Storage box of vegetable cutter
By designing a reasonable layout and optimizing the structure of the vegetable cutter storage box, the problem of difficult storage of disassembled parts has been solved, achieving efficient and orderly storage and a convenient assembly experience.
Patent Information
- Application Number
- CN202520120083.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing vegetable cutters have many parts with inconsistent shapes after disassembly, making them difficult to store neatly and easy to lose.
Design a storage box for a vegetable cutter, which includes a motor assembly area, a blade assembly area, a pusher bar area, and a main unit area. The four areas are combined into a rectangle, and the components are arranged in a reasonable manner to facilitate storage. The space utilization is optimized through structures such as inclined surfaces and grooves.
It achieves orderly storage of all parts of the vegetable cutter, reduces the risk of loss, improves assembly efficiency and user experience, and optimizes space utilization and overall aesthetics.
Smart Images

Figure CN223777299U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of household appliance technology, specifically to a storage box for a vegetable cutter. Background Technology
[0002] Existing food processing machines, such as reciprocating vegetable cutters, typically include a main unit with a blade assembly and a motor assembly containing a motor. The reciprocating motion of the blade assembly cuts the food. To achieve different shapes of food during processing, manufacturers usually offer multiple blade assemblies that are detachably connected to the main unit. Users can replace different blades as needed. However, storing multiple blades is inconvenient. To address this, invention patent CN201310697668.1 discloses a cooking preparation device with a support for storing detachable working attachments. This device has a detachable support below the working head of the vegetable cutter, which can hold multiple working attachments (blades), thus achieving the storage of multiple blades.
[0003] However, the above solution only allows for the storage of the blade plate, not the entire machine. Furthermore, with advancements in vegetable cutter technology, existing models feature a detachable connection between the motor assembly and the main unit for easier cleaning. The main unit also includes a feeding cylinder; users add ingredients using a pusher to accelerate cutting. A receiving box is also provided. After use, disassembling the cutting rack and individual components results in a very scattered and inconsistent storage arrangement, increasing the risk of loss. Additionally, the main unit's irregularly shaped, outward-extending feeding cylinder, combined with numerous accessories, makes organized storage extremely difficult. Utility Model Content
[0004] The purpose of this utility model is to provide a storage box for a vegetable cutter, which further solves the problems of multiple detachable parts, inconsistent shapes of the parts making it difficult to store them neatly, and the easy loss of scattered parts, given that the various parts of the vegetable cutter are relatively detachable.
[0005] To achieve the above objectives, this utility model provides a storage box for a vegetable cutter. The vegetable cutter includes a main unit, a blade assembly detachably connected to the main unit, a pusher for pushing materials, and a motor assembly detachably connected to the main unit and driving the blade assembly. The storage box includes a box body, and inside the box are provided a motor assembly placement area for placing the motor assembly, a blade assembly placement area for placing the blade assembly, a pusher placement area for placing the pusher, and a main unit placement area for placing the main unit. The four placement areas are arranged in a rectangle. The main unit includes a horizontally extending main body and a feeding cylinder protruding from the top of the main body. The main unit placement area includes a first area for placing the feeding cylinder and a second area for placing the main body. The pusher placement area and the first area are located on the same side relative to the second area, and the motor assembly placement area and the blade assembly placement area are located on the opposite side of the second area.
[0006] This application, by providing a motor assembly storage area, a blade assembly storage area, a pusher rod storage area, and a main unit storage area within the box, allows for comprehensive storage of the disassembled vegetable cutter. This avoids the inconvenience and potential loss of parts caused by the large number and variety of disassembled components. Users can organize the different parts of the vegetable cutter according to the different storage areas within the box. This not only achieves efficient storage of each component but also ensures neatness. When assembling the food processor, users can more easily and quickly find and assemble the corresponding parts, improving assembly efficiency. Furthermore, the four storage areas are arranged in a rectangle, making the storage box more regular in shape. Meanwhile, the main unit includes a horizontally extending main body and a feeding cylinder protruding from the top of the main body. The main unit placement area includes a first area for placing the feeding cylinder and a second area for placing the main body. The feeding rod placement area and the first area are located on the same side relative to the second area, so that the space formed on both sides of the first area can be fully utilized. This ensures the stable storage of the feeding rod and makes it easy for users to see when to take it out. This further optimizes the internal space layout of the storage box and improves the overall user experience. In addition, the motor component placement area and the cutter head component placement area are located on the other side of the second area, realizing the rational use of the space on both sides of the main unit placement area and enabling the reasonable storage of irregularly shaped main units, ensuring the utilization rate of the storage box space.
