Gluten roll winding forming system and gluten roll winding machine comprising same

By designing the gluten roll winding forming system, using feeding devices, shaping devices, winding devices and auxiliary devices, the problem of poor body shape and compactness of the gluten roll is solved, and efficient and stable molding of the gluten roll is achieved, reducing production costs.

CN119969611APending Publication Date: 2025-05-13SUZHOU BIYUAN ENVIRONMENTAL PROTECTION ENG
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Patent Information

Application Number
CN202510418305.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2025-05-13

AI Technical Summary

Technical Problem

The existing gluten roll winding machines have complex design structures and high implementation costs, and the body shape and tightness consistency of the finished gluten rolls are poor.

Method used

A gluten roll winding molding system is designed, including a gluten body feeding device, a gluten body shaping device, a telescopic feeding plate, a winding device and a winding auxiliary device. The gluten body is supplied through the feeding arm, and the pressure component elastically presses the tail section of the gluten body. The winding device carries out winding action, and the winding auxiliary device provides elastic pressing force to ensure that the gluten roll is tight and molded.

Benefits of technology

It achieves good specifications, weight and firmness consistency of finished gluten rolls, reduces production costs, improves the stability and reliability of the production process, and is suitable for standardization and branding construction.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of food processing equipment manufacturing, in particular to a gluten roll winding forming system and a gluten roll winding machine comprising the same. The gluten body feeding device crosses the gluten body shaping device, the gluten body clamped by the gluten body feeding device can fall on the telescopic feeding plate, and the tail section of the gluten body is elastically pressed by the gluten body shaping device. And when the whole winding device moves to a winding station, the telescopic feeding plate executes the retraction action, and the gluten body freely droops due to loss of the jacking force effect, so that the gluten body can be lapped on the winding device. In the winding process of the winding device, the gluten bodies with the tail sections elastically pressed are stretched and thinned under the action of circumferential winding force, meanwhile, the auxiliary winding device applies elastic pressing force to the thinned gluten bodies in the winding process, and gluten rolls are compactly wound and formed layer by layer. The gluten roll finished product has good consistency of specification, weight and compactness.
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Description

Technical Field

[0001] The invention relates to the technical field of food processing equipment manufacturing, in particular to a gluten roll winding and forming system and a gluten roll winding machine comprising the same. Background Art

[0002] Gluten coil winding machine is a food processing equipment used to wind gluten into a roll, automatically completing the processes of gluten feeding, unloading, conditioning, cutting, winding, unwinding, conveying, etc. With the acceleration of the pace of life and the change of eating habits, people's demand for gluten products such as roasted gluten and fried gluten is increasing, which has greatly increased the demand for molding equipment by food manufacturers. For this reason, our company has recently developed a gluten coil winding machine.

[0003] After the gluten body goes through the feeding, unloading, conditioning, and cutting processes in sequence, it can be accurately shaped, and then it needs to be rolled into a roll through the gluten roll winding and molding system. As far as the current industry status is concerned, the shaping module winding molding system is the most common, specifically: the gluten body is hung on the winding rod, and its two ends naturally droop under the action of gravity. The first shaping module and the second shaping module located at both ends of the workbench are close to each other under the action of the guide rail slider mechanism, and the gluten body is clamped to make its ends adhere to each other. After the winding rod rotates, the gluten body is driven to rotate together under the action of friction, so that the gluten body is stretched due to elasticity and then wound on the winding rod to form a gluten roll. However, the design structure of the shaping module winding molding equipment is complex, the implementation cost is high, and the shape and compactness consistency of the finished gluten roll are poor. Therefore, technical personnel are urgently needed to solve the above problems. Summary of the invention

[0004] Therefore, in view of the above-mentioned existing problems and defects, the designers of the present invention collected relevant information, conducted multiple evaluations and considerations, and continued to experiment and modify after many years of R&D experience by technicians engaged in this industry, which ultimately led to the emergence of the gluten roll winding and forming system.

