Multifunctional noodle press

By integrating noodle extrusion and cutting components into the noodle pressing machine and using the rotary output end drive, the problems of the existing noodle pressing machine having a single function and the vegetable cutting machine being large in size are solved, and the multifunctional noodle pressing machine has an efficient and labor-saving use experience and a space-saving effect.

CN223298402UActive Publication Date: 2025-09-05HONGYANG HOME APPLIANCES
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Patent Information

Application Number
CN202422510929.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-09-05
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

Existing noodle machines have a single function, requiring users to configure multiple different machines to meet multi-functional usage needs, resulting in high costs and large kitchen space. At the same time, existing vegetable cutters are large in size and have a single function.

Method used

A multifunctional noodle pressing machine is designed, which integrates the noodle extrusion component and the material cutting component into the same main machine. The noodle extrusion and material cutting functions are realized by rotating the output end drive. The processing cavity can be shared or separated, and flexible switching is achieved, which reduces the number of parts and occupied space.

Benefits of technology

It is possible to extrude noodles and cut materials on the same device, which improves the efficiency and user experience, saves costs, avoids odor contamination, simplifies the structure, and reduces production and maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of kitchen utensils, and particularly relates to a multifunctional noodle press which comprises a main machine provided with a rotary output end, a processing cavity arranged on the main machine, and a noodle extruding component and a material cutting component which are alternatively arranged in the processing cavity and are in transmission fit with the rotary output end, the processing cavity is provided with a transmission opening which is located in the side part and corresponds to the rotary output end, a feeding opening which is located in the top and is used for feeding and a noodle outlet which is used for discharging when the noodle extruding assembly works, and the noodle extruding assembly comprises an extruding screw which is arranged in the processing cavity and is detachably connected with the rotary output end; the material cutting assembly is provided with a material cutter corresponding to the feeding port. The noodle press provided by the utility model is rich in function, a user does not need to independently configure different main machines to realize noodle extrusion and material cutting, the cost is saved, the occupied space is saved, and the user can conveniently store the noodle press.
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Description

Technical Field

[0001] The utility model belongs to the technical field of kitchen appliances, and particularly relates to a multifunctional noodle pressing machine. Background Art

[0002] There are mainly two types of existing portable noodle pressing guns for household use. One type is a push rod type noodle extruder, which uses a push rod motor to drive a noodle pressing block connected to a retractable push rod to move back and forth to knead the dough in the noodle extrusion cylinder, and finally extrude the dough forward through the noodle pressing block to form noodles. Therefore, the power required by the push rod motor is relatively large and the cost is high. Moreover, since the dough is kneaded by moving the push rod motor back and forth, the user needs to stuff the dough into the noodle extrusion cylinder through the noodle inlet again after the noodle pressing block retracts to achieve secondary noodle feeding. The user's operation is cumbersome, and continuous noodle feeding cannot be achieved. The work efficiency is also relatively low, which makes users less satisfied. In addition, since the size of the noodle inlet is generally limited, and the axial length of the noodle extrusion cylinder is usually larger than the noodle inlet, the dough cannot fill the entire noodle extrusion cylinder after the secondary noodle feeding, resulting in low secondary noodle extrusion efficiency. Another type is screw-type noodle extrusion, in which the extrusion screw is driven to rotate by a motor, and the spiral part of the extrusion screw is used to push the noodles. When the extrusion screw rotates normally, the dough entering from the noodle inlet will be continuously pushed to the noodle outlet, and the user can add noodles continuously, achieving continuous noodle feeding and discharging.

[0003] The existing noodle machines, regardless of which type, only realize the simple noodle pressing function, and have a single function. For families with a small kitchen space or single consumers living alone, they hope that the smaller noodle pressing machine can also realize other multi-functions.

[0004] In addition, the existing vegetable cutter also uses a rotating method to cut vegetables, but the existing vegetable cutter is large in size and can only be used in a fixed position. It can only cut materials and has a single function.

[0005] Therefore, the applicant wants to develop a multifunctional kitchen utensil that has more functions while being smaller in size to meet user needs. Utility Model Content

[0006] The utility model provides a new multifunctional noodle pressing machine, which solves the problem that noodle pressing machines in the prior art have a single function and require users to configure multiple different machines to meet multifunctional usage needs, resulting in increased purchase costs and a large amount of kitchen space occupied.

