Vegetable cutting module and vegetable cutter

By providing a guide structure on the cutting module to cooperate with the vegetable cutter body, the problem of inaccurate positioning and assembly of the cutting module is solved, fast and accurate assembly is achieved, and user experience and equipment stability are improved.

CN223383583UActive Publication Date: 2025-09-26GUANG DONG GE LU HUA JIA JU YOU XIAN GONG SI
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Patent Information

Application Number
CN202422662131.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-01
Publication Date
2025-09-26
Estimated Expiration
2034-11-01

AI Technical Summary

Technical Problem

There is a gap between the existing vegetable cutting module and the vegetable cutting machine during positioning and assembly, which makes it impossible to achieve precise positioning, increases the complexity of user operation, reduces cutting accuracy and efficiency, and may accelerate equipment wear.

Method used

A first guide structure is provided on the cutting shell of the cutting module, including a second clamping block and a positioning assembly. The guide structure cooperates with the second guide structure on the vegetable cutting machine body to achieve fast and accurate positioning and assembly.

Benefits of technology

It simplifies the user assembly process, reduces manual calibration steps, ensures the precise positioning of the cutting module, improves the user experience and equipment stability, and extends the service life.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model relates to the technical field of household appliances, in particular to a vegetable cutting module and a vegetable cutter, the vegetable cutting module comprises a vegetable cutting shell and a vegetable cutting knife disc rotationally arranged in the vegetable cutting shell, and specifically, a first guide structure is arranged on the vegetable cutting shell; the first guide structure can directionally guide the vegetable cutting shell to the assembly position on the vegetable cutting machine body, so that when a user assembles the vegetable cutting shell, the vegetable cutting shell only needs to be directionally assembled to the assembly position on the vegetable cutting machine body through the first guide structure, rapid and accurate positioning can be achieved, the step of manual calibration by the user is omitted, and the user experience is improved. The operation difficulty is reduced, the assembling process becomes simpler and is not prone to making mistakes, accurate positioning of the vegetable cutting module is ensured, and the use experience of a user is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of household appliances, in particular to a vegetable cutting module and a vegetable cutting machine. Background Art

[0002] In the design of modern kitchen equipment, vegetable cutters are highly favored by users due to their practicality and efficiency. As one of the core components of vegetable cutters, the design of the vegetable cutting module directly affects the overall performance of the equipment. However, the existing vegetable cutting modules face some urgent problems during the assembly process, especially in terms of positioning and assembly accuracy.

[0003] In the prior art, the existing vegetable cutting module is assembled on the vegetable cutting machine, and the output shaft of the driving module is required as an additional positioning assembly structure for the vegetable cutting module to be assembled to the assembly position on the vegetable cutting machine. However, in practice, there is often a certain gap between the output shaft and the vegetable cutting module. This gap may be caused by manufacturing tolerances, material wear or other factors, resulting in the inability to achieve precise positioning of the vegetable cutting module during the assembly process. Due to the existence of this gap, additional manual calibration is often required during assembly to ensure the correct positioning of the vegetable cutting module, which not only increases the user's operation complexity, but may also lead to a decrease in cutting accuracy and efficiency. In addition, frequent manual calibration may cause increased wear of the vegetable cutting module and equipment, thereby shortening its service life.

[0004] The present invention is proposed in view of the deficiencies in the prior art. Utility Model Content

[0005] The above-mentioned technical problem that the existing vegetable cutting module and the vegetable cutting machine cannot be accurately positioned and assembled is addressed.

[0006] The technical solution adopted by the utility model to solve its technical problems is:

[0007] The vegetable cutting module comprises a vegetable cutting shell and a vegetable cutting blade rotatably arranged in the vegetable cutting shell. The vegetable cutting shell is provided with a first guide structure which can guide the vegetable cutting shell to an assembly position on the vegetable cutting machine body.

[0008] In the vegetable cutting module as described above, the first guide structure includes a second clamping block provided on the vegetable cutting housing, and the number of the second clamping block is at least one.

[0009] In the vegetable cutting module as described above, the number of the second card blocks is two, and the two second card blocks are arranged opposite to each other on the vegetable cutting housing.

[0010] In the vegetable cutting module as described above, the second clamping block is provided with a second sliding groove and a second opening communicating with the second sliding groove.

[0011] A vegetable cutting module as described above, at one end of each of the second clamping blocks, there is a positioning component capable of positioning the vegetable cutting housing at the assembly position on the vegetable cutting machine main body, and the positioning component is a positioning plate.

[0012] A vegetable cutting module as described above, the positioning component further includes a connecting plate, and both ends of the connecting plate are respectively connected to two positioning plates.

[0013] A vegetable cutting module as described above, the shape of the structure formed by connecting the connecting plate, two positioning plates and two second clamping blocks is in the shape of a kind of "冂".

[0014] A vegetable cutting module as described above, on the first guiding structure, there is also a positioning component capable of positioning the vegetable cutting housing at the assembly position on the vegetable cutting machine main body.

