Cutting and matching module and meat cutter with same
By designing a removable sealing plate and elastic seals to protect the transmission mechanism in the meat slicer, the problems of transmission structure jamming and maintenance difficulties are solved, and the safe operation and convenient maintenance of the transmission structure are realized.
Patent Information
- Application Number
- CN202423236984.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-27
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-27
AI Technical Summary
In existing meat slicers, the transmission structure between the shafts is prone to jamming or insufficient lubrication, and maintenance is difficult because the transmission structure is enclosed inside the housing.
A cutting and mixing module is designed, wherein the transmission mechanism is set in an open mounting slot and closed by a removable sealing plate. The transmission mechanism is detachably installed in the mounting slot of the cutting and mixing module and is equipped with elastic seals and protective walls to protect the transmission mechanism, ensuring safety and convenient maintenance during operation.
This ensures the safe operation of the transmission structure during the cutting and assembly module, facilitates the maintenance of the transmission structure between the shafts, reduces maintenance costs, and improves the reliability of the equipment.
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Figure CN223600739U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to kitchen equipment technical field more specifically, cut and have the module of cutting meat machine of module. BACKGROUND
[0002] The cutting meat machine is used to cut and arrange the meat material, and the meat material is cut into slices or strips. It mainly includes a cutting module for cutting food and a driving module for providing power to the cutting module.
[0003] The cutting module includes a housing and a knife rest installed on the housing. The knife rest includes a rotating shaft for transmission connection with the driving module for rotation, and a plurality of blades installed on the rotating shaft. The blades are placed in the housing. By driving the rotating shaft to rotate, the blades rotate synchronously to cut the food placed in the housing. The two rotating shafts are generally arranged side by side, and the transmission structure such as gear or transmission belt is used to realize synchronous rotation of the two rotating shafts to complete the cutting of the food.
[0004] It should be noted that the transmission structure between the two rotating shafts is prone to problems such as jamming or insufficient lubrication, so regular maintenance is required. The transmission structure between the two rotating shafts is generally closed and installed in the housing, which makes it difficult to maintain. UTILITY MODEL CONTENTS
[0005] One of the purposes of the utility model is to provide a cutting module that facilitates maintenance of the transmission structure between the rotating shafts to overcome the shortcomings of the prior art.
[0006] The second purpose of the utility model is to provide a cutting meat machine with the above cutting module.
[0007] The technical solution of the utility model is as follows:
[0008] The cutting module comprises:
[0009] The cutting base has a cutting groove and a mounting groove spaced apart from the cutting groove and opening towards one side;
[0010] The knife rest assembly includes a first rotating shaft and a second rotating shaft that can rotate;
[0011] The first rotating shaft and the second rotating shaft each have a portion disposed in the cutting groove and having a blade installed thereon, and one end of the first rotating shaft and one end of the second rotating shaft are accommodated in the mounting groove from the third side wall;
[0012] The mounting groove is provided with a transmission mechanism for transmission connection between the first rotating shaft and the second rotating shaft;
[0013] The cutting base is detachably connected with a blocking plate covering the opening of the mounting groove.
[0014] Further preferably, a butt joint part is formed on the groove wall of the mounting groove and arranged around the outer periphery of the transmission mechanism.
[0015] The side of the blocking plate facing the mounting groove is provided with an insertion part inserted into the mounting groove and matched with the butt joint part.
[0016] The cutting module further comprises a first seal with elasticity, which is installed between the insertion part and the butt joint part in a compressed manner.
[0017] Further preferably, the first seal is fitted into the insertion part or the butt joint part.
[0018] Further preferably, the insertion part is configured to fit the side wall of the mounting groove when the insertion part is inserted into the mounting groove.
[0019] Further preferably, a surrounding wall in the shape of a ring and arranged around the outer periphery of the transmission mechanism is protrudingly formed on the side wall of the mounting groove close to the cutting groove.
[0020] The surrounding wall is arranged between the transmission mechanism and the butt joint part, and the end of the surrounding wall is close to the blocking plate.
[0021] Further preferably, the cutting module further comprises a second seal with elasticity, which is installed between the blocking plate and the surrounding wall in a compressed manner.
[0022] Further preferably, the second seal is fitted into the surrounding wall or the blocking plate.
[0023] Further preferably, a plurality of support columns are protrudingly arranged on the groove wall of the mounting groove, and the ends of the support columns fit the blocking plate.
[0024] Further preferably, the opening of the mounting groove is oriented to the side of the mounting groove away from the cutting groove.
[0025] The meat cutting machine comprises the cutting module according to any one of the above-mentioned solutions.
[0026] The main advantages of the above technical solutions are as follows:
[0027] By arranging the transmission mechanism between the rotating shafts in the mounting groove with an opening and closing the opening of the mounting groove by the detachable blocking plate, the transmission mechanism is protected, and the safe operation of the transmission mechanism during the operation of the cutting module is ensured, while the transmission structure between the rotating shafts can be better and more conveniently maintained by detaching the blocking plate.
[0028] Further or more detailed advantageous effects will be explained in the specific embodiments in the specific implementation. BRIEF DESCRIPTION OF DRAWINGS
[0029] The utility model will be further explained in connection with the drawings:
[0030] Figure 1 Cutting module assembly structure schematic diagram Figure One .
