved the following technical effects:
[0029] 1. The output end of the flexible forming device is arranged corresponding to the volute wobble plate device; the offset rack is fixed to the frame; the offset gear is fixed to the output end of the volute wobble plate offset motor, the volute wobble plate offset motor is fixed to the one-piece seat, the offset rack is meshed with the offset gear, the volute wobble plate offset motor is slidably connected to the offset rack through the offset gear, and the volute wobble plate offset motor is connected to the one-piece seat, the volute wobble plate offset motor drives the offset gear to mesh and rotate on the offset rack, thereby driving the one-piece seat to drive the tray to offset, ultimately achieving the technical effects of flexible stretching and forming and volute placement;
[0030] 2. The tray is placed on the upper end surface of the turntable; the hook at the upper end of the claw is hooked to the outer periphery of the tray through the turntable; the handle of the claw is fixedly connected to one end of the slide rod; the other inner end of the slide rod is in contact with the claw rotating plate; the claw rotating plate is sleeved on the turntable shaft; one end of the rotating plate lever is fixed to the claw rotating plate; the tension spring is arranged on the lower end surface of the turntable and is arranged parallel to the slide rod; one end of the tension spring is connected to the claw, and the other end of the tension spring is connected to the claw rotating plate; the claw can be driven to hook or release the tray by rotating the claw rotating plate;
[0031] 3. The fixed end of the rotating plate lever is fixedly connected to the claw rotating plate, and the claw rotating plate can be rotated by the rotating plate lever;
[0032] 4. The two flexible forming shafts and the strand guide groove are fixedly connected to the frame through a flexible forming mechanism seat, and the strand guide groove is arranged above the two flexible forming shafts; the two flexible forming wheels are respectively arranged on the flexible forming shafts, and the wheel gaps of the two flexible forming wheels are arranged corresponding to the notches of the strand guide groove; the two synchronous gears are respectively arranged on one side end of the flexible forming shaft, and the two synchronous gears are meshed with each other for transmission; the strand guide groove is used to guide and straighten the strand, and the flexible forming motor drives the sprocket to rotate, thereby driving the two flexible forming wheels to realize the flexible forming of the strand;
[0033] 5. The flexible forming device is arranged in a multi-stage array from top to bottom, and the wheel gap of the flexible forming wheel at each stage is arranged corresponding to the notch of the strand guide groove, and the wheel gap of the flexible forming wheel at multiple stages and the notch of the strand guide groove gradually decrease from top to bottom, which can be adjusted according to the thickness of the formed strand;
[0034] 6. The output end of the feeding conveyor belt is arranged corresponding to the notch of the top-level strand guide groove, and the feeding conveyor belt conveys the unstretched strand to the flexible stretching and forming device. BRIEF DESCRIPTION OF THE DRAWINGS
[0035] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0036] Figure 2 This is a schematic diagram of the volute swing plate mechanism clamping the tray of the present invention;
[0037] Figure 3 This is a schematic diagram of a tray release mechanism of the volute pan of the present invention;
[0038] Figure 4 Schematic diagram of the structure of the claw rotary plate of the present invention;
[0039] Figure 5 This is a schematic diagram of the cooperation between the tray, turntable and claws of the present invention;
[0040] Figure 6 It is a front view of the flexible forming device of the present invention;
[0041] Figure 7 It is a side view of the flexible forming device of the present invention;
[0042] Figure 8 It is a partial schematic diagram of the flexible forming device of the present invention;
[0043] Figure 9 A side view of the volute offset mechanism of the present invention;
[0044] Figure 10 A top view of the volute offset mechanism of the present invention;
[0045] In the picture:
[0046] 1- rack;
[0047] 2-flexible forming device; 21-strand blank guide groove; 22-flexible forming shaft; 23-flexible forming wheel; 24-sprocket; 25-synchronizing gear; 26-flexible forming motor; 27-flexible forming mechanism base;
