Imitation handmade dumpling forming mechanism

By using a modular assembly and rotary drive component to mimic the shape of handmade dumplings, the problem of poor appearance quality in mechanically formed dumplings was solved, enabling the formation of pleats on the dumpling surface and improving both appearance quality and production efficiency.

CN223886088UActive Publication Date: 2026-02-10KANG HE MACHINERY & EQUIP CO LTD CHENGDU
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Patent Information

Application Number
CN202520519054.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2026-02-10
Estimated Expiration
2035-03-24

AI Technical Summary

Technical Problem

Currently, mechanically shaped dumplings cannot form wrinkles on their surface similar to those created by human finger joints, resulting in poor appearance quality.

Method used

A mechanism for forming dumplings in a simulated handmade manner was designed. Through the assembly module and rotary drive component on the mounting frame, the extrusion die can perform horizontal and rotary extrusion on the dumpling to form pleats or ridges, simulating the squeezing effect of human fingers.

Benefits of technology

It improves the appearance of dumplings, making them closer to the three-dimensional, plump, and beautiful effect of handmade dumplings, while also increasing production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of food processing and forming, in particular to an imitated handmade dumpling forming mechanism. Comprising a mounting frame, two oppositely-arranged first mounting plates are arranged on the mounting frame, a first driving mechanism for driving the two first mounting plates to move oppositely is arranged on the mounting frame, and mold closing blocks are arranged on the opposite faces of the two first mounting plates correspondingly; the mold closing block comprises two extrusion mold petals rotationally arranged on the first mounting plate, and a rotary driving assembly for driving the two extrusion mold petals to extrude each other is further arranged on the first mounting plate. According to the dumpling forming machine, dumplings can be horizontally extruded and formed through the two oppositely arranged mold closing pieces, and then the dumplings are rotationally extruded through the extrusion mold petals, so that wrinkles or convex ribs are formed on dumpling bellies of the dumplings, the dumplings are ensured to have shapes similar to those extruded by human finger joints in appearance, and the appearance of the dumplings is improved.
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Description

Technical Field

[0001] This utility model relates to the field of food processing and forming technology, specifically to a mechanism for forming dumplings that mimics handmade dumplings. Background Technology

[0002] Traditional handmade dumplings have many unique characteristics compared to machine-made dumplings currently on the market. During the hand-wrapping process, the dumplings naturally develop compression patterns and pleats, giving them a three-dimensional, full structure and an attractive appearance. However, purely handmade dumplings not only present hygiene issues, but also struggle to meet the demands of modern economic conditions in terms of production costs and efficiency. Furthermore, due to variations in handcrafting techniques and skill levels, the finished products can vary significantly in appearance.

[0003] Chinese utility model patent CN217446428U discloses a quick-frozen dumpling making machine, including a base. Support plates are fixed on the front and rear sides of the top of the base. A left pressing mold and a right pressing mold are movably hinged between the two support plates through a hinge shaft. The left pressing mold and the right pressing mold have a symmetrical structure. Multiple symmetrical forming cavities are opened on the side of the left pressing mold and the right pressing mold that are close to each other. A sealing ring is fixed on the lower inner wall of the multiple forming cavities. A pressing mechanism is provided on the top of the base.

[0004] The aforementioned patent can compress and shape dumplings, but it cannot create folds on the dumpling's belly similar to those formed by human finger joints, resulting in poor appearance quality of the dumplings. Utility Model Content

[0005] The technical problem to be solved by this utility model is to provide a handmade dumpling forming mechanism that can form pleats on dumplings.

[0006] The technical solution adopted by this utility model to solve its technical problem is a handmade dumpling forming mechanism, including a mounting frame. The mounting frame is provided with two first mounting plates arranged opposite each other. The mounting frame is provided with a first driving mechanism that drives the two first mounting plates to move relative to each other. A closing module is provided on the opposite surface of the two first mounting plates. The closing module includes two extrusion molds rotatably mounted on the first mounting plate. The first mounting plate is also provided with a rotary driving component that drives the two extrusion molds to squeeze each other.

