Vegetable cutter head for slicing and forming
The vegetable cutter blade, made of alloy material, combined with the design of a recessed area and a dividing plate, solves the problems of unstable connection and inconsistent cutting thickness of traditional blades, achieving stability in slice thickness and improving cutting efficiency, while avoiding material blockage.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-13
- Publication Date
- 2026-03-06
AI Technical Summary
The threaded connection of the blade disc in traditional vegetable cutters does not have a locking effect, causing the blades to fall off under high-speed rotation, and the cutting thickness is unstable. Furthermore, the cutting space depends entirely on the thickness and precision of the blades, which easily leads to material blockage.
The blade of the vegetable cutter is made of alloy material, with a recessed area and a dividing plate. The blade is fixed by positioning screws, and a protective net is installed on the central cylinder. The stability of the connection structure and the effective use of the cutting space are ensured by connecting bearings and rotating sealing caps.
It improves the stability of slice thickness and cutting efficiency, prevents material blockage, and ensures the continuity of the cutting process and the smooth sliding of materials.
Smart Images

Figure CN223971764U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of vegetable cutter structure, specifically a vegetable cutter blade for slicing. Background Technology
[0002] A vegetable cutter is a kitchen appliance used to cut fruits and vegetables. Common cutting methods include shredding, dicing, and slicing. The cutting effect is achieved by installing different blades and cutting discs depending on the product requirements.
[0003] Traditional technical reference 201821388837.8 An adjustable vegetable cutter blade connecting shaft has an external thread on its outer surface, and a key shaft hole is provided in the middle of the fan blade mounting seat and the connecting shaft; the disc has a mounting hole corresponding to the fan blade, and the disc between the two mounting holes has a mounting groove for mounting the fan blade mounting seat. A through hole is provided in the middle of the mounting groove, and the connecting shaft passes through the through hole and is threadedly connected to the nut.
[0004] The reference uses a nut that rotates on a threaded connection shaft to adjust the position of the cutting blade on the cutter head, thereby controlling the cutting spacing. However, the following problems exist:
[0005] 1) Threaded connections do not have a locking effect, so a single nut is more likely to fall off under high-speed rotation, causing the blade to collide with the vegetable cutter;
[0006] 2) The planar setting of the cutter head and the adjustable forward rotation position due to the threaded connection can lead to instability in the cutting thickness.
[0007] To address these issues, we provide a slicing and shaping blade for a vegetable cutter. Utility Model Content
[0008] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a slicing and shaping cutting machine blade disc to reduce the technical problems that require high blade thickness and precision when the blade disc is set in a flat plane, thereby reducing the impact of slicing thickness and cutting shape and facilitating feeding and cutting.
[0009] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a slicing and shaping vegetable cutter blade, comprising:
[0010] The matrix disk is disc-shaped.
[0011] A central cylinder is installed in the middle of the base plate, and the central cylinder is hollow in the middle; a positioning hole is opened on the central cylinder;
[0012] The mounting slot is located inside the base plate;
[0013] The mounting surface is located on the upper side of the mounting groove; a connecting hole one is provided at the center cylinder near one end of the mounting groove; a connecting hole two is provided on the base plate; the blade is mounted on connecting hole one and connecting hole two.
[0014] The recessed area is connected to the mounting groove, and the blade edge faces the recessed area from the mounting surface. When the cutter head is placed horizontally and the opening of the connecting hole is set upwards, the height of the edge of the recessed area connecting to the mounting groove is lower than the height of the mounting surface.
[0015] In a further technical solution, a position ring is provided at the position of the central cylinder facing the first connection hole, and a dividing plate is provided on the position ring; one end of the dividing plate is fixedly connected to the position ring, and the other end extends to the edge of the base plate.
[0016] The dividing plate is the edge of the mounting surface, and its top height is higher than the height of the first connection hole.
[0017] In a further technical solution, the thickness of the dividing plate is at least 6mm, and the blade is adapted to the thickness of the corresponding dividing plate. The dividing plate is made of alloy material, and can further be an aluminum-magnesium alloy. Existing enterprises need to divide the slicing thickness into four series: 1mm, 2mm, 4mm, and 6mm. Conventional existing cutter heads are made of plastic, which has the problem of particle shedding and the dividing plate cannot be reprocessed. The cutter heads in this application are all made of alloy material, and the thickness of the dividing plate 6 is at least 6mm. When a 4mm blade needs to be adapted, the thickness of the dividing plate can be reduced by grinding or milling to adapt to the blade installation, thereby achieving the adaptation of the blade 100 to the thickness of the corresponding dividing plate 6. The blade is fixedly connected by installing positioning screws on the connecting hole one and connecting hole two.
