A dicing assembly, a dicing module and a dicing machine

By designing the feeding channel and hollow cutting disc of the cutting component, and combining the slicing and shredding discs with the same rotating shaft, the problems of easy damage and single function of the cutting component of the vegetable cutter are solved, and multi-functional and efficient cutting is achieved.

CN115284376BActive Publication Date: 2026-01-13NINGBO FOTILE KITCHEN WARE CO LTD
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Patent Information

Application Number
CN202210909138.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-29
Publication Date
2026-01-13
Estimated Expiration
2042-07-29

AI Technical Summary

Technical Problem

Existing vegetable cutters have complex cutting components, easily damaged cutting blades, low cutting efficiency, and cannot simultaneously perform cutting into chunks, slices, and shreds.

Method used

Design a dicing assembly including a dicing blade and dicing blades. It adopts a guide channel composed of a guide section and a guide section. The inlet of the guide section is a strip-shaped opening. The blade mesh is set inside the guide section. The guide slope guides the food into the blade mesh for cutting. The dicing blade has a hollow structure. The slicing and shredding blades are connected to the same rotating shaft to achieve multi-functional cutting.

Benefits of technology

It improves the lifespan of the cutting blade, has a simple structure, can simultaneously perform dicing, slicing, and shredding functions, and occupies little space.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a cutting assembly, which comprises a cutting disc (41) and a cutting tool (42). The cutting tool (42) has a first material guiding channel (421) extending from a feeding side to a discharging side of the cutting disc (41). The first material guiding channel (421) comprises a first material guiding section (421a) and a second material guiding section (421b) connected in sequence. The first material guiding section (421a) has a strip-shaped inlet, and a first blade (4211) is arranged on the edge of the side far from the cutting disc (41). A blade net (422) is arranged in the second material guiding section (421b) in a transverse direction. A guide inclined surface (4212) is arranged on the inner wall of the second material guiding section (421b) opposite to the inlet. The application further discloses a vegetable cutting module and a vegetable cutting machine provided with the cutting assembly. Compared with the prior art, the cutting assembly has a simple structure and a long service life.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of kitchen equipment, in particular to a dicing assembly, a vegetable cutting module and a vegetable cutting machine. BACKGROUND

[0002] In the general field of food processing, some bagged foods are processed into sheet or silk-shaped packages for sale. When processing food, if manual processing is used, a kitchen knife needs to be used. However, the kitchen knife is small in size and can process a small amount, which makes the processing efficiency of vegetables and the like too low, and the kitchen knife can also injure fingers if not used properly. In particular, when the processing amount is large, the kitchen knife is not very practical, and is not only low in efficiency but also easy to damage and waste a large amount of manpower and resources.

[0003] Therefore, some vegetable cutters appear on the market. The vegetable cutter mainly comprises a driving assembly and a cutting assembly. The driving assembly is used to drive the cutting assembly to rotate and cut food materials. The cutting shape mainly depends on the design of the cutting assembly. For example, the Chinese utility model patent with the patent application number CN202122205562.8 (publication number CN215743873U) discloses a cutting assembly with a slicing function, and the Chinese utility model patent with the patent application number CN201320590577.3 (publication number CN203622515U) discloses a cutting assembly with a dicing function.

[0004] However, for the cutting assembly with the dicing function, first, the cutting knife moves relative to the knife net, the structure is complex, and the cutting knife needs to cut the food and press the food downward into the knife net. The cutting knife is prone to damage. Second, the cutting edge of the cutting knife extends along the radial direction of the rotating shaft, the linear speed at each position is inconsistent, and the damage degree is uneven.

[0005] In addition, for the above-mentioned vegetable cutter, if the shape of the food needs to be switched, the knife disc needs to be replaced, and multiple shapes such as slicing, silk cutting and dicing cannot be provided at the same time. SUMMARY

[0006] The first technical problem to be solved by the present application is to provide a dicing assembly with a simple structure and a long service life in view of the current situation of the prior art.

[0007] The second technical problem to be solved by the present application is to provide a vegetable cutting module applying the above-mentioned dicing assembly.

[0008] The third technical problem to be solved by the present application is to provide a vegetable cutting module capable of simultaneously providing dicing, slicing and silk cutting functions.

[0009] The fourth technical problem to be solved by the present application is to provide a vegetable cutter with the vegetable cutting module.

[0010] The technical scheme adopted by the present application to solve the first technical problem is a cutting assembly for cutting food into pieces, characterized in that it comprises

[0011] The cutting disc is provided with a first mounting port and has a feeding side and a discharging side at two ends of the first mounting port.

[0012] The cutting tool is arranged at the first mounting port, and the cutting tool has a first material guiding channel extending from the feeding side to the discharging side of the cutting disc.