[0007] In a preferred embodiment of a storage box for a vegetable cutter, the pusher bar placement area and the motor assembly placement area are aligned on both sides of a second area.
[0008] By aligning the pusher bar placement area and the motor assembly placement area on both sides of the second area, the two individual accessories can be placed on opposite sides of the main body, making alignment faster and more convenient for users, which helps improve placement efficiency. At the same time, it enables the pusher bar and motor assembly to be placed and stored in an orderly manner, which helps to further improve the space utilization of the storage box.
[0009] In a preferred embodiment of a storage box for a vegetable cutter, the motor assembly is positioned perpendicular to the pusher bar.
[0010] By setting the motor assembly vertically relative to the pusher bar, or more preferably, placing the pusher bar horizontally relative to the main body and the motor assembly vertically relative to the main body, the pusher bar, after being placed in the space formed on both sides of the first area, will not protrude vertically from the first area or horizontally from the main body. This allows the pusher bar placement area to effectively utilize the space formed on both sides of the first area. Furthermore, the vertical placement of the motor assembly relative to the main body provides more vertical space in the cutter head assembly placement area adjacent to the motor assembly placement area. This enables effective storage of the cutter head assembly and avoids the situation where the cutter head assembly placement area on the adjacent side is too small after the motor assembly is placed horizontally, resulting in the cutter head assembly requiring more space and causing the overall storage box to be too large.
[0011] In a preferred embodiment of a storage box for a vegetable cutter, the box body includes a first side wall and a second side wall disposed opposite to each other, a pusher bar placement area is disposed on the side closer to the first side wall, and a motor assembly placement area and a blade assembly placement area are disposed on the side closer to the second side wall, and are spaced apart from the pusher bar placement area to form a main unit placement area among the three.
[0012] By placing the pusher bar placement area near the first sidewall and the motor assembly and cutter head assembly placement areas near the second sidewall, the space-consuming motor and cutter head assemblies can be placed on the same side, reducing space waste and further improving the space utilization of the storage box. Simultaneously, the pusher bar placement area's proximity to the first sidewall facilitates user access, optimizing the operation process and further enhancing the practicality and convenience of the storage box, ensuring users can efficiently and easily complete storage and assembly tasks. Furthermore, this design considers the weight distribution of each component, concentrating the heavier motor and cutter head assemblies on the second sidewall, effectively balancing the overall center of gravity of the storage box, preventing tipping, and further improving safety and stability. The space between the pusher bar placement area and the second sidewall creates a main unit placement area, ensuring orderly separation of components, avoiding mutual interference, improving the overall organization and systematic nature of the storage, and further enhancing the space utilization of the storage box.
[0013] In a preferred embodiment of a storage box for a vegetable cutter, the feeding cylinder is inclined, and the pusher has an inclined surface on the side near the feeding cylinder that is consistent with the inclined direction of the feeding cylinder.
[0014] By tilting the feeding cylinder and providing a sloping surface on the side of the pusher rod closest to the feeding cylinder that aligns with the cylinder's tilt direction, users can clearly determine the correct orientation of the pusher rod when placing it. This ensures the sloping surface faces the feeding cylinder, preventing incorrect placement and improving efficiency. Furthermore, after placing the feeding cylinder and pusher rod inside the storage box, the sloping surface allows the pusher rod to be positioned closer to the base of the feeding cylinder, maximizing space utilization within the storage box and helping to further reduce its size.
[0015] In a preferred embodiment of a storage box for a vegetable cutter, the vegetable cutter further includes dicing claws, and the storage box further includes a dicing claw placement area for placing the dicing claws, and the dicing claw placement area and the pusher bar placement area are respectively located on both sides of the first area.
