Automatic portable wonton machine
Through the coordinated work of mechanical components controlled by automation, the full process automation of the wonton machine is achieved, the problem of low production efficiency is solved, the production efficiency is improved, and the consistency and stability of the product are ensured.
Patent Information
- Application Number
- CN202510313875.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-17
- Publication Date
- 2025-07-04
AI Technical Summary
The existing wonton machines can only complete a single process, resulting in low production efficiency and the inability to automate the entire process from kneading to molding.
Through the automated control of mechanical components, including the joint work of stirring components, rolling components, cutting components, transfer components, and filling components, conveying components, folding components and receiving components, the automation of cutting, filling filling and packaging processes is achieved.
The dough mixing and rolling process are achieved synchronously, shortening the production cycle, improving production efficiency, ensuring the consistency and stability of wonton products, and reducing dependence on manual operations.
Smart Images

Figure CN120240484A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of food processing, and particularly relates to an automated and portable wonton machine. Background Art
[0002] A wonton machine is a mechanical device designed specifically for making wontons (ravioli). It is internally equipped with a mold and a pressing device. The mixed filling is placed in the mold, and the dough wrapper and the filling are combined to form wontons through the pressing device. This equipment not only improves production efficiency but also reduces labor costs, while maintaining the quality and taste consistency of wontons.
[0003] In the prior art, although some wonton machines can achieve the function of making wontons, there are still some deficiencies. Specifically, some wonton machines can only complete a single process (such as pressing the dough wrapper or filling the filling), and cannot achieve full-process automation from dough mixing to forming, resulting in low production efficiency.
[0004] In summary, how to solve the problem that some wonton machines in the prior art can only complete a single function of pressing the dough wrapper or filling the filling, which may lead to low production efficiency has become a difficult problem that needs to be solved urgently in the current field. Therefore, it is necessary to propose an automated and portable wonton machine. Summary of the Invention
[0005] To solve the above problems, the present invention provides an automated and portable wonton machine, which realizes automation in the processes of cutting and pressing, filling the filling, and wrapping through the automated control of each mechanical component; reduces the dependence on manual operation and further improves production efficiency.
[0006] To achieve the above object, the technical solution of the present invention is as follows: An automated and portable wonton machine includes a housing. A dough hopper for putting dough and a filling hopper for putting wonton filling are communicated at the top of the housing. The tops of the dough hopper and the filling hopper are both detachably connected with top covers. Inside the housing, there are a mixing component for mixing the dough and a dough rolling component for rolling the dough wrapper.
[0007] The mixing component includes a controller, a first driving member, and a plurality of first augers. The first augers are all located at the lower part inside the dough hopper. The controller is used to control the first driving member to rotate. The first driving member is fixedly connected to the inner bottom wall of the housing. The output shaft of the first driving member is coaxially fixedly connected with a first runner. A first belt is tensioned on the first runner. A second runner is tensioned on the first belt. The second runner is coaxially fixedly connected to one of the first augers. One end of the first auger away from the second runner is coaxially fixedly connected with a first gear.
[0008] The dough rolling component includes a plurality of rotating rods, and the rotating rods are all located below the first augers. Second gears are coaxially fixedly connected to the rotating rods. The adjacent second gears are meshed with each other. The second gears are all meshed with the first gears adjacent to them.
[0009] Inside the outer shell, there are also a cutting and pressing component for cutting and pressing the dough sheet, a conveying component for conveying the dough sheet, a stuffing mixing component for mixing the wonton filling, a conveying component for conveying the wonton filling, a dough folding component for folding the wonton wrapper, and a receiving component for receiving the wonton wrapper.
[0010] The technical principle of the above solution is as follows:
[0011] The first driving member drives the first runner to rotate. Since the first belt is tensioned by the first runner and the second runner is tensioned by the first belt, and the second runner is coaxially and fixedly connected to one of the first augers, the second runner can be driven to rotate by the first belt. When the second runner rotates, it drives the first auger to rotate. Since the first augers are all coaxially and fixedly connected with first gears, the first gears are all meshed with second gears, the adjacent second gears are meshed with each other, and the second gears are all coaxially and fixedly connected to the rotating rod; when the first auger rotates, it can drive the first gear to rotate, the first gear drives the second gear to rotate, the second gear drives the adjacent second gear to rotate, and the adjacent second gear drives the first gear meshed with it to rotate.
[0012] When the first gear rotates, it drives the first auger to rotate, and when the first auger rotates, it stirs the dough. When the second gear rotates, it drives the rotating rod to rotate, and when the rotating rod rotates, it can extrude the dough into a dough sheet shape; the dough sheet is then cut and pressed by the cutting and pressing component into wonton wrappers, the conveying component conveys the wonton wrappers to the dough folding component, the wonton filling is injected onto the wonton wrappers through the conveying component, and the wonton is wrapped by the dough folding component.
