Multi-specification flat plate shredder
By designing a multi-specified flat-plate shredder in the vegetable cutter, and using the combined structure of the first and second blade components, the existing vegetable cutters have solved the problem of insufficient strength and uneven shredding when cutting, and the multi-specified cutting and smooth cutting process are achieved.
Patent Information
- Application Number
- CN202421453502.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-24
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-06-24
AI Technical Summary
When cutting the existing vegetable cutters, the blade plate is insufficient, the shredding is uneven, and only one size of shred can be cut out.
A multi-specimension flat wire cutter is designed, adopting a combined structure of the first and second blade assembly, and using an axial plane as the feed plane, wires of different widths and thicknesses are cut through the matching of the tool teeth spacing and the feed plane height.
It realizes multi-special cutting, simple structure, easy adjustment, smooth cutting, and not easy to remain.
Smart Images

Figure CN222888896U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of kitchenware and relates to a multi-specification flat plate shredder. Background Art
[0002] Vegetable cutters are a common kitchen appliance in daily life. Their basic function is to slice or shred ingredients, which greatly facilitates the processing of ingredients and brings convenience to people's lives. However, in order to shred ingredients, existing vegetable cutters need to open cutting edges at different angles on the cutting board. Such cutting boards are not strong enough when shredding, the shreds are not uniform, and they are not easy to process. In addition, existing vegetable cutters can only cut shreds of one specification.
[0003] Chinese utility model patent CN217531003U (publication date: 2022-10-04) discloses a multi-specification vegetable cutter, including a vegetable cutting base, wherein a knife plate and a shredder assembly are arranged in the vegetable cutting base, wherein the front end of the knife plate is provided with a horizontal cutting edge 1, wherein the shredder assembly includes a rotating shaft and two or more shredder blade groups arranged on the rotating shaft, wherein the shredder blade group is composed of a plurality of shredder blades perpendicular to the cutting edge 1, wherein the shredder blades of each shredder blade group have different spacings, and wherein the front end of the shredder blade is provided with a cutting edge 2 for cooperating with the cutting edge 1 for cutting shredders. The above-mentioned vegetable cutter can allow different shredder blade groups to cooperate with the knife plate to cut shredders of different widths by rotating the shredder blade assembly. In addition, in order to cut shredders of different thicknesses, a thickness adjustment plate with adjustable height is arranged in the vegetable cutting base, wherein the side end face of the thickness adjustment plate cooperates with the cutting edge of the knife plate to control the cutting thickness of the material, and when the thickness adjustment plate moves upward, the material thickness decreases, and when the thickness adjustment plate moves downward, the material thickness increases.
[0004] The disadvantage is that when cutting, the wire cutter assembly and the knife plate act on the material at the same time, the cutting is not smooth enough, and the material residue is easily stuck in the gap between the two. Utility Model Content
[0005] The utility model aims at the deficiencies of the prior art and provides a multi-specification flat plate shredder, which can cut materials into multi-specifications and has the advantages of simple structure, convenient adjustment and smooth cutting.
[0006] In order to solve the above technical problems, the purpose of the utility model is achieved through the following technical solutions:
[0007] A multi-specification flat plate shredder comprises a panel, a first blade plate assembly and a second blade plate assembly. The first blade plate assembly is arranged at the discharge port of the panel, and its cutting edge is arranged parallel to the panel. The second blade plate assembly is arranged closely adjacent to the first blade plate assembly in front and behind along the sliding direction of the material. The second blade plate assembly comprises a polygonal cylinder with multiple axial planes. The blade teeth on the axial planes are evenly distributed along the axial direction, and its cutting edge is arranged perpendicular to the panel. When the blade tooth spacing of one axial plane is smaller than the blade tooth spacing of another axial plane, the feed plane formed thereby is higher than the feed plane formed by the other axial plane.
[0008] In the above-mentioned multi-specification flat plate shredder, the polygonal prism is at least a triangular prism, and is preferably a regular quadrilateral prism.
[0009] In the above-mentioned multi-specification flat plate shredder, the vertical spacing between the feed plane formed by the axial plane and the first blade assembly is equal to the blade tooth spacing, and the shreds cut by the first blade assembly and the second blade assembly have the same width and thickness, that is, square shreds are formed.
[0010] In the above-mentioned multi-specification flat plate shredder, both sides of the first blade assembly are sharpened, and a second blade assembly is respectively arranged on both sides of the first blade assembly.
