Automatic discharging wrapper rolling machine

By introducing an automatic feeding structure into the dumpling wrapper rolling machine, the problem of difficult dumpling wrapper removal has been solved, achieving automatic wrapper separation and improved wrapper quality, thereby increasing production efficiency and equipment adaptability to meet diverse production needs.

CN223653126UActive Publication Date: 2025-12-12XING TAI MEI CHU JI XIE KE JI YOU XIAN GONG SI
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Patent Information

Application Number
CN202520249103.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-17
Publication Date
2025-12-12
Estimated Expiration
2035-02-17

AI Technical Summary

Technical Problem

Existing dumpling wrapper rolling machines often result in dumpling wrappers that are difficult to remove smoothly from the rolling space after rolling, affecting the quality of the wrappers, increasing the difficulty of cleaning and maintaining the equipment, reducing production efficiency, and increasing production costs.

Method used

Design an automatic dough rolling machine. By installing a slide rail and a power mechanism-driven mounting plate on the frame, combined with a top rod and moving mold structure, the dough can be automatically released from the rolling space. Multi-stage pushing and slider adjustment of the rolling space thickness are used, and a ring rotating plate and guide groove synchronize the slider movement to ensure that the dough is completely released.

Benefits of technology

It achieves automated dough separation, improves production efficiency, enhances the adaptability of the dough rolling machine to doughs of different viscous textures, increases yield and production efficiency, meets diverse production needs, and ensures dough quality and equipment cleanliness and convenience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of wrapper rolling machines, and provides a wrapper rolling machine capable of automatically discharging, which comprises a rack, the wrapper rolling device is arranged on the rack; the mounting plate is vertically arranged on the rack in a sliding manner; the wrapper rolling mold is arranged on the mounting plate, and the wrapper rolling mold comprises an outer mold arranged on the mounting plate, the outer mold is internally provided with a first cavity, and the first cavity is provided with a first abutting surface; the first movable mold is slidably arranged in the first cavity, and one end of the first movable mold is provided with a material containing surface and a second abutting surface; the ejector rod is arranged on the rack and located below the wrapper rolling mold. According to the technical scheme, the problem that dumpling wrappers are inconvenient to take out from the wrapper rolling space after the dumpling wrapper rolling machine completes wrapper rolling in the prior art is solved.
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Description

Technical Field

[0001] This utility model relates to the field of dough rolling machine technology, specifically to a dough rolling machine with automatic feeding capability. Background Technology

[0002] In the food processing industry, especially in the production of dumplings and other pasta dishes, rolling out the dough is a crucial step. Traditional manual rolling methods are inefficient and cannot meet the needs of large-scale production. Therefore, dumpling dough rolling machines have emerged and are widely used.

[0003] However, existing dumpling wrapper rolling machines have many problems. After rolling, the dumpling wrappers are often difficult to remove smoothly from the rolling space. This not only affects the quality of the wrappers but also increases the difficulty of cleaning and maintaining the equipment, reduces production efficiency, and increases production costs. Utility Model Content

[0004] This utility model proposes an automatic dumpling wrapper rolling machine, which solves the problem in related technologies where dumpling wrappers are inconvenient to remove from the rolling space after rolling.

[0005] The technical solution of this utility model is as follows:

[0006] An automatic dough feeding rolling machine for processing dough into dough sheets, comprising:

[0007] frame;

[0008] A dough rolling device, which is mounted on the machine frame;

[0009] Mounting plate, which is vertically slidably mounted on the frame;

[0010] A dough rolling mold, wherein the dough rolling mold is disposed on the mounting plate, the dough rolling mold comprising:

[0011] An outer mold is disposed on the mounting plate, and the outer mold has a first cavity inside, the first cavity having a first contact surface;

[0012] The first moving mold is slidably disposed in the first cavity, and one end of the first moving mold has a material holding surface and a second abutting surface.

[0013] A push rod is mounted on the frame and located below the dough rolling mold;

[0014] After the mounting plate slides close to the rolling device, the first abutting surface abuts against the second abutting surface, the material holding surface is located in the first cavity, forming a rolling space with the side wall of the first cavity, and the first moving mold extends out of the first cavity at the end away from the material holding surface.