[0031] Figure 2 Cutting module assembly structure schematic diagram Figure Two .
[0032] Figure 3 Cutting module partial section view schematic diagram.
[0033] Figure 4 Cutting module partial section view schematic diagram. Figure 3
[0034] Figure 5 Cutting module partial section view schematic diagram. Figure 3
[0035] Cutting module assembly structure schematic diagram with knife comb Figure 6
[0036] Cutting module front view section view schematic diagram. Figure 7
[0037] Cutting module assembly structure schematic diagram Figure 8 . Figure Three
[0038] Cutting module assembly structure schematic diagram Figure 9 .
[0039] Figure 10 Cutting module partial section view schematic diagram. Figure 9 DETAILED DESCRIPTION
[0040] The utility model will be further explained in connection with the drawings:
[0041] Example one:
[0042] The meat cutting machine is a device for cutting meat food, which is mainly composed of a cutting module and a driving module. Among them, the cutting module is provided with a cutter (such as the cutter assembly 2 in the following text) for cutting food, so as to cut food; the driving module is provided with a driving device (such as a rotating motor), which is used to drive the cutter of the cutting module and provide the cutter of the cutting module with the power required for cutting food.
[0043] Specifically, for example, by mounting the cutting module on the drive module and connecting the first rotating shaft 2.1 of the cutting module knife and chopping board assembly 2 (hereinafter referred to as the cutting module knife and chopping board assembly 2) to the rotating output shaft of the rotating motor, the drive device can drive the first rotating shaft 2.1 to rotate, thereby achieving the cutting of food as described below.
[0044] The cutting module in this embodiment mainly includes a housing and a cutting board assembly 2 installed inside the housing. The cutting board assembly 2 consists of several rotating shafts and several blades installed on the rotating shafts. By driving the rotating shafts to rotate, the blades can be driven to rotate synchronously to cut the food.
[0045] In this embodiment, as shown in the appendix Figure 1 As shown, the housing in this embodiment includes a cutting base 1, which has an upward-facing cutting groove 1.1. A cutting board assembly 2 is mounted on the cutting base 1, and a plurality of blades in the cutting board assembly 2 are placed in the cutting groove 1.1 to form a cutting area.
[0046] Specifically, in this embodiment, the knife and chopping board assembly 2 includes a number of spaced-apart rotating shafts and a number of blades.
[0047] Each shaft is a long, laterally extending shaft, and each shaft is rotatably mounted on the fitting base 1 to be in a rotatable state. As an example, see attached... Figure 1 As shown in the figure, the plurality of rotating shafts in this embodiment include a first rotating shaft 2.1 and a second rotating shaft 2.2 that extend laterally.
[0048] One end of the first rotating shaft 2.1 (e.g., attached) Figure 1 The left end of the first rotating shaft 2.1 is rotatably inserted into the fourth side wall 1.6 of the cutting groove 1.1, and the other end (e.g., attached) Figure 1 The right end of the first rotating shaft 2.1 is rotatably inserted into the third side wall 1.5 of the cutting groove 1.1, which is opposite to the fourth side wall 1.6. The portion of the first rotating shaft 2.1 placed in the cutting groove 1.1 is fitted with a plurality of first blades 2.3, which are spaced apart in the extending direction of the first rotating shaft 2.1.
[0049] One end of the second rotating shaft 2.2 (e.g., attached) Figure 1 The left end of the second rotating shaft 2.2 is rotatably inserted into the fourth side wall 1.6 of the cutting groove 1.1, and the other end (for example, attached) Figure 1 The right end of the second rotating shaft 2.2 is rotatably inserted into the third side wall 1.5 of the cutting groove 1.1. The portion of the second rotating shaft 2.2 placed in the cutting groove 1.1 is fitted with a plurality of second blades 2.4, which are spaced apart in the extending direction of the second rotating shaft 2.2.
[0050] The knife and chopping board assembly 2 includes several first blades 2.3 and several second blades 2.4. These blades are arranged according to the needs of cutting the ingredients to form a cutting area for cutting the ingredients.
[0051] For example, attached Figure 1 and attached Figure 2 As shown in the illustration, in this embodiment, the first blade 2.3 and the second blade 2.4 are close to each other, and in the lateral extension direction of the rotating shaft, a plurality of first blades 2.3 and a plurality of second blades 2.4 are arranged in an alternating manner, such that for most of the first blades 2.3 in the middle position, each first blade 2.3 is inserted between two spaced second blades 2.4. The alternating area of the first blades 2.3 and the second blades 2.4 forms a cutting area for cutting food.
[0052] Furthermore, the end of the first rotating shaft 2.1 extends through the fourth side wall 1.6 and is used to drive the output shaft of the rotating motor in the aforementioned drive module. The cutting base 1 is also provided with a transmission mechanism 5 that drives and connects several rotating shafts; specifically in this embodiment, the transmission mechanism 5 includes a first gear 5.1 fixed to the first rotating shaft 2.1 and a second gear 5.2 fixed to the second rotating shaft 2.2. The second gear 5.2 meshes with the first gear 5.1 so that when the first rotating shaft 2.1 rotates, it can drive the second rotating shaft 2.2 to rotate synchronously in the opposite direction.