[0013] The inlet of the first material guiding channel is a strip-shaped port, and the inlet is provided with a first blade on the edge of the side away from the cutting disc.

[0014] The second material guiding channel is transversely provided with a blade net, and the blades of the blade net face the outlet of the first material guiding channel.

[0015] The inner wall of the first material guiding channel opposite the inlet of the second material guiding channel is provided with a guide slope gradually approaching the inlet of the second material guiding channel along the moving direction of the food in the first material guiding channel, so as to extrude the food advancing in the first material guiding channel into the second material guiding channel.

[0016] In order to further improve the service life, the inlet of the first material guiding channel is a strip-shaped port extending along the axial direction of the cutting disc, so that the linear speed of each position of the first blade is uniform, the damage is uniform, and the service life can be improved.

[0017] In order to ensure that the thick pieces after cutting smoothly enter the first material guiding channel, the first material guiding channel extends substantially along the tangential direction of the cutting disc.

[0018] In order to ensure that the thick pieces are cut into relatively regular pieces, the second material guiding channel extends substantially along the radial direction of the cutting disc.

[0019] In order to facilitate the installation of the cutting tool, the cutting disc is internally hollow to form a cavity, the first mounting port is provided on the peripheral wall of the cutting disc and penetrates the cavity in the radial direction, and the outer side and the inner side of the peripheral wall of the cutting disc form the feeding side and the discharging side of the cutting disc, respectively.

[0020] In order to facilitate the discharge of the block-shaped food in the cavity by means of its own gravity, the peripheral wall of the cutting disc is provided with a discharging hole for the block-shaped food to pass through.

[0021] In order to avoid the uncut food materials from leaking out from both sides, the outer peripheral wall of the dicing cutter disc has an outwardly extending annular baffle at the edge of both sides in the axial direction.

[0022] In order to improve the cutting efficiency, the number of the first mounting ports is at least two, and they are arranged in the circumferential direction of the dicing cutter disc, and the dicing cutters correspond to the first mounting ports one by one.

[0023] The technical scheme adopted by the present application to solve the second technical problem is a vegetable cutting module applying the above-mentioned dicing assembly, characterized in that it comprises

[0024] a cutter holder;

[0025] a rotating shaft rotatably mounted on the cutter holder; and

[0026] a driving mechanism for driving the rotating shaft to rotate about its axis;

[0027] The dicing cutter disc is fixed relative to the rotating shaft and coaxially arranged with the rotating shaft, and the inlet of the first material guiding section is located at the front side of the dicing cutter along the rotating direction of the rotating shaft.

[0028] In order to further solve the third technical problem, a slicing assembly for cutting food materials into slices and a shredding assembly for cutting food materials into shreds are further included;

[0029] The slicing assembly comprises

[0030] a slicing cutter disc fixed relative to the rotating shaft and coaxially arranged with the rotating shaft, the surface of which is provided with a second mounting port penetrating through in the axial direction, and has a material feeding side and a material discharging side located at both ends of the second mounting port; and

[0031] a slicing cutter provided at the second mounting port, the slicing cutter having a second material guiding channel extending from the material feeding side to the material discharging side of the slicing cutter disc, the inlet of the second material guiding channel being located at the front side of the slicing cutter along the rotating direction of the rotating shaft, the inlet being a strip-shaped port extending in the radial direction of the slicing cutter disc, and the inlet having a second cutting edge on the edge of the side away from the slicing cutter disc;

[0032] The shredding assembly comprises

[0033] a shredding cutter disc fixed relative to the rotating shaft and coaxially arranged with the rotating shaft, the surface of which is provided with a third mounting port penetrating through in the axial direction, and has a material feeding side and a material discharging side located at both ends of the third mounting port; and

[0034] The shredding cutter is arranged at the third mounting port, and has a third material guiding channel extending from the feeding side to the discharging side of the shredding cutter disc. The inlet of the third material guiding channel is located at the front side of the shredding cutter in the rotation direction of the rotation shaft, and is a strip-shaped port extending in the radial direction of the shredding cutter disc. The third material guiding channel has a third blade on the edge of the side away from the shredding cutter disc. A blade row is arranged in the third material guiding channel in the transverse direction, and the blades of the blade row face the inlet of the third material guiding channel.

[0035] In order to facilitate discharging, at least a part of the second material guiding channel has a gradually increasing diameter from the inlet to the outlet; or / and

[0036] At least a part of the third material guiding channel has a gradually increasing diameter from the inlet to the outlet.