[0007] The technical solution adopted by the present invention is as follows: the present invention provides a multifunctional noodle pressing machine, comprising a main unit provided with a rotating output end, a processing chamber installed on the main unit, a noodle extrusion assembly and a material cutting assembly optionally installed in the processing chamber and coordinated with the rotating output end for transmission, the processing chamber is provided with a transmission port located on the side corresponding to the rotating output end, a feeding port located on the top for feeding material and a noodle outlet for discharging material when the noodle extrusion assembly is working, the noodle extrusion assembly comprises an extrusion screw arranged in the processing chamber and detachably connected to the rotating output end, and the cutting assembly has a cutting knife corresponding to the feeding port.

[0008] The multifunctional noodle pressing machine provided by the present invention comprises a main machine, a processing chamber installed on the main machine, a noodle extruding component and a material cutting component which are optionally installed in the processing chamber and cooperate with the rotating output end in transmission, so that the noodle pressing machine has a noodle extruding state and a material cutting state. Therefore, with one main machine, the user can flexibly select the noodle extruding component and the material cutting component for processing according to needs, which can realize both the noodle extruding function and the material cutting function. It is rich in functions and does not require the user to independently configure different main machines to realize noodle extrusion and material cutting, thereby saving costs, saving occupied space, and being convenient for users to store. More specifically, based on the drive of the rotating output end, the noodle extrusion component includes an extrusion screw arranged in the processing chamber and detachably connected to the rotating output end. In the noodle extrusion state, the extrusion screw can continuously produce noodles, thereby improving the noodle extrusion efficiency, saving labor in use, and enhancing the user experience. For the cutting component, the cutting component has a cutting knife corresponding to the feed port. In the cutting state, the rotating output end drives the cutting component to rotate, so that the cutting knife continuously cuts the material input from the feed port. Therefore, the reliability of the cutting function and the noodle extrusion function is strong, which improves the comprehensive performance of the noodle press.

[0009] In a preferred embodiment, the noodle pressing machine includes a processing chamber, and the noodle extruding component and the cutting component share the same processing chamber.

[0010] By setting up a processing chamber, the noodle extrusion component and the cutting component share the same processing chamber, and there is no need to match corresponding processing chambers respectively, which saves the number of parts of the noodle pressing machine, improves space utilization, facilitates user storage, further simplifies the structure of the noodle pressing machine, and reduces production and maintenance costs.

[0011] In a preferred embodiment, the processing chamber includes a first processing chamber and a second processing chamber that are detachably matched with the main machine, and the noodle extrusion assembly and the material cutting assembly are respectively installed in the first processing chamber and the second processing chamber.

[0012] By setting up a first processing chamber and a second processing chamber, the first processing chamber and the second processing chamber are both detachably matched with the main machine, thereby realizing flexible replacement and use, as well as detachable cleaning, convenient and clean cleaning, and hygienic use. The noodle extrusion component and the material cutting component are respectively installed in the first processing chamber and the second processing chamber. Therefore, when the user has the need to extrude noodles and cut materials, the corresponding processing chamber and processing component are selected. After the noodle extrusion is completed, there is no need to wait for the time to clean the first processing chamber, and the second processing chamber and the material cutting component can be directly replaced for use, which greatly saves processing time and improves processing efficiency. In addition, after cutting, the inner wall of the second processing chamber will usually be wet and have a smell. If flour is directly put in for noodle extrusion, there will be noodle blocks hanging on the wall, which is not conducive to the uniform extrusion of noodles and the cleaning of the processing chamber, and will cause the problem of cross-flavor. Therefore, the use of the first processing chamber and the second processing chamber for replacement can also effectively avoid cross-flavor and achieve a good noodle extrusion effect.

[0013] In a preferred embodiment, the cutting assembly includes a first cutting group and a second cutting group that can be installed in the processing chamber, and the processing chamber is provided with a first cutting outlet corresponding to the first cutting group and a second cutting outlet corresponding to the second cutting group.

[0014] The cutting assembly includes a first and second cutting assembly that can be installed in the processing chamber. Depending on the properties of the material, the first or second cutting assembly can be flexibly selected for cutting, resulting in labor-saving and uniform cutting of the material, achieving excellent cutting results and meeting user needs. The processing chamber is equipped with a first and second cutting outlet, allowing for smooth discharge of the cut material and ensuring a reliable structure.