[0005] The present invention relates to a gluten roll winding and forming system, comprising a gluten body feeding device, a gluten body shaping device, a telescopic feeding plate, a winding device and a winding auxiliary device. The gluten body feeding device passes over the gluten body shaping device, and the gluten body held by the gluten body can be dropped onto the telescopic feeding plate, and the tail section of the gluten body is elastically pressed by the gluten body shaping device. When the winding device is displaced to the winding station as a whole, the telescopic feeding plate performs a retraction action, and the gluten body freely droops due to the loss of the supporting force, and can be placed on the winding device. In the process of the winding device performing the winding action, the gluten body with elastic pressure on the tail section is stretched and thinned due to the circumferential winding force. At the same time, the winding auxiliary device applies elastic pressure to the thinned gluten body in the winding process, so that the gluten roll can be tightly wound and formed layer by layer.

[0006] As a further improvement of the technical solution disclosed in the present invention, the gluten body feeding device comprises a feeding arm. In the process of the feeding arm performing a reciprocating displacement motion to pass over the gluten body shaping device, batches of gluten bodies can be fed one by one to the telescopic feeding plate.

[0007] As a further improvement of the technical solution disclosed in the present invention, the gluten body shaping device includes a base, a pressure component and an elastic force generating unit. The pressure component uses the base as an articulated assembly basis and has a circumferential swing degree of freedom. The elastic force generating unit is matched with the pressure component and uses the base as an installation basis. The pressure component is elastically pressed on the tail end of the gluten body due to the elastic downward pressure from the elastic force generating unit.

[0008] As a further improvement of the technical solution disclosed in the present invention, the elastic force generating unit is composed of a left elastic force generating subunit and a right elastic force generating subunit with the same design structure. The left elastic force generating subunit includes a left stud assembly and a left columnar spring. The left stud assembly is in an upright state, which is inserted on the bottom plate of the base and passes through the pressure assembly. The left columnar spring is used to apply elastic downward pressure to the pressure assembly, and is sleeved on the left stud assembly.

[0009] As a further improvement of the technical solution disclosed in the present invention, the pressure assembly is composed of a pressure plate assembly and a load-bearing shaft. The two ends of the load-bearing shaft are respectively inserted and fixed on the left and right side plates of the base. The pressure plate assembly uses the load-bearing shaft as a fitting base, and it directly bears the elastic force from the left columnar spring.

[0010] As a further improvement of the technical solution disclosed in the present invention, the pressing plate assembly includes a base plate, a pressing plate and a fastening assembly. The base plate can be freely circumferentially deflected and mounted on the load-bearing shaft. The pressing plate and the base plate are abutted against each other and fixed as a whole by means of the fastening assembly. The base plate is formed with a mounting through hole adapted to the fastening assembly, and the pressing plate is formed with a long waist-shaped hole adapted to the fastening assembly and extending along the movement direction of the gluten body feeding device.

[0011] As a further improvement of the technical solution disclosed in the present invention, the telescopic feeding plate is arranged below the gluten shaping device and above the winding device. The telescopic feeding plate performs reciprocating telescopic motion toward the winding device, and the action rhythm is synchronized with the winding device.

[0012] As a further improvement of the technical solution disclosed in the present invention, the winding auxiliary device is arranged downstream of the gluten body shaping device and above the winding device. The winding auxiliary device includes a load-bearing frame, a pressure arm and an elastic member. The pressure arm is hinged on the load-bearing frame and has a circumferential swing freedom. The elastic member is connected between the load-bearing frame and the pressure arm, and the pressure arm can apply an elastic pressure force to the thinned gluten body in the winding process. As the outer diameter of the gluten roll increases, the pressure arm undergoes an adaptive swing motion, and at the same time, the elastic member is able to store / release elastic potential energy.