[0053] Meanwhile, as attached Figure 1 and attached Figure 2 As shown, the housing also includes a cover plate 3, which covers the opening of the cutting groove 1.1, and has a feed inlet 3.1 connected to the cutting groove 1.1 to allow food ingredients to enter the cutting groove 1.1. The feed inlet 3.1 is preferably located directly above the cutting area so that food ingredients entering from the feed inlet 3.1 can fall directly and quickly into the cutting area for cutting.
[0054] The cutting and preparation tank 1.1 is also provided with a discharge port 1.2 on its tank wall. The discharge port 1.2 is preferably located on the bottom wall of the cutting and preparation tank 1.1, so that the cut food can fall directly out from the discharge port 1.2 under the action of gravity, making it convenient to collect and use the cut food. Furthermore, the discharge port 1.2 is preferably located directly below the cutting area, so that the cut food can fall out more directly and smoothly under the action of gravity.
[0055] When the first rotating shaft 2.1 and the second rotating shaft 2.2 are driven by the rotating motor to rotate the blades thereon, as shown in the attached diagram... Figure 7As shown by the middle arrow, the ingredients are fed into the cutting groove 1.1 through the inlet 3.1 and cut by the cutting zone formed by several blades. The cut ingredients then fall out of the cutting groove 1.1 through the outlet 1.2, completing the cutting process. At this point, a bowl can be placed under the outlet 1.2 to collect the cut ingredients.
[0056] It should be noted that, as mentioned above, after cutting food with a blade, food residue often remains on the blade, which can easily breed bacteria if not cleaned. For safety reasons, the feed inlet 3.1 on the cover plate 3 is often set to be relatively small to better prevent accidents caused by inserting hands into the cutting groove 1.1 through the feed inlet 3.1 when using the meat slicer; this also means that the blade cannot be cleaned effectively through the feed inlet 3.1.
[0057] Based on this, in this embodiment, the cover plate 3 is preferably detachably connected to the cutting base 1 so that by removing the cover plate 3, more of the blades in the cutting groove can be exposed so that the blades can be cleaned better.
[0058] The cover plate 3 can be detachably connected to the cutting base 1 by means of screws, but it requires auxiliary tools such as screwdrivers to disassemble. For the cover plate 3, which has a high frequency of disassembly and cleaning needs, the disassembly and assembly is not very convenient.
[0059] Based on this, in this embodiment, the cover plate 3 is detachably connected to the cutting base 1 via a snap-fit structure. Specifically, in this embodiment, both ends of the cover plate 3 are detachably connected to the cutting base 1 via a first snap-fit structure and a second snap-fit structure, respectively, so that the cover plate 3 is detachably configured.
[0060] The snap-fit structure can take many forms. For the first snap-fit structure:
[0061] In one form, as shown in the appendix Figure 3 and attached Figure 4 As shown, a first snap-fit hole 1.31 extending laterally is provided on the first side wall 1.3 of the cutting groove 1.1; a first elastic connecting arm 3.2 is fixedly connected to the inner wall of the cover plate 3 near the first side wall 1.3. The lower end of the first connecting arm 3.2 is inserted into the cutting groove 1.1 and has a part that is opposite to the first snap-fit hole 1.31. This part is provided with a first snap-fit part 3.3 that protrudes and is inserted laterally into the first snap-fit hole 1.31.
[0062] That is, the first fastening hole 1.31, the first connecting arm 3.2, and the first fastening part 3.3 together constitute the aforementioned first fastening structure. When it is necessary to disassemble the cover plate 3, the first fastening part 3.3 is pushed on the outside of the cutting base 1, causing the first connecting arm 3.2 to elastically deform, and the first fastening part 3.3 disengages from the first fastening hole 1.31, thus disassembling one end of the cover plate 3.
[0063] In this embodiment, the end of the first fastening part 3.3 that is inserted into the first fastening hole 1.31 is arranged in an arc shape to facilitate the pushing of the first fastening part 3.3 from the outside of the cutting base 1.
[0064] Furthermore, in this embodiment, the first connecting arm 3.2 is detachably fixed to the cover plate 3 by means of, for example, screws, which makes it convenient to replace the first connecting arm 3.2 and the first fastening part 3.3 when the first fastening part 3.3 is damaged multiple times, without having to replace the entire cover plate 3, thus reducing maintenance costs.
[0065] In another form, the first fastening structure includes: an elastic extension arm 3.4, and a fastener fixed to the extension arm 3.4, the fastener being a rigid structure that is not easily deformed.
[0066] The extension arm 3.4 is made of a metal or other material with good elasticity and is an elastic strip. It is placed in the cutting groove 1.1 and both ends are fixed to the cutting base 1. For example, both ends of the extension arm 3.4 are fixed to the first side wall 1.3 of the cutting groove 1.1.
