Vegetable cutting device
By introducing a drive structure and a detachable blade locking system into the vegetable cutting device, combined with a movable storage box or rack, the problems of complex structure and inconvenient blade replacement in existing vegetable cutters are solved, achieving convenient operation and efficient cutting.
Patent Information
- Application Number
- CN202520152814.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2035-01-22
AI Technical Summary
Existing vegetable cutters are complex in structure, difficult to operate, and have inconvenient blade replacement.
Design a vegetable cutting device comprising a housing, a chamber, and a drive structure. The blade is mounted on a blade cylinder, which is driven to rotate for cutting. The blade is detachable and locked by a locking mechanism. A storage box or rack is movably connected to the housing for easy replacement and storage of the blade.
The operation process is simplified, making it easier to replace and store the blades, improving cutting efficiency, extending the life of the blades, and enhancing the convenience and stability of the device.
Smart Images

Figure CN223863866U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of kitchenware technology and relates to a vegetable cutting device. Background Technology
[0002] A vegetable cutter is a common kitchen tool that replaces the traditional method of cutting vegetables by hand with a knife. With a vegetable cutter, people can easily process vegetables into suitable sizes or shapes such as shreds or small pieces, avoiding the risk of injury caused by cutting vegetables with a knife and improving the efficiency of cutting vegetables.
[0003] Patent application number 202321507177.1 discloses a drum vegetable cutter with quick-release function, including a base, an upper shell fixed to the top of the base, a vegetable inlet at the top of the upper shell and a vegetable outlet at its left end, a horizontally placed cylindrical blade holder inside the upper shell, a blade on the cylindrical blade holder, and a rotating shaft extending from the right end of the upper shell on the cylindrical blade holder, with a crank handle fixed on the rotating shaft.
[0004] The vegetable cutter described in the aforementioned literature can be disassembled and reassembled, but it still has shortcomings. The vegetable cutter has a complex structure and is not easy to operate. Summary of the Invention
[0005] This utility model addresses the aforementioned problems in existing technologies by providing a vegetable cutting device. The technical problem this utility model aims to solve is how to make the vegetable cutting device easy to operate.
[0006] The objective of this utility model can be achieved through the following technical solutions:
[0007] A vegetable cutting device includes a housing, a chamber, and a drive structure. The housing is connected to the chamber, and a blade cylinder is provided inside the chamber. The drive structure is connected to the blade cylinder. The device is characterized in that the drive structure can drive the blade cylinder to rotate relative to the chamber, the blade cylinder has at least one blade, and a storage box or storage rack for placing the blade is provided inside or on the housing. The storage box or storage rack is movably connected to the housing and can be in an open or closed state relative to the housing.
[0008] Its working principle is as follows: The blade cylinder is driven to rotate by a drive structure. The blade is used to cut fruits and vegetables inside the blade cylinder. There is at least one blade, which improves the cutting efficiency. The rotation of the blade cylinder drives the blade to rotate as well, thereby cutting the vegetables inside the blade cylinder. This cutting device has a simple structure and is easy for people to operate and use. It can cut fruits and vegetables inside the blade cylinder by only driving the drive structure. The storage box or storage rack can store the blade. The storage box or storage rack is located inside or on the shell, which makes it convenient for people to take out the blade that needs to be replaced directly from the cutting device when using it, which increases convenience. The storage box or storage rack is movably connected to the shell, which increases the stability of the connection between the storage box or storage rack and the shell. When the storage box or storage rack is in the open state, it is used to take out the stored blade or put in the required blade, which improves convenience. When it is in the closed state, the blade is stored in the storage box or storage rack, which improves the service life of the blade.
[0009] In the above-mentioned vegetable cutting device, the blade is detachably connected to the blade cylinder, and the blade cylinder is provided with a locking member that can lock the blade to the blade cylinder. The locking member is movably connected to the blade cylinder, and when the locking member moves relative to the blade cylinder, it can unlock the blade from the blade cylinder.
[0010] The blade is detachably connected to the blade barrel, allowing for timely replacement. A locking mechanism secures the blade to the barrel. This mechanism controls the removal of the blade; when the locking mechanism moves, it releases the blade from the barrel, separating it from the locking mechanism for easy removal and to prevent scratches, thus facilitating blade replacement.
[0011] In one of the above-mentioned vegetable cutting devices, the storage box or storage rack is rotatably connected to the housing and can be in an open or closed state relative to the housing; or the storage box or storage rack is inserted into the housing and can be in an open or closed state relative to the housing; or the storage box or storage rack is slidably connected to the housing and can be in an open or closed state relative to the housing; or the storage box or storage rack is fixedly connected or detachably connected to the housing.
[0012] The storage box or rack can be rotatably connected to the housing, allowing for flexible opening and closing and improving the convenience of blade storage. Alternatively, the storage box or rack can be inserted into the housing, ensuring flexible connection and easy assembly / disassembly, increasing the efficiency of opening and closing and allowing for timely removal for cleaning. A sliding connection between the storage box or rack and the housing further enhances the efficiency of movement relative to the housing, making blade storage even more convenient. Finally, a fixed or detachable connection to the housing allows for direct blade storage, placing the blades together with the cutting device and improving the convenience of storing blades when needed.