[0037] In order to improve the cutting efficiency, the number of the second mounting ports is at least two, and the second mounting ports are arranged in the circumferential direction of the slicing cutter disc. The slicing cutter corresponds to the second mounting port one by one; or / and

[0038] The number of the third mounting ports is at least two, and the third mounting ports are arranged in the circumferential direction of the shredding cutter disc. The shredding cutter corresponds to the third mounting port one by one.

[0039] In order to improve the compactness of the cutting module and reduce the occupied space, the rotation shaft extends in the left-right direction. The slicing cutter disc and the shredding cutter disc are arranged on the left and right sides of the dicing cutter disc, respectively. The feeding sides of the slicing cutter disc and the shredding cutter disc face the dicing cutter disc.

[0040] In order to facilitate the feeding and discharging of food materials, the knife holder includes a containing box, a first hopper and a second hopper arranged on the left and right sides of the containing box and connected to the inner cavity of the containing box. The top and bottom of the containing box have a feeding port and a discharging port, respectively. The dicing assembly, the slicing assembly and the shredding assembly are located in the containing box. The dicing cutter disc is located between the feeding port and the discharging port. The slicing cutter disc is arranged close to the discharging end of the first hopper. The first hopper and the discharging port are located on the feeding side and the discharging side of the slicing cutter disc, respectively. The shredding cutter disc is arranged close to the discharging end of the second hopper. The second hopper and the discharging port are located on the feeding side and the discharging side of the shredding cutter disc, respectively.

[0041] The technical scheme adopted by the present application to solve the fourth technical problem is: a vegetable cutter applying the vegetable cutting module, characterized by comprising a shell, the vegetable cutting module being installed in the shell, the top of the shell being provided with a first feeding port, a second feeding port and a third feeding port arranged at intervals, the first feeding port being opposite to the feeding port, the second feeding port being opposite to the feeding end of the first hopper, and the third feeding port being opposite to the feeding end of the second hopper.

[0042] In order to facilitate automatic feeding of food materials, the first feeding port is offset from the axis of the cutting block cutter.

[0043] In order to facilitate the collection of cut food materials, a receiving tray is further included, the shell comprising a containing portion and a supporting portion supported at the bottom of the containing portion, the vegetable cutting module being installed in the containing portion, the bottom of the containing portion being provided with a discharging port opposite to the discharging port, and the receiving tray being located directly below the discharging port.

[0044] Compared with the prior art, the present application has the following advantages:

[0045] (1) The first guide channel of the cutting block cutter is composed of the first guide section and the second guide section connected in sequence, the inlet of the first guide section is designed as a strip-shaped port, a first blade is arranged on the edge of the inlet away from the cutting block cutter, a blade net is arranged in the second guide section, and a guide slope is arranged on the inner wall of the first guide section opposite to the inlet of the second guide section, so that when cutting, the food materials are first cut into thick pieces by the rotating cutting block cutter through the first blade, the cut thick pieces enter the first guide section, and then enter the second guide section under the extrusion of the guide slope, and are cut into blocks by the blade net. In this process, the first blade and the blade net do not move relative to each other, and the extrusion action is realized by the cooperation of the inertia of the thick pieces and the guide slope, so that the cutting block cutter has a simple structure and is not easy to be damaged;

[0046] (2) Since the inlet of the first guide section is a strip-shaped port extending along the axis of the cutting block cutter, the linear speed of each position of the first blade is uniform, damage is uniform, and the service life can be improved;

[0047] (3) By arranging the cutting block cutter on the outer peripheral wall of the cutting block cutter, and arranging the slicing cutter and the shredding cutter on the two sides of the cutting block cutter and connecting them with the same rotating shaft, on the one hand, only one driving mechanism is needed to realize cutting, slicing and shredding at the same time, and on the other hand, the structure is compact and occupies small space. BRIEF DESCRIPTION OF DRAWINGS

[0048] Figure 1 It is a schematic diagram of the three-dimensional structure of embodiment 1 of the vegetable cutter of the present application;

[0049] Figure 2 As Figure 1 A perspective exploded view of the cutting machine;

[0050] Figure 3 As Figure 1 A longitudinal sectional view of the cutting machine;

[0051] Figure 4 As Figure 2 A perspective structural view of the cutting module;

[0052] Figure 5 As Figure 4 A perspective exploded view omitting the driving mechanism;

[0053] Figure 6 As Figure 4 A longitudinal sectional view of the cutting block assembly (the dotted arrow indicates the moving direction of the foodstuff);

[0054] Figure 7 As Figure 4 A transverse sectional view of the cutting slice assembly (the dotted arrow indicates the moving direction of the foodstuff);

[0055] Figure 8 As Figure 4 A transverse sectional view of the cutting slice assembly (the dotted arrow indicates the moving direction of the foodstuff);

[0056] Figure 9 As A perspective structural view of the rotating shaft and the cutting block assembly in the second embodiment of the cutting machine;

[0057] Figure 10 As Figure 9 A longitudinal sectional view. DETAILED DESCRIPTION

[0058] The present application will be further described in detail below with reference to the accompanying drawings.