[0018] In a further technical solution, the dividing plate, the mounting groove, and the recessed area are each provided in three sets, and each set of dividing plate and recessed area is located on both sides of the corresponding mounting groove; the three sets of dividing plates are installed circumferentially along the central axis of the central cylinder at equal intervals.
[0019] One set of boundary plates is arranged in an arc shape along the edge of the base plate at the end away from the central cylinder and extends to the next set of mounting surfaces, and is provided with a slope.
[0020] In a further technical solution, a transition surface is provided between the mounting surface and the recessed area, and the top of the transition surface protrudes upward, with a height higher than that of the first connecting hole.
[0021] In a further technical solution, the base disk includes a fixing ring located on the outer ring, and the fixing ring is provided with two sets of corrugated grooves, and the thickness of the corrugated grooves is lower than the thickness of the fixing ring.
[0022] In a further technical solution, a positioning ring is provided at the end of the central cylinder away from the position ring, and a positioning groove is provided at the central cylinder near the positioning ring, and the positioning groove is connected to the positioning hole.
[0023] Two sets of positioning slots are provided. Each set of positioning slots includes a longitudinal slot and an arc-shaped slot surface. The longitudinal slot is set from the stepped surface along the axial direction of the central cylinder; and the inner side is set with the arc-shaped slot surface, which is connected to the positioning hole.
[0024] The central cylinder is suitable for installation on the output shaft of the vegetable cutter, and a clamping sleeve is installed on the output shaft;
[0025] When the clamping cylinder is located in the positioning hole, a positioning pin is installed in the internal thread of the clamping cylinder, and the two ends of the positioning pin extend out of the two sets of positioning holes of the intermediate cylinder.
[0026] In a further technical solution, an annular groove is provided on the central cylinder, and a connecting bearing is installed in the annular groove. The inner ring of the connecting bearing is fixedly connected to the annular groove, and a connecting ring is detachably installed on the outer ring.
[0027] A fixing strip is connected to the outside of the connecting ring, and a connecting port is provided on the fixing strip. The connecting port is sleeved at the position where the locking post extends out of the locking cylinder. A rotating sealing cap is installed at the connecting port, and the rotating sealing cap is threaded onto the locking post.
[0028] A protective net is installed on the side of the fixing strip away from the connecting ring.
[0029] In a further technical solution, the protective net is conical in shape, and its diameter gradually decreases towards the central cylinder along the output shaft; a support rib is provided inside the protective net, and an installation ring is provided on the side of the support rib near the output shaft and is sleeved on the output shaft.
[0030] Compared with existing technologies, it has the following advantages:
[0031] This invention utilizes a recessed area to allow for adjustable cutting height, overcoming the limitations of traditional planar blade designs where the cutting space depends entirely on the blade. This necessitates high blade thickness and precision to ensure sufficient slice thickness. For blades with a dividing plate, the height also needs to be increased accordingly to effectively contact the blade.
[0032] In this embodiment, the cutting space in the vegetable cutter is compressed. In traditional cutting positions, the blade and cutting space are mostly stationary and empty, which causes fruits, vegetables, or meat slices to stick to the inner wall of the cutting space. Therefore, large-volume cutting easily leads to blockages, requiring frequent shutdowns for cleaning. This embodiment uses a protective net to compress the cutting space and rotate it to cause the cut material to slide down. The net is installed on a connecting bearing via a connecting ring. The inner ring of the connecting bearing is fixed to the central cylinder, while the outer ring is suitable for rotation. The rotation of the protective net is driven by two sets of fixing strips. The connection port is set on the locking post, and the thread is sealed by a rotating sealing cap to ensure the rotation effect and the stability of the connection structure. Attached Figure Description
[0033] Figure 1 This is a schematic diagram of the three-dimensional structure of the forming cutter head of this utility model. Figure 1 ;
[0034] Figure 2 This is a front view of the forming cutter head of this utility model. Figure 1 ;
[0035] Figure 3 This is a schematic diagram of the three-dimensional structure of the forming cutter head of this utility model. Figure 2 ;
[0036] Figure 4 This is a front view of the forming cutter head of this utility model. Figure 2 ;
[0037] Figure 5 for Figure 4 AA section view;
[0038] Figure 6 for Figure 5 Enlarged view of part B;
[0039] Figure 7 for Figure 5 A schematic diagram of the blades installed in a cross-sectional view;
[0040] Figure 8 for Figure 7 Enlarged view of part C;
[0041] Figure 9 A diagram showing the blade assembly on a vegetable cutter. Figure 1 ;
[0042] Figure 10 for Figure 9 DD sectional view;
[0043] Figure 11 This is a schematic diagram of the blade of this utility model installed on a vegetable cutter. Figure 2 ;
[0044] Figure 12This is a schematic diagram of the protective netting of this utility model and its structure connected to the connecting bearing.