[0067] Reference Appendix Figure 2 To be continued Figure 4 The structure shown has a fastener fixed to the extension arm 3.4, which includes a first fastening part 3.3 extending laterally and a first connecting arm 3.2 extending vertically. A first fastening hole 1.31 is provided on the first sidewall 1.3 to match the first fastening part 3.3. One end of the first fastening part 3.3 passes through the first fastening hole 1.31 on the first sidewall 1.3 and is positioned outside the cutting base 1. There is a gap between the wall of the first fastening hole 1.31 and the first fastening part 3.3, allowing the first fastening part 3.3 to swing upwards. The upper end of the first connecting arm 3.2 extends upwards and is located inside the cover plate 3. The inner sidewall of the cover plate 3 has a fastening groove that opens towards the first connecting arm 3.2 and extends laterally. The upper end of the first connecting arm 3.2 has a latching part that protrudes laterally and is adapted to fasten into the fastening groove, so that one end of the cover plate 3 is detachably connected to the cutting base 1.
[0068] When it is needed to detach the cover plate 3, by pressing the first buckling part 3.3 upward to make it pass through one end of the first buckling hole 1.31, the extension arm 3.4 is forced to elastically deform, at the same time, the first connecting arm 3.2 is synchronously flipped, so that the buckle part on the upper end of the first connecting arm 3.2 is detached from the buckling groove of the cover plate 3, and one end of the cover plate 3 is detached. Conversely, by buckling the buckle part on the upper end of the first connecting arm 3.2 to the buckling groove of the cover plate 3, one end of the cover plate 3 can be detachably buckled to the cutting base 1.
[0069] For the second buckling structure:
[0070] As shown in the accompanying drawings Figure 3 and the accompanying drawings Figure 5 The cutting groove 1.1 has a second side wall 1.4 opposite to the first side wall 1.3, and a second buckling hole 1.41 extending transversely on the second side wall 1.4 of the cutting groove 1.1; the cover plate 3 is fixed with a second connecting arm 3.6 with elasticity on the inner wall close to the second side wall 1.4, the lower end of the second connecting arm 3.6 is inserted into the cutting groove 1.1, and has a part opposite to the second buckling hole 1.41, which is provided with a second buckling part 3.7 protruding and inserted into the second buckling hole 1.41.
[0071] That is, the second buckling hole 1.41 and the second connecting arm 3.6, the second buckling part 3.7 together constitute the above-mentioned second buckling structure. When it is needed to detach the cover plate 3, by pressing the second buckling part 3.7 outside the cutting base 1 to make the second connecting arm 3.6 elastically deform, the second buckling part 3.7 is detached from the second buckling hole 1.41, and the other end of the cover plate 3 is detached. Combined with the above-mentioned detachment action of the first buckling structure, the cover plate 3 as a whole can be detached from the cutting base 1.
[0072] Further, in order to improve the connection stability of the cover plate 3 on the cutting base 1.
[0073] In this embodiment, the first side wall 1.3 is preferably provided with a positioning hole 1.32 spaced from the first buckling hole 1.31; at the same time, the first connecting arm 3.2 is provided with an extension arm 3.4 extending transversely, the extension arm 3.4 has a part opposite to the positioning hole 1.32, and the part is provided with a positioning part 3.5 protruding and inserted into the positioning hole 1.32.
[0074] And in this embodiment, the second buckling structure is preferably provided with two, one end of the cover plate 3 is detachably connected to the cutting base 1 through two spaced second buckling structures.
[0075] Realize: both ends of the cover plate 3 can be buckled and connected to the cutting base 1 through multiple buckling connection points respectively, which improves the connection stability of the cover plate 3 on the cutting base 1.
[0076] Furthermore, in this embodiment, in order to improve the safety of the cutting module during operation, a feeding cylinder 4 is preferably detachably fixed to the outer side of the cover plate 3. A feeding channel 4.1 is formed inside the feeding cylinder 4. The lower end of the feeding channel 4.1 is connected to the feeding port 3.1, and the upper end is open.
[0077] At this point, the ingredients are fed into the feeding channel 4.1 through the upper opening of the feeding cylinder 4, and then into the feeding port 3.1 through the feeding channel 4.1, thereby achieving the cutting of the ingredients as described above. This eliminates the need to insert hands directly into the feeding port 3.1 to feed the ingredients, extending the distance between the ingredient placement position and the blade. This better avoids safety accidents caused by inserting hands into the cutting groove 1.1 when using the meat slicer, thus improving safety.
[0078] The feed cylinder 4 can be detachably fixed to the cover plate 3 by means of, for example, screws. Or, as shown in the attached... Figure 1 and attached Figure 2 As shown, an insertion part 4.2 matching the feed inlet 3.1 is provided at the lower end of the feed cylinder 4; by inserting the insertion part 4.2 downward into the feed inlet 3.1, the feed cylinder 4 is detachably fixed to the cover plate 3.
[0079] Based on the above solution, considering that if the transmission mechanism 5 is placed directly in the cutting groove 1.1, the residue and blood generated during food cutting in the cutting groove 1.1 can easily corrode the transmission mechanism 5, this embodiment preferably installs the transmission mechanism 5 in the space between the cutting base 1 and the cutting groove 1.1.
[0080] At the same time, considering that the transmission mechanism 5 between the two rotating shafts is often prone to problems such as jamming or insufficient lubrication, there is a need for regular maintenance; if the transmission mechanism 5 is enclosed in the housing, it will lead to difficulties in maintenance.