[0015] More preferably, at least one of the first cutting outlet and the second cutting outlet is the same as the surface outlet.

[0016] By making at least one of the first cutting outlet and the second cutting outlet the same as the outlet, while achieving smooth material output, the number of openings in the processing chamber can be reduced, the processing chamber structure can be simplified, and production and processing can be facilitated. At the same time, when the user needs to seal the opening, the sealing operation can be saved.

[0017] In a preferred embodiment, the cutting assembly includes a first knife group and a second knife group that can be installed in the processing chamber, and the first knife group and the second knife group are installed in the processing chamber either one or both.

[0018] The cutting assembly includes a first blade assembly and a second blade assembly that can be installed in the processing chamber. The first blade assembly or the second blade assembly can be flexibly selected based on the properties of the material to cut the material, thereby achieving labor-saving and uniform cutting of the material, achieving good cutting results, and meeting user needs. The first blade assembly and the second blade assembly can be installed in the processing chamber alternatively, thereby reducing the volume of the processing chamber. The first blade assembly and the second blade assembly can also be installed in the processing chamber together, achieving synchronous processing, improving processing efficiency, and eliminating the troublesome operation of changing blade assemblies.

[0019] In a preferred embodiment, the cutting assembly includes a knife barrel connected to the rotating output end and the cutting knife provided on the side wall of the knife barrel;

[0020] Alternatively, the cutting assembly includes a cutter disc connected to the rotation output end and a cutting knife provided on the cutter disc;

[0021] Alternatively, the cutting assembly includes a tool holder installed on the processing chamber, two tool shafts rotatably arranged on the tool holder, and the cutting knife arranged on the tool shafts, and the two tool shafts are connected to the rotation output end through a reduction box.

[0022] The cutting components adopt the above structures, which can achieve rapid cutting of materials, make the materials cut evenly, and save users effort; the first two structures are used to achieve good cutting effects for hard materials, and the third structure is used to achieve good cutting effects for flexible materials.

[0023] In a preferred embodiment, the noodle extrusion assembly further comprises a noodle outlet cover detachably mounted at the noodle outlet, and an outlet hole is provided on the noodle outlet cover.

[0024] The noodle discharging cover is detachably mounted at the noodle discharging port, so that the noodle discharging cover can be disassembled, cleaned or replaced. The noodle discharging cover is clean and hygienic to use. The noodle discharging cover is flexible to use, and noodle discharging covers of different specifications can be replaced to process noodles of different thicknesses.

[0025] In a preferred embodiment, the noodle extrusion assembly further includes a noodle outlet cover, an outlet hole is provided on the noodle outlet cover, the outlet port is provided at the bottom of the processing chamber, a cutting outlet corresponding to the cutting assembly is provided on the side of the processing chamber, and the noodle pressing machine further includes a sealing cover that is installed on the noodle outlet port in replacement of the noodle outlet cover.

[0026] The noodle outlet is set at the bottom of the processing chamber. During the noodle extrusion process, the noodles can be output from the noodle outlet under the combined effect of the thrust of the extrusion screw and its own gravity, thereby improving the noodle output efficiency. A cutting outlet is set on the side of the processing chamber to achieve smooth output of the cut materials. The noodle press also includes a sealing cover that is installed on the noodle outlet in place of the noodle outlet cover. When in the cutting state, the sealing cover can be used to block the noodle outlet at the bottom of the processing chamber, thereby effectively preventing the cut materials from falling from the noodle outlet and ensuring that the cut materials are only output from the corresponding cutting outlet. The structure is reliable.

[0027] In a preferred embodiment, the main unit includes a mounting portion on which a motor is mounted and a gripping handle protruding from one side of the mounting portion, and the output shaft of the motor extends from the mounting portion to form the rotation output end.

[0028] The main unit includes a mounting portion on which a motor is mounted and a gripping handle protruding from one side of the mounting portion. The output shaft of the motor extends from the mounting portion to form the rotating output end, thereby realizing electric drive. It is time-saving and labor-saving, and has high efficiency. The gripping handle allows the user to perform handheld operation, making the operation more convenient and flexible.

[0029] In a preferred embodiment, the main machine is provided with limiting ribs arranged along the circumference of the rotary output head, and the transmission port of the processing chamber is detachably connected to the limiting ribs.

