Meat cutting structure and cutting matching module
By designing a meat-cutting structure with a sliding comb shaft and adjustable blades, the problem of time-consuming and laborious operation caused by fixed combs and blades in existing technologies is solved, achieving convenient spacing adjustment and adaptability to various cutting needs.
Patent Information
- Application Number
- CN202423236912.7
- 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
The existing meat cutting module has a fixed mounting structure for the comb and blades, which makes it impossible to flexibly adjust the spacing. The entire module needs to be replaced, which is time-consuming, labor-intensive, and costly.
Design a sliding comb tooth shaft and an adjustable blade structure. By combining the comb tooth shaft and the blade holder shaft, the spacing between the comb teeth and the blade can be flexibly adjusted, and the positioning is achieved by a baffle adjustment component to support different cutting needs.
It enables convenient adjustment of the spacing between the comb teeth and the blades, simplifies the assembly process, reduces replacement costs, and adapts to various cutting needs.
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Figure CN223604528U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of household appliances, concretely relates to a meat cutting structure and cutting module. BACKGROUND
[0002] For various operations in the kitchen, preparing food before cooking is an indispensable link, and for Chinese cooking with various cooking methods and food material selection, the food preparation link is more diverse, among which cutting meat into blocks or strips is also a common food preparation operation link. For electric meat cutting modules, a knife comb is usually used as a guide component to guide food materials into the cutting area, and then two groups of arranged blades cut the food materials.
[0003] However, the installation structure of the knife comb and the blade is usually fixed in the meat cutting module, so these knife combs and blades can only be used in this fixed specification meat cutting module. When the distance between the knife comb and the blade needs to be changed according to the food preparation requirements, the entire meat cutting structure needs to be replaced, which is time-consuming and laborious to operate and has a high material cost. SUMMARY
[0004] To solve the above technical problems, the assembly structure of the knife comb and the blade is further improved to solve the above technical problems and obtain a distance-adjustable knife assembly structure. One of the purposes of the utility model is to provide a meat cutting structure, and the second purpose is to provide a corresponding cutting module.
[0005] The specific technical solutions are described below:
[0006] A meat cutting structure comprises:
[0007] A knife comb part comprises at least two groups of comb tooth assemblies, each group of comb tooth assemblies comprises a comb tooth shaft and a plurality of comb teeth slidably connected to the comb tooth shaft;
[0008] A knife block part comprises at least two groups of knife block assemblies, each group of knife block assemblies comprises a knife block shaft and a plurality of blades slidably connected to the knife block shaft, and each comb tooth is arranged between two adjacent blades of each group of knife block assemblies.
[0009] Each comb tooth is arranged between two adjacent blades of each group of knife block assemblies.
[0010] In the above technical solution, the comb teeth can slide on the comb tooth shaft, which facilitates the adjustment of the distance between the comb teeth and the total width of the plurality of comb teeth. The total distance of the plurality of blades on the knife block assembly can be adjusted to adapt to different knife block cutting requirements.
[0011] Since each comb tooth is arranged between two blades, each time the distance between the blades is adjusted, the position of each comb tooth needs to be adjusted synchronously to continue to maintain one comb tooth between each two adjacent blades to guide the food downward, the comb tooth slidingly hung on the comb tooth shaft in the technical scheme of the utility model is just convenient for adjustment.
[0012] Preferably, the comb tooth shaft is arranged on the upper edge of the power input end plate, the blade baffle and the outer end plate.
[0013] Preferably, one end of the blade shaft is axially rotatable and connected to the power input end plate, and the other end is hingedly connected to the outer end plate. Further preferably, the blade baffle is slidably connected to the blade shaft, and the blade baffle and the power input end plate form a working area for a plurality of blades.
[0014] Further preferably, the baffle adjusting member includes an adjusting screw and an adjusting knob for rotating the adjusting screw, the adjusting screw is screwed into the adjusting screw hole of the outer end plate, and one end of the adjusting screw inside the outer end plate abuts against the blade baffle, and the other end outside the outer end plate is connected to the adjusting knob.
[0015] After adjusting the distance between the blades, the baffle adjusting member can be used to position the blades to fix the relative position between the blades.
[0016] Preferably, the baffle adjusting member includes an adjusting screw and an adjusting knob for rotating the adjusting screw, the adjusting screw is screwed into the adjusting screw hole of the outer end plate, and one end of the adjusting screw inside the outer end plate abuts against the blade baffle, and the other end outside the outer end plate is connected to the adjusting knob.