[0007] Furthermore, the rotary drive assembly includes a movable rod disposed on the outside of the first mounting plate, the movable rod being provided with a rack, the outside of the first mounting plate being provided with a first gear cooperating with the rack and a second gear cooperating with the first gear, the first gear being connected to one of the extrusion die segments via a connecting column, the second gear being connected to the other extrusion die segment via a connecting column, and the first mounting plate being provided with a first telescopic mechanism for driving the movable rod to reciprocate along its axial direction.

[0008] Furthermore, the two extrusion die segments are connected by a first rotating shaft, each extrusion die segment includes two die segment units, and the two die segment units are connected by a second rotating shaft. The axes of the first rotating shaft and the second rotating shaft are arranged in parallel. The connecting post is fixedly connected to the upper die segment unit, and a connecting arm is provided on the connecting post. The end of the connecting arm is rotatably connected to the lower end of the lower die segment unit.

[0009] Furthermore, the first telescopic mechanism includes two opposing second mounting plates disposed on the outer side of the first mounting plate, and a telescopic cylinder is disposed between the second mounting plates. The telescopic cylinder includes a cylinder body, and a piston rod is coaxially disposed inside the cylinder body. A coaxial piston ring is fixed on the piston rod, and the piston rod extends to the outside of the second mounting plate. The end of the piston rod is fixedly connected to the end of the moving rod through a connecting plate.

[0010] Furthermore, a third mounting plate is provided between the second mounting plate and the connecting plate. The third mounting plate is fixedly connected to the piston rod. The third mounting plate is provided with a threaded hole, and a limit bolt is provided in the threaded hole. The limit bolt is opposite to the second mounting plate.

[0011] Furthermore, the mounting bracket includes two opposing fourth mounting plates, the tops of which are connected by a fixing plate. Two first mounting plates are disposed between the two fourth mounting plates, and the two fourth mounting plates are connected by two fixing rods located at the two ends of the fourth mounting plates respectively. The two ends of the first mounting plates are provided with sliding holes that cooperate with the fixing rods. The first mounting plates can move along the axial direction of the fixing rods. The first driving mechanism is a cylinder, which is disposed on the outside of the fourth mounting plates. The output end of the first driving mechanism is fixedly connected to the first mounting plate.

[0012] Furthermore, a fifth mounting plate is horizontally arranged between the two first mounting plates, and a cleaning component is provided on the fifth mounting plate. A second telescopic mechanism is provided above the fixed plate, and the output end of the second telescopic mechanism extends to the bottom of the fixed plate and is fixedly connected to the fifth mounting plate.

[0013] Furthermore, the cleaning component includes a mounting base and bristles. The mounting base extends along the length of the first mounting plate, and the bristles are disposed on the side wall of the mounting base opposite to the assembly module and are spaced apart along the length of the mounting base. A first guide is provided on the mounting base, and a second guide is provided on the fifth mounting plate to cooperate with the first guide.

[0014] Furthermore, both the first mounting plate and the fourth mounting plate are provided with hollowed-out sections.

[0015] Furthermore, the number of composite modules on each of the first mounting plates is three.

[0016] The beneficial effects of this utility model are: the dumplings can be horizontally extruded and shaped by two opposing mold parts, and then the dumplings are rotated and extruded by the extrusion mold, so that wrinkles or ridges are formed on the dumpling belly, ensuring that the dumplings have a shape similar to that of human finger joints, thus improving the appearance of the dumplings. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model;

[0018] Figure 2 yes Figure 1 Exploded view;

[0019] Figure 3 A schematic diagram showing the connection between the rotary drive assembly and the assembly module;

[0020] Figure 4 yes Figure 3 Rear view;

[0021] Figure 5 yes Figure 3 Top view;

[0022] Figure 6 yes Figure 2 Enlarged view of point A in the middle.