[0013] The above solution has the following beneficial effects:
[0014] 1. Through the first driving member, the belt drive system and the gear linkage, the present invention can drive the first auger and the rotating rod to rotate. When the first auger rotates, it stirs the dough, and by using the rotating rod, the dough can be extruded and rolled into a dough sheet shape. Through the coordinated work of the first auger and the rotating rod, the dough stirring and rolling are carried out synchronously, further shortening the production cycle.
[0015] 2. Through the automatic control of each mechanical component, the present invention realizes the automation of the cutting and pressing, filling and wrapping processes; reduces the dependence on manual operation and further improves the production efficiency.
[0016] 3. Through the automated production process, the present invention ensures precise control of each step, such as the degree of dough stirring, the thickness of the dough sheet, the size of the wonton wrapper, and the amount of filling, etc., thus ensuring the consistency and stability of the wonton products.
[0017] Furthermore, the conveying component includes an electric conveyor belt, the electric conveyor belt is located below the cutting and pressing component, and the controller is used to control the opening and closing of the electric conveyor belt.
[0018] Beneficial effects: By starting the electric conveyor belt through the controller, the cut and pressed dough sheets can be conveyed, realizing an automated conveying process.
[0019] Furthermore, the cutting and pressing assembly includes a first telescopic member, a cutting knife, and a plurality of pressing rods. The controller is used to control the telescopic movement of the first telescopic member; the pressing rods are all located above the electric conveyor belt, and the pressing rods are all rotatably fitted to the inner side wall of the housing; the first telescopic member is fixedly connected to the inner side wall of the housing; the output shaft of the first telescopic member is fixedly connected to the cutting knife.
[0020] Beneficial effects: When the electric conveyor belt drives the dough sheet to be conveyed, since the pressing rods are all located above the electric conveyor belt and the pressing rods are all rotatably fitted to the inner side wall of the housing, when the electric conveyor belt conveys the dough sheet, it can drive the pressing rods to rotate, and the pressing rods can press the dough sheet. Since the cutting knife is fixedly connected to the output shaft of the first telescopic member, the cutting knife can be driven by the first telescopic member to cut the dough sheet, so that the dough sheet is cut into wonton wrappers, and the wonton wrappers are then continuously conveyed by the electric conveyor belt to the wrapper folding assembly.
[0021] Furthermore, the stuffing assembly includes a second driving member, a second belt, a third runner, and a fourth runner. The controller is used to control the rotation of the second driving member; the second driving member is fixedly connected to the inner side wall of the housing, and the output shaft of the second driving member is coaxially fixedly connected to the third runner; both the third runner and the fourth runner are tensioned with the second belt, and the fourth runner is coaxially fixedly connected with a second auger, and the second auger is located inside the stuffing hopper.
[0022] Beneficial effects: By driving the third runner to rotate through the second driving member, since both the third runner and the fourth runner are tensioned with the second belt and the fourth runner is coaxially fixedly connected with the second auger, the fourth runner can be driven to rotate through the second belt, and the fourth runner drives the second auger to rotate. When the second auger rotates, it can mix the wonton stuffing.
[0023] Furthermore, the conveying assembly includes a conveying pipe in a "Z" shape, and the conveying pipe is communicated with the bottom of the stuffing hopper; a second telescopic member is also fixedly connected to the inner top wall of the housing. The controller is used to control the telescopic movement of the second telescopic member; the output shaft of the second telescopic member extends into the conveying pipe and is slidably fitted to the inner side wall of the conveying pipe.
[0024] Beneficial effects: When the wonton wrapper is conveyed above the wrapper folding assembly, since the conveying pipe is communicated with the bottom of the stuffing hopper and the output shaft of the second telescopic member extends into the conveying pipe, when the wonton stuffing falls into the conveying pipe, by controlling the telescopic length of the output shaft of the second telescopic member, the wonton stuffing can be injected onto the wonton wrapper below, and the wonton wrapper and the wonton stuffing can be injected onto the receiving assembly.
[0025] Furthermore, the dough wrapper folding assembly includes a fixed disk, a rotating disk, and several trapezoidal blocks. A tray is also fixedly connected to the inner side wall of the housing. The fixed disk is fixedly connected to the tray, and the rotating disk is rotatably fitted to the inner wall of the fixed disk. A diamond-shaped groove is formed in the rotating disk, and sliders are fixedly connected to the bottoms of the trapezoidal blocks. The sliders are all slidably fitted within the diamond-shaped groove. Rods are fixedly connected to the tops of the trapezoidal blocks, and moving grooves are formed in the fixed disk along its circumferential direction. The rods are all slidably fitted to the adjacent moving grooves. Communication interfaces are formed in both the fixed disk and the rotating disk, and an opening communicating with the interfaces is formed in the tray.