[0015] A vegetable cutting module as described above, there is an opening on the vegetable cutting housing, and a connecting component corresponding to the opening is arranged on the vegetable cutting knife disc, and the connecting component can be in transmission connection with the output end of the driving module.

[0016] A vegetable cutting machine, including a vegetable cutting machine main body and a vegetable cutting module as described in any one of the above, on the vegetable cutting machine main body, there is a second guiding structure corresponding to the first guiding structure, the vegetable cutting machine main body includes a vegetable cutting machine housing and a driving module, the second guiding structure can cooperate with the first guiding structure to assemble the vegetable cutting housing onto the vegetable cutting machine housing, the driving module has an output end, and the output end can be in transmission connection with the vegetable cutting knife disc.

[0017] The beneficial effects of the present utility model are:

[0018] A vegetable cutting module and a vegetable cutting machine of the present utility model relate to the technical field of household appliances. Among them, the vegetable cutting module includes a vegetable cutting housing and a vegetable cutting knife disc rotatably arranged in the vegetable cutting housing. Specifically, by setting a first guiding structure on the vegetable cutting housing, the first guiding structure can orient and guide the vegetable cutting housing to the assembly position on the vegetable cutting machine main body, so that when the user assembles, only need to orient and assemble the vegetable cutting housing to the assembly position on the vegetable cutting machine main body through the first guiding structure, then rapid and accurate positioning can be achieved, reducing the steps of manual calibration by the user, lowering the operation difficulty, making the assembly process simpler and less prone to errors, ensuring the precise positioning of the vegetable cutting module, and improving the user experience.

[0019] Next, the present utility model will be further described in conjunction with the drawings and specific embodiments. <00000,41>BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic structural diagram of the vegetable cutting machine of the present utility model;

[0021] Figure 2 This is one of the exploded schematic diagrams of the vegetable cutter of the present invention;

[0022] Figure 3 This is the second exploded diagram of the vegetable cutter of the present invention;

[0023] Figure 4 This is the third exploded diagram of the vegetable cutter of the present invention;

[0024] Figure 5 This is the fourth exploded diagram of the vegetable cutter of the present invention;

[0025] Figure 6 This is the fifth exploded diagram of the vegetable cutter of the present invention;

[0026] Figure 7 This is a bottom view of the vegetable cutting module of the present invention;

[0027] Figure 8 This is a schematic diagram of the main view of the vegetable cutter of the present invention;

[0028] Figure 9 for Figure 8 Schematic cross-sectional view along line AA;

[0029] Figure 10 for Figure 8 Schematic cross-sectional view along line BB;

[0030] Figure 11 This is a structural diagram of the vegetable cutting module of the present invention being turned around and placed in the storage position of the vegetable cutting machine body;

[0031] Figure 12 This is an exploded schematic diagram of a transmission shaft and a second transmission gear in another embodiment of the present utility model;

[0032] Figure 13 It is a cross-sectional schematic diagram of a transmission shaft and a second transmission gear according to another embodiment of the present invention. DETAILED DESCRIPTION

[0033] The following describes the embodiments of the present invention in detail with reference to the accompanying drawings.

[0034] like Figures 1 to 13As shown, the vegetable cutting module of this embodiment includes a vegetable cutting shell 31 and a vegetable cutting blade 32 rotatably arranged in the vegetable cutting shell 31. Specifically, by providing a first guide structure on the vegetable cutting shell 31, the first guide structure can guide the vegetable cutting shell 31 in a direction to the assembly position on the vegetable cutting machine body, so that when assembling, the user only needs to assemble the vegetable cutting shell 31 to the assembly position on the vegetable cutting machine body through the first guide structure, so as to achieve fast and accurate positioning, reduce the steps of manual calibration for the user, reduce the difficulty of operation, make the assembly process simpler and less prone to errors, ensure the accurate positioning of the vegetable cutting module, and improve the user experience.

[0035] like Figures 1 to 13 As shown, the first guide structure of this embodiment includes a second card block 52 provided on the vegetable cutting shell 31, and the number of the second card block 52 is at least one. Specifically, the second card block 52 can guide the vegetable cutting shell 31 to be precisely docked with the vegetable cutting machine body. They can be embedded in the corresponding grooves or bayonet slots to ensure that the vegetable cutting shell 31 is fixed in the correct position on the vegetable cutting machine body.

[0036] Preferably, the second clamping block 52 can ensure that the vegetable cutting shell 31 slides into the correct position naturally during assembly, reducing assembly errors. The user only needs to align the clamping block with the second guide structure (such as a groove, another clamping block, etc.) on the vegetable cutting machine body and push it lightly to complete the assembly without the need for complicated operating skills. In addition, during the vegetable cutting process, the second clamping block 52 can also provide additional fixing force between the vegetable cutting module and the vegetable cutting machine body to prevent the vegetable cutting shell 31 from loosening or shifting on the vegetable cutting machine body due to vibration.