[0023] Reference numerals: 1-Mounting bracket; 101-Fourth mounting plate; 102-Fixing plate; 103-Fixing rod; 2-First mounting plate; 201-Sliding hole; 3-First drive mechanism; 4-Completing module; 401-Extrusion mold piece; 4011-Mold piece unit; 5-Rotation drive assembly; 501-Moving rod; 502-Rack; 503-First gear; 504-Second gear; 505-Connecting column; 506-First rotating shaft; 507-Second rotating shaft; 508-Connecting arm; 509-Second mounting plate; 510-Telescopic cylinder; 511-Piston rod; 512-Connecting plate; 513-Third mounting plate; 514-Limit bolt; 6-Fifth mounting plate; 601-Second guide; 7-Cleaning assembly; 701-Mounting seat; 702-Bristles; 703-First guide; 8-Second telescopic mechanism. Detailed Implementation

[0024] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain this utility model, and should not be construed as limiting this utility model.

[0025] like Figures 1-6 As shown, the present invention, a handmade dumpling forming mechanism, includes a mounting frame 1, on which two opposing first mounting plates 2 are mounted. The mounting frame 1 is provided with a first driving mechanism 3 that drives the two first mounting plates 2 to move relative to each other. A joining module 4 is provided on the opposing surfaces of the two first mounting plates 2. The joining module 4 includes two extrusion molds 401 rotatably mounted on the first mounting plates 2. The first mounting plates 2 are also provided with a rotary driving assembly 5 that drives the two extrusion molds 401 to press against each other.

[0026] For ease of description, the terms "upper," "lower," "left," and "right" used below are consistent with the left and right directions in the accompanying drawings, but do not limit the structure of this utility model.

[0027] Among them, such as Figure 1 As shown, the mounting frame 1 serves as a support for other components, and the support frame can be made of steel plate. The first mounting plate 2 can be made of stainless steel plate, and the first drive mechanism 3 can be a hydraulic cylinder or an electric push rod. The fixed end of the first drive mechanism 3 is fixedly connected to the mounting frame 1, and the output end is fixedly connected to the first mounting plate 2, thus pushing the two first mounting plates 2 to move relative to each other. The connecting modules 4 on the two first mounting plates 2 correspond one-to-one. The opposite surface of the first mounting plate 2 refers to the side located between the two first mounting plates 2. The two first mounting plates 2 move closer to each other, and then the two connecting modules 4 horizontally compress the dumpling wrapper. Preferably, at least two connecting modules 4 can be provided on the side of each first mounting plate 2; see [link to other documentation]. Figure 3 Three forming modules 4 are provided on the inner side of the first mounting plate 221, enabling the dumpling rotary pressing device to extrude and form three dumplings simultaneously, thereby improving production efficiency. The rotary drive assembly 5 can be a forward and reverse motor. The number of forward and reverse motors is the same as the number of extrusion molds 401 on the first mounting plate 2. One motor of extrusion mold 401 is driven to rotate forward (reverse), while the motor of the other extrusion mold 401 rotates in reverse (forward). This allows the two extrusion molds 401 to press against each other or move away from each other.