[0026] A rotating assembly for driving the movement of the rotating disk is further provided at the bottom of the rotating disk.
[0027] Beneficial effects: When the wonton wrapper is punched onto the receiving assembly, the rotating disk is driven to rotate by the rotating assembly. Since the diamond-shaped groove is formed in the rotating disk and the sliders on the trapezoidal blocks are all slidably fitted within the diamond-shaped groove, when the rotating disk rotates, the trapezoidal blocks can be driven to open and close through the sliders, and the wontons are wrapped when closed. During this process, the rods and the moving grooves provide a limiting effect on the trapezoidal blocks, ensuring the stable movement of the trapezoidal blocks.
[0028] Furthermore, the rotating assembly includes a third driving member, a third gear, and an arc-shaped gear ring. The third driving member is fixedly connected to the inner wall of the fixed disk. The controller is used to control the rotation of the third driving member. The output shaft of the third driving member is coaxially fixedly connected to the third gear, and the third gear meshes with the arc-shaped gear ring. The arc-shaped gear ring is embedded and installed at the bottom of the rotating disk.
[0029] Beneficial effects: The third gear is driven to rotate by the third driving member. Since the third gear meshes with the arc-shaped gear ring and the arc-shaped gear ring is embedded and installed at the bottom of the rotating disk, the rotating disk can be driven to rotate through the third gear.
[0030] Furthermore, the receiving assembly includes a bracket, symmetrically installed receiving arms, and arc-shaped rods. The bracket is fixedly connected to the bottom of the tray. A fourth driving member is fixedly connected to the bracket. The controller is used to control the rotation of the fourth driving member. The output shaft of the fourth driving member penetrates through the bracket and is coaxially fixedly connected to a lead screw. A nut seat is threadedly fitted on the lead screw. The nut seat is slidably fitted with the bracket in the transverse direction. The arc-shaped rods are all hinged to both sides of the nut seat, and the ends of the arc-shaped rods away from the nut seat are all hinged to the receiving arms. A plurality of connecting rods are hinged to one side of the bracket away from the fourth driving member, and the ends of the connecting rods away from the bracket are all hinged to the adjacent receiving arms.
[0031] Beneficial effects: The fourth driving member drives the lead screw to rotate. Since a nut seat is in threaded engagement with the lead screw and the nut seat is in transverse sliding engagement with the bracket, the rotation of the lead screw can be converted into the transverse movement of the nut seat. Since the nut seat is hinged to the arc-shaped rod, the arc-shaped rod is hinged to the receiving arm, and a connecting rod is also hinged to the bracket, and the other end of the connecting rod is hinged to the receiving arm, when the nut seat moves transversely, the receiving arm can be opened or closed through the arc-shaped rod, thereby realizing the opening and closing function of the receiving arm. When the receiving arm is closed, it can receive wontons, and after the wonton wrappers are folded, they are released by opening the receiving arm.
[0032] Further, a piston rod is fixedly connected to the bottom of the nut seat, and a rubber piston is fixedly connected to the end of the piston rod away from the nut seat; the rubber piston is in sliding fit with a piston cylinder, and an input pipe and an output pipe are communicated with one side of the piston cylinder away from the piston rod; one end of the input pipe away from the piston cylinder is communicated to the outside of the housing, and one end of the output pipe away from the piston cylinder is communicated above the receiving arm; one-way valves are communicated at the joints of the input pipe and the output pipe with the piston cylinder.
[0033] Beneficial effects: The piston rod is driven to move transversely by the nut seat. Since the piston rod is fixedly connected with a rubber piston and the rubber piston is in sliding fit with the piston cylinder, the piston rod can drive the rubber piston to reciprocate, thereby generating suction and thrust. Since the piston cylinder is communicated with an input pipe and an output pipe, and one-way valves are communicated at the joints of the input pipe and the output pipe with the piston cylinder, during the reciprocating movement of the rubber piston, the gas outside the housing can be transmitted to the receiving arm, thereby purging the receiving arm and making the internal environment dry, reducing the possibility of wonton wrappers sticking to the receiving arm.
[0034] Further, a material receiving box is detachably connected inside the housing, and the material receiving box is located below the receiving arm.
[0035] Beneficial effects: The material receiving box can receive the wontons after being wrapped, and they are taken out only after the wontons are wrapped, reducing the entry of external impurities into them.
[0036] Additional aspects and advantages of the present invention will be given in part in the following description, will become apparent in part from the following description, or will be understood through the practice of the present invention. Description of the Drawings
[0037] Figure 1 It is a cross-sectional view of the automatic and portable wonton machine of the present invention.