[0030] By detachably connecting the transmission port of the processing chamber with the limiting rib, the processing chamber can be disassembled relative to the main machine, which is convenient for disassembly and cleaning, or for replacing different processing chambers for flexible use. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] The drawings described herein are used to provide a further understanding of the present invention and constitute a part of the present invention. The exemplary embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an improper limitation of the present invention. In the drawings:

[0032] Figure 1 This is a structural diagram of the noodle pressing machine in the noodle extruding state in Example 1 of the present utility model;

[0033] Figure 2 This is a schematic diagram of the cooperation between the main unit and the noodle extrusion assembly in Example 1 of the present utility model;

[0034] Figure 3 This is a structural diagram of the noodle pressing machine in the cutting state in Example 1 of the present utility model;

[0035] Figure 4 This is a schematic diagram of the cooperation between the main unit and the cutting component in Example 1 of the present utility model;

[0036] Figure 5This is a schematic diagram of the exploded structure of the noodle pressing machine in Example 2 of the present utility model;

[0037] Figure 6 This is a structural diagram of the processing chamber in Example 6 of the present utility model.

[0038] Explanation of the accompanying symbols: 10. Main unit; 101. Mounting part; 102. Holding handle; 11. Rotary output end; 12. Limiting rib; 13. Motor; 20. Processing cavity; 201. First processing cavity; 202. Second processing cavity; 21. Transmission port; 22. Feed port; 23. Dough outlet; 24. First cutting outlet; 25. Second cutting outlet; 30. Dough extrusion assembly; 31. Extrusion screw; 32. Dough outlet cover; 321. Dough outlet hole; 40. Cutting assembly; 41. First knife group; 411. Knife cylinder; 412. First cutting knife; 42. Second knife group; 421. Knife holder; 422. Knife shaft; 423. Second cutting knife; 50. Pushing piece. DETAILED DESCRIPTION

[0039] In order to more clearly illustrate the overall concept of the present invention, a detailed description is given below in combination with the accompanying drawings by way of examples.

[0040] The following description sets forth many specific details to facilitate a thorough understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein, and therefore, the scope of protection of the present invention is not limited by the specific embodiments disclosed below. It should be noted that the embodiments of the present invention and the features of each embodiment may be combined with each other unless there is a conflict.

[0041] In addition, in the description of the present invention, it should be understood that the terms "top", "bottom", "inside", "outside", "axial", "radial", "circumferential", etc., indicating the orientation or position relationship, are based on the orientation or position relationship shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention.

[0042] In this utility model, unless otherwise expressly specified or limited, the terms "installed," "connected," "connect," "fixed," etc. should be understood in a broad sense. For example, they can refer to fixed connection, detachable connection, or integration; mechanical connection, electrical connection, or communication; direct connection or indirect connection through an intermediate medium; internal communication between two components or interaction between two components. For those skilled in the art, the specific meanings of the above terms in this utility model can be understood according to specific circumstances.

[0043] In the present invention, unless otherwise clearly specified and limited, the first feature "above" or "below" the second feature may be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. In the description of this specification, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in an appropriate manner in any one or more embodiments or examples.

[0044] The utility model provides a multifunctional noodle pressing machine, such as Figure 1-4 As shown, the noodle pressing machine comprises: a main machine 10 provided with a rotating output end 11, a processing chamber 20 installed in the main machine 10, and a noodle extruding component 30 and a material cutting component 40 installed in the processing chamber 20 and in transmission cooperation with the rotating output end 11, so that the noodle pressing machine has a noodle extruding state and a material cutting state, as shown in FIG. Figure 1 It shows the noodle extrusion state of the noodle press; Figure 3 The figure shows the cutting state of the noodle press. Figure 2 As shown, the processing chamber 20 is provided with a transmission port 21 located on the side corresponding to the rotating output end 11, a feed port 22 located on the top for feeding, and an outlet port 23 for discharging materials when the noodle extrusion assembly 30 is working. The noodle extrusion assembly 30 includes an extrusion screw 31 detachably connected to the rotating output end 11 and an outlet cover 32 provided with an outlet hole 321, which is arranged in the processing chamber 20. The cutting assembly 40 has a cutting knife corresponding to the feed port 22.