[0015] When the mounting plate slides away from the rolling device, the first movable mold is in contact with the ejector rod at the end away from the material containing surface, so that the first movable mold slides in the first cavity, the first abutting surface is disengaged from the second abutting surface, and the material containing surface extends out of the cavity.

[0016] Optionally, the first movable mold has a second cavity, the second cavity has a third abutting surface and a fourth abutting surface, and the rolling device further comprises:

[0017] a second movable mold, one end of the second movable mold has an abutting part, and the abutting part is slidingly arranged in the second cavity;

[0018] an ejector rod, a plurality of the ejector rods are provided, one end of the ejector rod is arranged on the abutting part, and the other end of the ejector rod extends out of the second cavity;

[0019] When the mounting plate slides away from the rolling device, the first movable mold is in contact with the ejector rod at the end away from the material containing surface, so that the first movable mold slides in the first cavity, the first abutting surface is disengaged from the second abutting surface, and the material containing surface extends out of the cavity.

[0020] When the mounting plate slides away from the rolling device, the first movable mold is in contact with the ejector rod at the end away from the material containing surface, so that the first movable mold slides in the first cavity, the first abutting surface is disengaged from the second abutting surface, and the material containing surface extends out of the cavity.

[0021] Optionally, the outer mold has a plurality of sliding grooves, the sliding grooves are connected to the first cavity, and the rolling device further comprises:

[0022] a sliding block, the sliding block is slidingly arranged in the sliding groove, one end of the sliding block close to the first movable mold has an abutting inclined surface, after the first movable mold slides, the second abutting surface is in contact with the first abutting surface through the abutting inclined surface, and after the sliding block slides, the abutting inclined surface is close to or away from the first movable mold, so as to adjust the thickness of the rolling space.

[0023] Optionally, the rolling device further comprises:

[0024] a guide rod, one end of the guide rod is arranged on the sliding block;

[0025] a ring-shaped rotating plate, the ring-shaped rotating plate is rotationally arranged on the outer mold, the ring-shaped rotating plate has a plurality of guide grooves, the other end of the guide rod is slidingly arranged in the guide groove, and after the ring-shaped rotating plate rotates, the plurality of sliding blocks are synchronously slid in the sliding groove.

[0026] Optionally, the plurality of ejector rods are circumferentially distributed along the axis of the second movable mold.

[0027] Optionally, several of the chute are circumferentially distributed along the first moving die axis.

[0028] Optionally, the rolling device comprises:

[0029] A rotating frame is rotatably arranged on the frame;

[0030] A rolling roller is rotatably arranged on the rotating frame, and the rolling roller abuts against the dough after the mounting plate slides upward, so that the dough is rolled into the wrapper.

[0031] Optionally, the rolling roller is concave in the middle section.

[0032] Optionally, the rolling device further comprises:

[0033] A rotating rod is rotatably arranged on the rotating frame, and the rolling roller is rotatably arranged on the rotating rod.

[0034] The rolling roller is divided into four equal-length roller sections, and each roller section can independently rotate on the rotating rod.

[0035] Optionally, the rolling device further comprises:

[0036] A mounting frame is arranged on the frame between the rotating frame and the rolling die;

[0037] A film is arranged on the mounting frame, and the rolling roller abuts against the dough through the film.

[0038] The working principle and beneficial effects of the present application are as follows:

[0039] In the present application, in order to solve the problem that the dumpling wrapper cannot be taken out from the rolling space after the dumpling rolling machine completes the rolling in the related art, a rolling machine capable of automatically discharging is designed, and a frame is first constructed. A slide rail is vertically installed on the frame, so that the mounting plate can smoothly vertically slide. The rolling device is fixed at a proper position of the frame. The material containing surface is slightly concave to place the dough. A top rod is installed below the rolling die on the frame. When the mounting plate is driven by the power mechanism (such as a motor-driven screw nut pair) to slide close to the rolling device, the first abutting surface abuts against the second abutting surface, at this time, the material containing surface is located in the first cavity, and the first cavity side wall forms a rolling space, and the first moving die extends out of the first cavity from the end away from the material containing surface; after the mounting plate slides away from the rolling device under the action of the power mechanism, the first moving die contacts the top rod from the end away from the material containing surface, and due to the upward force of the top rod, the first moving die slides in the first cavity, so that the first abutting surface and the second abutting surface are disengaged, and the material containing surface extends out of the cavity, so that the finished wrapper can be directly separated from the rolling space. BRIEF DESCRIPTION OF DRAWINGS

[0040] The above features, technical characteristics, advantages and implementation manners of the present application will be further described in a clear and understandable manner in combination with the preferred embodiments and the accompanying drawings.

