Cutting and matching device and water tank assembly

By introducing a detachable plug-in structure into the cutting and preparation device, the problem of the cutting and preparation module being difficult to disassemble and clean is solved, enabling convenient disassembly and cleaning of the cutting and preparation module and improving cleaning efficiency.

CN223627389UActive Publication Date: 2025-12-05HANGZHOU ROBAM APPLIANCES CO LTD +1
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202423236993.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-27
Publication Date
2025-12-05
Estimated Expiration
2034-12-27

AI Technical Summary

Technical Problem

In existing food preparation equipment, the cutting module is difficult to disassemble, which makes cleaning difficult, especially the accumulation of food residue that cannot be effectively cleaned.

Method used

A detachable plug-in structure was designed, including a plug-in part and a mating part. Through the cooperation of spline groove and external spline, the cutting module and the drive module can be detachably connected, ensuring that the cutting module can be easily disassembled and cleaned.

Benefits of technology

It enables easy disassembly and cleaning of the cutting module, improving cleaning efficiency and avoiding the problem of food residue accumulation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223627389U_ABST
    Figure CN223627389U_ABST
Patent Text Reader

Abstract

The utility model relates to the technical field of cutting and matching equipment, in particular to a cutting and matching device and a water tank assembly, the cutting and matching device comprises a driving module and a cutting and matching module arranged on one side of the driving module; the driving module is provided with a cutting and matching output shaft used for outputting rotating force and a butt joint part arranged towards the cutting and matching module. The cutting and matching module is internally provided with a cutting and matching channel which is arranged in a through manner in the vertical direction, and the cutting and matching channel is internally provided with a knife and chopping block assembly for cutting food materials; the cutting and matching module is further provided with a connecting shaft used for driving the knife and chopping block assembly to operate and an inserting part arranged towards the driving module. The inserting part is detachably connected to the butt joint part in an inserted mode, and the cutting and matching output shaft is detachably connected to the connecting shaft in a transmission mode, so that the cutting and matching module is detachably connected to the driving module. According to the cutting and matching device, the cutting and matching module can be detached, so that the cutting and matching module can be better cleaned.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to cutting and dispensing equipment technical field, more specifically to cutting and dispensing device and sink assembly. BACKGROUND

[0002] Cutting and dispensing device is used to cut and dispense food materials, and is used to cut and dispense food materials. It mainly includes: cutting and dispensing module for cutting food materials, and driving module for providing power to cutting and dispensing module.

[0003] In the actual use process, because the driving module is far away from the food material cutting area, the food material is mainly cut in the cutting and dispensing module, resulting in: a lot of food material residues are often accumulated in the cutting and dispensing module, which needs to be cleaned frequently; the driving module does not need to be cleaned frequently.

[0004] And in the existing cutting and dispensing device, the cutting and dispensing module connected to the driving module is limited by the connection of the driving module, and often cannot be disassembled and cleaned independently. UTILITY MODEL CONTENTS

[0005] One of the purposes of the utility model is to solve the problems of the prior art, and provide a cutting and dispensing device which can disassemble the cutting and dispensing module to better clean the cutting and dispensing module.

[0006] The second purpose of the utility model is to provide a sink assembly with the above cutting and dispensing device.

[0007] The technical solution of the utility model is as follows:

[0008] The cutting and dispensing device comprises:

[0009] The driving module and the cutting and dispensing module on one side of the driving module;

[0010] The driving module has: a cutting output shaft for outputting rotating power, and a docking portion facing the cutting and dispensing module;

[0011] The cutting and dispensing module is provided with a cutting channel which is vertically through, and the cutting channel has a knife rest assembly for cutting food materials;

[0012] And the cutting and dispensing module further has: a connecting shaft for driving the knife rest assembly to run, and a plug-in portion facing the driving module;

[0013] The plug-in portion is detachably plugged into the docking portion, and the cutting output shaft is detachably connected to the connecting shaft, so that: the cutting and dispensing module is detachably connected to the driving module (that is, the cutting and dispensing module can be connected to the driving module to form a cutting and dispensing structure with the driving module; or, the cutting and dispensing module can be separated from the driving module).