[0037] like Figures 1 to 13 As shown, in this embodiment, the number of the second clamping blocks 52 is two, and the two second clamping blocks 52 are arranged opposite to each other on the vegetable cutting housing 31.

[0038] By adopting a relative arrangement design, the two second clamping blocks 52 can provide symmetrical support during assembly, thereby enhancing the stability of the vegetable cutting shell 31 on the vegetable cutting machine body and preventing shaking and displacement during operation.

[0039] Specifically, the relative card block design can ensure that the vegetable cutting shell can naturally slide into and be positioned at the corresponding part of the vegetable cutting machine body, reducing assembly errors. The user only needs to align the two card blocks with the corresponding grooves or slots on the body and complete the quick assembly by applying light force.

[0040] like Figures 1 to 13 As shown, the second clamping block 52 of this embodiment is provided with a second sliding groove 55 and a second opening 56 communicating with the second sliding groove 55 .

[0041] Preferably, the second sliding groove 55 can guide and fix the second guide structure on the vegetable cutter body, so that the vegetable cutter shell 31 can slide smoothly to the predetermined position during the installation process. The second opening 56 is connected to the second sliding groove 55, so that the second guide structure can be inserted into the second sliding groove 55 through the second opening 56, thereby facilitating the docking and fixation of the vegetable cutter shell 31 and the vegetable cutter body.

[0042] Specifically, through the cooperation of the second sliding groove and the second opening, the user can easily achieve the precise positioning and fixation of the vegetable cutting shell 31 on the vegetable cutting machine body. The user does not need to perform complicated operations, but only needs to simply align the sliding groove and the opening to complete the installation, thereby improving the use efficiency.

[0043] Preferably, the cross-sectional shape of the two oppositely arranged second blocks 52 of this embodiment is L-shaped. The L-shaped structure provides two vertical planes, so that the blocks can provide support and fixation in two directions. This structure helps to enhance the stability of the vegetable cutting shell 31 in the device.

[0044] The L-shape enables the two blocks to be more tightly combined with the device body, reducing looseness during operation. In addition, the natural alignment characteristics of the L-shaped design simplify the installation process, allowing users to easily complete assembly.

[0045] like Figures 1 to 13 As shown, the first guide structure of this embodiment is also provided with a positioning component that can position the vegetable cutting shell 31 at the assembly position on the vegetable cutting machine body, which can ensure that the vegetable cutting shell 31 is accurately positioned at the assembly position on the vegetable cutting machine body, making the installation process simple and efficient. When installing, the user only needs to simply assemble the vegetable cutting shell 31 on the vegetable cutting machine body through the first guide structure. When reaching the assembly position, the positioning component can limit the vegetable cutting shell 31 to the vegetable cutting machine body, ensuring that the vegetable cutting shell 31 can be accurately assembled to the assembly position on the vegetable cutting machine body every time, thereby realizing precise installation of the shell.

[0046] Preferably, the positioning assembly can also provide additional fixed support, reduce vibration and displacement, and improve the stability and safety of equipment operation.

[0047] Preferably, one end of each of the second clamping blocks 52 of the present embodiment is provided with a positioning component capable of positioning the vegetable cutting shell 31 at the assembly position on the vegetable cutting machine body. The positioning component is a positioning plate 57. When the second clamping block 52 cooperates with the second guide structure on the vegetable cutting machine body and the vegetable cutting shell 31 is assembled to the assembly position on the vegetable cutting machine body, the second guide structure can be offset from the positioning plate 57, so that the vegetable cutting shell is accurately positioned at the assembly position of the body, which has the advantages of simple structure and easy operation.

[0048] like Figures 1 to 13As shown, the positioning component of this embodiment further includes a connecting plate 58. The two ends of the connecting plate 58 are respectively connected to the positioning plates 57 on the two second clamping blocks 52. With such a design, the connecting plate 58 and the positioning plate 57 form an integral positioning component. The connecting plate 58 can provide additional support and stability, ensuring that the vegetable cutting housing is more firmly in the assembled position.

[0049] As Figures 1 to 13 shown, the structure formed by connecting the connecting plate 58, the two positioning plates 57 and the two second clamping blocks 52 in this embodiment is in a shape similar to a "冂". Preferably, the two positioning plates 57 are respectively used as the two vertical sides of the "冂" shape, and the connecting plate 58 is used as the top spanning the two. This design provides good structural stability and anti-deformation ability.