[0041] Figure 1 It is a schematic diagram of the overall structure of the present application;

[0042] Figure 2 It is a schematic diagram of the structure of the rolling mold of the present application;

[0043] Figure 3 It is a schematic diagram of the internal structure of the rolling mold of the present application;

[0044] Figure 4 It is a schematic diagram of the internal structure of the rolling mold of the present application from another angle;

[0045] Figure 5 It is a schematic diagram of the internal structure of the rolling mold of the present application from another state;

[0046] Figure 6 It is a schematic diagram of the internal structure of the rolling mold of the present application from a third angle;

[0047] Figure 7 It is a schematic diagram of the internal structure of the present application;

[0048] Figure 8 It is a schematic diagram of the present application Figure 7 It is an enlarged view of F in the present application.

[0049] In the figure: 1, frame, 2, rolling device, 3, mounting plate, 4, rolling mold, 5, outer mold, 6, first cavity, 7, first abutting surface, 8, first movable mold, 9, material containing surface, 10, second abutting surface, 11, ejector rod, 12, rolling space, 13, second cavity, 14, third abutting surface, 15, fourth abutting surface, 16, second movable mold, 17, abutting portion, 18, ejector rod, 19, sliding groove, 20, sliding block, 21, abutting inclined surface, 22, guide rod, 23, annular rotating plate, 24, guide groove, 25, rotating frame, 26, rolling roller, 27, rotating rod, 28, roller, 29, mounting frame, 30, film. DETAILED DESCRIPTION

[0050] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the specific implementation manners of the present application will be described below with reference to the accompanying drawings. Obviously, the accompanying drawings in the following description are only some embodiments of the present application, and for those skilled in the art, other drawings can be obtained from these drawings without creative labor, and other embodiments can also be obtained.

[0051] For the sake of simplicity of the drawings, only parts related to the utility model are shown in the drawings, which do not represent the actual structure of the product. In addition, in order to make the drawings simple and easy to understand, in some drawings, only one of the parts with the same structure or function is shown, or only one of them is marked. In this article, "one" not only means "only one", but also means "more than one", and "several" includes "two" and "more than two".

[0052] In this article, it should be noted that unless otherwise specified and limited, the terms "mounting", "connection", "connection" should be understood broadly, for example, it can be fixed connection, or detachable connection, or integral connection; it can be mechanical connection, or electrical connection; it can be directly connected, or indirectly connected through intermediate medium, or the communication inside two elements. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0053] In addition, in the description of the present application, the terms "first", "second" and the like are only used for differentiation and description, and cannot be understood as indicating or implying relative importance.

[0054] Reference Figures 1-8 For the first embodiment of the utility model, a dough rolling machine capable of automatic discharging is proposed, which is used for processing dough into dough skin, comprising a rack 1; a dough rolling device 2 is arranged on the rack 1; a mounting plate 3 is vertically slidably arranged on the rack 1; a dough rolling die 4 is arranged on the mounting plate 3, the dough rolling die 4 comprises: an outer die 5 arranged on the mounting plate 3, the outer die 5 has a first cavity 6 inside, the first cavity 6 has a first abutting surface 7; a first movable die 8 is slidably arranged in the first cavity 6, one end of the first movable die 8 has a material containing surface 9 and a second abutting surface 10; a top rod 11 is arranged on the rack 1 below the dough rolling die 4; after the mounting plate 3 slides close to the dough rolling device 2, the first abutting surface 7 abuts against the second abutting surface 10, the material containing surface 9 is located in the first cavity 6, forming a dough rolling space 12 with the side wall of the first cavity 6, and the end of the first movable die 8 away from the material containing surface 9 extends out of the first cavity 6; after the mounting plate 3 slides away from the dough rolling device 2, the end of the first movable die 8 away from the material containing surface 9 contacts with the top rod 11, so that the first movable die 8 slides in the first cavity 6, the first abutting surface 7 and the second abutting surface 10 are disengaged, and the material containing surface 9 extends out of the cavity.