[0014] Further preferably, the plug-in part is a cylindrical protrusion with a circular cross-section.

[0015] The counter part is a plug hole provided on the side of the driving module facing the cutting and dispensing module and into which the plug-in part is inserted.

[0016] Further preferably, the plug-in part is a cylindrical protrusion with a circular cross-section.

[0017] Further preferably, the outer edge of the end of the plug-in part is chamfered to form a slope to guide the plug-in part to be inserted into the plug hole.

[0018] Further preferably, among the cutting and dispensing output shaft and the connecting shaft:

[0019] The end of either shaft is provided with a spline groove with an opening facing the other shaft;

[0020] The end of the other shaft is provided with an external spline matching the spline groove;

[0021] And the cutting and dispensing output shaft and the connecting shaft are arranged in alignment so that when the plug-in part is detachably plugged into the counter part, the external spline is adapted to be inserted into the spline groove to achieve that the cutting and dispensing output shaft is detachably drivingly connected to the connecting shaft.

[0022] Further preferably, the groove of the spline groove is chamfered to form a slope to guide the external spline to be inserted into the spline groove.

[0023] Further preferably, the outer periphery of the plug-in part is provided with a sealing layer surrounding the outer periphery of the plug-in part and having elasticity;

[0024] When the plug-in part is inserted into the counter part, the sealing layer is compressed to fill between the plug-in part and the counter part.

[0025] Further preferably, the sealing layer has a portion close to the end of the plug-in part, and the thickness of the portion of the sealing layer gradually decreases in the direction in which the plug-in part protrudes.

[0026] A sink assembly, comprising:

[0027] The sink and the cutting and dispensing device described in any of the above solutions, and the driving module of the cutting and dispensing device is connected to the sink body.

[0028] Further preferably, the rear part of the sink body is provided with a connecting plate extending transversely, and the connecting plate is provided with a positioning hole;

[0029] The lower end of the driving module is inserted into the positioning hole, and the driving module has a support part lapping on the connecting plate from top to bottom.

[0030] The main beneficial effects of the above technical solutions are:

[0031] Compared with a cutting and dispensing device with a cutting and dispensing module that cannot be detached, the cutting and dispensing device provided by the application can meet the cleaning requirement and be better cleaned by detachably connecting the cutting and dispensing module to the driving module after the cutting and dispensing device is used to cut and dispense food materials.

[0032] Further or more detailed beneficial effects will be described in the specific embodiments in the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS

[0033] The application will be further described below with reference to the accompanying drawings:

[0034] Figure 1 FIG. 1 is a schematic view of the installation structure of the cutting and dispensing module and the driving module.

[0035] Figure 2 FIG. 5 is a schematic view of the structure of the cutting and dispensing output shaft.

[0036] Figure 3 FIG. 7 is a schematic view of the structure of the driving module.

[0037] Figure 4 FIG. 9 is a schematic view of the structure of the cutting and dispensing module.

[0038] Figure 5 FIG. 11 is a schematic view of the installation structure of the sink assembly. DETAILED DESCRIPTION

[0039] The application will be further described below with reference to the accompanying drawings:

[0040] Embodiment 1

[0041] The cutting and dispensing device is used to cut and dispense food materials, and is an appliance for slicing or striping food materials. It mainly includes a driving module b and a cutting and dispensing module a placed on the side of the driving module b in the horizontal direction (for example, as shown in FIG. 1, the cutting and dispensing module a is placed on the right side of the driving module b). The cutting and dispensing module a is used to cut food materials, and the driving module b supports the cutting and dispensing module a and provides the cutting and dispensing module a with the rotating force required for cutting food materials. Figure 1 For the cutting and dispensing module a:

[0042] As shown in FIG. 2, the cutting and dispensing module a includes a housing and a knife rest assembly a2 placed in the housing; in this embodiment, the housing includes a cutting and dispensing base a1 and a cover plate a3 connected to the cutting and dispensing base a1.