[0059] Embodiment 1:

[0060] As Figures 1 to 8 shown, the first preferred embodiment of the cutting machine. The cutting machine comprises a housing 1, a knife holder 2, a rotating shaft 3, a cutting block assembly 4, a cutting slice assembly 5, a cutting slice assembly 6, a driving mechanism 7 and a receiving tray 8. The knife holder 2, the rotating shaft 3, the cutting block assembly 4, the cutting slice assembly 5, the cutting slice assembly 6 and the driving mechanism 7 constitute a cutting module 10.

[0061] Among them, as Figure 1 shown, the housing 1 comprises a base 11 having an open top and an upper cover 12 arranged on the top opening of the base 11. As Figure 2As shown, the base 11 comprises a containing portion 111 and a supporting portion 112 supported at the bottom of the containing portion 111, and a blanking opening 1111 is formed at the middle position of the bottom wall of the containing portion 111; the surface of the upper cover 12 is provided with a first feeding opening 121, a second feeding opening 122 and a third feeding opening 123 arranged at intervals. The vegetable cutting module 10 is installed in the above-mentioned containing portion 111.

[0062] As shown in Figure 3 and Figure 4 The knife holder 2 comprises a containing box 21, a first hopper 22 and a second hopper 23 arranged on the left and right sides of the containing box 21 and connected with the inner cavity of the containing box 21, and the cutting block assembly 4, the cutting slice assembly 5 and the cutting filament assembly 6 are all located in the above-mentioned containing box 21. The top of the containing box 21 has an open mouth as a feeding opening 212, and a discharging opening 212 is formed at the middle position of the bottom wall of the containing box 21. The above-mentioned first feeding opening 121 is opposite to the feeding opening 211 of the containing box 21, the second feeding opening 122 is opposite to the feeding end of the first hopper 22, the third feeding opening 123 is opposite to the feeding end of the second hopper 23, and the blanking opening 1111 is opposite to the discharging opening 212 of the containing box 21.

[0063] The rotating shaft 3 extends substantially along the left-right direction, and the left and right ends thereof are respectively rotationally connected to the left and right side walls of the containing box 21.

[0064] As shown in Figure 5 and Figure 6 The cutting block assembly 4 is used for cutting food materials into blocks, and comprises a cutting block cutter 41 and a cutting block tool 42.

[0065] Specifically, the cutting block cutter 41 is in a cylindrical shape, coaxially sleeved on the outer periphery of the rotating shaft 3, connected with the rotating shaft 3, and located between the feeding opening 211 and the discharging opening 212 of the containing box 21. The cutting block cutter 41 is hollow inside to form a cavity 411, and the left and right sides thereof have open mouths. The outer side and the inner side of the peripheral wall of the cutting block cutter 41 are respectively referred to as the feeding side and the discharging side of the cutting block cutter 41; a first mounting opening 412 penetrating the cavity 411 is formed on the peripheral wall of the cutting block cutter 41 in the radial direction, the first mounting opening 412 is in a rectangular shape, the number thereof is at least two, and they are arranged at intervals along the circumferential direction of the cutting block cutter 41; a plurality of blanking holes 413 for the block-shaped food materials to pass through are formed on the peripheral wall of the cutting block cutter 41; the edge of the left and right sides of the peripheral wall of the cutting block cutter 41 has an annular baffle 414 extending outward.

[0066] The cutting blades 42 are flat and correspond one-to-one with the first mounting openings 412, and are fitted into the corresponding first mounting openings 412. Each cutting blade 42 has a first guide channel 421 extending from the feed side to the discharge side of the cutting disc 41. The inlet and outlet of the first guide channel 421 correspond to the feed side and discharge side of the cutting disc 41. The first guide channel 421 includes a first guide section 421a extending substantially tangentially along the cutting disc 41 and a second guide section 421b extending substantially radially along the cutting disc 41. The inlet of the second guide section 421b communicates with the outlet of the first guide section 421a. The inlet of the first guide section 421a is located on the front side of the cutting blade 42 along the rotation direction of the shaft 3, and this inlet is along the axial direction of the cutting disc 41. An extended strip-shaped opening has a first blade 4211 on the edge of the opening away from the cutting blade 41; a blade mesh 422 is arranged laterally in the second guide section 421b, which is an integral part of the cutting blade 42, with its blade facing the outlet of the first guide section 421a; a guide slope 4212 is provided on the inner wall of the first guide section 421a opposite to the entrance of the second guide section 421b, and the guide slope 4212 gradually approaches the entrance of the second guide section 421b along the direction of movement of the food in the first guide section 421a, so as to squeeze the food moving forward in the first guide section 421a into the second guide section 421b.