[0013] As a further improvement of the technical solution disclosed in the present invention, the winding auxiliary device also includes a limiting unit. Under the action of the limiting unit, the limit circumferential deflection angle of the pressing arm is limited. The limiting unit includes a limiting reference seat and a limiting bolt assembly. The limiting reference seat is fixed on the load-bearing frame. The limiting bolt assembly is assembled on the pressing arm in a plug-in form and is directly aligned with the limiting reference seat.

[0014] As a further improvement of the technical solution disclosed in the present invention, the gluten roll winding and forming system also includes a material blocking device. The material blocking device is matched with the gluten body feeding device and is arranged directly in front of the winding device. With the assistance of the material blocking device, the gluten body supplied by the gluten body feeding device and subjected to the inertial force can be settled on the telescopic feeding plate.

[0015] In addition, the present invention also discloses a gluten roll winding machine, which comprises the gluten roll winding and forming system.

[0016] In practical applications, the gluten roll winding and forming system disclosed in the present invention can achieve at least the following beneficial technical effects, specifically:

[0017] 1) During the winding process of the gluten body, it is always subjected to the effect of the winding force, and because the tail section is elastically pressed, it can stretch and thin to the expected thickness. At the same time, the winding auxiliary device applies elastic pressure to the thinned gluten body during the winding process, thereby ensuring that the finished gluten roll has good specifications, weight and compactness consistency, which is conducive to the standardization and branding of the product, and is also convenient for subsequent packaging, sales and other operations;

[0018] 2) According to different product requirements, the working parameters of each component of the gluten roll winding and forming system are adjusted to form gluten roll products of different specifications, shapes and flavors, with good production flexibility and adaptability;

[0019] 3) During the entire process of winding, no staff participation is required, which is conducive to reducing labor costs, eliminating product quality problems caused by human error intervention, and improving the stability and reliability of the production process. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0021] Figure 1 It is a three-dimensional schematic diagram of the gluten roll winding machine disclosed in the present invention.

[0022] Figure 2 It is a stereoscopic schematic diagram from one perspective of a gluten roll winding and forming system in the gluten roll winding machine disclosed in the present invention.

[0023] Figure 3 It is a stereoscopic schematic diagram from another perspective of the gluten roll winding and forming system in the gluten roll winding machine disclosed in the present invention.

[0024] Figure 4 It is a three-dimensional schematic diagram of a gluten body shaping device in the gluten roll winding and forming system disclosed in the present invention.

[0025] Figure 5 yes Figure 4 Front view of .

[0026] Figure 6 yes Figure 5 AA section view.

[0027] Figure 7 It is a stereoscopic schematic diagram from one perspective of a winding auxiliary device in the gluten roll winding and forming system disclosed in the present invention.

[0028] Figure 8 It is a stereoscopic schematic diagram from another perspective of the winding auxiliary device in the gluten roll winding and forming system disclosed in the present invention.

[0029] Fig. 9 yes Figure 8 A partial enlarged view of I.

[0030] Fig.10 It is a three-dimensional schematic diagram of a material blocking device in the gluten roll winding and forming system disclosed in the present invention.

[0031] 1-machine; 2-gluten feeding machine; 3-gluten forming machine; 4-gluten circulation system; 5-gluten roll winding forming system; 51-gluten feeding device; 511-feeding arm; 52-gluten shaping device; 521-base; 522-pressing assembly; 5221-pressing plate assembly; 52211-base plate; 52212-pressing plate; 52213-fastening assembly; 5222-load bearing shaft; 523-elastic force generating unit; 5231-left elastic force generating subunit; 52 311-left stud assembly; 52312-left columnar spring; 5232-right elastic force generating subunit; 53-telescopic loading plate; 54-winding device; 55-winding auxiliary device; 551-load-bearing frame; 552-pressing arm; 553-elastic member; 554-limiting unit; 5541-limiting reference seat; 5542-limiting bolt assembly; 56-material blocking device; 561-connecting transition assembly; 5611-left stud assembly; 5612-right stud assembly; 562-L-shaped material blocking plate. DETAILED DESCRIPTION

[0032] In the description of the present invention, it is necessary to understand that the directions or positional relationships indicated by the terms "left", "right", "front", "back", "up", "down", etc. are based on the directions or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific direction, be constructed and operated in a specific direction, and therefore cannot be understood as a limitation on the present invention.