[0048] 3 - Snail-shaped wobble plate device; 31 - Conjoined seat; 32 - Snail-shaped wobble plate offset mechanism; 321 - Offset gear; 322 - Offset rack; 323 - Snail-shaped wobble plate offset motor; 33 - Guide rail; 34 - Snail-shaped wobble plate rotation mechanism; 341 - Tray; 342 - Turntable; 343 - Turntable shaft; 344 - Claw; 345 - Slide rod; 346 - Tension / compression spring; 347 - Claw rotary plate; 348 - Snail-shaped wobble plate rotation motor; 349 - Rotary plate lever; 35 - Slider;
[0049] 4-Feeding conveyor belt;
[0050] 5- Finished product pull strip guide groove. DETAILED DESCRIPTION
[0051] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0052] Example
[0053] Reference Figure 1-10 A novel flexible forming and automatic volute wobble machine is shown, comprising a frame 1, a flexible forming device 2, and a volute wobble device 3. The volute wobble device 3 comprises a conjoined base 31, a volute wobble offset mechanism 32, a guide rail 33, a volute wobble rotation mechanism 34, and a slider 35. The volute wobble offset mechanism 32 comprises an offset gear 321, an offset rack 322, and a volute wobble offset motor 323. The offset rack 322 is fixed to the frame 1; the offset gear 321 is fixed to the output end of the volute wobble offset motor 323; the volute wobble offset motor 323 is fixed to the conjoined base 31, and the offset rack 322 meshes with the offset gear 321. The volute wobble offset motor 323 is slidably connected to the offset rack 322 via the offset gear 321, performing linear reciprocating offset motion.
[0054] In this embodiment, the volute swing plate offset motor 323 is arranged below the one-piece seat 31, and the offset gear 321 is arranged above the one-piece seat 31. The output shaft of the volute swing plate offset motor 323 passes through the one-piece seat 31 and is connected to the offset gear 321, and a bearing is provided between the output shaft of the volute swing plate offset motor 323 and the one-piece seat 31.
[0055] In another embodiment, in order to prevent the volute sway plate offset motor 323 from rotating on its own, the volute sway plate offset motor 323 is fixedly connected to the one-piece seat 31 through a connecting piece.
[0056] The spiral wobble plate rotating mechanism 34 includes: a tray 341, a turntable 342, a turntable shaft 343, a claw 344, a slide bar 345, a tension spring 346, a claw rotating plate 347, a spiral wobble plate rotating motor 348, and a rotating plate lever 349. The tray 341 is placed on the upper end surface of the turntable 342. The handle of the claw 344 is located below the turntable 342. The upper end hook of the claw 344 is bent and extended. To the top surface of the turntable 342 and hooked to the outer periphery of the tray 341; the lower end of the claw 344 is fixedly connected to one end of the slide bar 345; the other inner end of the slide bar 345 is in contact with the claw rotating plate 347; the claw rotating plate 347 is sleeved on the turntable shaft 343; one end of the rotating plate lever 349 is fixed on the claw rotating plate 347, and the claw 344 is adjusted to clamp or release the tray 341 by pushing the slide bar 345.
[0057] A tension spring 346 is provided on the lower end surface of the rotary disk 342 and is arranged parallel to the slide bar 345 ; one end of the tension spring 346 is connected to the claw 344 , and the other end of the tension spring 346 is connected to the claw rotating plate 347 ;
[0058] The top end of the turntable shaft 343 is fixedly connected to the lower end surface of the turntable 342, and the lower end of the turntable shaft 343 is connected to the output end of the volute swing plate rotating motor 348; the volute swing plate rotating motor 348 is fixed on the one-piece seat 31; a slider 35 is provided on the lower end surface of the one-piece seat 31; the slider 35 is embedded in the guide rail 33; the guide rail 33 is fixed on the frame 1; the one-piece seat 31 is slidably connected to the guide rail 33 through the slider 35.
[0059] In this embodiment, the spiral wobble plate rotating motor 348 is arranged below the guide rail 33, the turntable 342 is arranged above the guide rail 33, the turntable shaft 343 passes through the integrated seat 31, and a bearing is provided between the turntable shaft 343 and the integrated seat 31.
[0060] In another embodiment, in order to prevent the volute swing plate rotating motor 348 from rotating on its own, the volute swing plate rotating motor 348 is fixedly connected to the integrated seat 31 through a connecting piece.