[0013] In the aforementioned vegetable cutting device, the storage box includes a side plate and a storage slot. The outer wall of the storage slot is integrally formed with the side plate, or the outer wall of the storage slot is fixedly or slidably connected to the side plate. The height of the inner wall of the storage slot is lower than or equal to the height of the side plate. The storage slot is used to store the blade.
[0014] The outer wall of the storage slot is integrally formed with the side plate, which makes the connection between the storage slot and the side plate stable. Alternatively, the outer wall of the storage slot is fixedly connected to the side plate, which improves the stability of the connection between the two. Or, the outer wall of the storage slot can slide on the side plate, which facilitates the storage of the blades on the storage slot and makes it easy to install, disassemble and clean the storage slot. The height of the inner wall of the storage slot is lower than or equal to the height of the side plate, which facilitates the removal of the blades and improves efficiency.
[0015] In the aforementioned vegetable cutting device, the storage rack includes a support bar and a storage plate. The sidewall of the storage plate is perpendicular to the support bar. One, two, or three storage plates are connected inside the support bar. Several storage plates are arranged parallel to each other inside the support bar. Two or three storage plates are stacked on the support bar. The storage plate extends upward to form a second storage groove. The sidewall of the second storage groove is lower than the height of the support bar. The second storage groove is used to store the blade.
[0016] The sidewalls of the storage plates are perpendicular to the support bars, ensuring a stable connection between them. One, two, or three storage plates are supported by the support bars, with each storage plate arranged parallel to the support bars. The storage plates extend upwards to form storage slots, which can hold blades. Each storage slot can hold a blade separately, allowing for differentiated placement of the blades. Two or three storage plates are stacked on the support bars, ensuring a stable connection between the storage plates and the support bars. The sidewalls of the storage slots are lower than the height of the support bars, facilitating the retrieval of the blades and improving efficiency.
[0017] In the aforementioned vegetable cutting device, a protruding end is connected to the outer wall of the storage box or storage rack. The protruding end is inclined outward, and the housing has an inward groove corresponding to the protruding end. There is a space between the groove and the protruding end that allows a finger to be inserted.
[0018] The cavity provides sufficient space for the storage box or rack to hold the blade. The two sides of the housing are connected to the storage box or rack respectively. The outer wall of the storage box or rack has a protruding end that is inclined outwards. This protruding end makes it easy to open the storage box or rack directly. The outward inclination makes it easy for people to open directly. The housing has an inner groove corresponding to the protruding end. There is a space between the inner groove and the protruding end that allows a hand to be inserted. This space allows a hand to be inserted and the storage box or rack to be opened or closed directly.
[0019] In the above-mentioned vegetable cutting device, a partition plate is provided on the storage slot. The partition plate is inclinedly arranged on both sides of the storage slot and is arranged opposite to each other. The height of the partition plate is lower than the height of one side wall of the storage slot.
[0020] The divider allows for the separate storage of different blades. The divider is angled on both sides of the storage slot, making it easy to place or retrieve the blades directly, and preventing the blades inside the storage box from touching each other. The height of the divider is lower than the height of the storage slot, making it easy to store the blades.
[0021] In the aforementioned vegetable cutting device, the housing has slots corresponding to storage boxes or storage racks. The slots are located on both sides of the housing and are connected to each other. The sidewalls of the slots have positioning shafts. The sidewalls of the storage boxes or storage racks have protrusions. The protrusions have sliding grooves, and the sidewalls of the sliding grooves can slide around the positioning shafts.
[0022] The slots provide sufficient space inside the housing to store the blades. The slots are located on both sides of the housing, making it easy to store the blades from either side during use. The slots on both sides of the housing are connected, increasing the internal storage space. The positioning shaft is located on the side wall of the slot and can be connected to a storage box or storage rack. The storage box or storage rack rotates on the housing and slides against the positioning shaft through the side wall of the slide groove, thus allowing the storage box or storage rack to rotate on the housing. This rotation method is stable, simple in structure, and facilitates timely opening of the storage box or storage rack to store the blades.
[0023] In the above-mentioned vegetable cutting device, the chute has a sliding section and a blocking section. The sliding section is located at the inner end of the chute, and the blocking section is located at the outer end of the chute. The positioning shaft abuts against the blocking section.
[0024] The sliding section is located at the inner end of the slide groove. The sliding section can slide around the positioning shaft, allowing the storage box or storage rack to rotate on the housing. The blocking section is located at the outer end of the slide groove and the outer end of the sliding section. The blocking section can abut against the positioning shaft to prevent the slide groove from sliding out and deviating from the positioning shaft. Through the above structure, the storage box or storage rack can be stably connected to the housing. When rotating, the storage box or storage rack is prevented from sliding out, increasing the stability of the connection between the two.
[0025] In the aforementioned vegetable cutting device, the side wall of the slot has a limiting strip, the storage box or storage rack has a stepped surface, the limiting strip abuts against the stepped surface, the storage box or storage rack has a hook portion, the hook portion is located on the stepped surface, there is a gap between the limiting strips, the width of the gap is greater than the width of the hook portion, the hook portion can pass through the gap and abut against the housing, the hook portion includes an inclined end and a vertical end, the vertical end abuts against the inner side wall of the housing, and the inclined end can slide on the inner wall of the slot and slide into the inside of the housing.