[0016] By placing the dicing claw placement area and the pusher bar placement area on opposite sides of the first area, the dicing claw and pusher bar are ensured not to interfere with each other. This improves the organization of the storage while also creating a placement area for the main unit's feeding cylinder between the two areas. This makes full use of the space, optimizes the overall layout, and allows all components to be arranged in an orderly manner within the storage box, further improving space utilization and enhancing the ultimate storage efficiency of the storage box.
[0017] In a preferred embodiment of a storage box for a vegetable cutter, the vegetable cutter further includes a receiving box, and the box body is provided with a receiving box placement area for placing the receiving box. The receiving box placement area and the blade assembly placement area are adjacent to the same side of the motor assembly.
[0018] By placing the receiving box area and the cutter head assembly area adjacent to the same side of the motor assembly, components with similar space requirements can be located in the same area, thereby further improving space utilization. This not only saves space but also makes it easier for users to quickly find the required components during operation, further enhancing the user experience.
[0019] In a preferred embodiment of a storage box for a vegetable cutter, the main body includes a first body for mounting a blade assembly and a second body for driving a motor. The blade assembly placement area is arranged adjacent to the first body, and the motor assembly placement area is arranged adjacent to the second body.
[0020] By setting the cutter head assembly placement area adjacent to the first body and the motor assembly placement area adjacent to the second body, the cutter head can be placed adjacent to the first body for mounting, and the motor assembly can be placed adjacent to the second body for mounting. This makes the placement area consistent with the overall shape of the assembled machine, allowing users to store or retrieve items from each area during disassembly and assembly, making disassembly and assembly more convenient and faster, and improving the user experience.
[0021] In a preferred embodiment of a storage box for a vegetable cutter, the blade assembly includes a blade and an adjustment plate. The blade assembly placement area includes a blade area and an adjustment plate area. Multiple blades and adjustment plates are provided. Multiple partitions are provided in both the blade area and the adjustment plate area to separate each blade and adjustment plate.
[0022] By providing multiple blades and adjustment plates, users can flexibly choose according to different ingredients and cutting needs. At the same time, the independent separation design of the blade area and the adjustment plate area avoids mutual interference, making storage more organized and easier for users to access, further improving the convenience of operation and ensuring that the required parts can be found quickly every time, thereby improving the overall efficiency.
[0023] In a preferred embodiment of a storage box for a vegetable cutter, both the bottom wall of the motor assembly placement area and the bottom wall of the pusher rod placement area are provided with upwardly extending supports, and the supports are respectively provided with grooves with upper openings that conform to the shapes of the motor assembly and the pusher rod; or,
[0024] The storage box also includes a dust cover placed on the box body; or,
[0025] All components of the vegetable cutter were submerged in their respective placement areas.
[0026] By providing upward-extending supports on the bottom walls of both the motor assembly placement area and the pusher bar placement area, and by providing grooves with upward openings that conform to the shapes of the motor assembly and pusher bar respectively, the motor assembly and pusher bar assembly can be stably placed by engaging with the grooves, preventing slippage and ensuring the safety and reliability of each component during storage and transportation. At the same time, it also prevents mistakes, allowing users to quickly identify and correctly place the components based on the shape of the grooves, avoiding misplacement and improving the accuracy and convenience of storage.
[0027] By including a dust cover on the box, the storage box allows users to close the dust cover after placing the various parts of the vegetable cutter inside, effectively preventing dust from entering, keeping the parts clean, and extending their service life.
[0028] By recessing all the components of the vegetable cutter into their respective storage areas, the components are concealed and stored, effectively preventing them from protruding from the storage box and failing to provide adequate protection. This also enhances the overall aesthetics of the storage box, ensuring it remains neat and organized during storage and use, thus improving the user's storage experience. Attached Figure Description
[0029] The accompanying drawings, which are included to provide a further understanding of the present invention and constitute a part of this invention, illustrate exemplary embodiments of the present invention and, together with the description thereof, serve to explain the present invention and do not constitute an undue limitation thereof. In the drawings:
[0030] Figure 1 This is an exploded view of a vegetable cutter according to one embodiment of the present invention;
[0031] Figure 2 This is a schematic diagram of the structure of the storage box in one embodiment of the present invention;
[0032] Figure 3 This is a schematic diagram of the structure of the vegetable cutter placed in the storage box in one embodiment of the present invention;
[0033] Figure 4 This is a schematic diagram of the structure of the storage box after the lid is closed in one embodiment of the present invention.