[0045] The multifunctional noodle pressing machine provided by the present invention includes a main unit 10, a processing chamber 20 installed in the main unit 10, and a noodle extruding component 30 and a material cutting component 40 which are optionally installed in the processing chamber 20 and cooperate with the rotating output end 11 for transmission, so that the noodle pressing machine has a noodle extruding state and a material cutting state. Therefore, using one main unit 10, the user can flexibly select the noodle extruding component 30 and the material cutting component 40 for processing according to needs, which can realize both the noodle extruding function and the material cutting function. It is rich in functions and does not require the user to independently configure different main units 10 to realize noodle extrusion and material cutting, thereby saving costs, saving occupied space, and being convenient for users to store. More specifically, based on the drive of the rotating output end 11, the noodle extrusion assembly 30 includes an extrusion screw 31 arranged in the processing chamber 20 and detachably connected to the rotating output end 11, and a noodle outlet cover 32 detachably installed at the noodle outlet 23. An outlet hole 321 is provided on the noodle outlet cover 32. In the noodle extrusion state, the extrusion screw 31 can continuously produce noodles, thereby improving the noodle extrusion efficiency, saving labor in use, and enhancing the user experience. As for the cutting assembly 40, the cutting assembly 40 has a cutting knife corresponding to the feed port 22. In the cutting state, the rotating output end 11 drives the cutting assembly 40 to rotate, so that the cutting knife continuously cuts the material input from the feed port 22. Therefore, the reliability of the cutting function and the noodle extrusion function is strong, which improves the comprehensive performance of the noodle press.

[0046] Preferably, the noodle outlet cover 32 is detachably mounted at the noodle outlet 23. More preferably, the noodle press includes multiple noodle outlet covers, and the outlet holes on different noodle outlet covers are of different sizes. Users can replace noodle outlet covers of different specifications to achieve noodle processing of different thicknesses. At the same time, the noodle outlet cover can be disassembled and cleaned for hygienic use. Of course, it is understandable that in other embodiments, the noodle press may optionally include multiple processing chambers, and the noodle outlet cover is integrally formed at the noodle outlet of at least one processing chamber. This makes it convenient for users to operate.

[0047] The present invention does not limit the number of processing chambers 20. For example, the processing chambers 20 may be arranged in any of the following embodiments 1 or 2:

[0048] Implementation Example 1, such as Figure 1-4 As shown, the processing chamber 20 includes a first processing chamber 201 and a second processing chamber 202 that are detachably matched with the main machine 10, and the noodle extrusion assembly 30 and the material cutting assembly 40 are respectively installed in the first processing chamber 201 and the second processing chamber 202. Figure 1 The diagram shows the cooperation between the first processing chamber 201 and the main machine 10, so that the noodle pressing machine is in the noodle extruding state; Figure 3 The diagram shows the cooperation state between the second processing chamber 202 and the main machine 10, so that the noodle pressing machine is in the cutting state.

[0049] By setting up the first processing chamber 201 and the second processing chamber 202, the first processing chamber 201 and the second processing chamber 202 are both detachable and matched with the main machine 10, realizing flexible replacement and detachable cleaning, convenient and clean cleaning, and hygienic use. The noodle extrusion component 30 and the material cutting component 40 are respectively installed in the first processing chamber 201 and the second processing chamber 202. Therefore, when the user has the need to extrude noodles and cut materials, the corresponding processing chamber 20 and processing component are selected. After the noodle extrusion is completed, there is no need to wait for the time to clean the first processing chamber 201, and the second processing chamber 202 and the material cutting component 40 can be directly replaced for use, which greatly saves processing time and improves processing efficiency. In addition, after cutting, the inner wall of the second processing chamber 202 will usually be wet and have a smell. If flour is directly added for noodle extrusion, there will be noodle blocks hanging on the wall, which is not conducive to the uniform extrusion of noodles and the cleaning of the processing chamber 20, and will cause the problem of cross-flavor. Therefore, the use of the first processing chamber 201 and the second processing chamber 202 for replacement can also effectively avoid cross-flavor and achieve a good noodle extrusion effect.

[0050] Preferably, if Figure 2 As shown, the main machine 10 is provided with a limiting rib 12 arranged along the circumference of the rotating output head, and the transmission port 21 of the processing chamber 20 is detachably connected to the limiting rib 12. In this embodiment, the processing chamber 20 refers to the first processing chamber 201 and the second processing chamber 202.

[0051] More specifically, if Figure 2 As shown, internal threads are provided on the inner circumference of the limiting rib 12, and external threads are provided on the outer circumference of the first processing cavity 201 and the second processing cavity 202. The internal threads and external threads cooperate to achieve connection. Of course, in addition to the threaded coupling method, other connection methods such as screw-on or snap-on connection can also be used to achieve a detachable connection between the processing cavity 20 and the main body 10.

