A food cutting device
By designing a combination of a sliding first blade assembly and a grinding frame, the food cutting device achieves flexible switching between slicing, dicing, and grinding functions, solving the problem that existing devices cannot simultaneously perform grinding and slicing, thus expanding the applicability of the cutting process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- 河北领创机械制造有限公司
- Filing Date
- 2024-02-29
- Publication Date
- 2026-04-24
AI Technical Summary
Existing food cutting devices cannot simultaneously perform grinding and slicing/dicing functions, limiting their practical application and making them unsuitable for various cutting needs.
A food cutting device was designed, comprising a first blade group and a second blade group. The first blade group consists of several sets of first cutting blades, each set of cutting blades being able to slide in the axial direction. Combined with an adjustment device and a grinding frame, different cutting methods can be achieved. Through the cooperation of the first blade group and the second blade group, the functions of cutting into strips and blocks can be achieved, and the grinding function can be switched through the grinding frame and grinding space.
It enables flexible switching between the strip cutting, dicing, and mincing functions of the food cutting device, expanding the scope of application and meeting different types of cutting needs.
Smart Images

Figure CN117962017B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of food processing technology, and more specifically, to a food cutting device. Background Technology
[0002] Food refers to all kinds of finished products and raw materials for human consumption or drinking, as well as items that are traditionally both food and Chinese medicine, but does not include items intended for treatment. The food we encounter daily can be roughly divided into two types: meat products and vegetable products. Food cutting devices are devices used to process and cut food. They are mainly divided into meat cutting machines and vegetable cutting machines. Food cutting devices have gradually been accepted by a wide range of people due to their advantages of high cutting efficiency and stable cutting quality, especially meat cutting machines.
[0003] In the food processing process, food is usually divided into two states, block and granule, depending on the needs. Existing food cutting devices can only cut food into strips, blocks, or mince, which has a limited scope of application and cannot be used for different types of cutting. Summary of the Invention
[0004] This invention proposes a food cutting device that solves the problem in related technologies that the same cutting machine cannot achieve both grinding and cutting into strips or blocks.
[0005] The technical solution of the present invention is as follows:
[0006] A food cutting device, comprising:
[0007] support;
[0008] The first set of blades is rotatably mounted on the bracket;
[0009] The second blade assembly is mounted on the support and raised.
[0010] The first tool set also includes:
[0011] A shaft is rotatably mounted on the bracket, with both ends of the shaft passing through the bracket;
[0012] The first cutting blade has several groups of first cutting blades arranged circumferentially along the axis of the shaft. Each group of first cutting blades has several pieces, and the several pieces of first cutting blades in each group are slidably arranged at intervals along the axis of the shaft.
[0013] An adjustment device is disposed at one end of the first cutting blade, and the adjustment device is used to control the sliding of the first cutting blade.
[0014] As a further technical solution, it also includes:
[0015] A shredder is raised and lowered on the support. The shredder is located above the first blade assembly. After the shredder is lowered, it forms a shredding space with the support, and the first blade assembly is located within the shredding space.
[0016] As a further technical solution, the first tool set also includes:
[0017] Rack 1 is mounted on the shaft.
[0018] A plurality of rotating rods are provided, with one of the rotating rods disposed on one of the first cutting blades;
[0019] Gear 1, having several components, is disposed on the rotating rod, and gear 1 meshes with rack 1.
[0020] As a further technical solution, the adjusting device includes:
[0021] A plurality of sliding plates are slidably disposed on the shaft body. The plurality of sliding plates are arranged circumferentially along the axis of the shaft body. Each group of first cutting blades is slidably disposed on the shaft body via one of the sliding plates.
[0022] The housing is mounted on the bracket;
[0023] A first bearing is disposed within the housing, and the first blade assembly passes through the first bearing;
[0024] An adjusting plate is disposed on the shaft, and the adjusting plate has several through holes;
[0025] A plurality of set screws are provided, which are rotatably disposed through the adjusting plate, and one set screw is threadedly connected to one of the sliding plates.
[0026] As a further technical solution, the shredder also includes:
[0027] The outer casing is mounted on the support frame in a lifting mechanism.