[0081] Based on this, as attached Figure 8 and attached Figure 9 As shown, in this embodiment, the cutting and mixing base 1 is also provided with a mounting groove 1.7 spaced apart from the cutting and mixing groove 1.1 and with its opening facing one side. The mounting groove 1.7 is located on the side of the third side wall 1.5 facing away from the cutting and mixing groove 1.1. One end of the first rotating shaft 2.1 and one end of the second rotating shaft 2.2 are both housed in the mounting groove 1.7, passing through the third side wall 1.5 from the cutting and mixing groove 1.1. At the same time, the transmission mechanism 5 that drives the first rotating shaft 2.1 and the second rotating shaft 2.2 is also provided in the mounting groove 1.7. Moreover, the cutting and mixing base 1 is fixedly connected with a sealing plate 6 that covers the opening of the mounting groove 1.7. The sealing plate 6 is detachably fixed to the cutting and mixing base 1 by means of, for example, screws.
[0082] Specifically, in this embodiment, a fitting hole is provided on the third sidewall 1.5 to match each rotating shaft, and one end of each rotating shaft passes through the fitting groove 1.1 and is received in the mounting groove 1.7 via a fitting hole. For example, see attached... Figure 1 As shown, a first insertion hole 1.52 extending laterally is provided on the third sidewall 1.5 to match the first rotating shaft 2.1, and a second insertion hole 1.53 extending laterally is provided to match the second rotating shaft 2.2. One end of the first rotating shaft 2.1 passes through the first insertion hole 1.52 and is received in the mounting groove 1.7; one end of the second rotating shaft 2.2 passes through the second insertion hole 1.53 and is received in the mounting groove 1.7. The first gear 5.1 of the transmission mechanism 5 is placed in the mounting groove 1.7 and fixed to the end of the first gear 5.1 placed in the mounting groove 1.7; the second gear 5.2 is placed in the mounting groove 1.7 and fixed to the end of the second rotating shaft 2.2 placed in the mounting groove 1.7, and the first gear 5.1 and the second gear 5.2 mesh with each other.
[0083] Implementation: When the cutting module is working, the sealing plate 6 covers the opening of the mounting groove 1.7, preventing foreign objects from corroding the transmission mechanism 5 and avoiding safety accidents; when the transmission mechanism 5 needs to be maintained, the sealing plate 6 can be removed to make the maintenance of the transmission mechanism 5 more convenient.
[0084] Furthermore, provided that maintenance requirements are met, the opening of the mounting groove 1.7 can face any side. In this embodiment, considering that the end of the shaft protrudes from the mounting groove 1.7 and is accommodated in the mounting groove 1.7, the opening of the mounting groove 1.7 is preferably facing the side of the mounting groove 1.7 away from the cutting groove 1.1, so that after the sealing plate 6 is removed, the end of the shaft and the transmission mechanism 5 can be better exposed, thereby enabling better maintenance and replacement of the transmission mechanism 5.
[0085] Furthermore, in this embodiment, as shown in the appendix... Figure 8 and attached Figure 9 As shown, a ring-shaped mating portion 1.71 is also formed protruding from the wall of the mounting groove 1.7 and surrounds the outer periphery of the transmission mechanism 5. The sealing plate 6 has an insert portion 6.1 on its side facing the mounting groove 1.7, which is a ring-shaped member that matches and is positioned opposite the mating portion 1.71. That is, the insert portion 6.1 is a ring-shaped member that extends to match the ring-shaped extension trajectory of the mating portion 1.71. After the insert portion 6.1 is inserted into the mounting groove 1.7, the ring-shaped insert portion 6.1 and the ring-shaped mating portion 1.71 are matched and aligned in the insertion direction of the insert portion 6.1.
[0086] And, additionally, a first sealing member 7 made of elastic material such as silica gel or rubber is arranged, which is an annular sealing member arranged between the insertion portion 6.1 and the abutting portion 1.71 in a compressed manner to improve the connection stability and sealing between the blocking plate 6 and the cutting base 1.
[0087] In order to facilitate the positioning and installation of the first sealing member 7 during assembly and improve the stability of the installation of the first sealing member 7, in the embodiment, the first sealing member 7 is adapted to be embedded in the insertion portion 6.1 or the abutting portion 1.71. That is, for example, as shown in FIG. 6, a first sealing member installation groove 6.11 is arranged at the end of the insertion portion 6.1 facing the abutting portion 1.71, and the first sealing member 7 is adapted to be embedded in the first sealing member installation groove 6.11. Similarly, an installation groove for embedding the first sealing member 7 can also be arranged on the abutting portion 1.71. Figure 9
[0088] In addition, in the embodiment, the insertion portion 6.1 is configured to fit the side wall of the installation groove 1.7 when the insertion portion 6.1 is inserted into the installation groove 1.7. This can increase the connection area between the blocking plate 6 and the cutting base 1 and improve the stability of the installation of the blocking plate 6.