[0061] The flexible forming device 2 includes: an inclined strip guide groove 21, two horizontally symmetrically arranged flexible forming shafts 22, two horizontally symmetrically arranged flexible forming wheels 23, a sprocket 24, two horizontally symmetrically arranged synchronous gears 25 and a flexible forming motor 26; the two flexible forming shafts 22 and the strip guide groove 21 are fixedly connected to the frame 1 through the flexible forming mechanism seat 27, and the strip guide groove 21 is arranged above the two flexible forming shafts 22; the two flexible forming wheels 23 are respectively arranged on the flexible forming shafts 22, and the wheel gaps of the two flexible forming wheels 23 are arranged corresponding to the notches of the strip guide groove 21; the two synchronous gears 25 are respectively arranged on one side end of the flexible forming shaft 22, and the two synchronous gears 25 are engaged with each other for transmission; the sprocket 24 is arranged at the other end of a flexible forming shaft 22.
[0062] The flexible forming motor 26 is fixedly connected to the frame 1, and the output end of the flexible forming motor 26 is connected to the sprocket 24 through a chain. The flexible forming motor 26 drives the sprocket 24 to rotate through the chain, and the sprocket 24 drives a flexible forming shaft 22 to rotate. Two meshing synchronous gears 25 drive the two flexible forming shafts 22 to rotate synchronously.
[0063] In this embodiment, the flexible forming device 2 is arranged in an array of three levels from top to bottom, and the wheel gap opening of the flexible forming wheel 23 of each level is arranged corresponding to the notch opening of the strand guide groove 21, and the wheel gap opening of the multi-level flexible forming wheel 23 and the notch opening of the strand guide groove 21 gradually shrink from top to bottom, thereby realizing the step-by-step flexible stretching and forming of the strand.
[0064] The output end of the flexible forming device 2 is arranged corresponding to the spiral wobble plate device 3 .
[0065] In this embodiment, the top-level sprocket 24 is connected to the output end of the flexible molding motor 26 through a chain; and the multi-level sprockets 24 are connected to each other through chain transmission.
[0066] This embodiment further includes a feeding conveyor belt 4, the output end of which is arranged corresponding to the notch of the top-level strand guide groove 21, and the feeding conveyor belt 4 is used to transport the fed strand.
[0067] In another embodiment, a finished strip guide groove 5 is further included to guide the finished strip formed by flexible stretching.
[0068] In this embodiment, the guide rails 33 are two parallel rails, which are convenient for improving sliding stability.
[0069] A novel method for implementing a flexible forming and spiral-shaped swing plate automatic drawing machine includes the following steps:
[0070] S1, placing the strand on the feeding conveyor belt 4;
[0071] S2, turn on the power supply of the automatic strip drawing machine, and the flexible forming motor 26, the volute swing plate rotation motor 348, and the volute swing plate offset motor 323 start rotating at the same time;
[0072] S3, the feeding conveyor belt 4 transports the strand toward the top strand guide trough 21;
[0073] S4, after the strands are flexibly stretched and formed by the multi-stage flexible forming wheel 23, they become thinner step by step to meet the requirements of the finished strands;
[0074] S5, the finished strip falls from the final flexible forming wheel 23 to the tray 341;
[0075] S6. Under the combined action of the rotation of the volute swing plate rotating motor 348 and the offset drive of the volute swing plate offset motor 323, the finished strips are placed in the tray 341 in a volute shape, realizing the automated production of the strips and the uniform and neat placement of the strips on the tray.