[0028] A first telescopic component is disposed on the bracket, and the outer shell is connected to the telescopic end of the first telescopic component. The first telescopic component is used to drive the outer shell to rise and fall.
[0029] A cleaning device is disposed on the housing, the cleaning device being used to clean the first cutting blade, the cleaning device comprising:
[0030] There are several mounting brackets, all of which are mounted on the outer casing;
[0031] The nozzles are of several kinds, and one of the nozzles is hinged to one of the mounting brackets.
[0032] As a further technical solution, a cleaning device is also included, which further includes:
[0033] A connecting rod is rotatably mounted on the mounting bracket, and the connecting rod is used to drive the nozzle to rotate.
[0034] Gear 2 is mounted on the connecting rod;
[0035] Rack 2 is slidably disposed on the outer casing, and rack 2 meshes with gear 2.
[0036] A third telescopic component is provided on the outer casing, and the third telescopic component is used to drive the rack and pinion to slide.
[0037] As a further technical solution, one side of the support also includes a boss, and the shredder also includes:
[0038] The feed inlet is located at the top of the housing;
[0039] The outer casing also has a first groove and a second groove, which are located on both sides of the outer casing respectively. The first groove is located on the side of the outer casing near the feed port, and the first groove cooperates with the aforementioned boss to cover the shaft.
[0040] As a further technical solution, the second blade assembly includes:
[0041] A support frame is mounted on the bracket;
[0042] The driving component is mounted on the support frame;
[0043] The first linkage rod has one end mounted on the driving component;
[0044] The second linkage is rotatably mounted at one end of the first linkage at the other end.
[0045] The slider is hinged to the other end of the second linkage rod;
[0046] A slide groove is provided on the support frame, and the slider is slidably disposed within the slide groove;
[0047] The second cutting blade is mounted on the slider, which is used to move the second cutting blade up and down.
[0048] As a further technical solution, it also includes:
[0049] A plurality of pressure components are rotatably mounted on the bracket, and the pressure components are located on the side of the first blade group away from the second blade group;
[0050] The first conveying section is located below the first and second blade groups. Food passes through the first conveying section in sequence, passing through the pressing component, the first blade group, and the second blade group.
[0051] The second conveying section is disposed on one side of the second groove, and the second conveying section is used to convey the food that has passed through the shredding space away from the shredding space.
[0052] As a further technical solution, the bracket has a slide rail, the slide rail is door-shaped, and the outer shell includes:
[0053] The lifting housing is mounted on the bracket.
[0054] The baffle is slidably mounted on the slide rail;
[0055] The top plate is lifted and mounted on the bracket. After the baffle slides, the baffle, the lifting shell and the bracket form the shredding space, or the bracket, the baffle, the top plate and the lifting shell form a cleaning space, and the pressing component is located in the cleaning space.
[0056] The second telescopic component has one end located on the top of the bracket and the other end located on the top plate. The second telescopic component is used to drive the top plate to rise and fall.
[0057] The working principle and beneficial effects of this invention are as follows:
[0058] In this invention, a first blade group and a second blade group are sequentially mounted on a support. The first and second blade groups work together to cut food into strips or chunks. The first cutting blades are divided into several groups, each group containing several first cutting blades. Each group's first cutting blades can slide independently along the axis of the shaft. Different cutting shapes can be formed by the mutual sliding between the first cutting blades in each group. An adjustment device at one end of each first cutting blade can control the sliding of the first cutting blades in each group, achieving different cutting methods. During use, the first cutting blades in each group can be slid onto the same cross-section of the shaft. The first cutting blades on the same cross-section form a circular blade shape. Food is cut into strips or chunks by passing through the first and second blade groups sequentially. The adjustment device can be used to adjust the sliding of the first cutting blades, causing them to be staggered, thus enabling the first blade group to perform a grinding function. In this invention, the first blade group adopts a split structure, with each cutting blade composed of one of the first cutting blades from several groups. By changing the position of the first cutting blades between different groups, a change in the state of the blades is achieved, thereby realizing the conversion between the strip / chunk cutting function and the grinding function of the device. Attached Figure Description