[0038] Figure 2 It is an axonometric view of the stirring component and the dough rolling component in the automatic and portable wonton machine of the present invention.
[0039] Figure 3 It is an axonometric view of the dough folding component in the automatic and portable wonton machine of the present invention.
[0040] Figure 4 Isometric view of the installation of the trapezoidal block in the automated portable wonton machine of the present invention.
[0041] Figure 5 Isometric view of the receiving component in the automated portable wonton machine of the present invention.
[0042] Figure 6 For the present invention Figure 1 Enlarged view of part A.
[0043] Reference numerals in the accompanying drawings of the specification include: 1, outer shell; 2, flour hopper; 3, filling hopper; 4, first motor; 5, first auger; 6, first belt; 7, second runner; 8, first gear; 9, second gear; 10, rotating rod; 11, electric conveyor belt; 12, first electric push rod; 13, cutter; 14, pressing rod; 15, second motor; 16, second belt; 17, third runner; 18, fourth runner; 19, second auger; 20, delivery pipe; 21, second electric push rod; 22, fixed disk; 23, rotating disk; 24, trapezoidal block; 25, slider; 26, clamping rod; 27, third motor; 28, third gear; 29, bracket; 30, receiving arm; 31, arc rod; 32, fourth motor; 33, lead screw; 34, nut seat; 35, connecting rod; 36, piston rod; 37, rubber piston; 38, piston cylinder; 39, material receiving box. Detailed Description of the Invention
[0044] The following is a further detailed description through specific embodiments:
[0045] Embodiment 1:
[0046] As shown in the Figures 1 - 6 drawing: An automated portable wonton machine includes an outer shell 1. The top of the outer shell 1 is connected to a flour hopper 2 for putting dough and a filling hopper 3 for putting wonton filling. The tops of the flour hopper 2 and the filling hopper 3 are both detachably threadedly connected with top covers. Inside the outer shell 1, there is a mixing component for mixing dough and a dough rolling component for rolling dough sheets.
[0047] Combined with Figure 2 as shown in the drawing, the mixing component includes a controller, a first driving member and a plurality of first augers 5. In this embodiment, the first driving member is a first motor 4, and the first augers 5 are all located at the lower part inside the flour hopper 2; the controller is used to control the rotation of the first motor 4, and the first motor 4 is bolted and fixedly connected to the inner bottom wall of the outer shell 1; the output shaft of the first motor 4 is coaxially fixedly clamped with a first runner, and the first belt 6 is tensioned on the first runner; the first belt 6 is tensioned with a second runner 7, and the second runner 7 is coaxially fixedly clamped on one of the first augers 5, and the right ends of the first augers 5 are all coaxially fixedly clamped with first gears 8;
[0048] The dough rolling component includes several rotating rods 10, and the rotating rods 10 are all located below the first auger 5; second gears 9 are coaxially and fixedly clamped on the rotating rods 10, and adjacent second gears 9 mesh with each other; the second gears 9 all mesh with the first gears 8 adjacent to them.
[0049] Inside the housing 1, there are also a cutting and pressing component for cutting and pressing the dough, a transmission component for transmitting the dough, a stuffing mixing component for mixing the wonton filling, a conveying component for conveying the wonton filling, a dough folding component for folding the wonton wrapper, and a receiving component for receiving the wonton wrapper.
[0050] The transmission component includes an electric conveyor belt 11, and the electric conveyor belt 11 is located below the cutting and pressing component. The controller is used to control the opening and closing of the electric conveyor belt 11. By starting the electric conveyor belt 11 through the controller, the cut and pressed dough can be transmitted, realizing an automated transmission process.
[0051] The cutting and pressing component includes a first telescopic member, a cutting knife 13, and several pressing rods 14. In this embodiment, the first telescopic member is a first electric push rod 12, and the controller is used to control the telescopic movement of the first electric push rod 12; the pressing rods 14 are all located above the electric conveyor belt 11, and the pressing rods 14 are all rotatably fitted to the inner side wall of the housing 1; the first electric push rod 12 is fixedly connected to the inner side wall of the housing 1 by screws; the output shaft of the first electric push rod 12 is fixedly connected to the cutting knife 13 by screws.
[0052] The stuffing mixing component includes a second driving member, a second belt 16, a third runner 17, and a fourth runner 18. In this embodiment, the second driving member is a second motor 15, and the controller is used to control the rotation of the second motor 15; the second motor 15 is fixedly connected to the inner side wall of the housing 1 by screws, and the output shaft of the second motor 15 is coaxially and fixedly clamped with the third runner 17; the third runner 17 and the fourth runner 18 are both tensioned with the second belt 16, and the fourth runner 18 is coaxially and fixedly clamped with a second auger 19, and the second auger 19 is located inside the stuffing hopper 3.