[0055] In this embodiment, in order to solve the problem that the dumpling wrapper cannot be taken out from the rolling space after the rolling is completed in the related art, a rolling machine capable of automatic discharging is designed, and a rack 1 is first constructed. A slide rail is vertically installed on the rack 1, so that the installation plate 3 can smoothly slide vertically. The rolling device 2 is fixed at an appropriate position of the rack 1. The material containing surface 9 is slightly concave to place the dough. The top rod 11 is installed below the rolling die 4 on the rack 1. When the installation plate 3 is driven by the power mechanism (such as a motor-driven screw nut pair) to slide close to the rolling device 2, the first abutting surface 7 abuts against the second abutting surface 10, at this time, the material containing surface 9 is located in the first cavity 6, and forms a rolling space 12 with the side wall of the first cavity 6, and the first movable die 8 extends out of the first cavity 6 from the end away from the material containing surface 9; after the installation plate 3 slides away from the rolling device 2 under the action of the power mechanism, the end of the first movable die 8 away from the material containing surface 9 contacts the top rod 11, and due to the upward force of the top rod 11, the first movable die 8 slides in the first cavity 6, so that the first abutting surface 7 and the second abutting surface 10 are no longer in abutment, and the material containing surface 9 extends out of the cavity, so that the finished wrapper can be directly separated from the rolling space 12.

[0056] Further, the first movable die 8 has a second cavity 13, the second cavity 13 has a third abutting surface 14 and a fourth abutting surface 15, and further includes a second movable die 16, one end of the second movable die 16 has an abutting portion 17, the abutting portion 17 is slidably arranged in the second cavity 13; a plurality of ejection rods 18 are arranged, one end of the ejection rod 18 is arranged on the abutting portion 17, and the other end of the ejection rod 18 extends out of the second cavity 13; after the installation plate 3 slides close to the rolling device 2, the abutting portion 17 abuts against the third abutting surface 14, so that the other end of the ejection rod 18 coincides with the material containing surface 9, and the other end of the second movable die 16 extends out of the second cavity 13; after the installation plate 3 slides away from the rolling device 2, the other end of the second movable die 16 contacts the top rod 11, and pushes the second movable die 16 to slide in the second cavity 13, so that the abutting portion 17 abuts against the fourth abutting surface 15, and the other end of the ejection rod 18 extends out of the material containing surface 9, and pushes the first movable die 8 to slide in the first cavity 6.

[0057] In this embodiment, a plurality of ejection rods 18 (for example, welded) are uniformly arranged on the abutting portion 17. When the installation plate 3 is driven by the power mechanism to slide close to the rolling device 2, the abutting portion 17 abuts against the third abutting surface 14, at this time, the other end of the ejection rod 18 coincides with the material containing surface 9, and the other end of the second movable die 16 extends out of the second cavity 13; after the installation plate 3 slides away from the rolling device 2, the other end of the second movable die 16 contacts the top rod 11, and the top rod 11 pushes the second movable die 16 to slide in the second cavity 13, so that the abutting portion 17 abuts against the fourth abutting surface 15, and the other end of the ejection rod 18 extends out of the material containing surface 9, and further pushes the first movable die 8 to slide in the first cavity 6, more effectively pushes the wrapper out, and ensures that the wrapper can be smoothly separated from the rolling space 12.

[0058] The advantage is that the increased second movable die 16 and the ejection rod 18 structure further enhance the reliability of the dough skin from the rolling die 4. Even in the case of dough with certain viscosity, the dough can be completely and deformedly separated from the die through multi-stage pushing, improving the adaptability of the entire rolling machine to different viscosity dough, further improving the product yield and production efficiency.

[0059] Further, the outer die 5 has a plurality of sliding grooves 19 communicating with the first cavity 6, and further comprises a sliding block 20 slidingly arranged in the sliding groove 19, the sliding block 20 has an abutting inclined surface 21 near one end of the first movable die 8, the second abutting surface 10 abuts against the first abutting surface 7 through the abutting inclined surface 21 after the first movable die 8 slides, and the abutting inclined surface 21 is close to or away from the first movable die 8 after the sliding block 20 slides, for adjusting the thickness of the rolling space 12.