[0034] List of components and reference numerals:
[0035] 1-Motor assembly; 2-Main unit; 21-Feeding cylinder; 3-Pushing rod; 4-Dicing claw; 5-Cutter disc assembly; 51-Cutter disc; 52-Adjusting plate; 6-Receiving box; 7-Box body; 71-Motor assembly placement area; 72-Main unit placement area; 721-Feeding cylinder placement area; 73-Cutter disc assembly placement area; 731-Cutter disc area; 732-Adjusting plate area; 74-Dicing claw placement area; 75-Receiving box placement area; 76-Pushing rod placement area; 77-Bracket; 771-Groove; 8-Dust cover. Detailed Implementation
[0036] To more clearly illustrate the overall concept of this utility model, a detailed description will be provided below with reference to the accompanying drawings.
[0037] It should be noted that many specific details are set forth in the following description in order to provide a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Therefore, the scope of protection of the present invention is not limited to the specific embodiments disclosed below.
[0038] like Figures 1 to 4As shown, this utility model provides a storage box for a vegetable cutter. The vegetable cutter includes a main unit, a blade assembly 5 detachably connected to the main unit, a pusher 3 for pushing materials, and a motor assembly detachably connected to the main unit and driving the blade assembly 5. The storage box includes a box body 7. The box body 7 is provided with a motor assembly placement area 71 for placing the motor assembly 1, a blade assembly placement area 73 for placing the blade assembly 5, a pusher 3 placement area 76 for placing the pusher 3, and a main unit placement area 72 for placing the main unit 2. The four placement areas are arranged in a rectangle. The main unit 2 includes a horizontally extending main unit 2 body and a feeding cylinder 21 protruding from the top of the main unit 2 body. The main unit placement area 72 includes a first area for placing the feeding cylinder 21 and a second area for placing the main unit 2 body. The pusher 3 placement area 76 and the first area are located on the same side relative to the second area. The motor assembly placement area 71 and the blade assembly placement area 73 are located on the opposite side of the second area.
[0039] This application, by providing a motor assembly placement area 71 for the motor assembly 1, a blade assembly placement area 73 for the blade assembly 5, a pusher rod placement area 76 for the pusher rod 3, and a main unit placement area 72 within the box body 7, allows for comprehensive storage of the vegetable cutter after its components have been disassembled. This avoids the inconvenience and potential loss of parts caused by the large number and variety of disassembled parts. Users can partition and store different parts of the vegetable cutter according to the different placement areas within the box body 7. This not only achieves efficient storage of each component but also ensures neat organization. When assembling the food processor, users can more easily and quickly find and assemble the corresponding parts, improving assembly efficiency. Furthermore, the four placement areas are arranged in a rectangle, making the shape of the storage box more regular. Meanwhile, the main unit 2 includes a horizontally extending main unit 2 body and a feeding cylinder protruding from the top of the main unit 2 body. The main unit placement area 72 includes a first area for placing the feeding cylinder and a second area for placing the main unit 2 body. The pusher bar placement area 76 and the first area are located on the same side of the second area, so that the space formed on both sides of the first area can be fully utilized. This ensures the stable storage of the pusher bar 3 and makes it easy for users to see when taking it out. This further optimizes the internal space layout of the storage box and improves the overall user experience. In addition, the motor component placement area 71 and the cutter head component placement area 73 are located opposite each other on the other side of the second area, realizing the rational use of the space on both sides of the main unit placement area 72 and enabling the reasonable storage of irregularly shaped main units 2, ensuring the utilization rate of the storage box space.
[0040] As a preferred embodiment of this application, such as Figure 2 , Figure 3As shown, the pusher bar placement area 76 and the motor assembly placement area 71 are positioned on opposite sides of the second area.