[0067] In this embodiment, the first feeding port 121 is offset from the axis of the cutting disc 41, and a feeding cylinder 1211 is formed by extending downward around the periphery of the first feeding port 121. The end face of the outlet end of the feeding cylinder 1211 extends basically along the tangential direction of the cutting disc 41. In this way, in conjunction with the cutting direction of the first blade 4211, automatic feeding without manual assistance can be achieved.

[0068] like Figure 5 and Figure 7 As shown, the slicing assembly 5 is used to cut food into slices, and includes a slicing disc 51 and a slicing blade 52.

[0069] Specifically, the slicing disc 51 is disc-shaped, coaxially sleeved on the outer periphery of the rotating shaft 3, connected to the rotating shaft 3, and spaced apart on the left side of the cutting disc 41. The left and right sides of the slicing disc 51 are respectively referred to as the feeding side and the discharging side of the slicing disc 51, that is, the discharging side of the slicing disc 51 faces the cutting disc 41. The slicing disc 51 is arranged close to the discharge end of the first hopper 22, and the first hopper 22 and the discharge port 212 are respectively located on the feeding side and the discharging side of the slicing disc 51. A second mounting port 511 is axially penetratingly opened on the surface of the slicing disc 51. The second mounting port 511 is a strip-shaped opening extending radially along the slicing disc 51, and there are at least two of them, which are spaced apart circumferentially along the slicing disc 51.

[0070] The slicing blade 52 is elongated and corresponds one-to-one with the second mounting port 511, and is embedded in the corresponding second mounting port 511. Each slicing blade 52 has a second guide channel 521 extending from the feed side to the discharge side of the slicing blade disc 51. The inlet and outlet of the second guide channel 521 correspond to the feed side and discharge side of the slicing blade disc 51, respectively. The inlet and outlet of the second guide channel 521 are located on the front and rear sides of the slicing blade 52 along the rotation direction of the rotating shaft 3. The inlet is a strip-shaped opening extending radially along the slicing blade disc 51, and a second cutting edge 5211 is provided on the edge of the inlet away from the slicing blade disc 51. The diameter of the second guide channel 521 gradually increases from the inlet to the outlet, thereby facilitating material discharge.

[0071] like Figure 5 and Figure 8 As shown, the shredding assembly 6 is used to cut food into shreds, and includes a shredding disc 61 and a shredding blade 62.

[0072] Specifically, the shredding disc 61 is disc-shaped, coaxially sleeved on the outer periphery of the rotating shaft 3, connected to the rotating shaft 3, and spaced apart on the right side of the cutting disc 41. The right and left sides of the shredding disc 61 are respectively referred to as the feeding side and the discharging side of the shredding disc 61, that is, the discharging side of the shredding disc 61 faces the cutting disc 41. The shredding disc 61 is arranged close to the discharging end of the second hopper 23, and the second hopper 23 and the discharge port 212 are respectively located on the feeding side and the discharging side of the shredding disc 61. A third mounting port 611 is axially penetratingly opened on the surface of the shredding disc 61. The third mounting port 611 is a strip-shaped opening extending radially along the shredding disc 61, and there are at least two of them, which are spaced apart circumferentially along the shredding disc 61.

[0073] The shredding blades 62 are elongated and correspond one-to-one with the aforementioned third mounting ports 611, and are embedded in the corresponding third mounting ports 611. Each shredding blade 62 has a third guide channel 621 extending from the feed side to the discharge side of the shredding disc 61. The inlet and outlet of the third guide channel 621 correspond to the feed side and discharge side of the shredding disc 61, respectively. The inlet and outlet of the third guide channel 621 are located on the front and rear sides of the shredding blade 62 along the rotation direction of the rotating shaft 3, respectively. The inlet is a strip-shaped opening extending radially along the shredding disc 61, and a third cutting edge 6211 is provided on the edge of the inlet away from the shredding disc 61. A blade row 622 is arranged transversely inside the third guide channel 621. The blade row 622 is an integral part of the shredding blade 62, and its cutting edge faces the inlet of the third guide channel 621. The diameter of the third guide channel 621 gradually increases from the inlet to the outlet, thereby facilitating material discharge.

[0074] like Figure 4As shown, the drive mechanism 7 is located outside the housing 21 and is used to drive the rotating shaft 3 to rotate around its own axis. It includes a first gear 71, a second gear 72, and a drive member 73. Specifically, the first gear 71 is coaxially mounted on the right end of the rotating shaft 3; the drive member 73 is a motor with an output shaft extending in the left-right direction; the second gear 72 is coaxially mounted on the end of the output shaft and meshes with the first gear 71.