[0026] The limiting strip abuts against the stepped surface, ensuring the storage box or rack abuts against the housing. The limiting strip functions as a stop, preventing the storage box or rack from rotating inside the housing. The storage box or rack has a hook located on the stepped surface. A gap exists between the limiting strips, allowing the hook to pass through and abut against the housing. This prevents the storage box or rack from sliding out of the housing. The gap width is greater than the hook width, allowing the hook to pass smoothly and increasing the connection stability between the storage box / rack and the housing. The inclined end slides on the inner wall of the slot and into the housing. When closing the storage box or rack, the inclined end slides on the inner wall of the slot, allowing the storage box or rack to rotate smoothly. When the inclined end slides into the housing, the vertical end abuts against the inner wall of the housing, preventing the storage box or rack from sliding out of the housing and increasing the connection stability between the storage box / rack and the housing.
[0027] As another option, in the above-mentioned vegetable cutting device, the bottom of the storage box or storage rack is provided with a slider, and the housing is provided with a sliding groove, and the slider can slide on the sliding groove.
[0028] The slider can slide on the sliding groove, allowing the storage box or rack to slide against the housing. This structure makes the connection between the storage box or rack and the housing flexible and easy to assemble and disassemble, improving the efficiency of opening or closing the storage box or rack.
[0029] As another option, in the above-mentioned vegetable cutting device, the storage box or storage rack is fixedly connected to the outside of the shell, and the inner end of the storage box or storage rack is fitted to the outer wall of the shell or is integrally formed with the outer wall of the shell.
[0030] The storage box or rack is fixedly connected to the outside of the shell, making it easy to store or retrieve the blades directly. The inner end of the storage box or rack fits into the outer wall of the shell, increasing the stability of the connection between the two. The inner end of the storage box or rack and the outer wall of the shell are integrally formed, making the connection between the two firm, saving costs and making manufacturing convenient.
[0031] In the above-mentioned vegetable cutting device, the locking member is rotatably connected to the blade barrel, and the two ends of the locking member are respectively provided with a rotating shaft. The blade barrel is provided with a connecting part corresponding to the locking member, and the connecting part has a through groove, and the rotating shaft can rotate in the through groove.
[0032] The rotating shafts are located at both ends of the locking member, which makes the connection between the locking member and the tool barrel stable. The locking member rotates by rotating the rotating shaft. The connecting part has a through groove, and the rotating shaft can rotate in the through groove, so that the locking member can rotate on the tool barrel, thereby locking or unlocking the blade placed on the tool barrel, and taking the blade out of the tool barrel.
[0033] In the aforementioned vegetable cutting device, the blade barrel has recesses on both sides corresponding to the locking member, and the blade can be placed in the recesses. The locking member is arc-shaped, and its two ends abut against the connecting part. The locking member can rotate along the direction of the driving structure.
[0034] The locking element locks the blade inside the recess, fixing the blade to the blade barrel. Rotating the locking element releases the blade, allowing it to be removed. This structure facilitates blade replacement on the blade barrel. The locking element is arc-shaped, allowing it to abut against the blade and lock it to the blade barrel. Both ends of the locking element abut against the connecting part, increasing the stability of the connection between the locking element and the blade barrel. The locking element can rotate along the direction of the drive structure, thereby locking or unlocking the blade on the blade barrel.
[0035] As another option, in the above-mentioned vegetable cutting device, the locking member is inserted into the blade barrel, the blade barrel is provided with an insertion part, and the locking member is provided with insertion blocks at both ends, the insertion blocks being inserted into the insertion part.
[0036] The insert block is inserted into the insert part, thereby allowing the locking member to be inserted into the cutter barrel and locking the blade on the cutter barrel. After removing the locking member, the locking of the blade is released, allowing the blade to be removed from the cutter barrel. This structure facilitates the replacement of the blade on the cutter barrel.
[0037] In the aforementioned vegetable cutting device, the blade cylinder has a protruding edge, which is disposed opposite to the locking member. The blade cylinder also has an inclined edge located on both sides and connected to a recess. The driving structure includes a rocker arm or a motor, wherein the rocker arm can drive the blade cylinder to rotate relative to the housing, or the motor can drive the blade cylinder to rotate relative to the housing.
[0038] The protruding edge is located on the blade barrel, allowing the blade to abut against it. The protruding edge and the locking element are positioned opposite each other, providing abutment and limiting for the blade respectively. The blade barrel has inclined edges on both sides, allowing the left and right ends of the blade to abut against them, placing the blade inside the barrel. The inclined edges are connected to the recessed parts, ensuring the blade is stably placed inside the barrel. Both the protruding edge and the inclined edge provide abutment for the blade, ensuring it is securely placed inside the barrel. Rotating the rocker arm rotates the blade barrel, thus cutting items inside the chamber. Alternatively, the blade barrel can be rotated by a motor, improving efficiency and saving manpower.
[0039] Compared with the prior art, the advantages of this utility model are as follows:
[0040] 1. This vegetable cutting device rotates the blades by rotating the blade cylinder, thereby cutting the vegetables and other food inside the blade cylinder. The device has a simple structure and is easy for people to operate and use. It can cut fruits, vegetables and other food inside the blade cylinder by simply driving the drive structure.