[0060] In this embodiment, a plurality of sliding grooves 19 are uniformly processed on the outer die 5, and the sliding grooves 19 communicate with the first cavity 6. The sliding block 20 and the sliding groove 19 are made in a clearance fit, and the abutting inclined surface 21 is processed at one end of the sliding block 20 close to the first movable die 8, and the angle of the inclined surface is optimized (such as 45 degrees) to better transmit force. In the initial state, the sliding block 20 is located at a specific position of the sliding groove 19. When the first movable die 8 slides, the second abutting surface 10 abuts against the first abutting surface 7 through the abutting inclined surface 21, at this time, if it is necessary to adjust the thickness of the rolling space 12, the sliding block 20 can be pushed in the sliding groove 19 by manual or electric mode, and after the sliding block 20 slides, the abutting inclined surface 21 is close to or away from the first movable die 8, so as to change the effective volume of the first cavity 6, and further adjust the thickness of the rolling space 12.

[0061] The advantage is that the design of the sliding groove 19 and the sliding block 20 structure makes the thickness of the rolling space 12 be able to be flexibly adjusted according to actual needs. It can meet the requirements of making dough skin of different thicknesses, such as the thickness of dough skin required for making dumpling skin, wonton skin and other different foods, improving the versatility and practicality of the rolling machine, and being able to adapt to diversified production needs.

[0062] Further, it further comprises a guide rod 22 arranged at one end of the sliding block 20, and a ring-shaped rotating plate 23 rotatingly arranged on the outer die 5, the ring-shaped rotating plate 23 has a plurality of guide grooves 24, and the other end of the guide rod 22 is slidingly arranged in the guide groove 24, and the ring-shaped rotating plate 23 rotates to drive the plurality of sliding blocks 20 to synchronously slide in the sliding grooves 19.

[0063] In this embodiment, the guide rod 22 is installed on the slider 20, and one end of the guide rod 22 is fixed on the slider 20 in a threaded connection manner. The annular rotating plate 23 is installed on the outer mold 5 through a bearing, and a plurality of guide grooves 24 are uniformly processed on the annular rotating plate 23 (the number of the guide grooves 24 is the same as that of the sliders 20), and the other end of the guide rod 22 is slidably installed in the guide groove 24. When it is necessary to adjust the thickness of the dough space 12, the annular rotating plate 23 is rotated (which can be driven by a motor or manually operated), and during the rotation of the annular rotating plate 23, due to the matching relationship between the guide groove 24 and the guide rod 22, the plurality of sliders 20 are synchronously slid in the sliding groove 19. For example, when the annular rotating plate 23 rotates clockwise, the sliders 20 move in the same direction, thereby changing the thickness of the dough space 12; and when the annular rotating plate 23 rotates counterclockwise, the sliders 20 move in the opposite direction.

[0064] Further, the plurality of ejection rods 18 are circumferentially distributed along the axis of the second movable mold 16.

[0065] In this embodiment, the structure of the circumferentially distributed ejection rods 18 along the axis makes the force uniformly distributed on the dough when the dough is pushed out of the dough space 12. This avoids the dough from being broken or deformed due to uneven local force, improves the stability and reliability of the dough pushing-out process, and further improves the quality and yield of the dough.

[0066] Further, the plurality of sliding grooves 19 are circumferentially distributed along the axis of the first movable mold 8.

[0067] In this embodiment, the circumferentially distributed sliding grooves 19 ensure the uniformity of the thickness adjustment of the dough space 12. Regardless of the direction in which the position of the slider 20 is adjusted, the dough space 12 can maintain consistent thickness change in the circumferential direction, which is beneficial to making dough with uniform thickness and improves the stability and consistency of product quality.

[0068] Further, the dough rolling device 2 comprises a rotating frame 25, which is rotatably arranged on the rack 1; and a dough rolling roller 26, which is rotatably arranged on the rotating frame 25. After the mounting plate 3 is slid upward, the dough rolling roller 26 abuts against the dough, and the dough is rolled into dough.

[0069] In this embodiment, the rotating frame 25 is rotatably arranged on the rack 1 through bearings and other rotating components, so that it can rotate smoothly. The dough rolling roller 26 is rotatably arranged on the rotating frame 25. When it is necessary to roll dough, the mounting plate 3 is slid upward under the action of the driving mechanism, so that the dough rolling roller 26 abuts against the dough placed in the dough space 12, and then the rotating frame 25 is rotated under the driving of a motor or other power source, and the dough rolling roller 26 is rotated with it, so that the dough is rolled into dough.