[0075] The receiving tray 8 is located directly below the discharge port 1111 and is used to receive the cut ingredients.

[0076] The working principle of this embodiment is as follows: Start the drive component 73, drive the second gear 72 to rotate, the first gear 71 rotates accordingly, and then drive the block cutting assembly 4, the slice assembly 5 and the shredding assembly 6 to rotate synchronously around the axis of the rotating shaft 3 through the rotating shaft 3;

[0077] (1) When the user needs to cut the food into pieces, the food can be put into the first feeding port 121 into the receiving box 21. The food falls under the action of gravity until it comes into contact with the cutting blade 41. The cutting blade 42 is first cut into thick slices by the first blade 4211. The cut thick slices enter the first guiding section 421a, and then enter the second guiding section 421b under the pressure of the guide slope 4212. After being cut into pieces by the blade net 422, they enter the cavity 411. The block food in the cavity 411 finally falls through the dropping hole 413, the discharge port 212 and the dropping port 1111 and is collected into the receiving tray 8.

[0078] (2) When the user needs to slice, the food can be put into the first hopper 22 through the second feeding port 122. The food falls under the action of gravity until it contacts the slicing blade 51. The rotating slicing blade 52 cuts the food into slices through the second blade 5211. The sliced ​​food enters the receiving box 21 through the second guiding channel 521, and finally falls through the discharge port 212 and the drop port 1111 and is collected in the receiving tray 8.

[0079] (3) When the user needs to cut the ingredients into shreds, the ingredients can be put into the third feeding port 123 and into the second hopper 23. The ingredients fall under the action of gravity until they come into contact with the shredding disc 61. The rotating shredding blade 62 cuts the ingredients into shreds through the third blade 6211 and the blade row 622. The shredded ingredients are then fed into the receiving box 21 through the third guiding channel 621. Finally, they are collected into the receiving tray 8 after falling through the discharge port 212 and the drop port 1111.

[0080] Example 2:

[0081] like Figure 9 and Figure 10 The image shows a second preferred embodiment of the vegetable cutter of the present invention. The difference from Embodiment 1 is that:

[0082] In this embodiment, the cutting disc 41 is disc-shaped and can replace the slicing disc 51 and the shredding disc 61. It is coaxially mounted at the end of the rotating shaft 3. Its first mounting port 412 is axially opened through the surface of the cutting disc 41. The inlet of the first guide section 421a is a strip-shaped opening extending radially along the cutting disc 41.

[0083] Compared with the cutting disc 41 in Embodiment 1, the first blade 4211 in this embodiment extends radially along the rotating shaft, and the linear velocity at each position is inconsistent, resulting in uneven damage.

Claims

1. A cutting component for cutting food ingredients into pieces, characterized in that: The cutting knife set (42) is arranged at the first mounting port (412), and the cutting knife set (42) has a first material guiding channel (421) extending from the feeding side to the discharging side of the cutting knife disc (41), and the first material guiding channel (421) comprises a first material guiding section (421a) and a second material guiding section (421b) connected in sequence, and the inlet of the second material guiding section (421b) is communicated with the outlet of the first material guiding section (421a). The inlet of the first material guiding section (421a) is a strip-shaped port, and a first blade (4211) is arranged on the edge of the side away from the cutting knife disc (41). The second material guiding section (421b) is transversely arranged with a blade net (422), and the blades of the blade net (422) are directed to the outlet of the first material guiding section (421a). The inner wall of the first material guiding section (421a) opposite to the inlet of the second material guiding section (421b) is provided with a guide slope (4212) gradually approaching the inlet of the second material guiding section (421b) along the moving direction of the food in the first material guiding section (421a), so as to extrude the food advancing in the first material guiding section (421a) into the second material guiding section (421b). The first material guiding section (421a) extends along the tangential direction of the cutting knife disc (41). The second material guiding section (421b) extends along the radial direction of the cutting knife disc (41). The cutting knife disc (41) is internally hollowed to form a cavity (411), and the first mounting port (412) penetrating the cavity (411) is arranged on the peripheral wall of the cutting knife disc (41) in the radial direction, and the outer side and the inner side of the peripheral wall of the cutting knife disc (41) form the feeding side and the discharging side of the cutting knife disc (41), respectively. The inlet of the first material guiding section (421a) is a strip-shaped port extending along the axial direction of the cutting knife disc (41). The peripheral wall of the cutting knife disc (41) is provided with a material falling hole (413) for the block-shaped food to pass through. The peripheral wall of the cutting knife disc (41) is provided with an annular baffle (414) extending outward at the edges of the two sides in the axial direction.