[0052] This embodiment detachably connects the transmission opening 21 of the processing chamber 20 to the limiting rib 12, thereby enabling the processing chamber 20 to be disassembled from the main machine 10, facilitating disassembly and cleaning, and allowing for flexible use by replacing different processing chambers 20. It is understood that the connection method between the processing chamber 20 and the main machine 10 in this embodiment is also applicable to other embodiments.

[0053] In this implementation example, if Figure 1 As shown, preferably, the host 10 includes a mounting portion 101 on which the motor 13 is mounted and a gripping handle 102 protruding from one side of the mounting portion 101 , and the output shaft of the motor 13 extends from the mounting portion 101 to form a rotating output end 11 .

[0054] The main unit 10 includes a mounting portion 101 on which a motor 13 is mounted and a gripping handle 102 protruding from one side of the mounting portion 101. The output shaft of the motor 13 extends from the mounting portion 101 to form a rotating output end 11, thereby realizing electric drive. This is time-saving and labor-saving, and has high efficiency. Through the gripping handle 102, the user can perform handheld operation, which is more convenient and flexible.

[0055] The host 10 in the present invention is not limited to the above-mentioned handheld structure. In fact, in other embodiments, preferably, the host 10 is provided with a support surface for being placed on a work surface. The host 10 structure provided in this embodiment is also applicable to other embodiments of the present invention.

[0056] In this implementation example, preferably, Figure 3 As shown, the noodle pressing machine further includes a pusher 50 , which presses the material at the feed inlet 22 for rapid cutting.

[0057] Implementation Example 2, such as Figure 5 As shown, the noodle pressing machine includes a processing chamber 20, and the noodle extruding component 30 and the material cutting component 40 share the same processing chamber 20.

[0058] By setting up a processing chamber 20, the noodle extrusion component 30 and the cutting component 40 share the same processing chamber 20, and there is no need to match the corresponding processing chambers 20 respectively, which saves the number of parts of the noodle pressing machine, improves space utilization, makes it easier for users to store, further simplifies the structure of the noodle pressing machine, and reduces production and maintenance costs.

[0059] It is understood that in this embodiment, the processing chamber 20 and the host 10 can be fixedly connected or detachably connected. The detachable connection between the processing chamber 20 and the host 10 can refer to the embodiment 1.

[0060] It should be noted that the present invention does not limit the specific structure of the cutting assembly 40. For example, it can adopt any one of the following embodiments 3-5:

[0061] In embodiment 3, the cutting component 40 is provided with a first knife group 41 for cutting vegetables or other hard materials. Thus, the noodle pressing machine has at least noodle extrusion function and vegetable cutting function.

[0062] It can be understood that this implementation example can be optionally combined with any one of implementation examples 1 and 2.

[0063] Preferably, refer to Figure 4 The first knife group 41 includes a knife barrel 411 connected to the rotary output end 11 and a first cutting knife 412 provided on the side wall of the knife barrel. Preferably, the first cutting knife 412 includes a dicing knife, a shredding knife, and a slicing knife that are detachably matched with the knife barrel.

[0064] Of course, in other implementation examples, the first knife group 41 may also include a knife disc connected to the rotation output end 11 and a cutting knife provided on the knife disc.

[0065] In embodiment 4, the cutting assembly 40 is provided with a second knife group 42 for cutting meat or other flexible materials. Thus, the noodle pressing machine has at least noodle extrusion function and meat cutting function.

[0066] It can be understood that this implementation example can be optionally combined with any one of implementation examples 1 and 2.

[0067] Preferably, refer to Figure 4 The second tool group 42 includes a tool holder 421 installed in the processing chamber 20, two tool shafts 422 rotatably set on the tool holder and a second cutting knife 423 set on the tool shaft. The two tool shafts are connected to the rotation output end 11 through a reduction box.

[0068] Implementation Example 5, refer to Figure 5 As shown, there are two types of cutting assemblies 40, including a first blade assembly 41 and a second blade assembly 42 that can be installed in the processing chamber 20. Preferably, the first blade assembly 41 is used for cutting vegetables or other hard materials, while the second blade assembly 42 is used for cutting meat or other flexible materials. This allows the noodle press to have at least noodle extrusion, vegetable cutting, and meat cutting functions.