[0011] In the above-mentioned multi-specification flat plate shredder, the second blade assembly is hinged on the panel through a rotating shaft, and the rotating shaft is eccentrically connected to the polygonal cylinder. When the blade tooth spacing in one axial plane is smaller than the blade tooth spacing in another axial plane, its distance from the rotating shaft axis is greater than the distance between the other axial plane and the rotating shaft axis.
[0012] In the above-mentioned multi-specification flat plate shredder, an outer frame is provided on the outer side of the panel, a slide groove is provided on the outer frame along the height direction, the rotating shaft is slidably set in the slide groove, when the rotating shaft is located at the upper end of the slide groove, the second blade assembly cooperates with the first blade to cut shreds, and when the rotating shaft is located at the lower end of the slide groove, the second blade assembly can rotate freely and switch the selected axial plane.
[0013] In the above-mentioned multi-specification flat plate shredder, the rotating shaft passes through the sliding groove outward and is connected to an adjusting knob, and the adjusting knob drives the rotating shaft and the second blade assembly to rotate to select the axial plane.
[0014] In the above-mentioned multi-specification flat shredder, when the rotating shaft is located at the upper end of the slide slot, the second blade assembly is fixedly connected to the panel through a locking structure, and the locking structure can use a variety of structures. For example, a limit slot is set at the upper end of the slide slot, and the rotating shaft enters the limit slot and has an interference fit with it; or, a plug that cooperates with the slide slot is set, and when the rotating shaft is located at the upper end of the slide slot, the plug is inserted into the slide slot and has an interference fit with it to fix the second blade assembly; or, a movable limit pressure plate is set at the bottom of the panel, and when locking is required, the limit pressure plate is slid or rotated to a position that conflicts with the bottom of the second blade assembly, and when switching is required, the limit pressure plate is removed.
[0015] In the above multi-standard flat shredder, the panel is connected with a lifting adjustment structure, and the end of the panel adjacent to the second blade assembly is adjusted to be flush with the axial plane by the lifting adjustment structure. The lifting adjustment structure can use a conventional panel adjustment structure in the art.
[0016] Compared with the prior art, the utility model has the following beneficial effects:
[0017] 1. The utility model provides a multi-specification flat plate shredder, which uses an axial plane as a feed plane. When different axial planes are selected, not only are there blade teeth with different spacings to cut out filaments of different widths, but there are also feed planes with different heights to cut out filaments of different thicknesses. By matching the blade tooth spacing and the feed plane height, filaments with closer widths and thicknesses can be cut out. When in use, the second blade assembly is used for cutting first, and then the first blade assembly is used for cutting, so that the cutting is smoother and less likely to leave residue. Therefore, the multi-specification flat plate shredder of the utility model has the advantages of simple structure, convenient adjustment, and smooth cutting.
[0018] 2. The utility model further provides a simple adjustment structure. By rotating the eccentrically arranged rotating shaft, different axial planes are selected to form corresponding feed planes of different heights. Therefore, the utility model can adjust the thickness and width of the shredded wire at the same time, and the adjustment is more convenient and accurate.
[0019] 3. The utility model further uses a first blade assembly with a double-edged structure and is equipped with two second blade assemblies, so that more specifications can be cut. BRIEF DESCRIPTION OF THE DRAWINGS
[0020] Figure 1 It is a three-dimensional diagram of the utility model;
[0021] Figure 2 It is an exploded view of the utility model;
[0022] Figure 3 It is a three-dimensional diagram of the second blade assembly of the utility model;
[0023] Figure 4 yes Figure 3 A partial enlarged view of
[0024] Figure numerals: 1, panel; 11, mounting groove; 12, frame; 13, slide groove; 2, first blade assembly; 3, second blade assembly; 31, axial plane; 32, blade teeth; 33, rotating shaft; 34, adjusting knob. DETAILED DESCRIPTION
[0025] The present invention will be further described below with reference to the accompanying drawings. Figure 1-4 :
[0026] A multi-specification flat plate shredder comprises a panel 1, a first blade assembly 2 and a second blade assembly 3. The first blade assembly 2 is arranged at the discharge port of the panel 1, and its cutting edge is arranged parallel to the panel 1. The second blade assembly 3 and the first blade assembly 2 are arranged closely together in front and back along the sliding direction of the material. The second blade assembly 3 comprises a polygonal cylinder having a plurality of axial planes 31. The blade teeth 32 on the axial planes 31 are uniformly distributed along the axial direction, and its cutting edge is arranged perpendicular to the panel 1. When the spacing between the blade teeth 32 of one axial plane 31 is smaller than the spacing between the blade teeth 32 of another axial plane 31, the feed plane formed thereby is higher than the feed plane formed by the other axial plane 31.