[0050] The structure similar to a "冂" shape provides stable support for the vegetable cutting housing 31 on the vegetable cutting machine main body, ensuring its firm assembly on the vegetable cutting machine main body. And during the vegetable cutting process, the user may press down on the ingredients on the vegetable cutting housing 31, exerting a downward force on the vegetable cutting housing 31. The positioning component can also provide additional support for the vegetable cutting housing 31 to extend the service life of the vegetable cutting housing 31 on the vegetable cutting machine main body. In addition, the positioning component can also prevent the position of the vegetable cutting housing 31 from shifting downward during the process of the user pressing down on the ingredients, ensuring that there is enough clearance between the vegetable cutting housing 31 and the output end 21 on the drive module 2, and avoiding the situation where the output end 21 and / or the vegetable cutting housing 31 are damaged due to a collision between the vegetable cutting housing 31 and the output end 21.

[0051]

[0049] As Figures 1 to 13 shown, the structure formed by connecting the connecting plate 58, the two positioning plates 57 and the two second clamping blocks 52 in this embodiment is in a shape similar to a "冂". Preferably, the two positioning plates 57 are respectively used as the two vertical sides of the "冂" shape, and the connecting plate 58 is used as the top spanning the two. This design provides good structural stability and anti-deformation ability.

[0050] The structure similar to a "冂" shape provides stable support for the vegetable cutting housing 31 on the vegetable cutting machine main body, ensuring its firm assembly on the vegetable cutting machine main body. And during the vegetable cutting process, the user may press down on the ingredients on the vegetable cutting housing 31, exerting a downward force on the vegetable cutting housing 31. The positioning component can also provide additional support for the vegetable cutting housing 31 to extend the service life of the vegetable cutting housing 31 on the vegetable cutting machine main body. In addition, the positioning component can also prevent the position of the vegetable cutting housing 31 from shifting downward during the process of the user pressing down on the ingredients, ensuring that there is enough clearance between the vegetable cutting housing 31 and the output end 21 on the drive module 2, and avoiding the situation where the output end 21 and / or the vegetable cutting housing 31 are damaged due to a collision between the vegetable cutting housing 31 and the output end 21.

[0051] Preferably, the shape of the structure formed by connecting the connecting plate 58, the two positioning plates 57 and the two second clamping blocks 52 in the embodiment can also be in shapes similar to a "匚", "凵", etc. The only change is the assembly direction of the vegetable cutting housing 31 on the vegetable cutting machine main body. The other functions are similar to those of the above-mentioned shape similar to a "冂", which will not be elaborated here. The appropriate design can be selected according to actual needs.

[0052] As Figures 1 to 13As shown, an opening 311 is provided on the cutting shell 31 of this embodiment, and a connecting member corresponding to the opening 311 is provided on the cutting knife disc 32, and the connecting member can be connected to the output end 21 of the driving module 2 by transmission. With such a design, the cutting knife disc 32 can be accurately aligned with the output end of the driving module. In this embodiment, the output end 21 includes a plug provided on the driving module, and the connecting member includes a transmission shaft 322 that can be detachably connected to the plug. The plug is corresponding to the transmission shaft 322, and the transmission shaft 322 is connected to the cutting knife disc 32. The dynamic shaft 322 can be detachably connected to the plug nozzle. Such a design can facilitate the assembly of the cutting module 3 and the driving module 2. During the assembly process, the cutting shell 31 can be first engaged with the first clamping block 51 and the second clamping block 52 to make the cutting shell 31 engage with the cutting machine shell 1 and the driving module 2, and then the cutting disc 32 provided with the transmission shaft 322 can be assembled into the cutting shell 31. At this time, the transmission shaft 322 passes through the opening 311 and the avoidance hole 12 in turn and is inserted into the plug nozzle, thereby realizing the connection between the cutting module 3 and the driving module 2.

[0053] Specifically, the power of the driving motor 23 is transmitted to the plug nozzle through the transmission assembly 24, and then transmitted to the cutter disc through the transmission shaft, so that the cutter disc rotates on the vegetable cutting shell 31, thereby performing the vegetable cutting operation.

[0054] Preferably, a positioning member 6 is provided between the transmission shaft 322 and the plug nozzle, and the positioning member 6 includes a positioning protrusion 61 and a positioning groove 62. When the transmission shaft 322 is inserted into the plug nozzle and the positioning protrusion 61 is engaged with the positioning groove 62, the transmission shaft 322 is positioned and assembled at the plug nozzle, ensuring that the two can be firmly engaged, thereby preventing the transmission shaft 322 from escaping from the plug nozzle during operation of the vegetable cutter, and ensuring the normal operation of the vegetable cutting module 3.

[0055] Preferably, the positioning protrusion 61 is provided in the plug and the positioning groove 62 is provided on the transmission shaft 322. Alternatively, the positioning protrusion 61 is provided on the transmission shaft 322 and the positioning groove 62 is provided in the plug. An appropriate design can be selected according to actual needs.

[0056] Preferably, the positioning protrusion 61 is an annular protrusion, and the positioning groove 62 is an annular groove matching the annular protrusion to ensure that the two are tightly engaged, and the surface of the positioning protrusion 61 and the groove surface of the positioning groove 62 both have a certain curvature, which facilitates the positioning protrusion 61 to enter or exit the positioning groove 62, thereby facilitating the assembly of the two.