[0033] The present invention will be further described in detail below with reference to specific embodiments. Figure 1 The three-dimensional schematic diagram of the gluten roll winding machine disclosed in the present invention is shown, and it can be known that it includes a machine platform 1, a gluten body feeding machine 2, a gluten body forming machine 3, a gluten body circulation system 4 and a gluten roll winding and forming system 5. The gluten body feeding machine 2 is placed and fixed on the machine platform 1, and the gluten body forming machine 3 and the gluten body circulation system 4 are sequentially arranged downstream of the gluten body feeding machine 2. After the gluten body passes through the gluten body feeding machine 2 and the gluten body forming machine 3 in sequence, it can be accurately formed into blocks, and then it needs to be uniformly and stably supplied to the gluten roll winding and forming system 5 according to the set amount through the gluten body circulation system 4, so that the gluten body can be wound and formed according to the expected requirements, and the specifications, firmness and taste all meet the industry acceptance standards.

[0034] Figure 2 , Figure 3The three-dimensional schematic diagrams of the gluten roll winding and forming system in the gluten roll winding machine disclosed in the present invention are respectively shown in two different perspectives. It can be seen that it is mainly composed of a gluten body feeding device 51, a gluten body shaping device 52, a telescopic feeding plate 53, a winding device 54 and a winding auxiliary device 55. The gluten body feeding device 51 is used to clamp the gluten body to be wound, and it is located directly behind the gluten body shaping device 52; the winding device 54 is used to roll the gluten roll, and it is located directly in front of the gluten body shaping device 52; the telescopic feeding plate 53 is used to temporarily carry the gluten body to be wound, and it is located below the gluten body shaping device 52 and above the winding device 54. The telescopic feeding plate 53 performs a reciprocating telescopic motion toward the winding device 54, and the action rhythm is synchronized with the winding device 54. The winding auxiliary device 55 spans the gluten body shaping device 52 and is used in conjunction with the winding device 54. In specific applications, the gluten feeding device 51 passes over the gluten shaping device 52, and the gluten held by it can be dropped onto the telescopic feeding plate 53, and the tail section of the gluten is elastically pressed by the gluten shaping device 52. When the winding device 54 is moved to the winding station as a whole, the telescopic feeding plate 53 performs a retraction action, and the gluten droops freely due to the loss of the supporting force, and can be placed on the winding device 54. In the process of the winding device 54 performing the winding action, the gluten with elastic pressure on the tail section is stretched and thinned due to the circumferential winding force. At the same time, the winding auxiliary device 55 applies elastic pressure to the thinned gluten in the winding process, so that the gluten roll can be tightly wound and formed layer by layer.

[0035] By adopting the above-mentioned technical solution, during the process of the gluten body being wound, it is always subjected to the winding force from the winding device 54, and because the tail section is elastically pressed, it is able to stretch and thin to the expected thickness by itself. At the same time, the winding auxiliary device 55 applies elastic pressure to the thinned gluten body in the winding process, thereby ensuring that the finished gluten roll has good specifications, weight and tightness consistency, and is conducive to the standardization and branding of the product, and is also convenient for subsequent packaging, sales and other operations.

[0036] Here, it is also necessary to explain that, according to different product requirements, the working parameters of each component of the gluten roll winding and forming system are adjusted to form gluten roll products of different specifications, shapes and flavors, which has good production flexibility and adaptability; furthermore, in the entire process of winding and forming, no staff participation is required, which is conducive to reducing labor costs, and eliminates product quality problems caused by human error intervention, thereby improving the stability and reliability of the production process.