[0070] Further, the dough rolling roller 26 is concave in the middle section.

[0071] In this embodiment, the middle concave rolling roller 26 is selected and installed on the rotating frame 25. During the rolling process, the dough is placed in the rolling space 12. When the rotating frame 25 rotates to drive the rolling roller 26 to rotate, the dough is gradually rolled thin due to the middle concave design of the rolling roller 26, forming a shape similar to the traditional dumpling wrapper with thick middle and thin edges.

[0072] The advantage is that the middle concave design of the rolling roller 26 can automatically form the ideal shape of the dumpling wrapper with thick middle and thin edges during the rolling process, without the need for additional shaping process, improving the efficiency and quality of dumpling wrapper production, and making the produced dumpling wrapper more in line with the process requirements of dumpling wrapping.

[0073] Further, the rolling device 2 further comprises a rotating rod 27, which is rotatably arranged on the rotating frame 25, and the rolling roller 26 is rotatably arranged on the rotating rod 27; the rolling roller 26 is divided into four equal-length roller segments 28, each of which can independently rotate on the rotating rod 27.

[0074] In this embodiment, the rotating rod 27 is installed on the rotating frame 25, and the rolling roller 26 is rotatably arranged on the rotating rod 27, and the rolling roller 26 is divided into four equal-length roller segments 28, each of which can independently rotate on the rotating rod 27. During rolling, the dough is placed in the rolling space 12. When the rotating frame 25 rotates to drive the rotating rod 27 and the rolling roller 26 to rotate as a whole, since each roller segment 28 can rotate independently, for example, when rolling a larger piece of dough, the friction between different parts of the dough and each roller segment 28 is different, and each roller segment 28 can automatically adjust the rotation speed and angle according to the contact with the dough, so that each part of the dough can be uniformly rolled.

[0075] The advantage is that the rolling roller 26 is divided into four segments and can rotate independently, improving the adaptability of the rolling device 2 to different sizes and shapes of dough, allowing the dough to be more uniformly stressed during rolling, avoiding over-rolling or under-rolling in some parts, and further improving the quality and uniformity of dumpling wrapper production.

[0076] Further, the rolling device 2 further comprises a mounting frame 29, which is arranged on the rack 1 and located between the rotating frame 25 and the rolling die 4; a film 30 is arranged on the mounting frame 29, and the rolling roller 26 abuts against the dough through the film 30.

[0077] In this embodiment, the mounting frame 29 is installed on the rack 1 between the rotating frame 25 and the rolling die 4. The film 30 is fixed on the mounting frame 29, and the film 30 can be made of food-grade plastic film 30, so that the film 30 is evenly laid on the mounting frame 29. When the rolling roller 26 is rolled on the dough placed on the rolling die 4 under the driving of the rotating frame 25, the rolling roller 26 contacts the dough through the film 30.

[0078] The advantage is that the setting of the film 30 avoids the direct contact of the rolling roller 26 with the dough, prevents the dough from sticking to the rolling roller 26, and reduces the frequency and difficulty of cleaning the rolling roller 26. At the same time, the use of food-grade film 30 can ensure the health and safety of the dumpling wrappers, and meet the hygiene standards of food processing. The health quality and production efficiency of the dumpling wrapper production are improved, the equipment failure and production interruption caused by the dough sticking are reduced, and the continuous and efficient dumpling wrapper production is beneficial to be realized.

[0079] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limited. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present application, which should be covered in the scope of the claims of the present application.

Claims

1. An automatic dough-feeding rolling machine for processing dough into dough sheets, characterized in that, include: Rack (1); A dough rolling device (2) is mounted on the frame (1); Mounting plate (3), which is vertically slidably mounted on the frame (1); A dough rolling mold (4), the dough rolling mold (4) being disposed on the mounting plate (3), the dough rolling mold (4) comprising: An outer mold (5) is disposed on the mounting plate (3). The outer mold (5) has a first cavity (6) inside, and the first cavity (6) has a first contact surface (7). The first moving mold (8) is slidably disposed in the first cavity (6), and one end of the first moving mold (8) has a material holding surface (9) and a second abutting surface (10). Top rod (11), the top rod (11) is disposed on the frame (1) and located below the rolling die (4); After the mounting plate (3) slides close to the rolling device (2), the first contact surface (7) abuts against the second contact surface (10), the material holding surface (9) is located in the first cavity (6) and forms a rolling space (12) with the side wall of the first cavity (6), and the first moving mold (8) extends out of the first cavity (6) at one end away from the material holding surface (9). After the mounting plate (3) slides away from the rolling device (2), the first moving mold (8) is in contact with the top rod (11) at one end away from the material holding surface (9), so that the first moving mold (8) slides in the first cavity (6), so that the first abutting surface (7) and the second abutting surface (10) are released from contact, and the material holding surface (9) extends out of the cavity.