[0027] The wire cutting principle of this embodiment is: the teeth 32 on the second blade assembly 3 cut the material vertically, so the spacing between the teeth 32 determines the width of the wire cut. When different axial planes 31 have different spacing between the teeth 32, different axial planes 31 can cut wires of different widths; the cutting edge of the first blade assembly 2 cuts the material horizontally, and the material enters the cutting edge of the first blade assembly 2 along the feed plane when moving, so the vertical spacing between the feed plane and the first blade assembly 2 determines the thickness of the wire cut. When different feed planes (i.e., axial planes 31) have different heights, different axial planes 31 can cut wires of different thicknesses; again, in this embodiment, the heights of different feed planes are related to the corresponding spacing between the teeth 32. When the spacing between the teeth 32 is smaller, the height of the feed plane is higher, that is, the smaller the width of the wire cut, the thinner the thickness. It can be seen that when different axial planes 31 are selected, the thickness of the cut wire can be closer to its width.
[0028] Compare with Figure 1 and attached Figure 2 The usage of this embodiment is: the material to be cut is slid forward along the feed plane, the material first passes through the second blade assembly 3, and is cut vertically by the blade teeth 32 on the second blade assembly 3, and then passes through the first blade assembly 2, and is cut horizontally by the cutting edge on the first blade assembly 2, and finally cut into filaments.
[0029] In this embodiment, the polygonal prism is a regular quadrilateral prism.
[0030] Preferably, the vertical spacing between the feed plane formed by the axial plane 31 and the first blade assembly 2 is equal to the spacing between its teeth 32, and the wires cut by the first blade assembly 2 and the second blade assembly 3 have the same width and thickness, that is, square wires are formed.
[0031] In order to further expand the adaptability specifications of the present embodiment, the first blade assembly 2 is sharpened on both sides, and a second blade assembly 3 is respectively provided on both sides of the first blade assembly 2.
[0032] This embodiment further provides a simple adjustment structure:
[0033] Compare with Figure 3 and attached Figure 4 The second blade assembly 3 is hinged on the panel 1 through a rotating shaft 33, and the rotating shaft 33 is eccentrically connected to the polygonal column. When the spacing between the teeth 32 of one axial plane 31 is smaller than the spacing between the teeth 32 of another axial plane 31, the distance between it and the axis of the rotating shaft 33 is greater than the distance between the other axial plane 31 and the axis of the rotating shaft 33. When the rotating shaft 33 is rotated, since the axes of the rotating shaft 33 are all located in the same plane, when the distance between the axial plane 31 and the axis of the rotating shaft 33 is larger, the higher its position is, and the smaller the vertical spacing with the first blade assembly 2 is. After the desired axial plane 31 is selected by rotating the rotating shaft 33, the axial plane 31 is exactly located at the set height.
[0034] In this example, the Figure 4 , the spacing between the teeth 32 of the right axial plane 31 of the second blade assembly 3 is the smallest, and correspondingly, the distance between the right axial plane 31 and the axis of the rotating shaft 33 is also the farthest. When the right axial plane 31 is selected as the feeding plane, that is, when the second blade assembly 3 is rotated 90 degrees counterclockwise, the height of the axial plane 31 is also the highest; the spacing between the teeth 32 of the left axial plane 31 of the second blade assembly 3 is the largest, and correspondingly, the distance between the left axial plane 31 and the axis of the rotating shaft 33 is also the farthest. When the left axial plane 31 is selected as the feeding plane, that is, when the second blade assembly 3 is rotated 90 degrees clockwise, the height of the axial plane 31 is also the lowest; the spacing between the teeth 32 of the upper axial plane 31 of the second blade assembly 3 and the distance from the axis of the rotating shaft 33 are both between the two.
[0035] In order to facilitate the adjustment of the second blade assembly 3, the panel 1 includes a frame 12 arranged on the outside, a slide groove 13 is arranged on the frame 12 along the height direction, and the rotating shaft 33 is slidably arranged in the slide groove 13. When the rotating shaft 33 is located at the upper end of the slide groove 13, the second blade assembly 3 cooperates with the first blade assembly 2 to cut wire, and when the rotating shaft 33 is located at the lower end of the slide groove 13, the second blade assembly 3 can rotate freely and switch the selected axial plane 31. When the rotating shaft 33 slides downward to the lower end of the slide groove 13, the second blade assembly 3 is away from the mounting groove 11 of the panel 1, and when the second blade assembly 3 is rotated, it will no longer be interfered by the panel 1.