[0069] In this embodiment, either the first blade assembly 41 or the second blade assembly 42 is installed in the processing chamber 20. Of course, in other embodiments, the first blade assembly 41 and the second blade assembly 42 can also be installed in the processing chamber 20 together.

[0070] More specifically, if Figure 5 As shown, in this embodiment, there is only one processing chamber 20 , and the noodle extrusion assembly 30 , the first knife group 41 , and the second knife group 42 are selectively installed in the processing chamber to share the same processing chamber 20 .

[0071] In fact, based on the cutting component 40 of this embodiment example, in other embodiment examples, the processing chamber 20 can also include a first processing chamber 201 and a second processing chamber 202, and the extrusion component 30 and the cutting component 40 are respectively installed in the first processing chamber 201 and the second processing chamber 202, wherein the first knife group 41 and the second knife group 42 can be selectively installed in the second processing chamber 202, or, the second processing chamber 202 is set with a first mounting position and a second mounting position, and the first knife group 41 and the second knife group 42 are respectively installed in the first mounting position and the second mounting position, so that the first knife group 41 and the second knife group 42 are installed together in the second processing chamber 202.

[0072] In this embodiment, the cutting assembly 40 includes a first blade assembly 41 and a second blade assembly 42 that can be installed in the processing chamber 20. Depending on the properties of the material, the first blade assembly 41 or the second blade assembly 42 can be flexibly selected for cutting, thereby achieving labor-saving and uniform cutting of the material, achieving good cutting results and meeting user needs. The first blade assembly 41 and the second blade assembly 42 can be installed in the processing chamber 20, thereby reducing the volume of the processing chamber 20. Alternatively, the first blade assembly 41 and the second blade assembly 42 can be installed together in the processing chamber 20, achieving synchronous processing, improving processing efficiency, and eliminating the need for switching blade assemblies.

[0073] In addition, the utility model does not limit the specific opening design of the processing chamber 20. In this embodiment, Figure 5 As shown, the surface outlet 23 is located on the side of the processing chamber 20 and is opposite to the transmission port 21. The processing chamber 20 is provided with a first cutting outlet 24 corresponding to the first knife group 41 and a second cutting outlet 25 corresponding to the second knife group 42, wherein the first knife group 41 includes a knife cylinder 411 connected to the rotating output end 11 and a cutting knife 412 arranged on the side wall of the knife cylinder. The first cutting outlet 24 is located on the side of the processing chamber 20 and is the same as the surface outlet 23. The second knife group 42 includes a knife holder 421 installed on the processing chamber 20, two knife shafts 422 rotatably arranged on the knife holder and a second cutting knife 423 arranged on the knife shaft. The two knife shafts are connected to the rotating output end 11 through a reduction gear box. The second cutting outlet 25 is located at the bottom of the processing chamber 20.

[0074] Implementation Example 6, such as Figure 6 As shown, the difference between this embodiment and embodiment 5 is that the outlet 23 is located at the bottom of the processing chamber 20, and the structures of the first knife group 41 and the second knife group 42 are the same as those in embodiment 5, which are not repeated here. The first cutting outlet 24 and the second cutting outlet 25 are respectively located at the side and bottom of the processing chamber 20, and the second cutting outlet 25 is located at the bottom of the processing chamber 20 and is the same as the outlet 23.

[0075] The present invention realizes smooth material output by making one of the first cutting outlet 24 and the second cutting outlet 25 the same as the surface outlet 23, while reducing the number of openings in the processing chamber 20, simplifying the structure of the processing chamber 20, facilitating production and processing, and saving the sealing operation when the user needs to seal the opening during use.

[0076] Of course, it is understandable that in other implementation examples, the first cutting material outlet 24 , the second cutting material outlet 25 , and the surface outlet 23 may be arranged independently.

[0077] In another preferred embodiment, the dough outlet 23 is arranged at the bottom of the processing chamber 20, and the side of the processing chamber 20 is provided with a cutting outlet corresponding to the cutting component 40, wherein the cutting outlet can be the above-mentioned first cutting outlet 24 or the second cutting outlet 25, and the noodle pressing machine also includes a sealing cover that is installed on the dough outlet 23 instead of the dough outlet cover 32.