[0057] Preferably, in other embodiments, the positioning member 6 includes a sliding groove 63 provided on the outside of the transmission shaft 322 and a third clamping block 64 provided on the inner wall of the plug, and when the transmission shaft 322 is inserted into the plug, the third clamping block 64 can be clamped into the sliding groove 63.

[0058] Preferably, the sliding groove 63 is L-shaped, and the transmission shaft 322 and the plug can be connected in a right-angle rotation manner. When the transmission shaft 322 is inserted into the plug, the transmission shaft 322 can be rotated in a right-angle manner to enable the third clamping block 64 to be clamped into the sliding groove 63. The structure is simple, the operation is convenient, and it is safe and reliable.

[0059] By adopting such a design, unnecessary complex structures are reduced by using the combination of the sliding groove 63 and the third clamping block 64. This design reduces the number of components and simplifies the production and assembly process.

[0060] The right-angle rotation means that users only need to simply insert and rotate the drive shaft to complete the connection between the drive shaft and the plug. This method is intuitive and easy to master, reducing the number of operating steps and improving efficiency.

[0061] Specifically, the third block 64 is firmly engaged in the sliding groove 63, providing a strong mechanical lock to prevent loosening or accidental separation during use. This design ensures the stability and reliability of the connection.

[0062] Preferably, the transmission shaft 322 includes a first connecting section 3222 and a second connecting section 3223 connected in sequence, the diameter of the first connecting section 3222 is larger than the diameter of the second connecting section 3223, and the outer wall of the second connecting section 3223 is also provided with a plurality of hooks 323 extending outward, and the plurality of hooks 323 are arranged at intervals, and the space enclosed by adjacent hooks 323 and the side wall of the first connecting section 3222 near one end of the second connecting section 3223 is a sliding groove 63.

[0063] Furthermore, by designing the hook 323 and the sliding groove 63 on the second connecting section 3223 with a smaller diameter, the spatial layout is optimized. This not only saves materials, but also can adapt to different space requirements and increase design flexibility.

[0064] Preferably, the presence of multiple hooks provides multiple connection points, allowing the user to select different connection positions according to needs. This flexibility enables the system to adapt to different application scenarios and changes in demand.

[0065] Preferably, the hooks 323 correspond to the third clamping blocks 64 one by one, and a plurality of third clamping blocks 64 are arranged at intervals on the inner side wall of the plug.

[0066] Preferably, a limiting protrusion 3231 is provided on the side of at least one hook 323 away from the third blocking block 64, and a slot 641 that can engage with the limiting protrusion 3231 is provided on the side of the third blocking block 64 away from the hook 323. When the third blocking block 64 is inserted into the sliding slot 63, the limiting protrusion 3231 can be inserted into the slot 641 to limit the third blocking block 64 in the sliding slot 63 and prevent it from falling out of the sliding slot 63, thereby limiting the transmission shaft 322 from rotating in the opposite direction, ensuring that the transmission shaft 322 will not fall out of the plug, and improving the stability of the connection between the transmission shaft 322 and the plug.

[0067] When the transmission shaft 322 needs to be taken out of the plug, a certain force is applied in the opposite direction to make the limiting protrusion 3231 disengage from the slot 641. At this time, the third block 64 can disengage from the sliding slot 63 to separate the transmission shaft 322 from the plug. This design ensures the firmness of the connection and provides convenience for disassembly without the need for additional tools.

[0068] Preferably, a first guiding bevel 642 is provided on a surface of the third clamping block 64 close to the sliding groove 63. When the hook 323 abuts against the first guiding bevel 642, the first guiding bevel 642 can guide the hook 323 to the space between the two third clamping blocks 64, so that the third clamping block 64 is clamped into the sliding groove 63. When the third clamping block 64 abuts against the side wall of the first connecting section 3222 close to one end of the second connecting section 3223, the transmission shaft 322 can be rotated so that the limiting protrusion 3231 is clamped into the clamping groove 641. The third clamping block 64 is clamped into the sliding groove 63 by the hook 323 and the limiting protrusion 3231, which has the advantages of simple structure and easy operation.

[0069] Preferably, the hook 323 is provided with a second guide bevel 3232 corresponding to the first guide bevel 642. Through the cooperation and guidance of the first guide bevel 642 and the first guide bevel 642, after the hook 323 collides with the third block 64, the third block 64 can also smoothly enter the sliding groove 63.

[0070] Preferably, a limiting portion 211 is further provided in the plug nozzle, and the third clamping block 64 is located between the limiting portion 211 and the transmission shaft 322. When the transmission shaft 322 is inserted into the plug nozzle and the third clamping block 64 is inserted into the sliding groove 63, the limiting portion 211 can abut against the end of the hook 323 to remind the user that the transmission shaft 322 has been inserted into the plug nozzle to the limit position. At this time, the user can rotate the transmission shaft 322 to achieve the third clamping block 64 being completely inserted into the sliding groove 63, which has the advantages of simple structure and easy operation.