[0045] In the picture:
[0046] 1. Base plate; 11. Inclined surface; 12. Fixing ring; 13. Corrugated groove;
[0047] 2. Center cylinder; 21. Positioning hole; 22. Positioning ring; 23. Positioning ring; 24. Longitudinal groove; 25. Arc-shaped groove surface;
[0048] 3. Mounting slot;
[0049] 4. Mounting surface; 41. Connection hole one; 42. Connection hole two;
[0050] 5. Concave area;
[0051] 6. Boundary plate; 7. Transition surface; 8. Connecting bearing;
[0052] 91. Connecting ring; 92. Fixing strip; 93. Connecting port; 94. Rotary sealing cap; 95. Protective net; 96. Supporting rib; 97. Mounting ring;
[0053] 100, Blade; 200, Output Shaft; 201, Clamp; 300, Positioning Post; Detailed Implementation
[0054] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0055] Example 1
[0056] like Figure 1-10 The image shows one embodiment of this utility model. Please refer to [link / reference]. Figure 1-8 Specifically:
[0057] A slicing and shaping vegetable cutter blade, comprising:
[0058] The base plate 1 is disc-shaped; a sector-shaped part is provided on the base plate, and the sector-shaped part is separated by a mounting groove and a dividing plate;
[0059] The center cylinder 2 is installed in the middle of the base plate 1, and the center cylinder 2 is hollow in the middle; the center cylinder 2 is provided with a positioning hole 21;
[0060] Mounting slot 3 is set inside the base plate 1; one side wall of the mounting slot is inclined downward.
[0061] Mounting surface 4 is located on the upper side of mounting groove 3; a connecting hole 41 is provided at the center cylinder 2 near one end of mounting groove 3; a connecting hole 42 is provided on the base plate 1; the blade 100 is mounted on the connecting hole 41 and the connecting hole 42.
[0062] The recessed area 5 is connected to the mounting groove 3, and the cutting edge of the blade 100 faces the recessed area 5 from the mounting surface 4. When the blade disc is placed horizontally and the opening of the connecting hole 41 is set upward, the height of the edge line of the recessed area 5 connecting to the mounting groove 3 is lower than the height of the mounting surface 4.
[0063] This utility model achieves adjustable cutting height by providing a recessed area, and the blade arrangement is as follows: Figure 8 As shown, with the cutting edge facing upwards, there is a space margin between the cutting position and the concave area, which determines the cut thickness. This addresses the issue of traditional flat blade designs where the cutting space depends entirely on the blade, requiring high blade thickness and precision to ensure the desired slice thickness. For blades with a dividing plate, the height also needs to be increased accordingly to effectively support the blade.
[0064] like Figure 2 As shown, a position ring 22 is provided at the position of the central cylinder 2 facing the connection hole 41, and a dividing plate 6 is provided on the position ring 22; one end of the dividing plate 6 is fixedly connected to the position ring 22, and the other end extends to the edge of the base plate 1; the dividing plate 6 is the edge of the mounting surface 4, and the top height is higher than the height of the connection hole 41.
[0065] Existing companies require slicing thicknesses in four series: 1mm, 2mm, 4mm, and 6mm. Conventional cutter heads are made of plastic, which presents problems with particle shedding and prevents secondary processing of the dividing plate. The cutter heads in this application are all made of alloy material, and the dividing plate 6 is at least 6mm thick. When a 4mm blade is required, the dividing plate can be ground or milled to reduce its thickness, thus achieving a proper fit between the blade 100 and the corresponding dividing plate 6.
[0066] like Figure 1 and Figure 2 As shown, there are three sets of dividing plates 6, mounting grooves 3, and recessed areas 5, and each set of dividing plates 6 and recessed areas 5 is located on both sides of the corresponding mounting groove 3; the three sets of dividing plates 6 are installed circumferentially along the central axis of the central cylinder 2 at equal intervals.