[0076] The specific operation steps of this embodiment are as follows:
[0077] Put flour, salt, water and other materials into the dough mixer, operate the dough mixer, mix the flour, salt and water into dough, and enter the next process;
[0078] Put the kneaded dough on the dough kneading machine, operate the dough kneading machine, knead the dough several times continuously, roll it into dough sheet, and enter the next process;
[0079] Put the kneaded dough sheet on the strand forming machine, operate the strand forming machine to cut the dough sheet into strips and enter the next process;
[0080] Take a strand and put it on the feeding conveyor belt 4, turn on the power button switch, the flexible forming motor 26, the spiral swing plate offset motor 323, and the spiral swing plate rotation motor 348 are started and run at the same time, the strand passes through the first-stage flexible stretching and forming device 2 for flexible stretching, and then enters the second-stage and third-stage flexible stretching and forming devices 2 for flexible stretching. Finally, the finished strand falls through the finished strand guide groove 5 to the tray 341 that rotates synchronously with the turntable;
[0081] At the moment the finished strips fall onto the tray 341, the tray 341 and the turntable 342 are driven by the volute swing plate rotating motor 348 to rotate, so that the finished strips fall onto the tray 341 and are swung into a circle. On the other hand, the tray 341 and the turntable 342 are driven by the volute swing plate offset motor 323 to linearly offset, so that every time the tray 341 and the turntable 342 rotate one circle, the tray 341 and the turntable 342 are linearly offset by a strip diameter, ensuring that the next circle of strips can be evenly placed outside the current circle of strips.
[0082] The tray 341 and the turntable 342 rotate to arrange the pull strips into a circle. The tray 341 and the turntable 342 offset in a straight line to arrange the pull strips in a spiral shape in the tray 341. When the tray 341 is full and the arrangement work is completed, the whole machine stops running automatically.
[0083] When it is necessary to swing the plate again, the power button switch is turned on again, and the flexible forming motor 26, the spiral swing plate offset motor 323, and the spiral swing plate rotation motor 348 are started and run again at the same time, and return to the original swing plate position, and start the swing plate work again until the second swing plate is completed. This cycle is repeated to complete the automatic production of the pull strip;
[0084] When the tray 341 is full of strips, the rotating plate lever 349 is moved to open the four claws 344 outward, releasing the tray 341. The tray 341 full of strips is removed and put into the sealing machine for packaging and sale.
[0085] The above description is merely a preferred embodiment of the present invention and does not limit the technical scope of the present invention. Therefore, any minor modifications, equivalent changes and modifications made to the above embodiments based on the technical essence of the present invention are still within the scope of the technical solution of the present invention.
Claims
1. A new type of flexible forming and spiral swing plate automatic drawing machine, characterized in that, include: A machine frame (1), a flexible forming device (2), and a volute swing plate device (3).
2. According to claim 1, a novel flexible forming and spiral swing plate automatic drawing machine is characterized in that: The volute-shaped wobble plate device (3) comprises: a conjoined seat (31), a volute-shaped wobble plate offset mechanism (32); the volute-shaped wobble plate offset mechanism (32) comprises: an offset gear (321), an offset rack (322), and a volute-shaped wobble plate offset motor (323); The offset rack (322) is fixed on the frame (1); the offset gear (321) is fixed on the output end of the volute wobble plate offset motor (323); the volute wobble plate offset motor (323) is fixed on the conjoined seat (31); the offset rack (322) is meshedly connected with the offset gear (321).
3. According to claim 1, a novel flexible forming and spiral swing plate automatic drawing machine is characterized in that: The volute wobble plate device (3) further comprises: a guide rail (33), a volute wobble plate rotating mechanism (34), and a slider (35); The volute-shaped wobble plate rotating mechanism (34) comprises: a tray (341), a turntable (342), a turntable shaft (343), a clamping claw (344), a slide bar (345), a tension spring (346), a clamping claw rotating plate (347), a volute-shaped wobble plate rotating motor (348), and a rotating plate lever (349); The tray (341) is placed on the upper end surface of the turntable (342); The handle of the clamping claw (344) is located below the rotating disk (342), and the hook at the upper end of the clamping claw (344) is bent and extended to the top surface of the rotating disk (342) and hooked to the outer periphery of the tray (341); The handle of the clamping claw (344) is fixedly connected to one end of the slide bar (345); the other inner end of the slide bar (345) is in contact with the clamping claw rotating plate (347); the clamping claw rotating plate (347) is sleeved on the turntable shaft (343); one end of the rotating plate lever (349) is fixed to the clamping claw rotating plate (347); The compression spring (346) is arranged on the lower end surface of the rotating disk (342), and the compression spring (346) is arranged in parallel with the sliding rod (345); one end of the compression spring (346) is connected to the clamping claw (344), and the other end of the compression spring (346) is connected to the clamping claw rotating plate (347); The top end of the turntable shaft (343) is fixedly connected to the lower end surface of the turntable (342), and the lower end of the turntable shaft (343) is connected to the output end of the spiral wobble plate rotating motor (348); The volute wobble plate rotating motor (348) is fixed on the one-piece seat (31); a slider (35) is provided on the lower end surface of the one-piece seat (31); the slider (35) is embedded in the guide rail (33); the guide rail (33) is fixed on the frame (1); The conjoined seat (31) is slidably connected to the guide rail (33) via the slider (35).