[0043] Figure 4 As shown in FIG. 2, the cutting and dispensing module a includes a housing and a knife rest assembly a2 placed in the housing; in this embodiment, the housing includes a cutting and dispensing base a1 and a cover plate a3 connected to the cutting and dispensing base a1.

[0044] ​The cutting base a1 has an upward-facing cutting groove a1.1. A cover plate a3 is detachably fixed to the cutting base a1 by means of a screw or clip, covering the opening of the cutting groove a1.1. The cover plate a3 has an inlet a3.1 communicating with the cutting groove a1.1 to allow food to enter. The bottom wall of the cutting groove a1.1 has an outlet 1.2 communicating with the cutting groove a1.1 to allow food to fall downwards. The inlet a3.1, the cutting groove a1.1, and the outlet 1.2 together form a vertically continuous cutting channel, in which a cutting tool assembly a2 for cutting food is installed. The first sidewall a1.3 and the second sidewall a1.4 of the cutting groove a1.1 are opposite each other, and the third sidewall a1.5 and the fourth sidewall a1.6 are opposite each other.

[0045] In this embodiment, as shown in the appendix Figure 4 As shown, the cutting board assembly a2 includes a first rotating shaft a2.1 and a second rotating shaft a2.2 arranged at intervals. Wherein:

[0046] One end of the first rotating shaft a2.1 (for example, attached) Figure 1 The left end of the first rotating shaft a2.1 is rotatably inserted into the fourth side wall a1.6 of the cutting groove a1.1, and the other end (for example, attached) Figure 1 The right end of the first rotating shaft a2.1 is rotatably inserted into the first rotating shaft insertion hole a1.52 of the third side wall a1.5, which is positioned opposite to the fourth side wall a1.6. A portion of the first rotating shaft a2.1 placed in the cutting groove a1.1 is fitted with a plurality of first blades a2.3, which are spaced apart in the extending direction of the first rotating shaft a2.1.

[0047] One end of the second rotating shaft a2.2 (for example, attached) Figure 1 The left end of the second rotating shaft a2.2 is rotatably inserted into the fourth side wall a1.6 of the cutting groove a1.1, and the other end (for example, attached) Figure 1 The right end of the second rotating shaft a2.2 is rotatably inserted into the second rotating shaft insertion hole a1.53 of the third side wall a1.5. The portion of the second rotating shaft a2.2 placed in the cutting groove a1.1 is fitted with a plurality of second blades a2.4, which are spaced apart in the extending direction of the second rotating shaft a2.2.

[0048] The first blades a2.3 and the second blades a2.4 are close to each other, and in the transverse extension direction of the shaft, the first blades a2.3 and the second blades a2.4 are arranged alternately, so that for most of the first blades a2.3 in the middle position, each first blade a2.3 is inserted between two second blades a2.4 spaced apart. The alternating area of the first blades a2.3 and the second blades a2.4 is formed with a cutting area for cutting food. The feeding port a3.1 is preferably arranged directly above the cutting area, and the discharge port 1.2 is preferably arranged directly below the cutting area.

[0049] Further comprising a transmission mechanism a2.5 for drivingly connecting the first shaft a2.1 and the second shaft a2.2, which comprises a first gear a2.51 fixedly connected to the first shaft a2.1, and a second gear a2.52 fixedly connected to the second shaft a2.2, which is engagedly connected to the first gear a2.51, so that when the first shaft a2.1 rotates, the second shaft a2.2 can be driven to rotate in the opposite direction synchronously.

[0050] Further, a connecting shaft a5 is rotatably connected to one side wall of the cutting base a1 facing the driving module b, and the connecting shaft a5 is drivingly connected to the first shaft a2.1 or the second shaft a2.2 through a common transmission connection structure such as a gear structure or a clamping structure, so that the connecting shaft a5 can drive the two shafts to rotate, and further drive the blades to rotate to cut food.

[0051] In the embodiment, the connecting shaft a5 and the first shaft a2.1 are arranged oppositely (i.e., the axis of the connecting shaft a5 and the axis of the first shaft a2.1 are on the same line), and one end of the connecting shaft a5 facing the first shaft a2.1 is provided with a spline groove with an opening facing the first shaft a2.1; the end portion of the first shaft a2.1 is inserted into the spline groove, and the outer periphery of the end portion is provided with an external spline matching the spline groove, so that the connecting shaft a5 is drivingly connected to the first shaft a2.1.