[0059] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0060] Figure 1 This is a schematic diagram of the structure of the present invention;
[0061] Figure 2 This is a schematic diagram of the internal structure of the present invention;
[0062] Figure 3 This is an axial view of the first tool set of the present invention;
[0063] Figure 4 This is a cross-sectional view of the adjusting device of the present invention;
[0064] Figure 5 This is a schematic diagram of the regulating device structure of the present invention;
[0065] Figure 6 This is an axial view of the slider and the first cutting blade of the present invention;
[0066] Figure 7 This is an axial view of the shaft of the present invention;
[0067] Figure 8 This is a schematic diagram of the cleaning device of the present invention;
[0068] Figure 9 This is a cross-sectional view of the lifting shell of the present invention;
[0069] In the diagram: 100, bracket; 200, first blade assembly; 300, second blade assembly; 201, shaft; 202, first cutting blade; 400, adjusting device; 500, shredder; 501, shredding space; 203, rack one; 204, rotating rod; 205, gear one; 401, sliding plate; 402, housing; 403, first bearing; 404, adjusting plate; 405, set screw; 502, outer shell; 503, first telescopic component; 600, cleaning device; 601, mounting bracket; 602, nozzle; 603, connecting rod. 604. Gear II; 605. Rack II; 101. Boss; 504. Feed inlet; 505. First groove; 506. Second groove; 301. Support frame; 302. Drive component; 303. First linkage rod; 304. Second linkage rod; 305. Slider; 306. Slide groove; 307. Second cutting blade; 700. Pressing component; 800. First conveying section; 900. Second conveying section; 102. Slide rail; 507. Lifting shell; 508. Baffle; 509. Top plate; 510. Second telescopic component; 206. Groove. Detailed Implementation
[0070] The technical solutions of the present invention will be clearly and completely described below with reference to the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.
[0071] like Figures 1-9 As shown, this embodiment proposes...
[0072] A food cutting device, comprising:
[0073] Bracket 100;
[0074] The first cutter group 200 is rotatably mounted on the bracket 100;
[0075] The second cutter group 300 is lifted and lowered on the bracket 100;
[0076] The first set of blades 200 also includes:
[0077] The shaft 201 is rotatably mounted on the bracket 100, and both ends of the shaft 201 pass through the bracket 100;
[0078] The first cutting blade 202 has several groups of first cutting blades 202 arranged circumferentially along the axis of the shaft 201. Each group of first cutting blades 202 has several pieces, and the several first cutting blades 202 in each group are slidably arranged at intervals along the axis of the shaft 201.
[0079] An adjusting device 400 is disposed at one end of the first cutting blade 202, and the adjusting device 400 is used to control the sliding of the first cutting blade 202.
[0080] In this embodiment, the first blade group 200 and the second blade group 300 are sequentially arranged on the support 100. The first blade group 200 and the second blade group 300 work together to realize the function of cutting food into strips and pieces. The first cutting blade 202 is divided into several groups, each group has several first cutting blades 202. The several first cutting blades 202 in each group can slide independently in the axial direction of the shaft 201. By sliding between the first cutting blades 202 in each group, different cutting shapes can be formed. The adjustment device 400 at one end of the first cutting blade 202 can control the sliding of the first cutting blades 202 in each group to realize different cutting methods. During use, the first cutting blades 202 of each group can be slid onto the same cross section of the shaft 201. The first cutting blades 202 located on the same cross section form a circular blade shape. Food can be cut into strips or chunks by passing through the first blade group 200 and the second blade group 300 in sequence. The sliding of the first cutting blades 202 can be adjusted by the adjusting device 400 so that the first cutting blades 202 are arranged in an alternating manner. The first blade group 200 can achieve the mincing function. In this embodiment, the first blade group 200 adopts a split structure. Each cutting blade is composed of one first cutting blade 202 from several groups. By changing the position of the first cutting blades 202 between different groups, a change in the state of the blade is achieved, thereby realizing the conversion between the cutting and mincing functions of the device.
[0081] Furthermore, it also includes:
[0082] The shredder 500 is lifted and installed on the support 100. The shredder 500 is located above the first blade group 200. After the shredder 500 is lowered, it forms a shredding space 501 with the support 100. The first blade group 200 is located in the shredding space 501.