[0028] In the above embodiment, using a forward and reverse motor to drive the two extrusion die segments 401 to press against each other may cause the two extrusion die segments 401 to rotate asynchronously. Further, see... Figures 2-5In a preferred embodiment, the rotary drive assembly 5 includes a movable rod 501 disposed on the outer side of the first mounting plate 2, a rack 502 disposed on the movable rod 501, a first gear 503 cooperating with the rack 502 and a second gear 504 cooperating with the first gear 503 disposed on the outer side of the first mounting plate 2, the first gear 503 being connected to one of the extrusion die segments 401 via a connecting post 505, and the second gear 504 being connected to the other extrusion die segment 401 via a connecting post 505, and a first telescopic mechanism for driving the movable rod 501 to reciprocate along its axial direction is disposed on the first mounting plate 2. The movable rod 501 can move left and right relative to the first mounting plate 2. The length of the rack 502 on each movable rod 501 is determined according to the rotation angle of the extrusion die 401. The first gear 503 meshes with the rack 502 and is connected to one of the extrusion dies 401 through the connecting column 505. A bearing through hole can be manufactured on the first mounting plate 2, and a bearing is installed in the through hole. The inner ring of the bearing is fixedly connected to the connecting column 505, and the outer ring is fixedly connected to the inner wall of the bearing through hole. When the movable rod 501 moves, it can drive the first gear 503 to rotate through the rack 502, thereby driving one of the extrusion dies 401 to rotate. The second gear 504 meshes with the first gear 503. When the first gear 503 rotates, the second gear 504 rotates synchronously, thereby driving the other extrusion die 401 to rotate synchronously. The first telescopic mechanism can be a hydraulic cylinder. The fixed end of the first telescopic mechanism is fixedly connected to the first mounting plate 2, and the output end is fixedly connected to the movable rod 501, so that the movable rod 501 can be driven to reciprocate along its axial direction.

[0029] To create more pleats on the dumplings, further see... Figure 3In a preferred embodiment, the two extrusion die segments 401 are connected by a first rotating shaft 506. Each extrusion die segment 401 includes two die segment units 4011, which are connected by a second rotating shaft 507. The axes of the first rotating shaft 506 and the second rotating shaft 507 are arranged in parallel. The connecting post 505 is fixedly connected to the upper die segment unit 4011. A connecting arm 508 is provided on the connecting post 505, and the end of the connecting arm 508 is rotatably connected to the lower end of the lower die segment unit 4011. The moving rod 501 drives the first gear 503 to rotate, and the first gear 503 synchronously drives the second gear 504 to rotate, so that the two extrusion molds 401 rotate and extrude the dumpling. First, under the action of the first gear 503 and the second gear 504, the two upper mold units 4011 approach each other to form the first fold. At the same time, under the action of the connecting arm 508, the lower mold unit 4011 rotates around the second rotating shaft 507 relative to the upper mold unit 4011, forming the second and third folds between the upper and lower mold units 4011, making the appearance of the dumpling closer to that of handmade dumplings.

[0030] When the first telescopic mechanism uses a hydraulic cylinder, which is driven by hydraulic oil, a seal failure can easily cause hydraulic oil leakage, contaminating the dumplings that are being formed. Further details can be found in [link to relevant documentation]. Figure 5The first telescopic mechanism includes two opposing second mounting plates 509 disposed on the outer side of the first mounting plate 2. A telescopic cylinder 510 is disposed between the second mounting plates 509. The telescopic cylinder 510 includes a cylinder body. A piston rod 511 is coaxially disposed inside the cylinder body. A coaxial piston ring is fixed on the piston rod 511. The piston rod 511 extends to the outside of the second mounting plate 509. The end of the piston rod 511 is fixedly connected to the end of the moving rod 501 through a connecting plate 512. Two second mounting plates 509 can be fixedly connected to the first mounting plate 2 by bolts or integral molding. The two second mounting plates 509 form an installation space for mounting a telescopic cylinder 510. The axis of the telescopic cylinder 510 is horizontal. The telescopic cylinder 510 includes a cylinder body, inside which a piston rod 511 is coaxially arranged. A coaxial piston ring is fixed on the piston rod 511, thus forming two air intake spaces between the piston ring and the cylinder body. When air is intake from the left, the piston ring moves to the right, causing the piston rod 511 to move to the right; when air is intake from the right, the piston ring moves to the left, causing the piston rod 511 to move to the left. A through hole can be made in the second mounting plate 509 for the piston rod 511 to pass through, allowing the piston rod 511 to extend to the outside of the second mounting plate 509. One end of the piston rod 511 is fixedly connected to the end of the moving rod 501 via a connecting plate 512, and the other end of the piston rod 511 is fixedly connected to the other end of the moving rod 501 via a connecting plate 512. In this way, when the piston rod 511 moves left and right, it can drive the moving rod 501 to move left and right.