[0052] Further, in order to improve the safety during the operation of the cutting module, a feeding cylinder 4 is detachably fixed to the outer side of the cover plate 3, and a feeding passage 4.1 is formed in the feeding cylinder 4, the lower end of the feeding passage 4.1 communicates with the feeding port 3.1, and the upper end is open.

[0053] At this time, the food is put into the feeding passage 4.1 from the upper end opening of the feeding cylinder 4, and enters the feeding port 3.1 through the feeding passage 4.1, and then the cutting of the food is realized as described above. Without directly putting the hand into the feeding port 3.1, the distance between the food feeding position and the blade is extended, which can better avoid the safety accidents caused by putting the hand into the cutting groove 1.1 when using the cutting device, and improves the safety.

[0054] The feeding cylinder 4 can be detachably fixed on the cover plate 3 by, for example, screws. Alternatively, as shown in the accompanying drawings, an insertion part 4.2 is arranged at the lower end of the feeding cylinder 4 to match the feeding port 3.1; by embedding the insertion part 4.2 downward in the feeding port 3.1, the feeding cylinder 4 can be detachably fixed on the cover plate 3. Figure 4

[0055] For the driving module b:

[0056] As shown in the accompanying drawings, it comprises a driving module shell b1, and a rotating motor b2 installed in the driving module shell b1. The driving module shell b1 is provided with an insertion hole b1.2 on the side wall facing the cutting module a, and a rotatable cutting output shaft b3 is inserted in the insertion hole b1.2, which is drivingly connected to the rotating output shaft of the rotating motor b2 through a common transmission structure such as a gear, so that the cutting output shaft b3 serves as an output shaft for connecting with external devices to externally output the rotating force provided by the rotating motor b2. Figure 3

[0057] When the cutting device is needed, the cutting module a is connected to the driving module b, and the connecting shaft a5 of the cutting module a is drivingly connected to the cutting output shaft b3 of the driving module b, so that the cutting device capable of cutting food materials is formed.

[0058] At this time, the rotating motor b2 is turned on to rotate the cutting output shaft b3, and the first rotating shaft a2.1 and the second rotating shaft a2.2 with blades are driven to rotate through the driving connection between the connecting shaft a5 and the cutting output shaft b3, so that the food materials can be cut when they are put into the feeding port a3.1.

[0059] It should be noted that the food materials are mainly cut in the cutting channel of the cutting module a by the knife rest assembly a2, that is, a large amount of food residue is often accumulated in the cutting module a, which needs to be cleaned frequently; and the driving module b does not need to be cleaned frequently. If the cutting module a is directly and non-detachably fixed on the driving module b, the cleaning action of the cutting module a will be limited, and the cutting module a cannot be easily disassembled and cleaned.

[0060] Therefore, in the embodiment, the cutting module a is connected to the driving module b in a structure that is convenient to install and disassemble.

[0061] Specifically, as shown in the accompanying drawings, the connecting shaft a5 of the cutting module a is provided with an insertion part a5.2, and the driving module b is provided with an insertion hole b1.2, and the insertion part a5.2 is inserted in the insertion hole b1.2. Figure 1 Figure 3 ​​​As shown in the middle, the driving module b of the embodiment has a docking part b1.1 arranged towards the cutting module a; meanwhile, the cutting module a has a plug-in part a6 arranged towards the driving module b, the plug-in part a6 is detachably plugged into the docking part b1.1, and the cutting output shaft b3 is detachably connected to the connecting shaft a5, so that the cutting module a is detachably connected to the driving module b.

[0062] Specifically, the driving module b has the docking part b1.1 arranged towards the cutting module a means that the driving module b has a first column body protruding towards the cutting module a; or the driving module b has a first groove opening towards the cutting module a.