[0041] 2. The storage box or rack of this vegetable cutting device is movably connected to the housing, which increases the stability of the connection between the storage box or rack and the housing. When the storage box or rack is in the open state, it is used to take out the stored blades or put in the required blades, which improves convenience. When it is in the closed state, the blades are stored in the storage box or rack, which improves the service life of the blades.
[0042] 3. The blades of this cutting device can be replaced in a timely manner. The locking component can lock the blades on the blade cylinder. The locking component is movably connected to the blade cylinder. The blade disassembly is controlled by the locking component. When the locking component moves, the blade is unlocked from the blade cylinder, so that the blade is separated from the locking component, making it easy to take out the blade and avoid scratching the blade, thereby allowing the blade to be replaced. Attached Figure Description
[0043] Figure 1 This is a schematic diagram of the structure of this vegetable cutting device.
[0044] Figure 2 This is a schematic diagram of the storage rack structure in this vegetable cutting device.
[0045] Figure 3 This is a schematic diagram of the shell structure in this vegetable cutting device.
[0046] Figure 4 This is a schematic diagram of the blade and blade barrel structure in this vegetable cutting device.
[0047] Figure 5 This is a magnified view of part A.
[0048] Figure 6 This is a schematic diagram of the blade cylinder structure in this vegetable cutting device.
[0049] Figure 7 This is a schematic diagram of the structure of Embodiment 4.
[0050] Figure 8 This is a schematic diagram of the structure of Embodiment 4.
[0051] Figure 9 This is a structural schematic diagram of Embodiment Six.
[0052] Figure 10 This is a schematic diagram of the structure of Embodiment 2.
[0053] Figure 11 This is a structural schematic diagram of Example 5.
[0054] In the diagram, 1. Shell; 2. Chamber; 3. Drive structure; 4. Cutter barrel; 5. Blade; 6. Storage box; 7. Storage rack; 8. Locking element; 9. Slot; 10. Positioning shaft; 11. Protrusion; 12. Slide groove; 13. Sliding section; 14. Blocking section; 15. Limiting strip; 16. Step surface; 17. Hook; 18. Gap; 19. Inclined end; 20. Vertical end; 21. Protrusion; 22. Divider plate; 23. Slider; 24. Sliding groove; 25. Rotating shaft; 26. Connecting part; 27. Through groove; 28. Recess; 29. Protruding edge; 30. Inclined edge; 31. Insertion part; 32. Insert block; 33. Side plate; 34. Storage slot one; 35. Support strip; 36. Storage plate; 37. Storage slot two; 38. Groove. Detailed Implementation
[0055] The following are specific embodiments of the present invention, which are described in conjunction with the accompanying drawings. However, the present invention is not limited to these embodiments.
[0056] Example 1
[0057] like Figure 1As shown, the housing 1 is connected to the chamber 2, and the chamber 2 contains a blade cylinder 4. A drive structure 3 is connected to the blade cylinder 4. The drive structure 3 drives the blade cylinder 4 to rotate relative to the chamber 2, and the blade cylinder 4 has at least one blade 5. By driving the blade cylinder 4 to rotate through the drive structure 3, the blade 5 is used to cut the fruits and vegetables inside the blade cylinder 4. Having at least one blade 5 improves cutting efficiency. The rotation of the blade cylinder 4 causes the blade 5 to rotate as well, thereby cutting the food inside the blade cylinder 4. This cutting device has a simple structure and is easy for people to operate and use. Cutting the fruits and vegetables inside the blade cylinder 4 can be achieved simply by driving the device through the drive structure 3.
[0058] like Figure 1 , 2 As shown in Figure 10, a storage box 6 or storage rack 7 for holding the blades 5 is provided inside or on the housing 1. The storage box 6 or storage rack 7 is movably connected to the housing 1 and can be in an open or closed state relative to the housing 1. The storage box 6 or storage rack 7 can store the blades 5. The storage box 6 or storage rack 7 being located inside or on the housing 1 makes it convenient for users to directly take out the blades 5 that need to be replaced from the cutting device, increasing convenience. The movable connection between the storage box 6 or storage rack 7 and the housing 1 increases the stability of the connection between the storage box 6 or storage rack 7 and the housing 1. When the storage box 6 or storage rack 7 is in the open state, it is used to take out the stored blades 5 or put in the required blades 5, improving convenience. When it is in the closed state, the blades 5 are stored in the storage box 6 or storage rack 7, increasing the service life of the blades 5.
[0059] like Figure 4 As shown, the blade 5 is detachably connected to the blade cylinder 4. The blade cylinder 4 is equipped with a locking member 8 that locks the blade 5 onto the blade cylinder 4. The locking member 8 is movably connected to the blade cylinder 4. When the locking member 8 moves relative to the blade cylinder 4, it can unlock the blade 5 from the blade cylinder 4. The blade 5 is detachably connected to the blade cylinder 4, allowing for timely replacement. The locking member 8 locks the blade 5 onto the blade cylinder 4 and is movably connected to the blade cylinder 4. The locking member 8 controls the removal of the blade 5. When the locking member 8 moves, the blade 5 is unlocked from the blade cylinder 4, separating the blade 5 from the locking member 8, facilitating the removal of the blade 5, preventing scratches on the blade 5, and thus enabling replacement of the blade 5.