[0083] In this embodiment, the shredder 500 can be raised and lowered on the support 100. If the food cutting device is required to perform the shredding function, the first cutting blade 202 is adjusted to an alternating arrangement state by the adjusting device 400, and then the shredder 500 is lowered. After the shredder 500 is lowered, it forms a closed space required for shredding with the support 100. The first blade group 200 rotates in the shredding space 501 to perform the food shredding function.
[0084] Furthermore, the first blade assembly 200 also includes:
[0085] Rack 203 is mounted on shaft 201;
[0086] There are several rotating rods 204, and one rotating rod 204 is mounted on a first cutting blade 202;
[0087] Gear 205, which has several components, is mounted on rotating rod 204 and meshes with rack 203.
[0088] In this embodiment, the shaft 201 of the first blade assembly 200 has several grooves 206, a rack 203 is arranged in the groove 206, and several rotating rods 204 are respectively arranged on a first cutting blade 202. One end of the rotating rod 204 is located in the groove 206, and the end of the rotating rod 204 located in the groove 206 has a gear 205, which can mesh with the rack 203. During use, when the position of the first cutting blade 202 is adjusted by the adjusting device 400, the first cutting blade 202 drives the rotating rod 204 to move. The gear 205 on the rotating rod 204 interacts with the rack 203. The gear 205 rotates, and the rotating rod 204 rotates synchronously with the gear 205, driving the first cutting blade 202 to rotate. After adjustment, the first cutting blade 202 is spiral in shape along the axis of the shaft 201, so that when the first cutting blade 202 performs the shredding function, the food in the shredding space 501 moves to one side during the cutting process of the spiral blade.
[0089] Furthermore, the adjusting device 400 includes:
[0090] Several sliding plates 401 are slidably disposed on the shaft 201. Several sliding plates 401 are arranged circumferentially along the axis of the shaft 201. Each group of first cutting blades 202 is slidably disposed on the shaft 201 through a sliding plate 401.
[0091] Housing 402 is mounted on bracket 100;
[0092] The first bearing 403 is disposed inside the housing 402, and the first tool assembly 200 passes through the first bearing 403;
[0093] An adjusting plate 404 is mounted on the shaft 201, and the adjusting plate 404 has several through holes.
[0094] Several set screws 405 are provided, which are rotatably mounted on the adjusting plate 404. One set screw 405 is threadedly connected to a sliding plate 401.
[0095] In this embodiment, several sliding plates 401 are slidably disposed on the shaft 201, and the several sliding plates 401 are arranged circumferentially along the axis of the shaft 201. The first cutting blade 202 of each group is located on a sliding plate 401. The first cutting blade 202 moves on the shaft 201 through the sliding plate 401, and one end of the sliding plate 401 has a threaded hole. The housing 402 of the adjusting device 400 is located outside the bracket 100. The housing 402 has a first bearing 403 inside, and the first blade group 200 is located on the first bearing 403. The first bearing 403 supports the first blade group 200. The driving device of the first blade group 200 is located on the other side of the housing 402 and is used to drive the first blade group 200 to rotate. An adjusting plate 404 is detachably installed on the shaft 201. The adjusting plate 404 can rotate synchronously with the shaft 201. Several set screws 405 are fixed on the through holes of the adjusting plate 404. One set screw is located in one through hole and is threadedly connected to the threaded hole on one sliding plate 401. During use, the set screw 405 can be twisted, and the set screw 405 interacts with the thread on the sliding plate 401, causing the sliding plate 401 to slide on the shaft 201.
[0096] Furthermore, the shredder 500 also includes:
[0097] The outer casing 502 is mounted on the support 100 for lifting.
[0098] The first telescopic component 503 is mounted on the bracket 100. The outer shell 502 is connected to the telescopic end of the first telescopic component 503. The first telescopic component 503 is used to drive the outer shell 502 to rise and fall.
[0099] A cleaning device 600 is disposed on the housing 502. The cleaning device 600 is used to clean the first cutting blade 202. The cleaning device 600 includes:
[0100] Mounting bracket 601, having several units, is mounted on housing 502;
[0101] There are several nozzles 602, and each nozzle 602 is hinged to a mounting bracket 601.