[0036] The rotating shaft 33 passes through the slide slot 13 outwardly and is connected to an adjusting knob 34 . The adjusting knob 34 drives the rotating shaft 33 and the second blade assembly 3 to rotate to select the axial plane 31 .
[0037] When the rotating shaft 33 is located at the upper end of the slide slot 13, the second blade assembly 3 is fixedly connected to the panel 1 through the locking structure, so that the second blade assembly 3 has a stable working structure. The specific locking structure of this embodiment is: a movable limit pressure plate is set at the bottom of the panel 1, and when locking is required, the limit pressure plate is slid or rotated to a position that contacts the bottom of the second blade assembly 3, and when switching is required, the limit pressure plate is removed.
[0038] The panel 1 is connected with a lifting adjustment structure, and the end of the panel 1 adjacent to the second blade assembly 3 is adjusted to be flush with the axial plane 31 through the lifting adjustment structure. The lifting adjustment structure can use a conventional panel 1 adjustment structure in the art. By adjusting the height of the adjacent end of the panel 1, the feeding can be smoother.
[0039] The above embodiments are only preferred embodiments of the present invention and are not intended to limit the protection scope of the present invention. Therefore, any equivalent changes made based on the structure, shape, and principle of the present invention should be included in the protection scope of the present invention.
Claims
1. A multi-specification flat plate shredder, comprising a panel (1), a first blade assembly (2) and a second blade assembly (3), characterized in that: The second blade assembly (3) and the first blade assembly (2) are arranged in close proximity in the mounting groove (11) of the panel (1) along the sliding direction of the material. The cutting edge of the first blade assembly (2) is arranged parallel to the panel (1). The second blade assembly (3) comprises a polygonal column having a plurality of axial planes (31). The blade teeth (32) on the axial planes (31) are uniformly distributed along the axial direction. The cutting edge is arranged perpendicular to the panel (1). When the spacing between the blade teeth (32) of one axial plane (31) is smaller than the spacing between the blade teeth (32) of another axial plane (31), the feed plane formed thereby is higher than the feed plane formed by the other axial plane (31).
2. A multi-specification flat plate shredder according to claim 1, characterized in that: The vertical spacing between the feed plane formed by the axial plane (31) and the first blade assembly (2) is equal to the spacing between the blade teeth (32).
3. The multi-specification flat plate shredder according to claim 1, characterized in that: The first blade assembly (2) is sharpened on both sides, and a second blade assembly (3) is respectively arranged on both sides of the first blade assembly (2).
4. The multi-specification flat plate shredder according to claim 1, characterized in that: The second blade assembly (3) is hinged on the panel (1) via a rotating shaft (33), and the rotating shaft (33) is eccentrically connected to the polygonal column. When the spacing between the blade teeth (32) in one axial plane (31) is smaller than the spacing between the blade teeth (32) in another axial plane (31), the distance between it and the axis of the rotating shaft (33) is greater than the distance between the other axial plane (31) and the axis of the rotating shaft (33).
5. The multi-specification flat plate shredder according to claim 4, characterized in that: The panel (1) includes a frame (12) arranged on the outside, a slide groove (13) is arranged on the frame (12) along the height direction, and the rotating shaft (33) is slidably arranged in the slide groove (13). When the rotating shaft (33) is located at the upper end of the slide groove (13), the second blade assembly (3) cooperates with the first blade assembly (2) to cut wire. When the rotating shaft (33) is located at the lower end of the slide groove (13), the second blade assembly (3) can rotate freely and switch the selected axial plane (31).
6. A multi-specification flat plate shredder according to claim 5, characterized in that: The rotating shaft (33) passes through the slide groove (13) outwardly and is connected to an adjusting knob (34). The adjusting knob (34) drives the rotating shaft (33) and the second blade assembly (3) to rotate to select the axial plane (31).
7. The multi-specification flat plate shredder according to claim 1, characterized in that: The panel (1) is connected to a lifting and adjusting structure, and one end of the panel (1) adjacent to the second blade assembly (3) is adjusted to be flush with the axial plane (31) through the lifting and adjusting structure.
Citation Information
Patent Citations
Multi-specification shredder
CN217531003U