[0017] The clamping part includes at least two groups of bayonet assemblies matched with the number of comb tooth assemblies, each group of bayonet assemblies includes a first closed bayonet at one end, a second closed bayonet at the other end, and a blade baffle bayonet between the first closed bayonet and the second closed bayonet, and a plurality of combs are arranged between the second closed bayonet and the blade baffle bayonet.
[0018] The first closed bayonet is arranged on the upper edge of the outer end plate, the second closed bayonet is arranged on the upper edge of the power input end plate, and the blade baffle bayonet is arranged on the upper edge of the blade baffle.
[0019] The first closed bayonet, the second closed bayonet and the blade baffle bayonet all have openings upward for the comb tooth shaft to pass through, and the comb tooth shaft is arranged on a plurality of bayonets in the same group of bayonet assemblies.
[0020] In the above technical scheme, the comb tooth shaft is arranged on a plurality of bayonets with openings, which is convenient for disassembly and assembly.
[0021] Preferably, the opening of the first and second end sockets is provided with a limiting cover at least partially covering the opening, and the limiting covers at both ends are used to form a limiting structure at the top of the comb shaft rod to prevent the comb shaft rod from moving upward.
[0022] Preferably, the limiting cover on the opening of the first end socket partially covers the opening and covers the side of the opening away from the second end socket, and the limiting cover on the opening of the second end socket partially covers the opening and covers the side of the opening away from the first end socket. In this technical solution, the limiting covers are arranged as far as possible to the two ends to leave a relatively wide space and do not hinder the assembly of the comb shaft rod.
[0023] Preferably, the cutter baffle socket is arranged on the upper edge of the cutter baffle, and the cutter baffle has an adjustment range moving in the axial direction of the comb shaft rod.
[0024] Preferably, the bottom of the socket has a limiting surface at least partially fitted with the outer contour of the comb shaft rod to prevent the comb shaft rod from moving in the socket.
[0025] Preferably, the comb includes a connecting part and a guiding part, the connecting part is movably connected with the comb shaft rod, and the guiding part has a guiding surface with an inclination gradually increasing downward to guide the foodstuff to move downward into the cutting area.
[0026] Further preferably, the connecting part is provided with a through hole, and the comb shaft rod is slidably connected with the connecting part through the through hole.
[0027] Further preferably, the through hole has an inner contour matched with the surface of the comb shaft rod to prevent the comb shaft rod from moving in the through hole.
[0028] Preferably, the plurality of combs have consistent shapes and sizes to unify the guiding function of the cutter comb and enhance the stability of the guiding.
[0029] Preferably, a variable-distance elastic sheet is arranged between two adjacent blades.
[0030] The variable-distance elastic sheet is provided with a variable-distance connection through hole slidably connected with the cutter comb shaft rod, and is also provided with a variable-distance part having an elastic expansion distance in the axial direction of the cutter comb shaft rod. Preferably, the variable-distance part includes two local elastic sheets partially spaced apart, and the two local elastic sheets have end portions connected together and a variable-distance interval spaced apart. Further preferably, the local elastic sheet has a stress surface abutting against the adjacent blade, and the two stress surfaces on the same variable-distance part are spaced apart to form the variable-distance interval.
[0031] In the technical solution, the variable-distance elastic sheet not only adjusts the total distance of the plurality of blades by the compression degree of the cutter baffle, but also adjusts the distance between adjacent blades.
[0032] Meanwhile, each stress surface is connected with the adjacent end portion through a rebounding slope, when the stress surface is pressed, the rebounding slope is deformed and the stress surface has a rebounding force in the opposite direction of the pressure, the rebounding force makes the stress surface tightly press the blade, preventing the loose deformation of each blade and being not conducive to cutting.
[0033] Preferably, the variable-distance elastic sheet is connected by two elastic ring sheets, and the two elastic ring sheets have at least two connecting portions, and the variable-distance portion is formed between the two adjacent connecting portions, and the structure is relatively simple and easy to produce the variable-distance elastic sheet product.
[0034] Preferably, the number of the cutter assembly is two.
[0035] Preferably, the abutting position of the adjusting screw and the cutter baffle is located between the two cutter shafts, so that the compression force is uniformly applied to the cutter baffle.
[0036] Preferably, the two groups of blades between the two adjacent cutter assembly groups are staggered along the axial direction of the cutter shaft, and the plurality of blades are circular blades with consistent shape and size, so as to form a reasonable cutting area, enhance the stability of cutting, and save the cost of preparing the blades.