[0071] The above-mentioned process of rotating the transmission shaft 322 can be achieved by rotating the cutting disc 32 to drive the transmission shaft 322 to rotate, or by rotating the transmission shaft 322 by tools or manually, and then assembling the transmission shaft 322 and the cutting disc 32. The appropriate design can be selected according to actual needs.

[0072] Preferably, a connecting member is provided between the transmission shaft 322 and the socket 321 of this embodiment, which enables the two to be detachably connected. The detachable connection makes it easier to disassemble and assemble the transmission shaft 322 and the cutting knife disc 32, and facilitates maintenance and replacement. Different types of cutting knife discs 32 and transmission shafts 322 can be replaced as needed, thereby enhancing the flexibility of use of the cutting module 3. The connecting member can adopt connection methods such as threaded connection, bolt connection, snap connection, and snap connection, and the appropriate design can be selected according to actual needs.

[0073] Preferably, the transmission shaft 322 in this embodiment is assembled on the socket 321 through a connecting member, achieving the effect of being pre-assembled on the cutting disc 32, and then the cutting disc 32 equipped with the transmission shaft 322 is assembled on the cutting shell 31 installed on the vegetable cutting machine shell.

[0074] In other embodiments, the transmission shaft 322 can first pass through the opening 311 and the avoidance hole 12 and be connected to the socket on the second transmission gear 242. Then, the cutting knife disc 32 is assembled into the cutting shell 31 and connected to the transmission shaft 322 through the socket 321 and the connecting member. With such a design, the assembly between the modules can be more convenient, and the transmission shaft 322 will not hinder the assembly between the drive shell 22 and the cutting shell 31. Through the action of the first block 52 and the second block 52, the cutting shell 31 can be quickly and accurately assembled with the drive shell 22, and the avoidance hole 12 and the opening 311 socket can be quickly aligned, so that the transmission shaft 322 can be quickly assembled into place.

[0075] In other embodiments, the transmission shaft 322 and the cutting blade disc 32 are integrally formed, which can save the structure of the insertion hole 321, so that the structure of the cutting blade disc 32 and the transmission shaft 322 is more stable.

[0076] like Figures 1 to 13 As shown, a vegetable cutter of the present embodiment comprises a vegetable cutter body and a vegetable cutting module as described in any one of the above items, wherein the vegetable cutter body is provided with a second guide structure corresponding to the first guide structure, and the vegetable cutter body comprises a vegetable cutter shell 1 and a drive module 2, and the second guide structure can cooperate with the first guide structure so that the vegetable cutter shell 31 can be assembled to the vegetable cutter shell 1, and the drive module 2 is provided with an output end 21, and the output end 21 can be connected to the cutting disc 32 in a transmission manner.

[0077] Preferably, the second guide structure in this embodiment includes a first clamping block 51 corresponding to the second clamping block 52 , and the first clamping block 51 can be engaged with the corresponding second clamping block 52 .

[0078] Specifically, through the engagement of the first card block 51 and the second card block 52, the vegetable cutting module and the driving module can be quickly connected and disassembled, which simplifies user operation, is easy to maintain, and reduces downtime. In addition, the vegetable cutting module is precisely docked with the driving module through the card block system to ensure effective power transmission.

[0079] Furthermore, the block connection ensures stability and precision, reduces failures caused by loose connections, provides smooth power transmission, and improves cutting efficiency.

[0080] Preferably, in this embodiment, a first sliding groove 53 is provided on the first card block 51, and a first opening 54 communicating with the first sliding groove 53 is provided on the top of the first card block 51. The second card block 52 can be inserted into the first sliding groove 53 through the first opening 54 to achieve the engagement of the first card block 51 and the second card block 52. The design of the first sliding groove ensures that the connection between the first card block 51 and the second card block 52 is firm to avoid loosening, thereby effectively enhancing the stability and safety of the equipment.

[0081] Preferably, the design of the first opening makes it easy to insert and remove the second card block 52, simplifies operation, improves user experience and maintenance convenience, and can ensure accurate docking between modules, thereby improving equipment operation efficiency.

[0082] Preferably, the cross-sectional shape of the first block 51 in this embodiment is F-shaped. Such a design can provide multiple contact points, thereby increasing the stability of the connection between the first block 51 and the second block 52 and preventing shaking or loosening between the two.

[0083] The first clamping block 51 is in an F-shaped shape, thereby increasing the supporting surface, enhancing the overall strength and durability of the first clamping block 51 , and increasing the contact surface with the second clamping block 52 .

[0084] Preferably, in this embodiment, the vegetable cutter housing 1 is further provided with a receiving cavity 11 for assembling the driving module 2, and the driving module 2 is partially or completely assembled into the receiving cavity 11.