4. According to claim 1, a novel flexible forming and spiral swing plate automatic drawing machine is characterized in that: The flexible forming device (2) comprises: an obliquely arranged strand guide groove (21), two horizontally symmetrically arranged flexible forming shafts (22), two horizontally symmetrically arranged flexible forming wheels (23), a sprocket (24), two horizontally symmetrically arranged synchronous gears (25), and a flexible forming motor (26); The two flexible forming shafts (22) and the strand guide groove (21) are fixedly connected to the frame (1) through a flexible forming mechanism seat (27), and the strand guide groove (21) is arranged above the two flexible forming shafts (22); the two flexible forming wheels (23) are respectively arranged on the flexible forming shafts (22), and the wheel gaps of the two flexible forming wheels (23) are arranged corresponding to the notches of the strand guide groove (21); The two synchronous gears (25) are respectively arranged at one end portion of the flexible molded shaft (22), and the two synchronous gears (25) are meshed with each other for transmission; The sprocket (24) is arranged at the other end of the flexible molded shaft (22); The flexible forming motor (26) is fixedly connected to the frame (1), and the output end of the flexible forming motor (26) is transmission-connected to the sprocket (24) via a chain.
5. A novel flexible forming and spiral-shaped swing plate automatic drawing machine according to claim 4, characterized in that: The flexible forming devices (2) are arranged in multiple stages in an array from top to bottom; The wheel gap of each stage of the flexible forming wheel (23) is arranged corresponding to the notch of the strand blank guide groove (21), and the wheel gap of the multiple stages of the flexible forming wheel (23) and the notch of the strand blank guide groove (21) gradually decrease from top to bottom; The output end of the flexible forming device (2) is arranged corresponding to the spiral wobble plate device (3).
6. A novel flexible forming and spiral-shaped swing plate automatic drawing machine according to claim 5, characterized in that: The top-level sprocket (24) is connected to the output end of the flexible molding motor (26) through a chain; and the multi-level sprockets (24) are connected to each other through chain transmission.
7. The novel flexible forming and spiral-shaped swing plate automatic drawing machine according to claim 5 is characterized in that: Also includes: Feeding conveyor belt (4); The output end of the feeding conveyor belt (4) is arranged corresponding to the notch of the top-level strand guide groove (21).
8. A new method for implementing a flexible forming and spiral swing plate automatic drawing machine, characterized in that: The method is realized by using the novel flexible forming and spiral-shaped swing plate automatic drawing machine according to any one of claims 1 to 7, comprising the following steps: S1, placing the strand blank on the feeding conveyor belt (4); S2, turning on the power supply of the automatic strip drawing machine, the flexible forming motor (26), the snail-shaped wobble plate rotating motor (348), and the snail-shaped wobble plate offset motor (323) start rotating simultaneously; S3, the feeding conveyor belt (4) transports the strand toward the top strand guide trough (21); S4, after the strands are flexibly formed by the multi-stage flexible forming wheel (23), they are gradually thinned to meet the requirements of the finished strands; S5, the finished strip falls from the final flexible forming wheel (23) to the tray (341); S6. Under the combined action of the rotation drive of the volute swing plate rotating motor (348) and the offset drive of the volute swing plate offset motor (323), the finished strips are placed in the tray (341) in a volute shape, realizing the automated production of the strips and the uniform and neat placement of the strips.
Citation Information
Patent Citations
Double-station multifunctional noodle pulling machine
CN120188811A
Automatic noodle stretching machine
CN204032190U
Servo wobble plate machine
CN210960158U
Noodle stretching and coiling machine for pastry noodles
CN211020744U
Automatic food plate placing equipment
CN214217338U