[0063] Meanwhile, the cutting module a has the plug-in part a6 arranged towards the driving module b means that the cutting module a has a second groove opening towards the driving module b and for the first column body to be inserted; or the cutting module a has a second column body protruding towards the driving module b and inserted into the first groove.

[0064] In the embodiment, on the one hand, if the groove structure is arranged on the cutting module a, it will interfere with the internal food cutting space, which is not conducive to the smooth flow of food; on the other hand, in order to reduce the weight, the inner wall of the existing cutting base a1 is generally arranged close to the blade, resulting in a large space limitation in the cutting base a1, and the groove structure cannot be formed; if the groove is formed inward, in order to avoid interference with the existing blade, the size of the cutting base a1 must be increased based on the arrangement of the groove structure, which will greatly increase the size and weight of the cutting base a1, not only higher requirements are put forward for the strength of the supporting structure, but also the overall cutting device is more likely to be tilted.

[0065] Therefore, in the embodiment, the plug-in part a6 is preferably a plug-in column arranged on the side of the cutting module a facing the driving module b and protruding towards the driving module b; specifically, the plug-in part a6 is a plug-in column arranged on the side of the cutting base a1 facing the driving module b and protruding towards the driving module b.

[0066] The docking part b1.1 is a plug hole arranged on the side of the driving module b facing the cutting module a and matched with the plug-in column for the plug-in column to be inserted; specifically, the docking part b1.1 is a plug hole arranged on the side of the driving module housing b1 facing the cutting module a and matched with the plug-in column for the plug-in column to be inserted.

[0067] Meanwhile, to facilitate the disassembly / assembly of the cutting module a, the end of either the cutting output shaft b3 or the connecting shaft a5 is provided with a spline groove (a keyway formed to match the external spline structure) with its opening facing the other shaft; the end of the other shaft is provided with an external spline that matches the spline groove. Furthermore, the cutting output shaft b3 and the connecting shaft a5 are aligned (i.e., when the cutting module a is connected to the drive module b, the axis of the cutting output shaft b3 and the axis of the connecting shaft a5 are on the same straight line), so that when the insertion part a6 is detachably inserted into the mating part b1.1, the external spline adapts to the spline groove, thereby achieving a detachable transmission connection between the cutting output shaft b3 and the connecting shaft a5.

[0068] Specifically, in this embodiment, as shown in the appendix Figure 1 To be continued Figure 4 As shown in the figure, the end of the cutting output shaft b3 facing the connecting shaft a5 is provided with a spline groove with an opening facing the connecting shaft a5, as shown in the attached figure. Figure 2 The first spline connecting groove b3.1 in the middle; the outer periphery of the connecting shaft a5 facing the cutting output shaft b3 is provided with an external spline that matches the first spline connecting groove b3.1.

[0069] In this embodiment, both the cutting output shaft b3 and the connecting shaft a5 are horizontal shafts with their axes arranged laterally to extend in the horizontal direction. The insertion part a6 is also a column with its axis arranged laterally to extend in the horizontal direction.

[0070] During installation, the cutting module a moves laterally close to the drive module b, and the insertion part a6 of the plug structure is laterally inserted into the mating part b1.1 of the socket structure, so that the drive module b can support the cutting module a. At the same time, the end of the connecting shaft a5 is inserted into the first spline connecting groove b3.1, and the external spline at the end of the connecting shaft a5 is fitted into the first spline connecting groove b3.1, so that the cutting output shaft b3 is drivenly connected to the connecting shaft a5. The installation of the cutting module a is completed. Moreover, the surface of the cutting module a can also be raised with a boss surrounding the connecting shaft a5, and the insertion hole b1.2 has a portion for inserting the boss; during the insertion as described above, the boss is fitted into the insertion hole b1.2 to share the force on the connecting shaft a5 under the gravity of the cutting module a.

[0071] When the cutting module a needs to be cleaned, the cutting module a is moved laterally away from the drive module b until the plug part a6 disengages from the mating part b1.1. At the same time, the output shaft b3 disengages from the first spline connection groove b3.1, and the cutting module a is disassembled.