[0060] like Figure 1 As shown, the storage box 6 or storage rack 7 is rotatably connected to the housing 1 and can be in an open or closed state relative to the housing 1. The rotatable connection between the storage box 6 or storage rack 7 and the housing 1 makes the connection between the storage box 6 or storage rack 7 and the housing 1 flexible, making it easy to open or close the storage box 6 or storage rack 7 and improving the convenience of storing the blade 5.
[0061] like Figure 2As shown, the storage box 6 includes a side panel 33 and a storage slot 34. The outer wall of the storage slot 34 is integrally formed with the side panel 33, or the outer wall of the storage slot 34 is fixedly or slidably connected to the side panel 33. The height of the inner wall of the storage slot 34 is lower than or equal to the height of the side panel 33. The storage slot 34 is used to store the blade 5. The integrally formed structure of the outer wall of the storage slot 34 with the side panel 33 makes the connection between the storage slot 34 and the side panel 33 stable. Alternatively, the outer wall of the storage slot 34 is fixedly connected to the side panel 33, improving the stability of the connection. Or, the outer wall of the storage slot 34 can slide on the side panel 33, facilitating the storage of the blade 5 in the storage slot 34, and making it easy to install, disassemble, and clean. The height of the inner wall of the storage slot 34 is lower than or equal to the height of the side panel 33, facilitating the retrieval of the blade 5 and improving efficiency.
[0062] like Figure 1 and 2 As shown, a protruding end 21 is connected to the outer wall of the storage box 6 or storage rack 7. The protruding end 21 is inclined outward. The housing 1 has an inward groove 38 corresponding to the protruding end 21. There is a space between the groove 38 and the protruding end 21 that allows a finger to be inserted. The cavity allows the storage box 6 or storage rack 7 to have enough space to place the blade 5. The two sides of the housing 1 are respectively connected to the storage box 6 or storage rack 7. The outer wall of the storage box 6 or storage rack 7 has a protruding end 21. The protruding end 21 is inclined outward. This protruding end 21 makes it easy to open the storage box 6 or storage rack 7 directly. The outward inclination makes it easy for people to open directly. The housing 1 has an inward groove 38 corresponding to the protruding end 21. There is a space between the inward groove 38 and the protruding end 21 that allows a hand to be inserted. This space allows a hand to be inserted and the storage box 6 or storage rack 7 to be opened or closed directly.
[0063] like Figure 2 As shown, the storage slot 34 is equipped with a divider 22, which is inclinedly arranged on both sides of the storage slot 34 and opposite to each other. The height of the divider 22 is lower than the height of the side wall of the storage slot 34. This divider 22 can store different blades 5 separately. The inclined arrangement of the divider 22 on both sides of the storage slot 34 makes it easy to place or remove the blades 5 directly, and prevents the blades 5 in the storage box 6 from touching each other. The height of the divider 22 is lower than the height of the storage slot 34, which facilitates the storage of the blades 5.
[0064] like Figure 3As shown, the housing 1 has a slot 9 corresponding to the storage box 6 or the storage rack 7. The slot 9 is located on both sides of the housing 1 and the slots 9 on both sides of the housing 1 are connected. The side wall of the slot 9 has a positioning shaft 10. The side wall of the storage box 6 or the storage rack 7 has a protrusion 11. The protrusion 11 has a sliding groove 12. The side wall of the sliding groove 12 can slide around the positioning shaft 10. The slot 9 provides sufficient space inside the housing 1 to store the blade 5. The slot 9 is located on both sides of the housing 1, making it easy to store the blade 5 from either side during use. The slots 9 on both sides of the housing 1 are connected, increasing the internal storage space of the housing 1. The positioning shaft 10 is located on the side wall of the slot 9 and can connect to the storage box 6 or the storage rack 7. The storage box 6 or the storage rack 7 rotates on the housing 1 and slides against the positioning shaft 10 through the side wall in the slide groove 12, thereby allowing the storage box 6 or the storage rack 7 to rotate on the housing 1. This rotation method is stable, simple in structure, and facilitates timely opening of the storage box 6 or the storage rack 7 to store the blade 5.
[0065] like Figure 5 As shown, the slide groove 12 has a sliding section 13 and a blocking section 14. The sliding section 13 is located at the inner end of the slide groove 12, and the blocking section 14 is located at the outer end of the slide groove 12. The positioning shaft 10 abuts against the blocking section 14. The sliding section 13, located at the inner end of the slide groove 12, can slide around the positioning shaft 10, allowing the storage box 6 or storage rack 7 to rotate on the housing 1. The blocking section 14, located at the outer end of the slide groove 12 and the outer end of the sliding section 13, abuts against the positioning shaft 10, preventing the slide groove 12 from sliding out and deviating from the positioning shaft 10. Through the above structure, the storage box 6 or storage rack 7 can be stably connected inside the housing 1, preventing the storage box 6 or storage rack 7 from sliding out during rotation, thus increasing the stability of the connection between the two.