[0102] In this embodiment, the outer casing 502 can be raised and lowered on the support 100. The first telescopic member 503 is fixed to the top of the support 100, and its telescopic end is connected to the outer casing 502. The extension or retraction of the first telescopic member 503 can cause the outer casing 502 to fall or rise. The cleaning device 600 is installed on the outer casing 502. The cleaning device 600 can clean the first cutting blade 202 of the shredding space 501. The nozzle 602 on the cleaning device 600 is hinged to the mounting bracket 601 of the outer casing 502, allowing the nozzle 602 to swing. During use, the outer casing 502 is lowered by the first telescopic member 503, and the outer casing 502 and the support 100 form the shredding space 501. After use, the cleaning device 600 can be used to rinse the shredding space 501.
[0103] Furthermore, it also includes a cleaning device 600, which further includes:
[0104] A connecting rod 603 is rotatably mounted on a mounting bracket 601, and the connecting rod 603 is used to drive the nozzle 602 to rotate.
[0105] Gear 604 is mounted on connecting rod 603;
[0106] Rack 2 605 is slidably mounted on housing 502, and rack 2 605 meshes with gear 2 604;
[0107] The third telescopic component is installed on the outer casing 502 and is used to drive the rack 605 to slide.
[0108] In this embodiment, the cleaning device 600 achieves the oscillation of the nozzle 602 through the combined action of the connecting rod 603, gear 604, rack 605, and third telescopic member. This allows the nozzle 602 to clean a larger area of the shredding space 501. The connecting rod 603 passes through all the hinges between the nozzle 602 and the mounting frame 601, and the connecting rod 603 can rotate relative to the mounting frame 601. The nozzle 602 rotates with the connecting rod 603. During use, the extension and retraction of the third telescopic member causes the rack 605 to slide back and forth. Under the back and forth sliding of the rack 605, the gear 604 rotates back and forth, thereby driving the connecting rod 603 to rotate back and forth, thus achieving the oscillation of the nozzle 602.
[0109] Furthermore, one side of the support 100 also includes a boss 101, and the shredder 500 also includes:
[0110] The feed inlet 504 is located at the top of the outer casing 502;
[0111] The outer casing 502 also has a first groove 505 and a second groove 506, which are located on both sides of the outer casing 502 respectively. The first groove 505 is located on the side of the outer casing 502 near the feed port 504. The first groove 505 cooperates with the boss 101 to cover the shaft 201.
[0112] In this embodiment, the outer shell 502 of the shredder 500 also has a feed inlet 504 for placing food that needs to be shredded. The first groove 505 and the second groove 506 on the outer shell 502 can engage with the shaft 201. The first groove 505 located on the side of the feed inlet can abut against the boss 101 to achieve a seal. The second groove 506 has an opening between it and the first blade assembly 200, and the food in the shredding space 501 can be discharged from the second groove 506.
[0113] Furthermore, the second blade assembly 300 includes:
[0114] Support frame 301 is mounted on bracket 100;
[0115] The driving component 302 is mounted on the support frame 301;
[0116] The first linkage rod 303 has one end mounted on the driving component 302;
[0117] The second linkage 304 is rotatably mounted at one end of the other end of the first linkage 303;
[0118] Slider 305 is hinged at the other end of the second linkage rod 304;
[0119] A slide groove 306 is provided on the support frame 301, and a slider 305 is slidably disposed in the slide groove 306;
[0120] The second cutting blade 307 is mounted on the slider 305, which is used to drive the second cutting blade 307 to move up and down.
[0121] In this embodiment, the first linkage rod 303 and the driving component 302 rotate synchronously. The two ends of the second linkage rod 304 are hinged to the first linkage rod 303 and the slider 305, respectively. The slider 305 can slide within the groove 306, and the second cutting blade 307 follows the slider 305 to achieve lifting and lowering motion. During use, the food cut by the first cutting blade 202 is in strip shape, and the second cutting blade 307 cuts the strip food into blocks through periodic lifting and lowering cutting.
[0122] Furthermore, it also includes:
[0123] There are several pressure members 700, all of which are rotatably mounted on the bracket 100. The pressure members 700 are located on the side of the first blade group 200 away from the second blade group 300.
[0124] The first conveying section 800 is located below the first blade group 200 and the second blade group 300. Food passes through the first conveying section 800 and sequentially passes through the pressing component 700, the first blade group 200 and the second blade group 300.