[0067] One set of dividing plates 6 is arranged in an arc shape along the edge of the base plate 1 away from the central cylinder 2, and extends to the next set of mounting surfaces 4, and is provided with a slope 11. Here, it refers to the dividing plate extending from the outside of the position ring to the outer circle edge of the cutter head. This arrangement ensures that when cutting materials, stable feeding can be guaranteed to limit the feeding to each area. After being cut by one set of blades, the material is fed into the next area and cut by the blades, which has the auxiliary effect of separating and protecting the material and stabilizing the cutting.
[0068] like Figure 2 , 6 As shown in Figure 8, a transition surface 7 is provided between the mounting surface 4 and the recessed area 5, and the top of the transition surface 7 protrudes upward, with a height higher than that of the connecting hole 41. The transition surface and the bevel ensure the support effect of the blade at the cutting edge, which is used to stabilize the blade and facilitate the continuous cutting effect of the blade.
[0069] like Figure 1 and 3 As shown, the base plate 1 includes a fixing ring 12 located on the outer ring, and the fixing ring 12 is provided with two sets of corrugated grooves 13, the thickness of the corrugated grooves 13 being less than the thickness of the fixing ring 12. The corrugated grooves facilitate hand-held installation and removal of the cutter head, thus promoting easy installation and disassembly.
[0070] A positioning ring 23 is provided at the end of the central cylinder 2 away from the position ring 22. A positioning groove is provided at the central cylinder 2 near the positioning ring 23, and the positioning groove is connected to the positioning hole 21. Two sets of positioning grooves are provided. Each set of positioning grooves includes a longitudinal groove 24 and an arc-shaped groove surface 25. The longitudinal groove 24 is provided axially from the stepped surface along the central cylinder 2. The inner side is provided with the arc-shaped groove surface 25, and the arc-shaped groove surface 25 is connected to the positioning hole 21. The central cylinder 2 is suitable for installation on the output shaft 200 of the vegetable cutter. A clamping sleeve 201 is installed on the output shaft 200. When the clamping sleeve 201 is located in the positioning hole 21, a locking post 300 is threadedly installed in the clamping sleeve 201, and the two ends of the locking post 300 extend out of the two sets of positioning holes 21 of the central cylinder.
[0071] Example 2
[0072] like Figure 11 and 12 As shown, another embodiment of the present invention is provided. Based on embodiment 1, the central cylinder 2 is provided with an annular groove, and a connecting bearing 8 is installed in the annular groove. The inner ring of the connecting bearing 8 is fixedly connected to the annular groove, and a connecting ring 91 is detachably installed on the outer ring.
[0073] A fixing strip 92 is connected to the outside of the connecting ring 91, and a connecting port 93 is provided on the fixing strip 92. The connecting port 93 is sleeved at the position where the locking post 300 extends out of the locking cylinder 201. A rotating sealing cap 94 is installed at the connecting port 93, and the rotating sealing cap 94 is threaded onto the locking post 300. A protective net 95 is installed on the side of the fixing strip 92 away from the connecting ring 91. The protective net 95 is conical and gradually narrows towards the central cylinder 2 along the diameter of the output shaft 200. A supporting rib 96 is provided inside the protective net 95, and an installation ring 97 is provided on the side of the supporting rib 96 near the output shaft 200 and is sleeved onto the output shaft 200. In this embodiment, the cutting space in the vegetable cutter is squeezed. In the traditional cutting position, the blade and the cutting space are mostly static and empty, which will cause fruits, vegetables or meat slices to stick to the inner wall of the cutting space. Therefore, large-volume cutting is prone to blockage and requires frequent shutdown for cleaning. In this embodiment, a protective net is installed to compress the cutting space and rotate to cause the cut material to slide down. The installation position is on the connecting bearing via a connecting ring. The inner ring of the connecting bearing is fixed to the central cylinder, while the outer ring is suitable for rotation. The rotation of the protective net is driven by two sets of fixing strips. The connection port is set on the locking post, and the thread is sealed by rotating the sealing cap to ensure the rotation driving effect and the stability of the connection structure.