[0037] Depend on Figure 2 , Figure 3It can also be clearly seen from the figure that the main design body of the gluten feeding device 51 is the feeding arm 511. The feeding arm 511 performs a reciprocating displacement motion due to the driving force, and the gluten bodies held by it can pass through the gluten shaping device 51 and be supplied to the telescopic feeding plate 53 one by one.

[0038] like Figure 4 , Figure 5 , Figure 6 As shown in , the gluten body shaping device 52 is mainly composed of several parts such as a base 521, a pressure component 522 and an elastic force generating unit 523. Among them, the pressure component 522 uses the base 521 as an articulated assembly basis, and has a circumferential swing degree of freedom. The elastic force generating unit 523 is matched with the pressure component 522, and it uses the base 521 as an installation basis. The pressure component 522 is elastically pressed on the tail end of the gluten body due to the elastic downward pressure from the elastic force generating unit 523. The elastic force generating unit 523 is composed of a left elastic force generating subunit 5231 and a right elastic force generating subunit 5232 with the same design structure. The left elastic force generating subunit 5231 includes a left stud assembly 52311 and a left columnar spring 52312. The right elastic force generating subunit 5232 includes a right stud assembly and a right columnar spring. The left stud assembly 52311 and the right stud assembly are both in an upright state, inserted on the bottom plate of the base 521, and pass through the pressure assembly 522. The left columnar spring 52312 and the right columnar spring are respectively corresponding to the left stud assembly 52311 and the right stud assembly as the sleeve foundation, and the two cooperate to apply elastic downward pressure to the pressure assembly 522.

[0039] In actual application, in the process of the feeding arm 511 passing over the gluten body shaping device 52, the pressure-applying component 522 moves upward by itself due to the pushing force from the feeding arm 511. At the same time, the left-mounted columnar spring 52312 and the right-mounted columnar spring are able to synchronously store elastic potential energy; after the gluten body settles relative to the telescopic loading plate 53, the feeding arm 511 performs a reverse displacement movement to release the supporting effect on the pressure-applying component 522, and the elastic potential energy stored in the left-mounted columnar spring 52312 and the right-mounted columnar spring is released. The pressure-applying component 522 performs a downward movement under the action of the elastic force until the tail section of the gluten body is elastically pressurized.

[0040] Depend on Figure 5 , Figure 6It can also be clearly seen from the figure that the pressure assembly 522 is composed of a pressure plate assembly 5221 and a bearing shaft 5222. The two ends of the bearing shaft 5222 are respectively inserted and fixed on the left and right side plates of the base 521. The pressure plate assembly 5221 is used to directly elastically press against the tail section of the gluten body. It uses the bearing shaft 5222 as a fitting basis and directly bears the elastic pressing force from the left columnar spring 52312 and the right columnar spring. In the process of the feeding arm 511 performing a reciprocating displacement motion and passing over the pressure assembly 52, the pressure plate assembly 5221 performs a circumferential yaw motion based on the central axis of the bearing shaft 5222.

[0041] As a further optimization of the above technical solution, Figure 5 , Figure 6 As shown in , the pressing plate assembly 5221 preferably includes a base plate 52211, a pressing plate 52212 and a fastening assembly 52213. The base plate 52211 can be freely circumferentially swung and mounted on the load-bearing shaft 5222. The pressing plate 52212 and the base plate 52211 are abutted against each other and fixed as a whole by means of the fastening assembly 52213. The base plate 52211 is formed with a mounting through hole that matches the fastening assembly 52213, and the pressing plate 52212 is formed with a long waist-shaped hole that matches the fastening assembly 52213 and extends along the movement direction of the feeding arm 511. In this way, in actual application, when the position of the gluten body being elastically pressed does not meet the expected requirements, the operator only needs to loosen the fastening components 52213, and the pressing plate 52212 that directly applies pressure to the gluten body will slide relative to the base plate 52211 due to the drag force until it occupies the correct position, and then immediately retighten the fastening components 52213.