[0053] The conveying component includes a conveying pipe 20 in a "Z" shape, and the conveying pipe 20 is communicated with the bottom of the stuffing hopper 3; a second telescopic member is also fixedly connected to the inner top wall of the housing 1 by screws. In this embodiment, the second telescopic member is a second electric push rod 21, and the controller is used to control the telescopic movement of the second electric push rod 21; the output shaft of the second electric push rod 21 extends into the conveying pipe 20 and is slidably fitted to the inner side wall of the conveying pipe 20.
[0054] Combined Figure 3 and Figure 4As shown, the leather folding assembly includes a fixed disk 22, a rotating disk 23, and several trapezoidal blocks 24. A tray is also fixedly connected to the inner side wall of the outer shell 1 by screws; the fixed disk 22 is fixedly connected to the tray by screws, and the rotating disk 23 is rotationally fitted to the inner wall of the fixed disk 22; a diamond-shaped groove is formed in the rotating disk 23, and sliders 25 are fixedly connected to the bottoms of the trapezoidal blocks 24 by screws, and the sliders 25 are all slidably fitted in the diamond-shaped groove; clamping rods 26 are fixedly connected to the tops of the trapezoidal blocks 24 by screws, a moving groove is formed in the fixed disk 22 along its circumference, and the clamping rods 26 are all slidably fitted with the adjacent moving grooves; communication interfaces are formed in both the fixed disk 22 and the rotating disk 23, and an opening communicating with the interface is formed in the tray.
[0055] A rotating assembly for driving the movement of the rotating disk 23 is further provided at the bottom of the rotating disk 23. The rotating assembly includes a third driving member, a third gear 28, and an arc-shaped gear ring. In this embodiment, the third driving member is a third motor 27, and the controller is used to control the rotation of the third motor 27; the third motor 27 is fixedly connected to the inner wall of the fixed disk 22 by screws; the output shaft of the third motor 27 is coaxially and fixedly clamped with the third gear 28, the third gear 28 meshes with the arc-shaped gear ring, and the arc-shaped gear ring is embedded and installed at the bottom of the rotating disk 23.
[0056] Combined Figure 5 As shown, the receiving assembly includes a bracket 29, symmetrically installed receiving arms 30, and an arc-shaped rod 31. The bracket 29 is fixedly connected to the bottom of the tray by screws; a fourth motor 32 is fixedly connected to the bracket 29 by screws, and the controller is used to control the rotation of the fourth motor 32; the output shaft of the fourth motor 32 penetrates through the bracket 29 and is coaxially and fixedly clamped with a lead screw 33, and a nut seat 34 is threadedly fitted on the lead screw 33; the nut seat 34 is slidably fitted with the bracket 29 horizontally, the arc-shaped rods 31 are respectively hinged to both sides of the nut seat 34, and the left ends of the arc-shaped rods 31 are respectively hinged to the receiving arms 30; several connecting rods 35 are hinged to the left side of the bracket 29, and the other ends of the connecting rods 35 are respectively hinged to the adjacent receiving arms 30.
[0057] The specific implementation process is as follows:
[0058] First, before making wontons, open the top cover and put the dough and wonton filling into the dough hopper 2 and the filling hopper 3 respectively, and then tighten the top cover. Drive the first runner to rotate through the first motor 4. Since the first belt 6 is tensioned by the first runner, the second runner 7 is tensioned by the first belt 6, and the second runner 7 is coaxially and fixedly clamped with one of the first augers 5, the second runner 7 can be driven to rotate through the first belt 6, and the rotation of the second runner 7 drives the first auger 5 to rotate.
[0059] Since the first auger 5 is coaxially and fixedly clamped with a first gear 8, the first gears 8 are all meshed with a second gear 9, the adjacent second gears 9 are meshed with each other, and the second gears 9 are coaxially and fixedly clamped with a rotating rod 10; when the first auger 5 rotates, it can drive the first gear 8 to rotate, the first gear 8 drives the second gear 9 to rotate, the second gear 9 drives the adjacent second gear 9 to rotate, and the adjacent second gear 9 drives the first gear 8 meshed with it to rotate. Take Figure 2 as an example. When the second runner 7 drives the left first auger 5 to rotate, it drives the left first gear 8 to rotate. The rotation of the left first gear 8 drives the second gear 9 below the left to rotate. The rotation of the left second gear 9 drives the second gear 9 on the right to rotate. The rotation of the second gear 9 on the right drives the first gear 8 above the right to rotate, so as to drive the right first auger 5 to rotate through the first gear 8 on the right.