[0072] Further, the insertion part a6 can be a prismatic protrusion, such as a quadrangular prism protrusion, etc. In this embodiment, the insertion part a6 is preferably a cylindrical protrusion with a circular cross section, so as to improve the convenience and smoothness of the insertion of the insertion part a6 and the mating part b1.1, and reduce the possibility of deviation of the clamping position.

[0073] Further, the outer edge of the end of the insertion part a6 can be formed with an inclined surface that guides the insertion of the insertion part a6 into the insertion hole, so as to make the cylindrical protrusion of the insertion part a6 more smoothly inserted into the mating part b1.1 of the groove structure.

[0074] Similarly, the slot of the spline groove (more precisely, the sidewall of the slot) can also be formed with an inclined surface that guides the insertion of the external spline into the spline groove, so as to make the insertion transmission between the output shaft b3 and the connecting shaft a5 more smoothly.

[0075] On the basis of the above-mentioned solutions, the outer periphery of the insertion part a6 can further be provided with a sealing layer that surrounds the outer periphery of the insertion part a6 and has elasticity; the sealing layer is formed by covering the outer periphery of the insertion part a6 with a material that has elasticity, such as silicone or rubber. When the insertion part a6 is inserted into the mating part b1.1, the sealing layer is compressed and filled between the insertion part a6 and the mating part b1.1, so as to improve the stability of the insertion structure between the insertion part a6 and the mating part b1.1, and further improve the stability of the installation of the cutting and matching module a.

[0076] Among them, the sealing layer has a part close to the end of the insertion part a6, and the thickness of this part of the sealing layer gradually decreases in the direction of the protrusion of the insertion part a6, so as to form a guide structure, and make the insertion part a6 with the sealing layer more smoothly inserted into the mating part b1.1.

[0077] On the basis of the above-mentioned solutions, when there is a further demand for higher stability, a fastener, such as a fastening screw, can be additionally provided to detachably fix the insertion part a6 in the mating part b1.1.

[0078] By inserting the threaded end of the fastening screw into the insertion part a6 from the outside through the drive module housing b1 and the sidewall of the groove structure mating part b1.1, and screwing the threaded end of the fastening screw into the insertion part a6, the insertion part a6 is detachably fixed in the mating part b1.1. By unscrewing the fastening screw from the insertion part a6, the insertion part a6 can be detached from the mating part b1.1, so as to detach the cutting and matching module a as described above.

[0079] Embodiment Two:

[0080] Based on the scheme in Embodiment One, considering the actual use scene of the cutting device, the cutting device is integrated in the sink c in this embodiment to form a sink assembly.

[0081] Specifically, as shown in the accompanying drawings, Figure 5 The sink assembly includes a sink c and the cutting device according to any one of the schemes in Embodiment One. The sink c includes a sink body c1 made of metal material, and the sink body c1 is provided with a washing tank c1.1 facing upward. The driving module b of the cutting device is connected to the sink body c1 of the sink c by, for example, screws, embedded structure or clamping structure.

[0082] Further, considering that when the sink c is installed on the kitchen countertop, the rear part (i.e., the part of the sink body c1 of the sink c close to the wall and away from the user when installed on the kitchen countertop) is often in a restricted area that cannot be effectively utilized.

[0083] In order to improve the space utilization, in this embodiment, as shown in the accompanying drawings, Figure 5 A connecting plate c1.2 extending transversely is arranged at the rear part of the sink body c1 (i.e., the part of the sink body c1 of the sink c close to the wall and away from the user when installed on the kitchen countertop), and the connecting plate c1.2 is provided with a positioning hole c1.21. Figure 5 As shown in the accompanying drawings A to B, the lower end of the driving module b is inserted into the positioning hole c1.21, and the driving module b has a support part b1.3 lapping from top to bottom on the connecting plate c1.2, so that the driving module b can be detachably positioned and connected to the sink body c1.

[0084] At this time, the cutting module a is detachably connected to the driving module b and placed above the washing tank c1.1, so that there is enough space below the cutting module a to collect the food materials falling after cutting; in combination with the structure of the washing tank c1.1, the food materials falling after cutting can also be washed more conveniently.