[0042] like Figure 7 As shown in , the winding auxiliary device 55 is mainly composed of a load-bearing frame 551, a pressing arm 552 and an elastic member 553. Among them, the pressing arm 552 is hinged on the load-bearing frame 551 and has a circumferential swing freedom. The elastic member 553 (preferably a columnar spring) is connected between the load-bearing frame 551 and the pressing arm 552, and the pressing arm 552 can apply an elastic pressing force to the thinned gluten body during the winding process. As the outer diameter of the gluten roll increases, the pressing arm 552 undergoes an adaptive swing motion, and in this process, the elastic member 553 can synchronously store / release elastic potential energy.

[0043] Furthermore, by Figure 8 , 9It can also be clearly seen from the figure that the winding auxiliary device 55 is also equipped with a limiting unit 554. Under the action of the limiting unit 554, the limit circumferential deflection angle of the pressing arm 552 is limited. The limiting unit 554 includes a limiting reference seat 5541 and a limiting bolt assembly 5542. The limiting reference seat 5541 is fixed on the load-bearing frame 551. The limiting bolt assembly 5542 is assembled on the pressing arm 552 in a plug-in form and is directly aligned with the limiting reference seat 5541. In practical applications, the axial position of the limiting bolt assembly 5542 can be adjusted according to actual conditions, and the limit circumferential deflection angle of the pressing arm 552 can be adaptively changed to ensure that the elastic pressing force from the pressing arm 552 to the gluten body during the winding process is always maintained within a reasonable value range.

[0044] In addition, as Figure 2 , Figure 3 As shown in the figure, the gluten roll winding and forming system 5 is also equipped with a material blocking device 56. The material blocking device 56 is matched with the gluten body feeding device 51, and is arranged just in front of the winding device 54. With the assistance of the material blocking device 56, the gluten body supplied by the gluten body feeding device 51 and subjected to the inertial force can be accurately landed on the telescopic feeding plate 53, effectively avoiding the occurrence of the gluten body being contaminated due to accidental falling.

[0045] As is known, according to design common sense, the material blocking device 56 can adopt a variety of design structures to achieve reliable material blocking of the gluten body. However, here, a scheme with a simple design structure, easy manufacturing and implementation, and convenient adjustment of the material blocking working surface is recommended, specifically: Fig.10 As shown in the figure, the material blocking device 56 is composed of a connecting transition component 561 and an L-shaped material blocking plate 562. The connecting transition component 561 includes a left-placed stud component 5611 and a right-placed stud component 5612. The left-placed stud component 5611 and the right-placed stud component 5612 are both in a vertical state and vertically penetrate the L-shaped material blocking plate 562. The L-shaped material blocking plate 562 is formed with a left waist-shaped adjustment hole and a right waist-shaped adjustment hole that are compatible with the left-placed stud component 5611 and the right-placed stud component 5612.

[0046] The above description of the disclosed embodiments enables one skilled in the art to implement or use the present invention. Various modifications to these embodiments will be apparent to one skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to the embodiments shown herein, but rather to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A gluten roll winding and forming system, characterized in that: It comprises a gluten feeding device, a gluten shaping device, a telescopic feeding plate, a winding device and a winding auxiliary device; the gluten feeding device passes over the gluten shaping device, and the gluten held by it is dropped onto the telescopic feeding plate, and the tail section of the gluten is elastically pressed by the gluten shaping device; when the winding device is moved as a whole to the winding station, the telescopic feeding plate performs a retraction action, and the gluten is free to droop due to the loss of the supporting force, and can be placed on the winding device; During the winding process of the winding device, the gluten body at the tail end which is elastically pressed is stretched and thinned due to the circumferential winding force. At the same time, the winding auxiliary device applies elastic pressing force to the thinned gluten body during the winding process, so that the gluten roll can be tightly wound and formed layer by layer.