[0041] By aligning the pusher bar placement area 76 and the motor assembly placement area 71 on both sides of the second area, the two individual accessories can be placed on opposite sides of the main body 2. This makes alignment faster and more convenient for users, improving placement efficiency. At the same time, it allows for the orderly placement and storage of the pusher bar and motor assembly, further enhancing the space utilization of the storage box.
[0042] Furthermore, such as Figure 2 , Figure 3 As shown, the motor assembly 1 is set vertically relative to the pusher bar 3.
[0043] By vertically setting the motor assembly 1 relative to the pusher bar 3, or more preferably, horizontally setting the pusher bar 3 relative to the main body 2 and vertically setting the motor assembly 1 relative to the main body 2, the pusher bar 3, after being placed in the space formed on both sides of the first area, does not protrude vertically from the first area and horizontally from the main body 2. This allows the pusher bar placement area 76 to effectively utilize the space formed on both sides of the first area. Furthermore, the vertical setting of the motor assembly 1 relative to the main body 2 provides more vertical space in the cutter head assembly placement area 73 adjacent to the motor assembly placement area 71. This enables effective storage of the cutter head assembly 5 and avoids the situation where the cutter head assembly requires more space and the overall storage compartment size is too large due to the smaller size of the adjacent cutter head assembly placement area 73 after the motor assembly 1 is placed horizontally.
[0044] As a preferred embodiment of this application, such as Figure 2 As shown, the box body 7 includes a first sidewall and a second sidewall that are arranged opposite to each other. The pusher bar placement area 76 is located on the side closer to the first sidewall, and the motor assembly placement area 71 and the cutter head assembly placement area 73 are located on the side closer to the second sidewall and are spaced apart from the pusher bar placement area 76 to form a main unit placement area 72 between the three.
[0045] By placing the pusher bar placement area 76 near the first sidewall and the motor assembly placement area 71 and cutter head assembly placement area 73 near the second sidewall, the space-consuming motor assembly 1 and cutter head assembly 5 can be placed on the same side, reducing space waste and further improving the space utilization of the storage box. Simultaneously, the proximity of the pusher bar placement area 76 to the first sidewall facilitates user access, optimizes the operation process, and further enhances the practicality and convenience of the storage box, ensuring users can efficiently and conveniently complete storage and assembly tasks. Furthermore, this design considers the weight distribution of each component, concentrating the heavier motor assembly 1 and cutter head assembly 5 on the second sidewall, effectively balancing the overall center of gravity of the storage box, preventing tipping, and further improving safety and stability. The pusher bar placement area 76 is spaced apart from the second sidewall to form the main unit placement area 72, ensuring orderly separation of components, avoiding mutual interference, improving the overall organization and systematic nature of the storage, and further enhancing the space utilization of the storage box.
[0046] As a preferred embodiment of this application, such as Figure 2 , Figure 3 As shown, the feeding cylinder 21 is inclined, and the pusher 3 has an inclined surface on the side near the feeding cylinder that is consistent with the inclination direction of the feeding cylinder 21.
[0047] By tilting the feeding cylinder 21 and providing an inclined surface on the side of the pusher 3 near the feeding cylinder 21 that aligns with the tilt direction of the feeding cylinder 21, users can clearly determine the orientation of the pusher 3 when placing it. The inclined surface should face the feeding cylinder 21, preventing incorrect placement and improving user efficiency. Furthermore, after the feeding cylinder 21 and pusher 3 are placed inside the storage box, the inclined surface allows the pusher 3 to be positioned closer to the base of the feeding cylinder 21, further utilizing the space within the storage box and helping to further reduce its size.
[0048] As a preferred embodiment of this application, such as Figure 2 As shown, the vegetable cutter also includes dicing claws 4. Specifically, after using the vegetable cutter and removing the blade from the main unit 2, the user can clean the blade using dicing claws 4 to effectively remove any remaining food residue, making it convenient for the user. The storage box also includes a dicing claw placement area 74 for placing the dicing claws 4, and the dicing claw placement area 74 and the pusher bar placement area 76 are respectively located on both sides of the first area.