[0066] like Figure 2 and 3As shown, the side wall of the slot 9 has a limiting strip 15, the storage box 6 or storage rack 7 has a stepped surface 16, the limiting strip 15 abuts against the stepped surface 16, the storage box 6 or storage rack 7 has a hook part 17, the hook part 17 is located on the stepped surface 16, there is a gap 18 between the limiting strips 15, the width of the gap 18 is greater than the width of the hook part 17, the hook part 17 can pass through the gap 18 and abut against the shell 1, the hook part 17 includes an inclined end 19 and a vertical end 20, the vertical end 20 abuts against the inner side wall of the shell 1, and the inclined end 19 can slide on the inner wall of the slot 9 and slide into the interior of the shell 1. The limiting strip 15 abuts against the stepped surface 16, causing the storage box 6 or storage rack 7 to abut against the housing 1. The limiting strip 15 has a limiting function to prevent the storage box 6 or storage rack 7 from rotating into the housing 1. The storage box 6 or storage rack 7 has a hook portion 17 located on the stepped surface 16. There is a gap 18 between the limiting strips 15, allowing the hook portion 17 to pass through the gap 18 and abut against the housing 1. The hook portion 17 abuts against the housing 1, preventing the storage box 6 or storage rack 7 from sliding out of the housing 1. The width of the gap 18 is greater than the width of the hook portion 17, so that... The hook part 17 can pass smoothly, increasing the stability of the connection between the storage box 6 or storage rack 7 and the housing 1. The inclined end 19 can slide on the inner wall of the slot 9 and slide into the housing 1. When the storage box 6 or storage rack 7 is closed, the inclined end 19 slides on the inner wall of the slot 9, allowing the storage box 6 or storage rack 7 to rotate smoothly. When the inclined end 19 slides into the housing 1, the vertical end 20 abuts against the inner side wall of the housing 1, preventing the storage box 6 or storage rack 7 from sliding out of the housing 1, thus increasing the stability of the connection between the storage box 6 or storage rack 7 and the housing 1.
[0067] like Figure 4 and 6 As shown, the locking member 8 is rotatably connected to the blade cylinder 4. The locking member 8 has a rotating shaft 25 at each end. The blade cylinder 4 has a connecting part 26 corresponding to the locking member 8, and the connecting part 26 has a through groove 27 within it, allowing the rotating shaft 25 to rotate within the through groove 27. The rotating shaft 25 is located at both ends of the locking member 8, ensuring a stable connection between the locking member 8 and the blade cylinder 4. The locking member 8 rotates by rotating the rotating shaft 25. The connecting part 26 has a through groove 27, allowing the rotating shaft 25 to rotate within the through groove 27, enabling the locking member 8 to rotate on the blade cylinder 4. This locks or unlocks the blade 5 placed on the blade cylinder 4, allowing the blade 5 to be removed from the blade cylinder 4.
[0068] like Figure 4 and 6As shown, the blade barrel 4 has recesses 28 on both sides corresponding to the locking member 8. The blade 5 can be placed in the recesses 28. The locking member 8 is arc-shaped, with its two ends abutting against the connecting part 26. The locking member 8 can rotate along the direction of the drive structure 3. The locking member 8 locks the blade 5 in the recesses 28, fixing the blade 5 to the blade barrel 4. Rotating the locking member 8 releases the lock on the blade 5, allowing the blade 5 to be removed from the recesses 28. This structure facilitates the replacement of the blade 5 on the blade barrel 4. The arc shape of the locking member 8 facilitates abutting against the blade 5, locking the blade 5 onto the blade barrel 4. The two ends of the locking member 8 abut against the connecting part 26, increasing the stability of the connection between the locking member 8 and the blade barrel 4. The locking member 8 can rotate along the direction of the drive structure 3, thereby locking or unlocking the blade 5 on the blade barrel 4.
[0069] like Figure 4 and 6 As shown, the cutter barrel 4 is provided with a protruding edge 29, which is opposite to the locking member 8. The cutter barrel 4 has an inclined edge 30, which is located on both sides and is connected to the recess 28. The drive structure 3 includes a rocker arm or a motor. The rocker arm can drive the cutter barrel 4 to rotate relative to the chamber 2, or the motor can drive the cutter barrel 4 to rotate relative to the chamber 2. The protruding edge 29 is located on the blade cylinder 4, allowing the blade 5 to abut against the protruding edge 29. The protruding edge 29 is opposite to the locking member 8, and the protruding edge 29 and the locking member 8 can respectively abut and limit the blade 5. The blade cylinder 4 has an inclined edge 30, which is located on both sides, allowing the left and right ends of the blade 5 to abut against the inclined edge 30, so that the blade 5 is placed inside the blade cylinder 4. The inclined edge 30 is connected to the recess 28, and the two together allow the blade 5 to be placed stably inside the blade cylinder 4. Both the protruding edge 29 and the inclined edge 30 can abut against the blade 5, so that the blade 5 is placed stably inside the blade cylinder 4. Rotating the rocker arm can make the blade cylinder 4 rotate, thereby cutting the items in the chamber 2, or the motor can drive the blade cylinder 4 to rotate, which improves efficiency and saves manpower.