[0037] The cutting module is provided with the meat cutting structure of any one of the above technical solutions.
[0038] In summary, the technical solution has the following main beneficial effects:
[0039] Compared with the prior art, the technical solution provides a meat cutting structure, which can adjust the distance between the comb teeth and the total width of the plurality of comb teeth, and the cutter comb assembly structure is convenient to disassemble and assemble.
[0040] Meanwhile, the total distance of the plurality of blades can be adjusted, and the cutter baffle adjusting member is used for positioning after adjustment to adapt to different cutter cutting requirements.
[0041] Further or more detailed beneficial effects will be described in the specific embodiments. BRIEF DESCRIPTION OF DRAWINGS
[0042] Figure 1 is a structural schematic diagram of the meat cutting module according to the embodiment;
[0043] Figure 2 is a structural schematic diagram of the internal disassembly of the meat cutting module according to the embodiment.
[0044] Figure 3 is a structural schematic diagram of the knife comb part according to the embodiment;
[0045] Figure 4 is a structural schematic diagram of the knife rest part according to the embodiment;
[0046] Figure 5 is a structural schematic diagram of the knife rest part according to the embodiment;
[0047] Figure 6 is a structural schematic diagram of the combination of the knife comb part and the knife rest part according to the embodiment;
[0048] Figure 7 is a structural schematic diagram of the elastic variable distance piece according to the embodiment;
[0049] Figure 8 is a structural schematic diagram of the elastic variable distance piece according to the embodiment.
[0050] Reference signs:
[0051] 4.2: knife comb part, 4.21: comb tooth shaft rod, 4.22: comb tooth, 4.221: connecting part, 4.222: guiding part;
[0052] 4.3: knife rest part, 4.31: knife rest shaft rod, 4.32: knife blade, 4.33: elastic variable distance piece, 4.331: variable distance connecting through hole, 4.332: variable distance part, 4.332a: force receiving surface, 4.332b: variable distance interval, 4.332c: rebound inclined surface;
[0053] 4.4: knife stopper, 4.5: outer end plate, 4.51: adjusting screw hole;
[0054] 4.6: stopper adjusting part, 4.61: adjusting screw rod, 4.62: adjusting knob;
[0055] a: first end cap bayonet, b: second end cap bayonet, c: knife stopper bayonet, d: limiting cover. DETAILED DESCRIPTION
[0056] The utility model is further explained in combination with the embodiments:
[0057] The core technical problem of the technical scheme of the embodiments of the present application is derived from the accurate understanding of the prior art by the inventor, therefore, how to obtain a meat cutting structure with adjustable spacing and capable of being positioned by a baffle adjusting member after adjustment to adapt to different meat cutting requirements is a technical problem that the inventor urgently needs to solve.
[0058] It should be noted that the embodiments do not constitute a limitation on the protection scope of the utility model patent claims, and any technical solution that can be reasonably expected by a person skilled in the art according to the technical concepts provided / proved by the embodiments should be covered within the protection scope of the utility model patent claims.
[0059] The embodiments are described in detail as follows:
[0060] Please refer to the accompanying drawings Figures 1-8 The present embodiment relates to a meat cutting structure and a meat cutting module.