[0089] In order to further improve the protection effect on the transmission mechanism 5, in the embodiment, as shown in FIGS. 7 and 8, a side wall of the installation groove 1.7 near the cutting groove 1.1 is protrusively formed with a surrounding wall 1.72 in the form of an annular ring surrounding the outer periphery of the transmission mechanism 5. The surrounding wall 1.72 is arranged between the transmission mechanism 5 and the abutting portion 1.71, and the end of the surrounding wall 1.72 is close to the blocking plate 6. This forms an outer ring for protecting the transmission mechanism 5, so that the transmission mechanism 5 can stably operate in the outer ring which is not easily affected. Figure 8 Figure 9 Based on the arrangement of the surrounding wall 1.72, in the embodiment, a second sealing member 8 made of elastic material such as silica gel or rubber can also be arranged, which is an annular sealing member matching the surrounding wall 1.72. The second sealing member 8 is arranged between the blocking plate 6 and the surrounding wall 1.72 in a compressed manner. This can further improve the connection stability and sealing between the blocking plate 6 and the cutting base 1.
[0090] In order to facilitate the positioning and installation of the second sealing member 8 during assembly and improve the stability of the installation of the second sealing member 8, in the embodiment, the second sealing member 8 is adapted to be embedded in the surrounding wall 1.72 or the blocking plate 6. That is, for example, as shown in FIG. 9, a second sealing member installation groove 6.12 is arranged at the end of the surrounding wall 1.72 facing the blocking plate 6, and the second sealing member 8 is adapted to be embedded in the second sealing member installation groove 6.12. Similarly, a second sealing member installation groove 6.12 for embedding the second sealing member 8 can also be arranged on the blocking plate 6.
[0091] In order to facilitate the positioning and installation of the second sealing member 8 during assembly and improve the stability of the installation of the second sealing member 8, in the embodiment, the second sealing member 8 is adapted to be embedded in the surrounding wall 1.72 or the blocking plate 6. That is, for example, as shown in FIG. 9, a second sealing member installation groove 6.12 is arranged at the end of the surrounding wall 1.72 facing the blocking plate 6, and the second sealing member 8 is adapted to be embedded in the second sealing member installation groove 6.12. Similarly, a second sealing member installation groove 6.12 for embedding the second sealing member 8 can also be arranged on the blocking plate 6. Figure 9 As shown, a second sealing element mounting groove 6.2 is provided on the side of the sealing plate 6 facing the enclosure wall 1.72, and the second sealing element 8 is adapted to be embedded in the second sealing element mounting groove 6.2. Similarly, a mounting groove for embedding the second sealing element 8 can also be provided on the enclosure wall 1.72.
[0092] As attached Figure 8 As shown in the figure, in this embodiment, a plurality of support columns 1.73 can also be raised on the groove wall of the mounting groove 1.7, and the ends of the support columns 1.73 are attached to the sealing plate 6 to better support the sealing plate 6 and improve its impact resistance.
[0093] When the mounting groove 1.7 is provided and the transmission mechanism 5 is installed in the mounting groove 1.7, which is spaced apart from the cutting groove 1.1, the end of the rotating shaft needs to pass through the insertion hole on the third side wall 1.5 to be accommodated in the mounting groove 1.7. When the rotating shaft rotates at high speed, blood or residue generated from cutting food in the cutting groove 1.1 can easily flow from the gap between the rotating shaft and the wall of the insertion hole to the installation area of the transmission mechanism 5, which can easily cause contamination and corrosion to the transmission mechanism 5, and may even hinder the smooth operation of the transmission mechanism.
[0094] Therefore, based on the above scheme, as shown in the appendix Figure 9 and attached Figure 10 As shown, in this embodiment, an elastic sealing ring 9 is further fitted around the outer periphery of at least one rotating shaft. The sealing ring 9 is compressed and installed between the rotating shaft and the wall of the insertion hole into which the rotating shaft is inserted. This forms a seal, preventing or even avoiding the flow of blood or residue generated during food cutting from the cutting groove 1.1 into the mounting groove 1.7. The rotating shaft can be either the first rotating shaft 2.1 or the second rotating shaft 2.2 described above.
[0095] For example, a flexible sealing ring 9 is fitted around the outer periphery of the first rotating shaft 2.1. The sealing ring 9 is installed in a compressed manner between the first rotating shaft 2.1 and the wall of the first insertion hole 1.52.
[0096] Alternatively, a resilient sealing ring 9 may be fitted around the outer periphery of the second shaft 2.2, and the sealing ring 9 may be compressed and installed between the second shaft 2.2 and the wall of the second insertion hole 1.53.
[0097] Furthermore, in this embodiment, as shown in the appendix Figure 9 and attached Figure 10As shown, one side of the sealing ring 9 is protrusively formed with a surrounding part 9.1 sleeved on the outer periphery of the rotating shaft, so as to increase the connecting area between the sealing ring 9 and the rotating shaft, and improve the stability of the connection of the sealing ring 9. When the thickness of the sealing ring 9 is increased, the hole for inserting the rotating shaft cannot be too small in consideration of the installation difficulty, otherwise the sealing ring 9 is difficult to be sleeved on the rotating shaft. At this time, an elastic sleeve 10 made of elastic material such as silica gel or rubber can be additionally provided, and the sleeve 10 is elongatedly sleeved on the outer periphery of the surrounding part 9.1 to apply a tightening force to the sealing ring 9 to make it fit on the rotating shaft, thereby improving the connection tightness between the rotating shaft and the sealing ring 9 and improving the sealing effect.