[0125] The second conveying section 900 is disposed on one side of the second groove 506. The second conveying section 900 is used to convey the food that has passed through the shredding space 501 away from the shredding space 501.
[0126] In this embodiment, when using the cutting device's strip / slice function, the first conveying section 800 is activated. The first conveying section 800 allows the food to be cut to pass sequentially through the pressing component 700, the first blade group 200, and the second blade group 300. The pressing component 700 has a star-shaped plate structure. By rotating and working together with the first conveying section 800, the pressing component 700 can better guide the food to be cut to the first blade group 200, effectively preventing the food from slipping and affecting the cutting effect. The second conveying section 900 is located on one side of the second groove 506. When using the cutting device's shredding function, the first conveying section 800 is closed, and the second conveying section 900 is activated. The food shredded by the first cutting blade 202 in the shredding space 501 is discharged from the second groove 506 and falls onto the second conveying section 900, which then transports the food away from the cutting device.
[0127] Furthermore, the bracket 100 has a slide rail 102, which is door-shaped, and the housing 502 includes:
[0128] The lifting housing 507 is mounted on the bracket 100.
[0129] Baffle 508 is slidably mounted on slide rail 102;
[0130] The top plate 509 is lifted and installed on the bracket 100. After the baffle 508 slides, the baffle 508, the lifting shell 507 and the bracket 100 form a shredding space 501, or the bracket 100, the baffle 508, the top plate 509 and the lifting shell 507 form a cleaning space, and the pressing component 700 is located in the cleaning space.
[0131] The second telescopic component 510 is installed at one end on the top of the bracket 100 and at the other end on the top plate 509. The second telescopic component 510 is used to drive the top plate 509 to rise and fall.
[0132] In this embodiment, the outer shell 502 consists of a lifting shell 507, a baffle 508, a top plate 509, and a second telescopic member 510. The baffle 508 can slide along the portal slide 102 on the bracket 100. The lifting shell 507 achieves its lifting function through the first telescopic member 503. The feed inlet 504 is located on the lifting shell 507, and the cleaning device 600 is located on the top plate 509. After the top plate 509 is raised to its highest position, the baffle 508 can pass through from under the top plate 509. The baffle 508, through sliding, forms a shredding space 501 on the first conveying section 800 with the baffle 508, the lifting shell 507, and the support 100. The cleaning device 600 is located outside the shredding space 501. After the baffle 508 slides through the portal slide 102, the top plate 509 and the lifting shell 507 fall simultaneously, forming a cleaning space on the first conveying section 800 with the support 100, the baffle 508, the top plate 509, and the lifting shell 507. Placing the cleaning device 600 outside the shredding space 501 prevents it from interfering with the shredding function.
[0133] The above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A food cutting device, characterized in that, include: Bracket (100); The first blade assembly (200) is rotatably mounted on the bracket (100); The second blade assembly (300) is raised and lowered on the bracket (100); The first tool set (200) also includes: A shaft (201) is rotatably mounted on the bracket (100), with both ends of the shaft (201) passing through the bracket (100). The first cutting blade (202) has several groups, and the several groups of the first cutting blades (202) are arranged circumferentially along the axis of the shaft (201). Each group of the first cutting blades (202) has several pieces, and the several first cutting blades (202) in each group are slidably arranged at intervals along the axis of the shaft (201). An adjusting device (400) is disposed at one end of the first cutting blade (202), and the adjusting device (400) is used to control the sliding of the first cutting blade (202); The first tool set (200) also includes: Rack 1 (203) is mounted on the shaft (201); There are several rotating rods (204), and one of the rotating rods (204) is disposed on one of the first cutting blades (202); A plurality of gears (205) are disposed on the rotating rod (204), and the gears (205) mesh with the rack (203); The regulating device (400) includes: A plurality of sliding plates (401) are slidably disposed on the shaft (201). The plurality of sliding plates (401) are arranged circumferentially along the axis of the shaft (201). Each group of first cutting blades (202) is slidably disposed on the shaft (201) through one of the sliding plates (401). The housing (402) is disposed on the bracket (100); A first bearing (403) is disposed inside the housing (402), and the first blade assembly (200) passes through the first bearing (403). An adjusting plate (404) is disposed on the shaft (201), and the adjusting plate (404) has several through holes; A plurality of set screws (405) are provided, which are rotatably disposed on the adjusting plate (404), and one set screw (405) is threadedly connected to one sliding plate (401).