[0061] The meat cutting structure described in the embodiments, please first refer to the accompanying drawings Figures 1-6 The meat cutting structure includes a knife comb part 4.2 and a knife cutting part 4.3 matched therewith, wherein:
[0062] The knife comb part 4.2 related to the present embodiment includes two groups of comb tooth assemblies, each group of comb tooth assemblies includes a comb tooth shaft 4.21 and a row of comb teeth 4.22 slidingly hung on the comb tooth shaft 4.21, and the two comb tooth shafts 4.21 are arranged on the clamping parts of the upper edges of the power input end plate, the cutter baffle 4.4 and the outer end plate 4.5;
[0063] Specifically, the clamping part is composed of two groups of bayonet assemblies, each group of bayonet assemblies includes a first end cap bayonet a, a second end cap bayonet b and a cutter baffle bayonet c, two first end cap bayonets a are arranged at intervals on the upper edge of the outer end plate 4.5, two second end cap bayonets b are arranged at intervals on the upper edge of the power input end plate, and two cutter baffle bayonets c are arranged on the upper edge of the cutter baffle 4.4;
[0064] The two ends of each comb tooth shaft 4.21 are arranged on the first end cap bayonet a and the second end cap bayonet b respectively, and one is arranged on the cutter baffle bayonet c in the middle, and a row of comb teeth 4.22 on each comb tooth shaft 4.21 is arranged between the second end cap bayonet b and the cutter baffle bayonet c, the first end cap bayonet a, the second end cap bayonet b and the cutter baffle bayonet c all have openings facing upward for the comb tooth shaft 4.21 to enter and exit assembly, in the present embodiment, the bottom of the bayonet has a limiting surface matched with the outer contour of the comb tooth shaft 4.21 to prevent the comb tooth shaft 4.21 from shaking in the bayonet;
[0065] The comb teeth 4.22 in the embodiment have consistent shapes and sizes, thereby unifying the guiding function of the knife comb and enhancing the stability of the guidance. Each comb tooth 4.22 comprises a connecting portion 4.221 and a guiding portion 4.222. The connecting portion 4.221 is provided with a through hole through which the comb tooth shaft rod 4.21 is slidingly connected with the connecting portion 4.221. The through hole has an inner contour that is adapted to the surface of the comb tooth shaft rod 4.21, so as to prevent the comb tooth shaft rod 4.21 from shaking in the through hole. The guiding portion 4.222 has a guiding surface with an inclination that gradually increases downward, so as to guide the food materials to move downward into the cutting area of the blade 4.32.
[0066] Meanwhile, since each comb tooth 4.22 is arranged between two blades 4.32, the position of each comb tooth 4.22 needs to be adjusted synchronously each time the distance between the blades 4.32 is adjusted, so as to continue to maintain one comb tooth 4.22 between each two adjacent blades 4.32 to guide the food materials to move downward. In the embodiment, the comb teeth 4.22 are slidingly connected to the comb tooth shaft rod 4.21, which is convenient for adjustment.
[0067] The knife rack portion 4.3 in the embodiment comprises two groups of knife rack assemblies. Each group of knife rack assemblies comprises a knife rack shaft rod 4.31 and a row of blades 4.32 slidingly connected to the knife rack shaft rod 4.31. Each comb tooth 4.22 is arranged between two adjacent blades 4.32. One end of the knife rack shaft rod 4.31 is axially rotatably connected to the power input end plate, and the other end is hingedly connected to the outer end plate 4.5. All the blades 4.32 in the embodiment are circular blades with consistent shapes and sizes, so as to form a reasonable cutting area and enhance the stability of the cutting, and also to save the cost of preparing the blades. Moreover, the two groups of blades 4.32 between the two groups of knife rack assemblies are staggered along the axial direction of the knife rack shaft rod 4.31, so as to form an efficient cutting area.
[0068] The knife stopper 4.4 is slidingly connected to the knife rack shaft rod 4.31, and the working area of the two rows of blades 4.32 is formed between the knife stopper 4.4 and the power input end plate.
[0069] The position of the tool baffle 4.4 on the tool rest shaft 4.31 is adjusted by the baffle adjusting member 4.6. In the embodiment, the baffle adjusting member 4.6 includes an adjusting screw 4.61 and an adjusting knob 4.62 connected to the adjusting screw 4.61. The adjusting screw 4.61 is screwed into the adjusting screw hole 4.51 formed in the middle of the outer end plate 4.5. One end of the adjusting screw 4.61 inside the outer end plate 4.5 abuts against the tool baffle 4.4, and the other end outside the outer end plate 4.5 is connected to the adjusting knob 4.62. The abutting position of the adjusting screw 4.61 and the tool baffle 4.4 is between the two tool rest shafts 4.31, so that the compression force is uniformly applied to the tool baffle 4.4.
[0070] In the technical solution of the embodiment, the comb teeth 4.22 on the comb assembly can slide on the comb shaft 4.21, so as to adjust the distance between the comb teeth 4.22 and the total width of each row of comb teeth 4.22. The total distance of the plurality of blades 4.32 on the tool rest assembly can also be adjusted, and after adjustment, the baffle adjusting member 4.6 is used for positioning. When positioning, the adjusting knob 4.62 is first rotated, the adjusting screw 4.61 is adjusted through the screw structure, the tool baffle 4.4 is pushed to different positions of the tool rest shaft 4.31, and then different distances between the blades and the distances between the comb teeth 4.22 are obtained, so as to adapt to different tool rest cutting requirements.
[0071] Meanwhile, the comb shaft 4.21 is arranged on the plurality of clamping holes with openings, so as to facilitate disassembly and assembly of the tool comb part 4.2.