[0098] Meanwhile, the outer periphery of the surrounding part 9.1 is provided with a surrounding groove 9.11 surrounding the rotating shaft, and the sleeve 10 is adapted to be embedded in the surrounding groove 9.11, so as to improve the installation stability of the sleeve 10.
[0099] In order to further improve the stability of the positioning of the sealing ring 9, as shown in Figs. 1 and 2, a flange part is protrusively formed on the outer periphery of the rotating shaft on one side of the sealing ring 9, and a limiting part 11 is detachably fixed on the other side of the sealing ring 9. Figure 9 As shown in Figs. 1 and 2, the limiting part 11 is detachably fixed by the structure commonly used in the installation of the shaft part, that is, by setting a step on the rotating shaft and a step on the hole wall of the inserting hole. Figure 10 Figure 10 The flange part and the limiting part 11 jointly clamp and fix the sealing ring 9.
[0100] At this time, the hole depth of the inserting hole is matched with the sealing ring 9 and the limiting part 11, and the sealing ring 9 and the limiting part 11 are both placed in the inserting hole, and the outer periphery of the limiting part 11 is fitted on the hole wall of the inserting hole, so as to further improve the sealing effect between the rotating shaft and the hole wall of the inserting hole, and improve the installation stability of the whole sealing ring 9 and limiting part 11.
[0101] Embodiment Two:
[0102] Based on the scheme in the above-mentioned embodiment one, considering that the food material is easy to scatter outward when the blade cuts the food material, the blade comb 12 is often provided to guide the food material.
[0103] Based on this, the embodiment two adds the blade comb 12 on the basis of the embodiment one, and further improves the scheme in the embodiment one according to the setting requirement of the blade comb 12.
[0104] Specifically, as shown in Figs. 1 and 2, the blade comb 12 is provided on the rotating shaft, and the blade comb 12 is provided with a plurality of blades 12.1. Figure 6 Figure 7 As shown, a detachable comb 12 is installed in the cutting groove 1.1. The comb 12 is used to guide the food entering the cutting groove 1.1 from the feed inlet 3.1 to the cutting area. Specifically, the comb 12 is configured to match the rotating shaft. In this embodiment, the comb 12 includes a support rod 12.1 and a plurality of guide rods 12.2 connected to the support rod 12.1. The support rod 12.1 is connected to the cutting base 1. The guide rods 12.2 are inserted from top to bottom between adjacent blades of the cutting board assembly 2 and overlap the rotating shaft of the cutting board assembly 2 to guide the food entering the cutting groove 1.1 to the cutting area.
[0105] That is, when the comb 12 is matched with the first rotating shaft 2.1, the support rod 12.1 of the comb 12 is placed above the first rotating shaft 2.1, and the guide rod 12.2 of the comb 12 is inserted from top to bottom between the adjacent first blades 2.3 and overlaps the first rotating shaft 2.1.
[0106] When the comb 12 is matched with the second rotating shaft 2.2, the support rod 12.1 of the comb 12 is placed above the second rotating shaft 2.2, and the guide rod 12.2 of the comb 12 is inserted from top to bottom between the adjacent second blades 2.4 and overlaps the first rotating shaft 2.1.
[0107] Both the first rotating shaft 2.1 and the second rotating shaft 2.2 can be matched with a comb 12 to form as shown in the attached figure. Figure 7 The structure shown.
[0108] It should be noted that when the food is cut with a blade, not only will food residue and blood remain on the blade, but a significant amount of food residue and blood will also remain on the comb 12.
[0109] Based on this, in this embodiment, the opening of the cutting groove 1.1 is adapted to the comb 12 so that the comb 12 can enter and exit the cutting groove 1.1 through the opening. Implementation: When the cover plate 3 is removed as described in Embodiment 1, the comb 12 can be disassembled and then taken out of the cutting groove 1.1 for better cleaning of the comb 12.
[0110] The two ends of the support rod 12.1 can be detachably connected to the third side wall 1.5 and the fourth side wall 1.6 respectively by means of screws, for example.
[0111] In this embodiment, to improve the ease of assembly and disassembly of the comb 12, as shown in the attached document... Figure 6 As shown, a first insertion groove 1.51, open at its upper end and connected to the cutting groove 1.1, is provided on the third side wall 1.5; simultaneously, a second insertion groove 1.61, open at its upper end and connected to the cutting groove 1.1, is provided on the fourth side wall 1.6. One end of the support rod 12.1 (e.g., attached) Figure 6The left end of the support rod 12.1 is inserted into the second insertion slot 1.61 from the upper end opening of the second insertion slot 1.61; the other end of the support rod 12.1 (for example, the right end of the support rod 12.1) is inserted into the first insertion slot 1.51 from the upper end opening of the first insertion slot 1.51; so that the two ends of the support rod 12.1 are detachably connected to the third side wall 1.5 and the fourth side wall 1.6, respectively. Figure 6 The left end of the support rod 12.1 is inserted into the second insertion slot 1.61 from the upper end opening of the second insertion slot 1.61; the other end of the support rod 12.1 (for example, the right end of the support rod 12.1) is inserted into the first insertion slot 1.51 from the upper end opening of the first insertion slot 1.51; so that the two ends of the support rod 12.1 are detachably connected to the third side wall 1.5 and the fourth side wall 1.6, respectively.