2. The gluten roll winding and forming system according to claim 1, characterized in that: The gluten feeding device includes a feeding arm; in the process of the feeding arm performing a reciprocating displacement motion to pass over the gluten shaping device, batches of gluten bodies can be supplied to the telescopic loading plate one by one.

3. The gluten roll winding and forming system according to claim 1, characterized in that: The gluten body shaping device includes a base, a pressure component and an elastic force generating unit; the pressure component uses the base as an articulated assembly basis and has a circumferential swing degree of freedom; the elastic force generating unit is matched with the pressure component and uses the base as an installation basis; the pressure component is able to elastically pressurize the tail end of the gluten body due to the elastic downward pressure from the elastic force generating unit.

4. The gluten roll winding and forming system according to claim 3, characterized in that: The elastic force generating unit is composed of a left-placed elastic force generating subunit and a right-placed elastic force generating subunit with the same design structure; the left-placed elastic force generating subunit includes a left-placed stud assembly and a left-placed columnar spring; the left-placed stud assembly is in an upright state, inserted on the bottom plate of the base, and passes through the pressure-applying assembly; the left-placed columnar spring is used to apply elastic downward pressure to the pressure-applying assembly, and is mounted on the left-placed stud assembly.

5. The gluten roll winding and forming system according to claim 4, characterized in that: The pressure-applying assembly is composed of a pressure plate assembly and a load-bearing shaft; the two ends of the load-bearing shaft are respectively inserted and fixed on the left and right side plates of the base; the pressure plate assembly uses the load-bearing shaft as a fitting basis, and it directly bears the elastic force from the left-placed columnar spring.

6. The gluten roll winding and forming system according to claim 5, characterized in that: The pressing plate assembly includes a base plate, a pressing plate and a fastening component; the base plate can be freely circumferentially swung on the load-bearing shaft; the pressing plate and the base plate are abutted against each other and fixed as a whole by means of the fastening component; the base plate is formed with a mounting through hole that is compatible with the fastening component, and the pressing plate is formed with a long waist-shaped hole that is compatible with the fastening component and extends along the movement direction of the gluten feeding device.

7. The gluten roll winding and forming system according to claim 1, characterized in that: The telescopic loading plate is arranged below the gluten body shaping device and above the winding device; the telescopic loading plate performs reciprocating telescopic motion toward the winding device, and the movement rhythm is synchronized with the winding device.

8. The gluten roll winding and forming system according to claim 1, characterized in that: The winding auxiliary device is arranged downstream of the gluten body shaping device and above the winding device; the winding auxiliary device includes a load-bearing frame, a pressing arm and an elastic member; the pressing arm is hinged on the load-bearing frame and has a circumferential swing freedom; the elastic member is connected between the load-bearing frame and the pressing arm, and the pressing arm can apply an elastic pressing force to the thinned gluten body in the winding process; As the outer diameter of the gluten roll increases, the pressing arm undergoes an adaptive swinging motion, and at the same time, the elastic member is able to store / release elastic potential energy.

9. The gluten roll winding and forming system according to claim 8, characterized in that: The winding auxiliary device also includes a limiting unit; under the action of the limiting unit, the extreme circumferential deflection angle of the pressing arm is limited; the limiting unit includes a limiting reference seat and a limiting bolt assembly; the limiting reference seat is fixed on the load-bearing frame; the limiting bolt assembly is assembled on the pressing arm in a plug-in form and is directly aligned with the limiting reference seat.

10. The gluten roll winding and forming system according to claim 1, characterized in that: It also includes a material blocking device; the material blocking device is matched with the gluten feeding device, and is arranged directly in front of the winding device; with the assistance of the material blocking device, the gluten supplied through the gluten feeding device and subjected to the inertial force can fall on the telescopic loading plate.

11. A gluten roll winding machine, characterized in that: It comprises a gluten roll winding and forming system as described in claims 1-10.