Claims
1. A dicing cutter disk for a dicing cutter for slicing and forming, characterized by, The utility model relates to a cutting disc for cutting machine, including: Base disc (1), base disc (1) is discoid; Center tube (2) is installed in the middle part of base disc (1), and the inner middle part of center tube (2) is hollow; Positioning hole (21) is formed in center tube (2); Mounting groove (3) is arranged on the inner side of base disc (1); Mounting surface (4) is located on the upper side of mounting groove (3); Connection hole one (41) is formed in the center tube (2) near one end of mounting groove (3); Connection hole two (42) is formed in base disc (1); Blade (100) is installed on connection hole one (41) and connection hole two (42); Lower concave area (5) is communicated with mounting groove (3), and the cutting edge of blade (100) is from mounting surface (4) to lower concave area (5); When the cutter head is horizontally placed, and connection hole one (41) is arranged with the opening upward, the height of the line connecting lower concave area (5) and mounting groove (3) is lower than the height of mounting surface (4).
2. A slicing and forming cutter disc according to claim 1 wherein, The position ring (22) is arranged at the position of center tube (2) towards connection hole one (41), and the position ring (22) is provided with a boundary plate (6); One end of the boundary plate (6) is fixedly connected with the position ring (22), and the other end extends to the edge line of the base disc (1); The boundary plate (6) is the edge line of the mounting surface (4), and the top height is higher than the height of the connection hole one (41).
3. A slicing and forming cutterhead according to claim 2 wherein, The thickness of the boundary plate (6) is at least 6mm, and the thickness of the blade (100) is matched with the thickness of the corresponding boundary plate (6).
4. A slicing and forming cutter disc according to claim 3, wherein, The boundary plate (6), the mounting groove (3) and the lower concave area (5) are provided with three groups, and each group of boundary plate (6) and lower concave area (5) is located on the two sides of the corresponding mounting groove (3); Three groups of boundary plate (6) are installed along the center axis of center tube (2) in equal intervals; One end of one group of boundary plate (6) is arranged in an arc shape along the edge line of the base disc (1) and extends to the next group of mounting surface (4) away from the center tube (2), and is provided with an inclined surface (11).
5. A slicing and forming cutterhead according to claim 3 wherein, A transition surface (7) is arranged between the mounting surface (4) and the lower concave area (5), and the top of the transition surface (7) is convex upward, and the height is higher than the height of the connection hole one (41).
6. A slicing and forming cutterhead according to claim 3 wherein, The base disc (1) comprises a fixing ring (12) arranged at the outer ring, and two groups of corrugated grooves (13) are arranged on the fixing ring (12), and the thickness of the corrugated groove (13) is lower than the thickness of the fixing ring (12).
7. A slicing and forming cutterhead according to claim 3 wherein, A positioning ring (23) is arranged at the end of the center tube (2) away from the position ring (22), a positioning groove is formed in the center tube (2) near the positioning ring (23), and the positioning groove is communicated with the positioning hole (21); The positioning groove is provided with two groups, and each group of positioning groove comprises a longitudinal slot (24) and an arc-shaped groove surface (25), the longitudinal slot (24) is arranged axially along the center tube (2) from the step surface; And the inner side is arranged with the arc-shaped groove surface (25), and the arc-shaped groove surface (25) is communicated with the positioning hole (21); The center tube (2) is suitable for being installed on the output shaft (200) of the cutting machine, and the clamping tube (201) is installed on the output shaft (200). When the card barrel (201) is located in the positioning hole (21), the clamping column (300) is screwed in the card barrel (201), and the two ends of the clamping column (300) extend out of the two sets of positioning holes (21) of the middle barrel.
8. A slicing and forming cutterhead according to claim 7 wherein, The center barrel (2) is provided with an annular groove, a connecting bearing (8) is installed in the annular groove, the inner ring of the connecting bearing (8) is fixedly connected with the annular groove, and the outer ring is detachably installed with a connecting ring (91); The connecting ring (91) is externally connected with a fixing strip (92), the fixing strip (92) is provided with a connecting port (93), the connecting port (93) is sleeved at the position where the clamping column (300) extends out of the card barrel (201); a rotating sealing cap (94) is installed at the connecting port (93), and the rotating sealing cap (94) is screwed on the clamping column (300); A protective net (95) is installed on the side of the fixing strip (92) away from the connecting ring (91).
9. A slicing and forming cutterhead according to claim 8 wherein, The protective net (95) is conical and gradually narrows towards the center barrel (2) along the diameter of the output shaft (200); the protective net (95) is provided with a supporting rib plate (96) inside, the supporting rib plate (96) is provided with a mounting ring (97) on the side close to the output shaft (200), and is sleeved on the output shaft (200).
Citation Information
Patent Citations
Adjustable vegetable -chopper blade disc
CN208645544U