[0112] To achieve the above, after the cover plate 3 is removed, the two ends of the support rod 12.1 are separated from the first insertion slot 1.51 and the second insertion slot 1.61, respectively, by taking the knife comb 12 upwards, and the flow guide rod 12.2 is separated from the rotating shaft and the gap between the blades, so that the knife comb 12 can be disassembled. Conversely, the knife comb 12 can be positioned and installed.
[0113] In the above scheme, the flow guide rod 12.2 of the knife comb 12 can be provided in a split type with the support rod 12.1, and the flow guide rod 12.2 is connected to the support rod 12.1 by, for example, a threaded structure or an insertion structure. However, in this way, a larger installation gap is easily left between the flow guide rod 12.2 and the support rod 12.1, and blood and meat residues are easily entered into the installation gap during the cutting of meat materials, resulting in the breeding of bacteria and the corrosion of the connection structure between the flow guide rod 12.2 and the support rod 12.1.
[0114] Based on this, in the present embodiment, the support rod 12.1 and the flow guide rod 12.2 are provided in an integrated manner; that is, the support rod 12.1 and the flow guide rod 12.2 are provided in an integrated structure by, for example, integrated casting or the like. The gap at the connection between the support rod 12.1 and the flow guide rod 12.2 can be better reduced, and thus the breeding of bacteria can be reduced.
[0115] Further, considering that the flow guide rod 12.2 needs to be downwardly inserted into the gap between adjacent blades during installation to be able to guide the food materials, in the present embodiment, the flow guide rod 12.2 has a circular or elliptical or drop-shaped cross section (a cross section perpendicular to the axis of the flow guide rod 4.2); that is, the outer contour curve of the cross section is a drop-shaped curve; so that not only during assembly, the flow guide rod 12.2 with the circular-arc-shaped surface can be more smoothly inserted between the blades, reducing the possibility of jamming; but also the circular-arc-shaped outer surface can more smoothly guide the food materials.
[0116] 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.
[0117] 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 cut-to-size module, characterized by, The cutting base (1) has a cutting groove (1.1) and a mounting groove (1.7) arranged in parallel with the cutting groove (1.1) and having an opening facing one side; The knife assembly (2) comprises a rotatable first rotating shaft (2.1) and a second rotating shaft (2.2); The first rotating shaft (2.1) and the second rotating shaft (2.2) each have a portion arranged in the cutting groove (1.1) and provided with a knife blade, and one end of the first rotating shaft (2.1) and one end of the second rotating shaft (2.2) are each arranged in the mounting groove (1.7) from the cutting groove (1.1) through a third side wall (1.5); The mounting groove (1.7) is provided with a transmission mechanism (5) for drivingly connecting the first rotating shaft (2.1) and the second rotating shaft (2.2); The cutting base (1) is detachably connected with a sealing plate (6) for covering the opening of the mounting groove (1.7). The groove wall of the mounting groove (1.7) is formed with a butt joint portion (1.71) arranged around the outer periphery of the transmission mechanism (5); 2. The trim module of claim 1, wherein: The side of the sealing plate (6) facing the mounting groove (1.7) is provided with an insertion portion (6.1) inserted into the mounting groove (1.7) and matched with the butt joint portion (1.71); The cutting module further comprises a first elastic sealing member (7) arranged between the insertion portion (6.1) and the butt joint portion (1.71). The first elastic sealing member (7) is adapted to be embedded in the insertion portion (6.1) or the butt joint portion (1.71).
3. The cut-to-size module of claim 2, wherein: The insertion portion (6.1) is configured to fit the side wall of the mounting groove (1.7) when the insertion portion (6.1) is inserted into the mounting groove (1.7).
4. The trim module of claim 2, wherein: The side wall of the mounting groove (1.7) close to the cutting groove (1.1) is protrusively formed with a surrounding wall (1.72) arranged around the outer periphery of the transmission mechanism (5); 5. The trim module of claim 2, wherein: The surrounding wall (1.72) is arranged between the transmission mechanism (5) and the butt joint portion (1.71), and the end of the surrounding wall (1.72) is close to the sealing plate (6). The cutting module further comprises a second elastic sealing member (8) arranged between the sealing plate (6) and the surrounding wall (1.72).
6. The trim module of claim 5, wherein: The second elastic sealing member (8) is adapted to be embedded in the surrounding wall (1.72) or the sealing plate (6).
7. The trim module of claim 6, wherein: The groove wall of the mounting groove (1.7) is protrusively provided with a plurality of support columns (1.73), and the ends of the support columns (1.73) fit the sealing plate (6).
8. The trim module of claim 1, wherein: The opening of the mounting groove (1.7) faces the side of the mounting groove (1.7) away from the cutting groove (1.1).
9. The trim module of any one of claims 1 to 8, wherein: The cutting module comprises any one of claims 1-9.
10. A meat cutting machine characterized by: The cutting module comprises any one of claims 1-9.