[0049] By placing the dicing claw placement area 74 and the pusher bar placement area 76 on both sides of the first area, it is ensured that the dicing claw 4 and the pusher bar 3 do not interfere with each other. This not only improves the organization of the storage, but also creates a placement area for the main unit's feeding cylinder 21 between the two. This makes full use of the space, optimizes the overall layout, and allows each component to be arranged in an orderly manner in the storage box, further improving the space utilization rate and enhancing the ultimate storage of the storage box.
[0050] As a preferred embodiment of this application, such as Figure 2 As shown, the vegetable cutter also includes a receiving box 6, and a receiving box placement area 75 for placing the receiving box 6 is provided inside the box body 7. The receiving box placement area 75 and the blade assembly placement area 73 are adjacent to the same side of the motor assembly.
[0051] By arranging the receiving box placement area 75 and the cutter head assembly placement area 73 adjacent to the same side of the motor assembly 1, components with similar space requirements can be located in the same area, thereby further improving space utilization. This not only saves space but also makes it easier for users to quickly find the required components during operation, further enhancing the user experience.
[0052] In a preferred embodiment of this application, the host 2 body includes a first body for mounting the cutter head assembly 5 and a second body for driving the motor. The cutter head assembly placement area 73 is disposed adjacent to the first body, and the motor assembly placement area 71 is disposed adjacent to the second body.
[0053] By setting the cutter head assembly placement area 73 adjacent to the first body and the motor assembly placement area 71 adjacent to the second body, the cutter head assembly 5 can be placed adjacent to the first body for installation, and the motor assembly 1 can be placed adjacent to the second body for installation. This makes the placement area consistent with the shape of the assembled machine, allowing users to store or retrieve items from each area during disassembly and assembly, making disassembly and assembly more convenient and faster, and improving the user experience.
[0054] In a preferred embodiment of this application, the cutter head assembly 5 includes a cutter head 51 and an adjusting plate 52, and the cutter head assembly placement area 73 includes a cutter head area 731 and an adjusting plate area 732. Further, as... Figure 2 As shown, both the cutter head 51 and the adjusting plate 52 are provided with multiple partition plates 761, and both the cutter head area 731 and the adjusting plate area 732 are provided with multiple partition plates 761 to separate each cutter head 51 and adjusting plate 52. Specifically, as shown... Figure 2 As shown, the horizontal dimension of the cutter head 51 is twice the horizontal dimension of the adjusting plate 52, and the horizontal dimension of the receiving box 6 is close to that of the cutter head 51. After being placed in the storage box, the two adjusting plates 52 can be arranged side by side horizontally, thereby further reducing the vertical dimension of the storage box.
[0055] By providing multiple blades 51 and adjustment plates 52, users can flexibly choose according to different ingredients and cutting needs. At the same time, the independent separation design of the blade area 731 and the adjustment plate area 732 avoids mutual interference, making storage more organized and easier for users to access, further improving the convenience of operation and ensuring that the required parts can be found quickly every time, thereby improving the overall efficiency.
[0056] As a preferred embodiment of this application, such as Figure 2 As shown, the bottom wall of the motor assembly placement area 71 and the bottom wall of the pusher bar placement area 76 are both provided with upwardly extending brackets 77, and the brackets 77 are respectively provided with upper opening grooves 771 that are conformally set to the motor assembly 1 and the pusher bar 3.
[0057] By providing upward-extending brackets 77 on the bottom walls of both the motor assembly placement area 71 and the pusher bar placement area 76, and by providing grooves 771 with upper openings that are conformally designed to the shape of the motor assembly 1 and the pusher bar 3, the motor assembly 1 and the pusher bar 3 can be stably placed by cooperating with the grooves 771, preventing slippage and ensuring the safety and reliability of each component during storage and transportation. At the same time, it can also prevent mistakes, allowing users to quickly identify and correctly place the components according to the shape of the grooves 771, avoiding misplacement and improving the accuracy and convenience of storage.
[0058] As a preferred embodiment of this application, such as Figure 2 , Figure 4 As shown, the storage box also includes a dust cover 8 that is placed on the box body 7.
[0059] By including a dust cover 8 on the box body 7 in the storage box, users can close the dust cover 8 after placing the various parts of the vegetable cutter in the storage box, effectively preventing dust from entering, keeping the parts clean, and extending their service life.