[0072] For the assembly structure of the tool comb part 4.2:
[0073] In the preferred embodiment, the openings of the first end clamping hole a and the second end clamping hole b are provided with the limiting cover d partially covering the openings. The limiting cover d arranged at the two ends is used to form the limiting structure at the two ends of the comb shaft 4.21, so as to prevent the comb shaft 4.21 from moving upward.
[0074] In the further preferred embodiment, the covering position of the limiting cover d on the opening of the first end clamping hole a is located on the side of the opening away from the second end clamping hole b, and the covering position of the limiting cover d on the opening of the second end clamping hole b is located on the side of the opening away from the first end clamping hole a. In the embodiment, the limiting cover d is arranged as far as possible to the two ends, so as to leave a relatively spacious space and not hinder the assembly of the comb shaft 4.21.
[0075] For the assembly structure of the tool rest part 4.3:
[0076] In the preferred embodiment, please refer to the accompanying drawings Figure 7 and 8, two adjacent blades 4.32 are provided with a variable distance elastic sheet 4.33, wherein:
[0077] The variable distance elastic sheet 4.33 is provided with a variable distance connecting through hole 4.331 slidingly connected to the cutter block shaft 4.31, and is also provided with a variable distance part 4.332 having an elastic expansion interval in the axial direction of the cutter block shaft 4.31. Specifically, the variable distance part 4.332 includes two partial elastic sheets partially spaced apart, the two partial elastic sheets have end portions connected together and a variable distance interval 4.332b spaced apart, and the partial elastic sheets also have a force receiving surface 4.332a abutting against the adjacent blade 4.32, and the two force receiving surfaces 4.332a on the same variable distance part 4.332 are spaced apart to form the variable distance interval 4.332b.
[0078] Each force receiving surface 4.332a is connected to the adjacent end portion through a rebound slope 4.332c. When the force receiving surface 4.332a is subjected to pressure, the rebound slope 4.332c deforms and causes the force receiving surface 4.332a to have a rebound force in the opposite direction of the pressure. The rebound force causes the force receiving surface 4.332a to press tightly against the blade 4.32, preventing the loose deformation of each blade 3.32 and being not conducive to cutting.
[0079] In the above technical solution, the variable distance elastic sheet 4.33 not only allows the total interval of the plurality of blades 4.32 to be adjusted by the compression degree of the cutter baffle 4.4, but also allows the interval between adjacent blades 4.32 to be adjusted. When the compression degree of the cutter baffle 4.4 is large, the variable distance part 4.332 is compressed, and the total interval of each row of blades 4.32 and the interval between adjacent blades 4.32 are both reduced. When the compression degree of the cutter baffle 4.4 is small, the variable distance part 4.332 restores deformation under the action of its own elasticity, and the total interval of each row of blades 4.32 and the interval between adjacent blades 4.32 are both increased.
[0080] In one example, the variable distance elastic sheet 4.33 is connected by two elastic ring sheets, and the two elastic ring sheets have three connecting portions therebetween, adjacent two connecting portions form the variable distance part 4.332. This structure is relatively simple, easy to produce the variable distance elastic sheet 4.33 product, and at the same time, the three connecting portions form a limiting structure for the inner diameter of the variable distance connecting through hole 4.331, that is, in this embodiment, when the force receiving surface 4.332a is compressed by force, the variable distance connecting through hole 4.331 will not expand, and when the force receiving surface 4.332a is reduced in force and the variable distance interval 4.332b is widened, the variable distance connecting through hole 4.331 will not be reduced, and thus the variable distance elastic sheet 4.33 is always sleeved on the cutter block shaft 4.31 and cannot be loosened / shaken in the radial direction.
[0081] The cutting module described in the present embodiment is shown in the attachedFigure 1 and 2 The meat cutting structure as claimed in any one of the preceding embodiments is arranged inside the meat cutting structure as shown in the figures.
[0082] In the description of the present specification, the description of the terms "embodiment", "basic embodiment", "preferred embodiment", "other embodiment", "example", "specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily mean the same embodiment or example. Furthermore, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0083] Although the preferred embodiments of the present application have been described, those skilled in the art can make further changes and modifications to the embodiments once they know the basic inventive concept. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications falling within the scope of the present application.
[0084] Obviously, those skilled in the art can make various modifications and variations to the present application without departing from the spirit and scope of the present application. Thus, if these modifications and variations of the present application fall within the scope of the claims of the present application and their equivalents, the present application also intends to include these modifications and variations.