[0085] Specifically, the receiving cavity 11 is used to accommodate and fix the driving module 2 so that it is firmly connected to the vegetable cutter housing 1.

[0086] Preferably, the vegetable cutter housing 1 is provided with an assembly port 16 communicating with the storage cavity 11, and the drive module 2 can enter and exit the storage cavity 11 through the assembly port. The storage cavity 11 can provide additional support for the drive module 2, reduce the vibration and noise generated when the drive module 2 is working, and improve the user experience.

[0087] Furthermore, the combination of the storage cavity 11 and the assembly port can provide a guide for assembling the drive module 2 on the vegetable cutter housing 1, so that the user can complete the installation and disassembly without complicated operations and excessive attention, saving time and energy.

[0088] Preferably, in this embodiment, the driving module 2 is completely assembled into the storage cavity 11, so that the driving module 2 can be hidden in the vegetable cutter housing 1, hiding the redundant structure and making the appearance of the device more neat and modern.

[0089] In other embodiments, the driving module 2 is partially hidden in the storage cavity 11, which makes the appearance of the device more technological, saves the volume of the vegetable cutter housing 1, and saves production costs.

[0090] Preferably, in this embodiment, the driving module 2 is arranged in the storage cavity 11, and the vegetable cutter housing 1 is provided with a through hole 13 for the first card block 51 to extend out of the storage cavity 11. The first card block 51 extends out of the storage cavity 11 through the through hole 13 and is engaged with the second card block 52, which has the advantages of simple structure and easy operation. The vegetable cutter housing 1 is also provided with an avoidance hole 12 communicated with the storage cavity 11 to avoid the output end 21.

[0091] Preferably, in other embodiments, the first card block 51 can also be in an L-like shape, and the first card block 51 and the side wall of the vegetable cutter housing 1 can form an F-like shape structure, so that the second card block 52 is inserted between the first card block 51 and the side wall of the vegetable cutter housing 1. The appropriate design can be selected according to actual needs.

[0092] During the assembly process, the vegetable cutting shell 31 can be first connected to the driving module 2 on the vegetable cutting machine shell 1 through the cooperation of the first block 51 and the second block 52, and then one end of the transmission shaft 322 is connected to the plug, and then the vegetable cutting knife disc 32 is assembled into the vegetable cutting shell 31 and connected to the transmission shaft 322 through the socket 321. Such a design can make the assembly between the modules more convenient, and the output end 21 will not hinder the assembly between the driving module 2 and the vegetable cutting shell 31. Through the action of the first block 52 and the second block 52, the vegetable cutting shell 31 can be quickly and accurately assembled with the driving module 2, and the avoidance hole 12 and the opening 311 plug can be quickly aligned, so that the transmission shaft 322 can be quickly assembled into place.

[0093] Preferably, the vegetable cutting machine housing 1 in this embodiment is also provided with a supporting protrusion 18 that can support the vegetable cutting housing 31. The supporting protrusion 18 is located below the avoidance hole 12. When the vegetable cutting housing 31 is connected to the driving module 2 through the second guide structure and the second guide structure, the supporting protrusion 18 is against the bottom of the vegetable cutting housing 31. With such a design, the user can be reminded twice that the vegetable cutting housing 31 has been assembled in place. In addition, the supporting protrusion 18 can also support the vegetable cutting housing 31, which can reduce the vertical pressure of the transmission shaft 322, reduce the risk of wear and failure, and extend the life of the transmission system. In addition, the supporting protrusion 18 can also form a double support effect with the above-mentioned structure formed by the connecting plate 58, the positioning plate 57 and the two second blocks 52, so as to improve the stability of the vegetable cutting module on the vegetable cutting machine body.

[0094] Preferably, the cross-sectional shape of the vegetable cutter housing 1 is L-shaped, that is, the vegetable cutter housing 1 includes a vertical section and a horizontal section, the supporting protrusion 18 is located at the vertical section, and the outer space at the corner of the vertical section and the horizontal section can form a storage position for accommodating the vegetable cutter module 3. When the vegetable cutter module 3 is removed from the vegetable cutter housing 1, the vegetable cutter module 3 can be turned over and placed in the storage position for storage. With such a design, the volume of the vegetable cutter can be effectively reduced and the space it occupies can be reduced when the vegetable cutter is transported or not used for a long time.

[0095] Preferably, the supporting protrusion 18 can also be close to or against the outer side wall of the portion of the cutting housing 31 used to assemble the cutting blade 32, so as to achieve the positioning function and ensure that the cutting housing 31 is accurately placed in the storage position.