[0060] As a preferred embodiment of this application, such as Figure 3 As shown, all components of the vegetable cutter are submerged in their respective placement areas.
[0061] By recessing all the components of the vegetable cutter into their respective storage areas, the components are concealed and stored, effectively preventing them from protruding from the storage box and failing to provide adequate protection. This also enhances the overall aesthetics of the storage box, ensuring it remains neat and organized during storage and use, thus improving the user's storage experience.
[0062] The technical solutions protected by this utility model are not limited to the above embodiments. It should be noted that any combination of the technical solutions of any embodiment with one or more other embodiments is within the protection scope of this utility model. Although this utility model has been described in detail above with general descriptions and specific embodiments, some modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, all such modifications or improvements made without departing from the spirit of this utility model are within the scope of protection claimed by this utility model.
Claims
1. A storage box for a vegetable cutter, characterized in that, The vegetable cutter includes a main unit, a blade assembly detachably connected to the main unit, a pusher for pushing materials, and a motor assembly detachably connected to the main unit and driving the blade assembly. The storage box includes a box body, which contains a motor assembly placement area for the motor assembly, a blade assembly placement area for the blade assembly, a pusher placement area for the pusher, and a main unit placement area for the main unit. The four placement areas are arranged in a rectangle. The main unit includes a horizontally extending main body and a feeding cylinder protruding from the top of the main body. The main unit placement area includes a first area for placing the feeding cylinder and a second area for placing the main body. The pusher placement area and the first area are located on the same side relative to the second area. The motor assembly placement area and the blade assembly placement area are located on the opposite side of the second area.
2. The storage box for a vegetable cutter according to claim 1, characterized in that, The pusher bar placement area and the motor assembly placement area are positioned on opposite sides of the second area.
3. A storage box for a vegetable cutter according to claim 2, characterized in that, The motor assembly is positioned perpendicular to the pusher bar.
4. A storage box for a vegetable cutter according to claim 1, characterized in that, The housing includes a first sidewall and a second sidewall disposed opposite to each other. The pusher bar placement area is located on the side closer to the first sidewall, and the motor assembly placement area and the cutter head assembly placement area are located on the side closer to the second sidewall and are spaced apart from the pusher bar placement area to form a main unit placement area among the three.
5. A storage box for a vegetable cutter according to claim 1, characterized in that, The feeding cylinder is inclined, and the pusher bar has an inclined surface on the side near the feeding cylinder that is consistent with the inclination direction of the feeding cylinder.
6. A storage box for a vegetable cutter according to claim 1, characterized in that, The vegetable cutter also includes a dicing press claw, and the storage box also includes a dicing press claw placement area for placing the dicing press claw, and the dicing press claw placement area and the pusher bar placement area are respectively located on both sides of the first area.
7. A storage box for a vegetable cutter according to claim 1, characterized in that, The vegetable cutter also includes a receiving box, and the receiving box is provided in a receiving box placement area. The receiving box placement area and the blade assembly placement area are adjacent to the same side of the motor assembly.
8. A storage box for a vegetable cutter according to claim 1, characterized in that, The main body includes a first body for mounting the cutter head assembly and a second body for driving the motor. The cutter head assembly placement area is adjacent to the first body, and the motor assembly placement area is adjacent to the second body.
9. A storage box for a vegetable cutter according to claim 1, characterized in that, The cutter head assembly includes a cutter head and an adjusting plate. The cutter head assembly placement area includes a cutter head area and an adjusting plate area. Multiple cutter heads and multiple adjusting plates are provided. Multiple partition plates are provided in both the cutter head area and the adjusting plate area to separate each cutter head and each adjusting plate.
10. A storage box for a vegetable cutter according to claim 1, characterized in that, The bottom wall of both the motor assembly placement area and the pusher bar placement area is provided with upwardly extending supports, and each support has an upper opening groove that conforms to the shape of the motor assembly and the pusher bar; or, The storage box also includes a dust cover affixed to the box body; or... Each component of the vegetable cutter is submerged within its respective placement area.
Citation Information
Patent Citations
Food-preparation appliance having a mounting for storing removable work accessories
CN103876651A