[0060] The rotation of the first gear 8 drives the first auger 5 to rotate. When the first auger 5 rotates, it stirs the dough. The rotation of the second gear 9 drives the rotating rod 10 to rotate. When the rotating rod 10 rotates, it can squeeze the dough and roll the dough into a sheet shape. In this embodiment, the rotating rod 10 is set to squeeze downward to transfer the dough sheet to the electric conveyor belt 11, and the electric conveyor belt 11 transfers the dough sheet to the left.
[0061] When the electric conveyor belt 11 drives the dough sheet to be transferred, the dough sheet falls into the gap between the pressing rods 14. Since the pressing rods 14 are all located above the electric conveyor belt 11 and the pressing rods 14 are all rotatably fitted to the inner side wall of the housing 1, when the electric conveyor belt 11 transfers the dough sheet, it can drive the pressing rods 14 to rotate. The rotation of the pressing rods 14 can press the dough sheet to the required thickness. In this embodiment, the pressing rods 14 are made of cotton material. Since the cutting knife 13 is fixedly connected to the output shaft of the first electric push rod 12 by screws, the cutting knife 13 can be driven by the first electric push rod 12 to slice, so that the dough sheet is cut into wonton wrappers, and the wonton wrappers are continuously transferred to the fixed plate 22 by the electric conveyor belt 11.
[0062] At the same time, the second motor 15 drives the third runner 17 to rotate. Since the third runner 17 and the fourth runner 18 are both tensioned by the second belt 16, and the fourth runner 18 is coaxially and fixedly clamped with the second auger 19, the fourth runner 18 can be driven to rotate through the second belt 16, and the fourth runner 18 drives the second auger 19 to rotate. When the second auger 19 rotates, it can mix the wonton filling.
[0063] When the wonton wrapper is conveyed above the fixed disk 22, since the conveying pipe 20 is communicated with the bottom of the stuffing hopper 3 and the output shaft of the second electric push rod 21 extends into the conveying pipe 20, when the wonton stuffing drops into the conveying pipe 20, by controlling the telescopic length of the output shaft of the second electric push rod 21, the wonton stuffing can be injected onto the wonton wrapper below, and the wonton wrapper and the wonton stuffing can be injected onto the receiving arm 30.
[0064] When the wonton wrapper is injected onto the receiving arm 30, the third gear 28 is driven to rotate by the third motor 27. Since the third gear 28 meshes with the arc-shaped gear ring and the arc-shaped gear ring is embedded and installed at the bottom of the rotating disk 23, the rotating disk 23 can be driven to rotate by the third gear 28. Since the rotating disk 23 is provided with diamond-shaped grooves and the sliders 25 on the trapezoidal blocks 24 are all in sliding fit in the diamond-shaped grooves, when the rotating disk 23 rotates, the trapezoidal blocks 24 can be driven to open and close by the sliders 25. Figure 4 For example, when the rotating disk 23 drives the diamond-shaped groove to rotate clockwise, it will drive the trapezoidal blocks 24 to rotate and move to the right. At this time, the polygonal structure inside the trapezoidal blocks 24 will be opened. On the contrary, the polygonal structure can be closed. When closed, the wonton wrapping work is carried out; in this embodiment, the trapezoidal blocks 24 are made of flexible materials, and the closing degree can be adjusted by controlling the number of rotation turns of the second motor 15. In this process, the clamping rods 26 and the moving grooves provide a limiting effect on the trapezoidal blocks 24, so that the movement of the trapezoidal blocks 24 remains stable.
[0065] After the wonton is wrapped, the fourth motor 32 drives the lead screw 33 to rotate. Since a nut seat 34 is in threaded fit with the lead screw 33 and the nut seat 34 is in transverse sliding fit with the bracket 29, the rotation of the lead screw 33 can be converted into the transverse movement of the nut seat 34. Since the nut seat 34 is hinged to the arc-shaped rod 31, the arc-shaped rod 31 is hinged to the receiving arm 30, and a connecting rod 35 is also hinged to the bracket 29, and the other end of the connecting rod 35 is hinged to the receiving arm 30, when the nut seat 34 moves transversely, the receiving arm 30 can be opened or closed by the arc-shaped rod 31, so as to realize the opening and closing function of the receiving arm 30. Figure 5 For example, when the lead screw 33 drives the nut seat 34 to move to the left, the receiving arm 30 can be squeezed by the arc-shaped rod 31, and the receiving arm 30 will be closed when squeezed; on the contrary, the receiving arm 30 can be opened. When the receiving arm 30 is closed, the wonton can be received, and after the wonton is pleated, it is released by opening the receiving arm 30.
[0066] In the prior art, when some wonton machines perform dough mixing and rolling operations, multiple power components are usually used, resulting in increased costs. In this embodiment, through the first motor 4, belt drive system, and gear linkage, the first auger 5 and the rotating rod 10 can be driven to rotate. When the first auger 5 rotates, it mixes the dough, and the rotating rod 10 can be used to extrude and roll the dough into a sheet-like shape. Through the coordinated work of the first auger 5 and the rotating rod 10, the dough mixing and rolling are carried out synchronously, further shortening the production cycle.