[0078] The noodle outlet 23 is set at the bottom of the processing chamber 20. During the noodle extrusion process, the noodles can be output from the noodle outlet 23 under the combined effect of the thrust of the extrusion screw 31 and its own gravity, thereby improving the noodle output efficiency. A cutting outlet is set on the side of the processing chamber 20 to achieve smooth output of the cut materials. The noodle press also includes a sealing cover that is installed on the noodle outlet 23 instead of the noodle outlet cover 32. When in the cutting state, the sealing cover can be used to block the noodle outlet 23 located at the bottom of the processing chamber 20, thereby effectively preventing the cut materials from falling from the noodle outlet 23, ensuring that the cut materials are only output from the corresponding cutting outlet, and the structure is reliable.

[0079] Anything not described in this utility model can be achieved by adopting or drawing on existing technologies.

[0080] The various embodiments in this specification are described in a progressive manner, and the same or similar parts between the various embodiments can be referred to each other. Each embodiment focuses on the differences from other embodiments.

[0081] The above are merely examples of the present invention and are not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of the claims of the present invention.

Claims

1. A multifunctional noodle pressing machine, characterized in that: It includes a main machine with a rotating output end, a processing chamber installed on the main machine, and an extrusion assembly and a cutting assembly installed in the processing chamber and coordinated with the rotating output end. The processing chamber is provided with a transmission port located on the side corresponding to the rotating output end, a feed port located on the top for feeding, and a noodle outlet for discharging when the noodle extrusion assembly is working. The noodle extrusion assembly includes an extrusion screw arranged in the processing chamber and detachably connected to the rotating output end, and the cutting assembly has a cutting knife corresponding to the feed port.

2. A multifunctional noodle pressing machine according to claim 1, characterized in that: The noodle pressing machine comprises a processing chamber, and the noodle extruding component and the material cutting component share the same processing chamber.

3. The multifunctional noodle pressing machine according to claim 1, characterized in that: The processing chamber includes a first processing chamber and a second processing chamber that are detachably matched with the main machine, and the noodle extrusion assembly and the material cutting assembly are respectively installed in the first processing chamber and the second processing chamber.

4. The multifunctional noodle pressing machine according to claim 1, characterized in that: The cutting assembly comprises a first cutting group and a second cutting group which can be installed in the processing chamber. The processing chamber is provided with a first cutting outlet corresponding to the first cutting group and a second cutting outlet corresponding to the second cutting group.

5. The multifunctional noodle pressing machine according to claim 4, characterized in that: At least one of the first cutting outlet and the second cutting outlet is the same as the surface outlet.

6. The multifunctional noodle pressing machine according to claim 1, characterized in that: The cutting assembly includes a first knife group and a second knife group that can be installed in the processing chamber. The first knife group and the second knife group are installed in the processing chamber selectively or together.

7. The multifunctional noodle pressing machine according to claim 1, characterized in that: The cutting assembly includes a knife barrel connected to the rotating output end and the cutting knife provided on the side wall of the knife barrel; Alternatively, the cutting assembly includes a cutter disc connected to the rotation output end and a cutting knife provided on the cutter disc; Alternatively, the cutting assembly includes a tool holder installed on the processing chamber, two tool shafts rotatably arranged on the tool holder, and the cutting knife arranged on the tool shafts, and the two tool shafts are connected to the rotation output end through a reduction box.

8. The multifunctional noodle pressing machine according to claim 1, characterized in that: The noodle extrusion assembly further comprises a noodle outlet cover detachably mounted at the noodle outlet, wherein the noodle outlet cover is provided with an outlet hole; Alternatively, the noodle extrusion assembly further comprises a noodle outlet cover, an outlet hole is provided on the noodle outlet cover, the noodle outlet port is provided at the bottom of the processing chamber, a cutting outlet corresponding to the cutting assembly is provided on the side of the processing chamber, and the noodle pressing machine further comprises a sealing cover that is installed on the noodle outlet port in replacement of the noodle outlet cover.

9. The multifunctional noodle pressing machine according to claim 1, characterized in that: The main unit includes a mounting portion on which a motor is mounted and a gripping handle protruding from one side of the mounting portion. The output shaft of the motor extends from the mounting portion to form the rotation output end.

10. The multifunctional noodle pressing machine according to claim 1, characterized in that: The main machine is provided with limiting ribs arranged along the circumference of the rotary output head, and the transmission port of the processing cavity is detachably connected to the limiting ribs.