[0070] Example 2
[0071] This embodiment is largely the same as embodiment 1, except that: Figure 10As shown, the storage rack 7 includes a support bar 35 and a storage plate 36. The side wall of the storage plate 36 is perpendicular to the support bar 35. One, two, or three storage plates 36 are connected inside the support bar 35. Several storage plates 36 are arranged parallel inside the support bar 35. Two or three storage plates 36 are stacked on the support bar 35. The storage plate 36 extends upward to form a second storage groove 37. The side wall of the second storage groove 37 is lower than the height of the support bar 35. The second storage groove 37 is used to store the blade 5. The sidewall of the storage plate 36 is perpendicular to the support bar 35, ensuring a stable connection between the two. One, two, or three storage plates 36 are supported by the support bar 35. Each storage plate 36 is arranged parallel to the support bar 35. The storage plate 36 extends upward to form a second storage groove 37, through which the blade 5 can be placed. Each storage groove can hold a blade 5 separately, allowing for differentiated placement of the blade 5. Two or three storage plates 36 are stacked on the support bar 35, ensuring a stable connection between the storage plate 36 and the support bar 35. The sidewall of the second storage groove 37 is lower than the height of the support bar 35, facilitating the retrieval of the blade 5 and improving efficiency.
[0072] Example 3
[0073] This embodiment is largely the same as Embodiment 1, except that the storage box 6 or storage rack 7 is inserted into the housing 1 and can be in an open or closed state relative to the housing 1. The insertion of the storage box 6 or storage rack 7 into the housing 1 makes the connection between the storage box 6 or storage rack 7 and the housing 1 flexible and easy to assemble and disassemble, improving the efficiency of opening or closing the storage box 6 or storage rack 7, and allowing the storage box 6 or storage rack 7 to be removed for cleaning in a timely manner.
[0074] Example 4
[0075] This embodiment is largely the same as embodiment 1, except that: Figure 7 and 8 As shown, the storage box 6 or storage rack 7 is slidably connected to the housing 1 and can be in an open or closed state relative to the housing 1. The slidable connection between the storage box 6 or storage rack 7 and the housing 1 improves the efficiency of the movement of the storage box 6 or storage rack 7 relative to the housing 1, making it more convenient to store the blade 5.
[0076] The bottom of the storage box 6 or storage rack 7 is provided with a slider 23, and the housing 1 is provided with a sliding groove 24, on which the slider 23 can slide. The slider 23 can slide on the sliding groove 24, allowing the storage box 6 or storage rack 7 to slide against the housing 1. This structure makes the connection between the storage box 6 or storage rack 7 and the housing 1 flexible and easy to assemble and disassemble, improving the efficiency of opening or closing the storage box 6 or storage rack 7.
[0077] Example 5
[0078] This embodiment is largely the same as embodiment 1, except that: Figure 11 As shown, the storage box 6 or storage rack 7 is fixedly or detachably connected to the housing 1. The storage box 6 or storage rack 7 is fixedly or detachably connected to the housing 1, which can directly store the blade 5 and place the blade 5 together with the cutting device, improving the convenience of storing the blade 5 when the cutting device needs to be stored.
[0079] The storage box 6 or storage rack 7 is fixedly connected to the outside of the housing 1. The inner end of the storage box 6 or storage rack 7 is fitted to the outer wall of the housing 1 or is integrally formed with the outer wall of the housing 1. The fixed connection of the storage box 6 or storage rack 7 to the outside of the housing 1 facilitates direct storage or retrieval of the blade 5. The fit between the inner end of the storage box 6 or storage rack 7 and the outer wall of the housing 1 increases the stability of the connection. The integral formation of the inner end of the storage box 6 or storage rack 7 and the outer wall of the housing 1 ensures a firm connection, saves costs, and facilitates manufacturing.
[0080] Example 6
[0081] This embodiment is largely the same as embodiment 1, except that: Figure 9 As shown, the locking member 8 is inserted into the blade cylinder 4. The blade cylinder 4 is provided with an insertion part 31, and the locking member 8 has insertion blocks 32 at both ends, which are inserted into the insertion part 31. The insertion blocks 32 are inserted into the insertion part 31, thereby locking the locking member 8 into the blade cylinder 4 and locking the blade 5 on the blade cylinder 4. After removing the locking member 8, the locking of the blade 5 is released, allowing the blade 5 to be removed from the blade cylinder 4. This structure facilitates the replacement of the blade 5 on the blade cylinder 4.
[0082] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to replace them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
Claims
1. A vegetable cutting device, comprising a housing (1), a chamber (2), and a drive structure (3), wherein the housing (1) is connected to the chamber (2), the chamber (2) contains a blade cylinder (4), and the drive structure (3) is connected to the blade cylinder (4), characterized in that, The drive structure (3) can drive the blade barrel (4) to rotate relative to the chamber (2). The blade barrel (4) has at least one blade (5). The housing (1) is provided with a storage box (6) or storage rack (7) that can hold the blade (5). The storage box (6) or storage rack (7) is movably connected to the housing (1) and can be in an open or closed state relative to the housing (1).
2. The vegetable cutting device according to claim 1, characterized in that, The blade (5) is detachably connected to the blade cylinder (4). The blade cylinder (4) is provided with a locking member (8) that can lock the blade (5) on the blade cylinder (4). The locking member (8) is movably connected to the blade cylinder (4). When the locking member (8) moves relative to the blade cylinder (4), it can unlock the blade (5) from the blade cylinder (4).