[0067] Through the automatic control of each mechanical component, the processes of cutting, pressing, filling the filling, and wrapping are automated; the dependence on manual operation is reduced, and the production efficiency is further improved. The automated production process ensures precise control of each step, such as the degree of dough mixing, the thickness of the dough sheet, the size of the wonton wrapper, and the amount of filling, etc., thus ensuring the consistency and stability of the wonton products.
[0068] Embodiment 2:
[0069] As shown in the attached Figure 1 figure, the difference from the above embodiment is that a piston rod 36 is also fixedly connected to the bottom of the nut seat 34 by screws, and the other end of the piston rod 36 is fixedly bonded with a rubber piston 37; the rubber piston 37 is slidably fitted with a piston cylinder 38, and the left side of the piston cylinder 38 is connected with an input pipe and an output pipe; the other end of the input pipe is connected to the outside of the housing 1, and the other end of the output pipe is connected above the receiving arm 30; one-way valves are connected to the joints of the input pipe and the output pipe with the piston cylinder 38.
[0070] The specific implementation process is as follows: The piston rod 36 is driven to move horizontally by the nut seat 34. Since the piston rod 36 is fixedly bonded with the rubber piston 37 and the rubber piston 37 is slidably fitted with the piston cylinder 38, the rubber piston 37 can be driven to reciprocate by the piston rod 36, thereby generating suction and thrust. Since the piston cylinder 38 is connected with an input pipe and an output pipe, and one-way valves are connected to the joints of the input pipe and the output pipe with the piston cylinder 38, during the reciprocating movement of the rubber piston 37, the gas outside the housing 1 can be transmitted to the receiving arm 30, thereby purging the receiving arm 30 and making the internal environment dry, reducing the possibility of wonton wrappers adhering to the receiving arm 30.
[0071] Embodiment 3:
[0072] As shown in the attached Figure 1 figure, the difference from the above embodiment is that a material receiving box 39 is also detachably and snap-fitted inside the housing 1, and the material receiving box 39 is located below the receiving arm 30.
[0073] The specific implementation process is as follows: The material receiving box 39 can receive the wontons after wrapping, and they are taken out only after the wontons are wrapped, reducing the entry of external impurities into them.
[0074] Obviously, the above embodiments are merely examples given for clear illustration and are not limitations on the implementation manners. For those of ordinary skill in the art, other different forms of changes or alterations can be made based on the above description. It is not necessary and impossible to enumerate all implementation manners here. And the obvious changes or alterations derived therefrom still fall within the protection scope of the present invention.
Claims
1. An automated portable wonton machine, comprising a housing (1), a dough hopper (2) for feeding dough and a filling hopper (3) for feeding wonton filling are connected to the top of the housing (1), and top covers are detachably connected to the tops of the dough hopper (2) and the filling hopper (3), characterized in that, Inside the outer shell (1), there is a kneading component for kneading dough and a dough rolling component for rolling dough sheets. The kneading component includes a controller, a first driving member, and several first augers (5). The first augers (5) are all located at the lower part inside the flour hopper (2). The controller is used to control the rotation of the first driving member. The first driving member is fixedly connected to the inner bottom wall of the outer shell (1). The output shaft of the first driving member is coaxially fixedly connected with a first runner. A first belt (6) is tensioned on the first runner. A second runner (7) is tensioned on the first belt (6). The second runner (7) is coaxially fixedly connected to one of the first augers (5). One end of each first auger (5) away from the second runner (7) is coaxially fixedly connected with a first gear (8). The dough rolling component includes several rotating rods (10). The rotating rods (10) are all located below the first augers (5). Second gears (9) are coaxially fixedly connected to the rotating rods (10). The adjacent second gears (9) are meshed with each other. The second gears (9) are all meshed with the first gears (8) adjacent to them. Inside the outer shell (1), there is also a cutting and pressing component for cutting and pressing dough sheets, a conveying component for conveying dough sheets, a stuffing mixing component for mixing wonton stuffing, a stuffing conveying component for conveying wonton stuffing, a dough folding component for folding wonton wrappers, and a receiving component for receiving wonton wrappers.
2. The automated portable wonton machine according to claim 1, wherein, The conveying component includes an electric conveyor belt (11). The electric conveyor belt (11) is located below the cutting and pressing component. The controller is used to control the opening and closing of the electric conveyor belt (11).