2. The automatic feeding dough rolling machine according to claim 1, characterized in that, The first moving mold (8) has a second cavity (13), the second cavity (13) has a third abutment surface (14) and a fourth abutment surface (15), and further includes: The second moving mold (16) has an abutment part (17) at one end, and the abutment part (17) is slidably disposed in the second cavity (13); Ejector rod (18), there are several ejector rods (18), one end of the ejector rod (18) is disposed on the abutment part (17), and the other end extends out of the second cavity (13). After the mounting plate (3) slides close to the rolling device (2), the abutting part (17) abuts against the third abutting surface (14), so that the other end of the ejector rod (18) coincides with the material holding surface (9), and the other end of the second moving mold (16) extends out of the second cavity (13). After the mounting plate (3) slides away from the rolling device (2), the other end of the second moving mold (16) contacts the top rod (11), pushing the second moving mold (16) to slide in the second cavity (13), so that the abutting part (17) abuts against the fourth abutting surface (15), so that the other end of the ejector rod (18) extends out of the material holding surface (9), pushing the first moving mold (8) to slide in the first cavity (6).

3. The automatic feeding dough rolling machine according to claim 1, characterized in that, The outer mold (5) has several grooves (19) that connect to the first cavity (6), and also includes: The slider (20) is slidably disposed in the groove (19). The slider (20) has an abutting inclined surface (21) at the end near the first moving mold (8). After the first moving mold (8) slides, the second abutting surface (10) abuts against the first abutting surface (7) through the abutting inclined surface (21). After the slider (20) slides, the abutting inclined surface (21) moves closer to or further away from the first moving mold (8) to adjust the thickness of the rolling space (12).

4. The automatic feeding dough rolling machine according to claim 3, characterized in that, Also includes: Guide rod (22), one end of which is disposed on the slider (20); An annular rotating plate (23) is rotatably mounted on the outer mold (5). The annular rotating plate (23) has several guide grooves (24). The other end of the guide rod (22) is slidably mounted in the guide groove (24). After the annular rotating plate (23) rotates, it drives several sliders (20) to slide synchronously in the slide groove (19).

5. A dough rolling machine with automatic feeding capability according to claim 2, characterized in that, Several of the ejector rods (18) are evenly distributed around the axis of the second moving mold (16).

6. The automatic feeding dough rolling machine according to claim 3, characterized in that, Several of the grooves (19) are evenly distributed around the axis of the first moving mold (8).

7. The automatic feeding dough rolling machine according to claim 1, characterized in that, The dough rolling device (2) includes: A rotating frame (25) is rotatably mounted on the frame (1); Roller (26) is rotatably mounted on the rotating frame (25). After the mounting plate (3) slides upward, the roller (26) comes into contact with the dough and rolls the dough into the dough sheet.

8. A dough rolling machine with automatic feeding capability according to claim 7, characterized in that, The rolling roller (26) has a concave shape in the middle section.

9. A dough rolling machine with automatic feeding capability according to claim 7, characterized in that, The dough rolling device (2) also includes: Rotating rod (27), the rotating rod (27) is rotatably mounted on the rotating frame (25), and the rolling roller (26) is rotatably mounted on the rotating rod (27); The rolling roller (26) is divided into four equal sections (28), and each section of the roller (28) can rotate independently on the rotating rod (27).

10. A dough rolling machine with automatic feeding capability according to claim 7, characterized in that, The dough rolling device (2) also includes: Mounting bracket (29), which is mounted on the frame (1) and located between the rotating frame (25) and the rolling mold (4); A film (30) is disposed on the mounting frame (29), and the rolling roller (26) abuts against the dough through the film (30).