[0031] To prevent excessive stroke of the telescopic cylinder 510 from causing problems with the meshing of the rack 502 and the first gear 503, the rotation of the first gear 503 can be adjusted. Further details can be found in [link to relevant documentation]. Figure 5A third mounting plate 513 is provided between the second mounting plate 509 and the connecting plate 512. The third mounting plate 513 is fixedly connected to the piston rod 511. The third mounting plate 513 is provided with a threaded hole, and a limit bolt 514 is provided in the threaded hole. The limit bolt 514 is opposite to the second mounting plate 509. The piston rod 511 and the third mounting plate 513 can be connected by bolts. If the piston rod 511 and the third mounting plate 513 are made of steel, they can also be connected by welding. The third mounting plate 513 is arranged parallel to the second mounting plate 509. The axis of the threaded hole is perpendicular to the outer surface of the second mounting plate 509. A limiting bolt 514 is screwed into the threaded hole. The head of the limiting bolt 514 is located between the second mounting plate 509 and the third mounting plate 513. When the piston rod 511 moves to the left to its maximum stroke, the head of the limiting bolt 514 on the right side of the cylinder abuts against the second mounting plate 509. When the piston rod 511 moves to the right to its maximum stroke, the head of the limiting bolt 514 on the left side of the cylinder abuts against the second mounting plate 509. This limits the maximum stroke of the piston rod 511. At the same time, the amount by which the limiting bolt 514 is screwed into the threaded hole can be adjusted to adjust the maximum stroke of the piston rod 511.

[0032] Mounting bracket 1 is made of steel plate, and the first drive mechanism 3 is a hydraulic cylinder or an electric push rod. The fixed end of the first drive mechanism 3 is fixedly connected to the mounting bracket 1, and the output end is fixedly connected to the first mounting plate 2. This configuration results in poor stability of the first mounting plate 2 during movement. As a preferred embodiment, further, see... Figure 2The mounting bracket 1 includes two fourth mounting plates 101 arranged opposite to each other. The tops of the two fourth mounting plates 101 are connected by a fixing plate 102. Two first mounting plates 2 are disposed between the two fourth mounting plates 101. The two fourth mounting plates 101 are connected by two fixing rods 103. The two fixing rods 103 are respectively located at the two ends of the fourth mounting plates 101. The two ends of the first mounting plates 2 are provided with sliding holes 201 that cooperate with the fixing rods 103. The first mounting plates 2 can move along the axial direction of the fixing rods 103. The first driving mechanism 3 is a cylinder. The first driving mechanism 3 is disposed on the outside of the fourth mounting plates 101. The output end of the first driving mechanism 3 is fixedly connected to the first mounting plate 2. The fourth mounting plate 101 and the first mounting plate 2 are arranged in parallel. The fixing plate 102 and the fourth mounting plate 101 can be connected by bolts. If both the fourth mounting plate 101 and the fixing plate 102 are made of steel, they can also be connected by welding. The fixing rod 103 is located at both ends of the fourth mounting plate 101. The axis of the fixing rod 103 is perpendicular to the inner side of the fourth mounting plate 101. The connection method can be bolted. The first mounting plate 2 has sliding holes 201 at both ends that cooperate with the fixing rod 103. The first mounting plate 2 can move along the axis of the fixing rod 103. The fixing rod 103 guides the movement of the first mounting plate 2 and ensures the stability of the first mounting plate 2 during movement. The first driving mechanism 3 is located on the outside of the fourth mounting plate 101. The fixed end of the first driving mechanism 3 is fixedly connected to the fourth mounting plate 101, and the output end of the first driving mechanism 3 is fixedly connected to the first mounting plate 2.