3. The automated portable wonton machine according to claim 2, characterized in that, The cutting and pressing component includes a first telescopic member, a cutting knife (13), and several pressing rods (14). The controller is used to control the telescopic movement of the first telescopic member. The pressing rods (14) are all located above the electric conveyor belt (11). The pressing rods (14) are all rotatably fitted to the inner side wall of the outer shell (1). The first telescopic member is fixedly connected to the inner side wall of the outer shell (1). The output shaft of the first telescopic member is fixedly connected to the cutting knife (13).
4. The automated portable wonton machine according to claim 3, characterized in that The stuffing mixing component includes a second driving member, a second belt (16), a third runner (17), and a fourth runner (18). The controller is used to control the rotation of the second driving member. The second driving member is fixedly connected to the inner side wall of the outer shell (1). The output shaft of the second driving member is coaxially fixedly connected to the third runner (17). The third runner (17) and the fourth runner (18) are both tensioned with the second belt (16). The fourth runner (18) is coaxially fixedly connected with a second auger (19). The second auger (19) is located inside the stuffing hopper (3).
5. The automated portable wonton machine according to claim 4, wherein, The stuffing conveying component includes a conveying pipe (20) in a "Z" shape. The conveying pipe (20) is communicated with the bottom of the stuffing hopper (3). A second telescopic member is also fixedly connected to the inner top wall of the outer shell (1). The controller is used to control the telescopic movement of the second telescopic member. The output shaft of the second telescopic member extends into the conveying pipe (20) and is slidably fitted to the inner side wall of the conveying pipe (20).
6. The automated portable wonton machine according to claim 5, characterized in that, The folding leather component includes a fixed disk (22), a rotating disk (23) and several trapezoidal blocks (24). A tray is also fixedly connected to the inner side wall of the outer shell (1). The fixed disk (22) is fixedly connected to the tray, and the rotating disk (23) is rotatably fitted to the inner wall of the fixed disk (22). A diamond-shaped groove is formed in the rotating disk (23). Sliders (25) are fixedly connected to the bottoms of the trapezoidal blocks (24), and the sliders (25) are all slidably fitted in the diamond-shaped groove. Clamping rods (26) are fixedly connected to the tops of the trapezoidal blocks (24). A moving groove is formed in the fixed disk (22) along its circumference, and the clamping rods (26) are all slidably fitted with the adjacent moving grooves. The fixed disk (22) and the rotating disk (23) are both provided with communicating interfaces, and the tray is provided with an opening communicating with the interfaces. A rotating assembly for driving the movement of the rotating disk (23) is further provided at the bottom of the rotating disk (23).
7. The automated portable wonton machine according to claim 6, wherein The rotating assembly includes a third driving member, a third gear (28) and an arc-shaped gear ring. The third driving member is fixedly connected to the inner wall of the fixed disk (22). The controller is used to control the rotation of the third driving member. The output shaft of the third driving member is coaxially fixedly connected to the third gear (28), and the third gear (28) meshes with the arc-shaped gear ring, and the arc-shaped gear ring is embedded and installed at the bottom of the rotating disk (23).
8. The automated portable wonton machine according to claim 7, characterized in that, The receiving assembly includes a bracket (29), symmetrically installed receiving arms (30) and arc-shaped rods (31). The bracket (29) is fixedly connected to the bottom of the tray. A fourth driving member is fixedly connected to the bracket (29). The controller is used to control the rotation of the fourth driving member. The output shaft of the fourth driving member penetrates through the bracket (29) and is coaxially fixedly connected to a lead screw (33). A nut seat (34) is threadedly fitted on the lead screw (33). The nut seat (34) is slidably fitted with the bracket (29) transversely. The arc-shaped rods (31) are hinged to both sides of the nut seat (34), and the ends of the arc-shaped rods (31) far from the nut seat (34) are all hinged to the receiving arms (30). A plurality of connecting rods (35) are hinged to one side of the bracket (29) far from the fourth driving member, and the ends of the connecting rods (35) far from the bracket (29) are all hinged to the adjacent receiving arms (30).
9. The automated portable wonton machine according to claim 8, wherein, A piston rod (36) is further fixedly connected to the bottom of the nut seat (34). One end of the piston rod (36) far from the nut seat (34) is fixedly connected to a rubber piston (37). The rubber piston (37) is slidably fitted with a piston cylinder (38). One side of the piston cylinder (38) far from the piston rod (36) is communicated with an input pipe and an output pipe. One end of the input pipe far from the piston cylinder (38) is communicated to the outside of the outer shell (1), and one end of the output pipe far from the piston cylinder (38) is communicated above the receiving arm (30). One-way valves are communicated at the joints of the input pipe and the output pipe with the piston cylinder (38).
10. The automated portable wonton machine according to claim 9, wherein A material receiving box (39) is also detachably connected inside the outer shell (1), and the material receiving box (39) is located below the receiving arm (30).