2. The cutlet assembly of claim 1, wherein: The number of the first mounting ports (412) is at least two, and the first mounting ports (412) are arranged in the circumferential direction of the cutting knife disc (41) at intervals, and the cutting knife set (42) corresponds to the first mounting port (412) one by one.

3. The cutlet assembly of claim 1, wherein: The cutting knife set (42) is arranged at the first mounting port (412), and the cutting knife set (42) has a first material guiding channel (421) extending from the feeding side to the discharging side of the cutting knife disc (41), and the first material guiding channel (421) comprises a first material guiding section (421a) and a second material guiding section (421b) connected in sequence, and the inlet of the second material guiding section (421b) is communicated with the outlet of the first material guiding section (421a).

4. The cutlet assembly of claim 1, wherein: The inlet of the first material guiding section (421a) is a strip-shaped port, and a first blade (4211) is arranged on the edge of the side away from the cutting knife disc (41).

5. The cutlet assembly of claim 1, wherein: The second material guiding section (421b) is transversely arranged with a blade net (422), and the blades of the blade net (422) are directed to the outlet of the first material guiding section (421a).

6. A dicing module to which the dicing assembly according to any one of claims 1 to 5 is applied, characterized by: The inner wall of the first material guiding section (421a) opposite to the inlet of the second material guiding section (421b) is provided with a guide slope (4212) gradually approaching the inlet of the second material guiding section (421b) along the moving direction of the food in the first material guiding section (421a), so as to extrude the food advancing in the first material guiding section (421a) into the second material guiding section (421b). The first material guiding section (421a) extends along the tangential direction of the cutting knife disc (41). The second material guiding section (421b) extends along the radial direction of the cutting knife disc (41). The cutting knife disc (41) is internally hollowed to form a cavity (411), and the first mounting port (412) penetrating the cavity (411) is arranged on the peripheral wall of the cutting knife disc (41) in the radial direction, and the outer side and the inner side of the peripheral wall of the cutting knife disc (41) form the feeding side and the discharging side of the cutting knife disc (41), respectively. The inlet of the first material guiding section (421a) is a strip-shaped port extending along the axial direction of the cutting knife disc (41).

7. The vegetable cutting module according to claim 6, characterized in that: The peripheral wall of the cutting knife disc (41) is provided with a material falling hole (413) for the block-shaped food to pass through. The peripheral wall of the cutting knife disc (41) is provided with an annular baffle (414) extending outward at the edges of the two sides in the axial direction. The number of the first mounting ports (412) is at least two, and the first mounting ports (412) are arranged in the circumferential direction of the cutting knife disc (41) at intervals, and the cutting knife set (42) corresponds to the first mounting port (412) one by one. The cutting knife set (42) is arranged at the first mounting port (412), and the cutting knife set (42) has a first material guiding channel (421) extending from the feeding side to the discharging side of the cutting knife disc (41), and the first material guiding channel (421) comprises a first material guiding section (421a) and a second material guiding section (421b) connected in sequence, and the inlet of the second material guiding section (421b) is communicated with the outlet of the first material guiding section (421a). The inlet of the first material guiding section (421a) is a strip-shaped port, and a first blade (4211) is arranged on the edge of the side away from the cutting knife disc (41). The second material guiding section (421b) is transversely arranged with a blade net (422), and the blades of the blade net (422) are directed to the outlet of the first material guiding section (421a). The inner wall of the first material guiding section (421a) opposite to the inlet of the second material guiding section (421b) is provided with a guide slope (4212) gradually approaching the inlet of the second material guiding section (421b) along the moving direction of the food in the first material guiding section (421a), so as to extrude the food advancing in the first material guiding section (421a) into the second material guiding section (421b). The first material guiding section (421a) extends along the tangential direction of the cutting knife disc (41). The second material guiding section (421b) extends along the radial direction of the cutting knife disc (41). The cutting knife disc (41) is internally hollowed to form a cavity (411), and the first mounting port (412) penetrating the cavity (411) is arranged on the peripheral wall of the cutting knife disc (41) in the radial direction, and the outer side and the inner side of the peripheral wall of the cutting knife disc (41) form the feeding side and the discharging side of the cutting knife disc (41), respectively. The inlet of the first material guiding section (421a) is a strip-shaped port extending along the axial direction of the cutting knife disc (41). The peripheral wall of the cutting knife disc (41) is provided with a material falling hole (413) for the block-shaped food to pass through. The peripheral wall of the cutting knife disc (41) is provided with an annular baffle (414) extending outward at the edges of the two sides in the axial direction. The number of the first mounting ports (412) is at least two, and the first mounting ports (412) are arranged in the circumferential direction of the cutting knife disc (41) at intervals, and the cutting knife set (42) corresponds to the first mounting port (412) one by one. The slicing component (5) includes: A slicing disc (51) is fixed relative to and coaxially arranged with the rotating shaft (3), and a second mounting port (511) is axially extended through its surface, having an inlet side and an outlet side located at both ends of the second mounting port (511); and A slicing blade (52) is provided at the second mounting port (511). The slicing blade (52) has a second guide channel (521) extending from the feed side of the slicing blade disc (51) to the discharge side. The entrance of the second guide channel (521) is located on the front side of the slicing blade (52) in the rotation direction of the rotating shaft (3). The entrance is a strip-shaped opening extending radially along the slicing blade disc (51), and a second cutting edge (5211) is provided on the edge of the entrance away from the slicing blade disc (51). The shredding assembly (6) includes: A slicing disc (61) is fixed relative to and coaxially arranged with the rotating shaft (3), and has a third mounting port (611) extending through its surface along the axial direction, having an inlet side and an outlet side located at both ends of the third mounting port (611); and A shredding cutter (62) is provided at the third mounting port (611). The shredding cutter (62) has a third guide channel (621) extending from the feed side of the shredding cutter disc (61) to the discharge side. The entrance of the third guide channel (621) is located on the front side of the shredding cutter (62) along the rotation direction of the rotating shaft (3). The entrance is a strip-shaped opening extending radially along the shredding cutter disc (61), and a third cutting edge (6211) is provided on the edge of the entrance away from the shredding cutter disc (61). A blade row (622) is arranged laterally in the third guide channel (621), and the cutting edge of the blade row (622) faces the entrance of the third guide channel (621).