[0033] During use, due to the adhesive nature of the dumpling belt, after the two assembly modules 4 are closed, the formed dumplings may stick to the assembly module 4, affecting subsequent dumpling forming. Further details can be found in the documentation. Figure 2A fifth mounting plate 6 is horizontally arranged between the two first mounting plates 2. A cleaning component 7 is provided on the fifth mounting plate 6. A second telescopic mechanism 8 is provided above the fixed plate 102. The output end of the second telescopic mechanism 8 extends to the bottom of the fixed plate 102 and is fixedly connected to the fifth mounting plate 6. The fifth mounting plate 6 is located in the middle of the two first mounting plates 2. The cleaning component 7 can be a brush 702 attached to the fifth mounting plate 6. The second telescopic mechanism 8 can be a cylinder or an electric push rod. The axis of the second telescopic mechanism 8 is arranged vertically. The fixed end of the second telescopic mechanism 8 is fixedly connected to the fixed plate 102, and the output end extends to the bottom of the fixed plate 102 and is fixedly connected to the fifth mounting plate 6. During the dumpling forming process, the two first mounting plates 2 move relative to each other under the action of the first driving mechanism 3, which in turn drives the assembly module 4 to move relative to each other. The rotation driving mechanism drives the two extrusion molds 401 to extrude each other to complete the dumpling forming. After the dumpling is formed, the two first mounting plates 2 move away from each other under the action of the first driving mechanism 3, which in turn drives the assembly module 4 to move away from each other. At the same time, the second telescopic mechanism 8 drives the fifth mounting plate 6 to move downward. The cleaning component 7 on the fifth mounting plate 6 pushes the dumpling attached to the assembly module 4 off.

[0034] Since the cleaning component 7 will be in continuous contact with the assembly module 4, for ease of replacement after wear, see further... Figure 6 The cleaning component 7 includes a mounting base 701 and bristles 702. The mounting base 701 extends along the length of the first mounting plate 2. The bristles 702 are disposed on the side wall of the mounting base 701 opposite to the assembly module 4 and are spaced apart along the length of the mounting base 701. A first guide 703 is provided on the mounting base 701, and a second guide 601 that cooperates with the first guide 703 is provided on the fifth mounting plate 6. The length of the mounting base 701 does not exceed the distance between the leftmost and rightmost assembly modules 4. The bristles 702 are arranged on the side wall of the mounting base 701 opposite to the assembly modules 4 and are spaced apart along the length of the mounting base 701. This allows the bristles 702 to better contact the assembly modules 4 during the downward movement of the second telescopic mechanism 8. The first guide 703 can be a dovetail block and the second guide 601 can be a dovetail groove, or the first guide 703 can be a T-block and the second guide 601 can be a T-groove. The extension direction of the first guide 703 is consistent with the length direction of the fifth mounting plate 6, so that the bristles 702 can be easily replaced after wear.

[0035] To further reduce the weight of the entire mechanism, see also... Figure 2 Both the first mounting plate 2 and the fourth mounting plate 101 are provided with hollowed-out sections.

[0036] The embodiments described herein are preferred embodiments of this utility model and are not intended to limit the scope of protection of this utility model. Therefore, all equivalent changes made to the structure, shape, and principle of this utility model should be included within the scope of protection of this utility model.

Claims

1. A mechanism for forming imitation handmade dumplings, comprising a mounting frame (1), wherein two opposing first mounting plates (2) are mounted on the mounting frame (1), and a first driving mechanism (3) is provided on the mounting frame (1) to drive the two first mounting plates (2) to move relative to each other, characterized in that: A combination module (4) is provided on the opposite surfaces of the two first mounting plates (2). The combination module (4) includes two extrusion molds (401) rotatably mounted on the first mounting plate (2). A rotation drive assembly (5) is also provided on the first mounting plate (2) to drive the two extrusion molds (401) to press against each other.

2. The simulated handmade dumpling forming mechanism as described in claim 1, characterized in that: The rotary drive assembly (5) includes a movable rod (501) disposed on the outside of the first mounting plate (2). A rack (502) is disposed on the movable rod (501). A first gear (503) that cooperates with the rack (502) and a second gear (504) that cooperates with the first gear (503) are disposed on the outside of the first mounting plate (2). The first gear (503) is connected to one of the extrusion die segments (401) through a connecting column (505). The second gear (504) is connected to the other extrusion die segment (401) through a connecting column (505). A first telescopic mechanism is disposed on the first mounting plate (2) to drive the movable rod (501) to reciprocate along its axial direction.