3. The vegetable cutting device according to claim 1, characterized in that, The storage box (6) or storage rack (7) is rotatably connected to the shell (1) and can be in an open or closed state relative to the shell (1); or the storage box (6) or storage rack (7) is inserted into the shell (1) and can be in an open or closed state relative to the shell (1); or the storage box (6) or storage rack (7) is slidably connected to the shell (1) and can be in an open or closed state relative to the shell (1); or the storage box (6) or storage rack (7) is fixedly connected or detachably connected to the shell (1).
4. The vegetable cutting device according to claim 1, characterized in that, The storage box (6) includes a side panel (33) and a storage slot (34). The outer wall of the storage slot (34) is integrally formed with the side panel (33), or the outer wall of the storage slot (34) is fixedly or slidably connected to the side panel (33). The height of the inner wall of the storage slot (34) is lower than or equal to the height of the side panel (33). The storage slot (34) is used to store blades (5). Alternatively, the storage rack (7) includes a support strip (35) and a storage plate (36). The side wall of the storage plate (36) is integrally formed with the support strip (35). 35) Vertically arranged, the support bar (35) is connected to one storage plate (36), two storage plates (36) or three storage plates (36), and several storage plates (36) are arranged in parallel in the support bar (35). Two or three storage plates (36) are stacked on the support bar (35). The storage plates (36) extend upward to form a second storage groove (37). The side wall of the second storage groove (37) is lower than the height of the support bar (35). The second storage groove (37) is used to store the blade (5).
5. A vegetable cutting device according to claim 1, characterized in that, The outer wall of the storage box (6) or storage rack (7) is connected to a protruding end (21), which is inclined outward. The housing (1) has an inward groove (38) corresponding to the protruding end (21), and there is a space between the groove (38) and the protruding end (21) that allows a finger to be inserted.
6. A vegetable cutting device according to claim 4, characterized in that, The housing (1) has slots (9) corresponding to the storage box (6) or storage rack (7). The slots (9) are located on both sides of the housing (1) and are connected. The sidewalls of the slots (9) have positioning shafts (10). The sidewalls of the storage box (6) or storage rack (7) have protrusions (11). The protrusions (11) have sliding grooves (12). The sidewalls of the sliding grooves (12) can... The storage box (6) or storage rack (7) is provided with a slider (23) at the bottom, and the housing (1) is provided with a sliding groove (24), and the slider (23) can slide on the sliding groove (24); or the storage box (6) or storage rack (7) is fixedly connected to the outside of the housing (1), and the inner end of the storage box (6) or storage rack (7) is in contact with the outer wall of the housing (1) or is integrally formed with the outer wall of the housing (1).
7. A vegetable cutting device according to claim 4, characterized in that, The storage slot (34) is provided with a partition plate (22). The partition plate (22) is inclinedly arranged on both sides of the storage slot (34). The partition plates (22) are arranged opposite to each other. The height of the partition plate (22) is lower than the height of the side wall of the storage slot (34).
8. A vegetable cutting device according to claim 6, characterized in that, The groove (12) has a sliding section (13) and a blocking section (14). The sliding section (13) is located at the inner end of the groove (12), and the blocking section (14) is located at the outer end of the groove (12). The positioning shaft (10) abuts against the blocking section (14). The side wall of the slot (9) has a limiting strip (15). The storage box (6) or storage rack (7) has a stepped surface (16). The limiting strip (15) abuts against the stepped surface (16). The frame (7) has a hook part (17) located on the step surface (16). There is a gap (18) between the limiting strips (15). The width of the gap (18) is greater than the width of the hook part (17). The hook part (17) can pass through the gap (18) and abut against the shell (1). The hook part (17) includes an inclined end (19) and a vertical end (20). The vertical end (20) abuts against the inner wall of the shell (1). The inclined end (19) can slide on the inner wall of the slot (9) and slide into the interior of the shell (1).
9. A vegetable cutting device according to claim 2, characterized in that, The locking member (8) is rotatably connected to the blade cylinder (4). The two ends of the locking member (8) are respectively provided with a rotating shaft (25). The blade cylinder (4) is provided with a connecting part (26) corresponding to the locking member (8). The connecting part (26) has a through groove (27). The rotating shaft (25) can rotate in the through groove (27). Alternatively, the locking member (8) is inserted into the blade cylinder (4). The blade cylinder (4) is provided with an insertion part (31). The two ends of the locking member (8) are provided with insertion blocks (32). The insertion blocks (32) are inserted into the insertion part (31).
10. A vegetable cutting device according to claim 3, characterized in that, The blade barrel (4) has recesses (28) on both sides corresponding to the locking member (8). The blade (5) can be placed on the recesses (28). The locking member (8) is arc-shaped. The two ends of the locking member (8) abut against the connecting part (26). The locking member (8) can rotate along the direction of the drive structure (3). The blade barrel (4) has a protruding edge (29). The protruding edge (29) is opposite to the locking member (8). The blade barrel (4) has an inclined edge (30). The inclined edge (30) is located on both sides and is connected to the recesses (28). The drive structure (3) includes a rocker arm or a motor. The rocker arm can drive the blade barrel (4) to rotate relative to the chamber (2) or the motor can drive the blade barrel (4) to rotate relative to the chamber (2).
Citation Information
Patent Citations
Roller shredder with quick release function
CN220241619U