8. The vegetable cutting module according to claim 7, characterized in that: The second material guide channel (521) has at least a local diameter that gradually increases from the inlet to the outlet; or / and The third material guide channel (621) has at least a local diameter that gradually increases from the inlet to the outlet.

9. The vegetable cutting module according to claim 7, characterized in that: The number of the second mounting ports (511) is at least two, and they are arranged at circumferential intervals along the slicing blade disc (51), with each slicing blade (52) corresponding to one of the second mounting ports (511); or / and The number of the third mounting ports (611) is at least two, and they are arranged at intervals along the circumference of the shredder disc (61). The shredder (62) corresponds one-to-one with the third mounting ports (611).

10. The vegetable cutting module of claim 7, wherein: The rotating shaft (3) extends basically in the left-right direction. The slicing blade (51) and the shredding blade (61) are respectively arranged on the left and right sides of the cutting blade (41), and the feeding side of the slicing blade (51) and the shredding blade (61) are both facing the cutting blade (41).

11. The vegetable cutting module according to claim 10, characterized in that: The knife holder (2) comprises a containing box (21) and first and second hoppers (22, 23) arranged on the left and right sides of the containing box (21) and connected with the inner cavity of the containing box (21), the top and bottom of the containing box (21) are respectively provided with an inlet (211) and an outlet (212), the cutting block assembly (4), the slicing assembly (5) and the shredding assembly (6) are arranged in the containing box (21), the cutting block cutter head (41) is arranged between the inlet (211) and the outlet (212), the slicing cutter head (51) is arranged close to the discharge end of the first hopper (22), and the first hopper (22) and the outlet (212) are respectively arranged on the feeding side and the discharging side of the slicing cutter head (51), and the shredding cutter head (61) is arranged close to the discharge end of the second hopper (23), and the second hopper (23) and the outlet (212) are respectively arranged on the feeding side and the discharging side of the shredding cutter head (61).

12. A vegetable cutter having the vegetable cutting module of claim 11 applied thereto, characterized in that: The cutting module is arranged in the shell (1), and the top of the shell (1) is provided with the first, second and third feeding ports (121, 122, 123) arranged at intervals, the first feeding port (121) is opposite to the inlet (211), the second feeding port (122) is opposite to the feeding end of the first hopper (22), and the third feeding port (123) is opposite to the feeding end of the second hopper (23).

13. The vegetable cutter of claim 12, wherein: The first feeding port (121) is offset from the axis of the cutting block cutter head (41).

14. The vegetable cutter of claim 12, wherein: The shell (1) comprises a containing portion (111) and a supporting portion (112) supported on the bottom of the containing portion (111), the cutting module is arranged in the containing portion (111), and the bottom of the containing portion (111) is provided with a discharging port (1111) opposite to the outlet (212), and the receiving disc (8) is arranged directly below the discharging port (1111).

Citation Information

Patent Citations

  • Food processor dicing component and food processor provided with same

    CN203622515U

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    CN215743873U

  • Slicing assembly, vegetable cutting module and vegetable cutter

    CN218285857U