Claims
1. A meat cutting structure, characterized by, Comprise: The knife comb part (4.2) comprises at least two groups of comb tooth assemblies, each group of the comb tooth assemblies comprises a comb tooth shaft (4.21) and a plurality of comb teeth (4.22) slidably connected to the comb tooth shaft (4.21); The knife block part (4.3) comprises at least two groups of knife block assemblies, each group of the knife block assemblies comprises a knife block shaft (4.31) and a plurality of blades (4.32) slidably connected to the knife block shaft (4.31), and each of the comb teeth (4.22) is arranged between two adjacent blades (4.32) in each group of the knife block assemblies. Each of the comb teeth (4.22) is arranged between two adjacent blades (4.32) in each group of the knife block assemblies.
2. The meat cutting structure of claim 1, wherein: The comb tooth shaft (4.21) is arranged on the upper edge of the power input end plate, the cutter baffle (4.4) and the outer end plate (4.5).
3. The meat cutting structure of claim 1, wherein: One end of the knife block shaft (4.31) is axially connected to the power input end plate, and the other end is hingedly connected to the outer end plate (4.5).
4. The meat cutting structure of claim 3, wherein: The cutter baffle (4.4) is slidably connected to the knife block shaft (4.31), and the cutter baffle (4.4) and the power input end plate form a working area for the plurality of blades (4.32).
5. The meat cutting structure of claim 4, wherein: The baffle adjusting member (4.6) comprises an adjusting screw (4.61) and an adjusting knob (4.62) for rotating the adjusting screw (4.61), the adjusting screw (4.61) is screwed into the adjusting screw hole (4.51) formed in the outer end plate (4.5), one end of the adjusting screw (4.61) inside the outer end plate (4.5) abuts against the cutter baffle (4.4), and the other end outside the outer end plate (4.5) is connected to the adjusting knob (4.62).
6. The meat cutting structure of claim 2 wherein, Further comprising: The clamping part comprises at least two groups of clamping hole assemblies matched with the number of the comb tooth assemblies, each group of the clamping hole assemblies comprises a first closed end clamping hole (a) at one end, a second closed end clamping hole (b) at the other end, and a cutter baffle clamping hole (c) between the first closed end clamping hole (a) and the second closed end clamping hole (b), and a plurality of comb teeth (4.22) are arranged between the second closed end clamping hole (b) and the cutter baffle clamping hole (c); The first closed end clamping hole (a) is arranged on the upper edge of the outer end plate (4.5), the second closed end clamping hole (b) is arranged on the upper edge of the power input end plate, and the cutter baffle clamping hole (c) is arranged on the upper edge of the cutter baffle (4.4); The first closed end clamping hole (a), the second closed end clamping hole (b) and the cutter baffle clamping hole (c) all have openings upward for the comb tooth shaft (4.21) to pass through, and the comb tooth shaft (4.21) is arranged on the plurality of clamping holes in the same group of clamping hole assemblies.
7. The meat cutting structure of claim 6, wherein: The openings of the first closed end clamping hole (a) and the second closed end clamping hole (b) are provided with a limiting cover (d) at least partially covering the openings.
8. The meat cutting structure of claim 7, wherein: The limiting cover (d) on the opening of the first end socket (a) partially covers the opening, and the covering position is on the side of the opening away from the second end socket (b); The limiting cover (d) on the opening of the second end socket (b) partially covers the opening, and the covering position is on the side of the opening away from the first end socket (a).
9. The meat cutting structure of claim 1, wherein: A variable-distance elastic piece (4.33) is arranged between two adjacent blades (4.32); The variable-distance elastic piece (4.33) is provided with a variable-distance connecting through hole (4.331) slidingly connected to the blade axle rod (4.31), and is further provided with a variable-distance part (4.332) having an elastic expansion interval in the axial direction of the blade axle rod (4.31).
10. The meat cutting structure of claim 9, wherein: The variable-distance part (4.332) comprises two partially spaced local elastic pieces, and the two local elastic pieces have end portions connected together and a variable-distance interval (4.332b) spaced apart.
11. The meat cutting structure of claim 10, wherein: The local elastic piece has a force receiving surface (4.332a) abutting against the adjacent blade (4.32), and the two force receiving surfaces (4.332a) on the same variable-distance part (4.332) are spaced apart to form the variable-distance interval (4.332b).
12. A cut-to-size module characterized by: The meat cutting structure of any one of claims 1-11 is provided.