2. The food cutting device according to claim 1, characterized in that, Also includes: A shredder (500) is raised and lowered on the support (100). The shredder (500) is located above the first blade assembly (200). After the shredder (500) falls down, it forms a shredding space (501) with the support (100). The first blade assembly (200) is located in the shredding space (501).
3. The food cutting device according to claim 2, characterized in that, The shredder (500) also includes: The outer casing (502) is lifted and lowered on the bracket (100); The first telescopic member (503) is disposed on the bracket (100), and the outer shell (502) is connected to the telescopic end of the first telescopic member (503). The first telescopic member (503) is used to drive the outer shell (502) to rise and fall. A cleaning device (600) is disposed on the housing (502), the cleaning device (600) being used to clean the first cutting blade (202), the cleaning device (600) comprising: Mounting brackets (601) are provided in several forms, all of which are mounted on the housing (502); The nozzle (602) is of several kinds, and one of the nozzles (602) is hinged to a mounting bracket (601).
4. A food cutting device according to claim 3, characterized in that, It also includes a cleaning device (600), which further includes: A connecting rod (603) is rotatably mounted on the mounting bracket (601), and the connecting rod (603) is used to drive the nozzle (602) to rotate; Gear 2 (604) is mounted on the connecting rod (603); Rack 2 (605) is slidably disposed on the housing (502), and rack 2 (605) meshes with gear 2 (604); The third telescopic member is disposed on the outer shell (502) and is used to drive the rack (605) to slide.
5. A food cutting device according to claim 3, characterized in that, The support (100) also includes a boss (101) on one side, and the shredder (500) also includes: The feed inlet (504) is located on the top of the housing (502); The outer shell (502) also has a first groove (505) and a second groove (506), which are located on both sides of the outer shell (502). The first groove (505) is located on the side of the outer shell (502) near the feed port (504). The first groove (505) cooperates with the boss (101) to cover the shaft (201).
6. A food cutting device according to claim 1, characterized in that, The second tool set (300) includes: A support frame (301) is mounted on the bracket (100); A drive component (302) is disposed on the support frame (301); The first linkage rod (303) has one end mounted on the driving component (302); The second linkage (304) is rotatably mounted at one end of the first linkage (303) at the other end; The slider (305) is hinged to the other end of the second linkage rod (304); A slide groove (306) is provided on the support frame (301), and the slider (305) is slidably disposed in the slide groove (306); The second cutting blade (307) is mounted on the slider (305), which is used to drive the second cutting blade (307) to move up and down.
7. A food cutting device according to claim 5, characterized in that, Also includes: There are several pressure members (700), all of which are rotatably mounted on the bracket (100). The pressure members (700) are located on the side of the first blade group (200) away from the second blade group (300). The first conveying section (800) is located below the first blade group (200) and the second blade group (300). Food passes through the first conveying section (800) and sequentially through the pressing component (700), the first blade group (200) and the second blade group (300). The second conveying section (900) is disposed on one side of the second groove (506). The second conveying section (900) is used to convey the food that has passed through the shredding space (501) away from the shredding space (501).
8. A food cutting device according to claim 7, characterized in that, The bracket (100) has a slide rail (102), the slide rail (102) is door-shaped, and the outer shell (502) includes: The lifting housing (507) is lifted and mounted on the bracket (100); A baffle (508) is slidably disposed on the slide rail (102); The top plate (509) is lifted and installed on the bracket (100). After the baffle (508) slides, the baffle (508), the lifting shell (507) and the bracket (100) form the shredding space (501), or the bracket (100), the baffle (508), the top plate (509) and the lifting shell (507) form a cleaning space. The pressing component (700) is located in the cleaning space. The second telescopic member (510) has one end set on the top of the bracket (100) and the other end set on the top plate (509). The second telescopic member (510) is used to drive the top plate (509) to rise and fall.
Citation Information
Patent Citations
Adhesive tape cutting knife fixing device capable of being adjusted at equal intervals
CN107522006A
Food cutting machine
CN114918989A