3. The simulated handmade dumpling forming mechanism as described in claim 2, characterized in that: The two extrusion die segments (401) are connected by a first rotating shaft (506). Each extrusion die segment (401) includes two die segments (4011). The two die segments (4011) are connected by a second rotating shaft (507). The axes of the first rotating shaft (506) and the second rotating shaft (507) are arranged in parallel. The connecting post (505) is fixedly connected to the upper die segment (4011). A connecting arm (508) is provided on the connecting post (505). The end of the connecting arm (508) is rotatably connected to the lower end of the lower die segment (4011).

4. The simulated handmade dumpling forming mechanism as described in claim 2, characterized in that: The first telescopic mechanism includes two opposing second mounting plates (509) disposed on the outside of the first mounting plate (2). A telescopic cylinder (510) is disposed between the second mounting plates (509). The telescopic cylinder (510) includes a cylinder body. A piston rod (511) is coaxially disposed inside the cylinder body. A coaxial piston ring is fixed on the piston rod (511). The piston rod (511) extends to the outside of the second mounting plate (509). The end of the piston rod (511) is fixedly connected to the end of the moving rod (501) through a connecting plate (512).

5. The simulated handmade dumpling forming mechanism as described in claim 4, characterized in that: A third mounting plate (513) is provided between the second mounting plate (509) and the connecting plate (512). The third mounting plate (513) is fixedly connected to the piston rod (511). The third mounting plate (513) is provided with a threaded hole, and a limit bolt (514) is provided in the threaded hole. The limit bolt (514) is opposite to the second mounting plate (509).

6. The simulated handmade dumpling forming mechanism as described in claim 1, characterized in that: The mounting bracket (1) includes two opposing fourth mounting plates (101), the tops of the two fourth mounting plates (101) are connected by a fixing plate (102), two first mounting plates (2) are disposed between the two fourth mounting plates (101), the two fourth mounting plates (101) are connected by two fixing rods (103), the two fixing rods (103) are respectively located at the two ends of the fourth mounting plates (101), the two ends of the first mounting plate (2) are provided with sliding holes (201) that cooperate with the fixing rods (103), the first mounting plate (2) can move along the axial direction of the fixing rods (103), the first driving mechanism (3) is a cylinder, the first driving mechanism (3) is disposed on the outside of the fourth mounting plate (101), and the output end of the first driving mechanism (3) is fixedly connected to the first mounting plate (2).

7. The simulated handmade dumpling forming mechanism as described in claim 6, characterized in that: A fifth mounting plate (6) is horizontally arranged between the two first mounting plates (2). A cleaning component (7) is provided on the fifth mounting plate (6). A second telescopic mechanism (8) is provided above the fixed plate (102). The output end of the second telescopic mechanism (8) extends to the bottom of the fixed plate (102) and is fixedly connected to the fifth mounting plate (6).

8. The simulated handmade dumpling forming mechanism as described in claim 7, characterized in that: The cleaning component (7) includes a mounting base (701) and bristles (702). The mounting base (701) extends along the length of the first mounting plate (2). The bristles (702) are disposed on the side wall of the mounting base (701) opposite to the assembly module (4) and are spaced apart along the length of the mounting base (701). A first guide (703) is provided on the mounting base (701), and a second guide (601) is provided on the fifth mounting plate (6) to cooperate with the first guide (703).

9. The simulated handmade dumpling forming mechanism as described in claim 6, characterized in that: Both the first mounting plate (2) and the fourth mounting plate (101) are provided with hollowed-out parts.

10. The simulated handmade dumpling forming mechanism as described in claim 1, characterized in that: The number of composite modules (4) on each of the first mounting plates (2) is three.

Citation Information

Patent Citations

  • Quick-frozen dumpling making machine

    CN217446428U