[0085] The above merely describes preferred embodiments of the present application, and is not intended to limit the scope of the present application. In addition, the terms "vertical", "horizontal", "front", "back", and the like, as referred to in the embodiments of the present application, indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, or the orientation or positional relationship in which the product is usually placed during use, and are merely intended to facilitate the description of the present application and simplify the description, and therefore should not be construed or implied as indicating or suggesting that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore should not be construed as limiting the present application. It should be further noted that, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connection", "fixing", and the like in the description should be understood broadly, for example, "connection" can be fixed connection, can also be detachable connection, or integral connection; can be directly connected, can also be indirectly connected through an intermediate medium, or the communication between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances. The present application will be described in detail below with reference to the drawings and in conjunction with the embodiments.

[0086] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A cutting and preparation device, characterized in that, include: The driving module (b) and the cutting module (a) located on one side of the driving module (b); The drive module (b) has: a cutting output shaft (b3) for outputting rotational force, and a docking portion (b1.1) disposed toward the cutting module (a). The cutting module (a) is provided with a cutting channel that runs vertically through it, and the cutting channel has a cutting board assembly (a2) for cutting ingredients. Furthermore, the cutting module (a) also has: a connecting shaft (a5) for driving the knife and chopping board assembly (a2) to run, and a plug-in portion (a6) disposed toward the drive module (b); The insertion part (a6) is detachably inserted into the docking part (b1.1), and the cutting output shaft (b3) is detachably driven to the connecting shaft (a5), so that the cutting module (a) is detachably connected to the drive module (b).

2. The cutting and processing device according to claim 1, characterized in that: The insertion part (a6) is a post provided on the side of the cutting module (a) facing the drive module (b) and protruding toward the drive module (b); The docking part (b1.1) is a socket that is matched to the plug and disposed on the side of the drive module (b) facing the cutting module (a) for the plug to be inserted.

3. The cutting and processing device according to claim 2, characterized in that: The insertion part (a6) is a cylindrical protrusion with a circular cross-section.

4. The cutting and processing device according to claim 2, characterized in that: The outer edge of the end of the plug (a6) is chamfered and has an inclined surface that guides the plug (a6) into the socket.

5. The cutting and processing device according to claim 2, characterized in that: In the cutting output shaft (b3) and the connecting shaft (a5): Each shaft has a spline groove at its end with an opening facing the other shaft. The end of another shaft is provided with an external spline that matches the spline groove; Furthermore, the cutting output shaft (b3) and the connecting shaft (a5) are aligned so that when the insertion part (a6) is detachably inserted into the mating part (b1.1), the external spline is adapted to be inserted into the spline groove to achieve the following: the cutting output shaft (b3) is detachably connected to the connecting shaft (a5).

6. The cutting and processing device according to claim 5, characterized in that: The spline groove is chamfered and has an inclined surface that guides the external spline into the spline groove.

7. The cutting and processing apparatus according to any one of claims 2 to 6, characterized in that: The outer periphery of the plug portion (a6) is provided with a sealing layer that surrounds the outer periphery of the plug portion (a6) and has elasticity; When the plug (a6) is inserted into the mating part (b1.1), the sealing layer is compressed and filled between the plug (a6) and the mating part (b1.1).

8. The cutting and processing device according to claim 7, characterized in that: The sealing layer has a portion near the end of the plug (a6), and the thickness of the sealing layer in this portion gradually decreases in the direction of the protrusion of the plug (a6).

9. A water tank assembly, characterized in that, include: The water tank (c) and the cutting and mixing device according to any one of claims 1 to 8, wherein the drive module (b) of the cutting and mixing device is connected to the tank body (c1) of the water tank (c).

10. The water tank assembly according to claim 9, characterized in that: The rear part of the groove (c1) is provided with a laterally extending connecting plate (c1.2), and the connecting plate (c1.2) is provided with a positioning hole (c1.21). The lower end of the drive module (b) is inserted into the positioning hole (c1.21), and the drive module (b) has a support part (b1.3) that overlaps the connecting plate (c1.2) from top to bottom.