[0096] Preferably, the height dimension of the vegetable cutting shell 31 is close to the height dimension of the vegetable cutting machine shell 1. With such a design, when the vegetable cutting module 3 is turned and placed in the storage position for storage, one end of the vegetable cutting shell 31 can be close to or against the top of the transverse section, and can cooperate with the supporting protrusion 18 to accurately turn the vegetable cutting module 3 and place it in the storage position. In addition, when the vegetable cutting module 3 is turned and placed in the storage position for storage, the structural shape formed by the storage of the vegetable cutting module 3 and the vegetable cutting machine shell 1 is similar to the shape of a rectangular parallelepiped, which further optimizes the volume of the vegetable cutting machine in the storage state and makes the vegetable cutting machine look more beautiful in the storage state, and minimizes the gap between the vegetable cutting module 3 and the vegetable cutting machine shell 1 as much as possible to avoid loosening and collision between the two to cause abnormal noise or damage.

[0097] In other embodiments, the supporting protrusion 18 is provided on the driving module 2, and the vegetable cutter housing 1 is provided with an avoidance hole that allows the supporting protrusion 18 to extend out of the storage cavity 11. A suitable design can be selected according to actual needs.

[0098] In other embodiments, a third guide structure is provided between the vegetable cutter housing 1 and the vegetable cutting module 3 to enable the two to be connected. The third guide structure includes a first clamping block 51 provided on the vegetable cutter housing 1. The working principle is similar to that of the above-mentioned second guide structure and will not be repeated here.

[0099] In other embodiments, the third guide structure includes a third clamping block provided on the vegetable cutter housing 1. While the second clamping block 52 is engaged with the first clamping block 51, it can also be engaged with the third clamping block, thereby achieving a stable connection between the vegetable cutter housing 1, the vegetable cutting module 3 and the vegetable cutting module 3. The appropriate design can be selected according to actual needs.

[0100] Preferably, a plurality of sets of blades 33 are detachably connected to the cutting disc 32 in this embodiment, and a blade cavity 14 capable of accommodating the blades 33 is further provided on the vegetable cutter housing 1.

[0101] Specifically, the detachable connection of the blade 33 allows the user to replace different blades according to needs. The user can choose a suitable blade combination according to different ingredients, improve cutting efficiency, and increase the diversity of cutting vegetables. The blade cavity 14 provides a special storage space for safely storing blades to avoid accidental injury to the user.

[0102] The above examples are merely used to further illustrate the technical content of the present invention for easier understanding by the reader. However, they do not limit the implementation of the present invention to these examples. Any technical extension or reinvention based on the present invention is protected by the present invention. The scope of protection of the present invention shall be determined by the claims.

Claims

1. Vegetable cutting module, characterized by: It includes a vegetable cutting housing (31) and a vegetable cutting knife disc (32) rotatably arranged inside the vegetable cutting housing (31). A first guiding structure is provided on the vegetable cutting housing (31) and can guide the vegetable cutting housing (31) to the assembly position on the vegetable cutting machine main body in a directional manner.

2. The vegetable cutting module according to claim 1, characterized in that: The first guiding structure includes a second clamping block (52) provided on the vegetable cutting housing (31), and the number of the second clamping blocks (52) is at least one.

3. The vegetable cutting module according to claim 2, characterized in that: The number of the second clamping blocks (52) is two, and the two second clamping blocks (52) are oppositely arranged on the vegetable cutting housing (31).

4. A vegetable cutting module according to any one of claims 2 or 3, characterized in that: A second sliding groove (55) and a second opening (56) communicating with the second sliding groove (55) are provided on the second clamping block (52).

5. The vegetable cutting module according to claim 3, characterized in that: A positioning component capable of positioning the vegetable cutting housing (31) at the assembly position on the vegetable cutting machine main body is provided at one end of each second clamping block (52), and the positioning component is a positioning plate (57).

6. The vegetable cutting module according to claim 5, characterized in that: The positioning component further includes a connecting plate (58), and both ends of the connecting plate (58) are respectively connected to the two positioning plates (57).

7. The vegetable cutting module according to claim 6, characterized in that: The shape of the structure formed by connecting the connecting plate (58), the two positioning plates (57), and the two second clamping blocks (52) is in the shape of a similar "冂".

8. The vegetable cutting module according to any one of claims 1 to 3, characterized in that: A positioning component capable of positioning the vegetable cutting housing (31) at the assembly position on the vegetable cutting machine main body is further provided on the first guiding structure.

9. The vegetable cutting module according to claim 1, characterized in that: An opening (311) is provided on the vegetable cutting housing (31), and a connecting member corresponding to the opening (311) is provided on the vegetable cutting knife disc (32), and the connecting member can be in transmission connection with the output end (21) of the driving module (2).

10. A vegetable cutter, characterized by: A vegetable cutting machine main body and the vegetable cutting module according to any one of claims 1 to 9. A second guiding structure corresponding to the first guiding structure is provided on the vegetable cutting machine main body. The vegetable cutting machine main body includes a vegetable cutting machine housing (1) and a driving module (2). The second guiding structure can cooperate with the first guiding structure to assemble the vegetable cutting housing (31) onto the vegetable cutting machine housing (1). An output end (21) is provided on the driving module (2), and the output end (21) can be in transmission connection with the vegetable cutting knife disc (32).