WO2025130573A1 - 料理机 - Google Patents
料理机 Download PDFInfo
- Publication number
- WO2025130573A1 WO2025130573A1 PCT/CN2024/135977 CN2024135977W WO2025130573A1 WO 2025130573 A1 WO2025130573 A1 WO 2025130573A1 CN 2024135977 W CN2024135977 W CN 2024135977W WO 2025130573 A1 WO2025130573 A1 WO 2025130573A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- food
- grinding
- cutting mechanism
- cutting
- food processor
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Pending
Links
Classifications
-
- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47J—KITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
- A47J43/00—Implements for preparing or holding food, not provided for in other groups of this subclass
- A47J43/25—Devices for grating
Definitions
- garlic can effectively improve the taste of food as a seasoning.
- the endogenous enzyme in garlic namely alliinase, is activated.
- the garlic that catalyzes the decomposition and synthesis of alliin can dilate blood vessels and lower blood pressure, and can kill many types of bacteria. It not only has the effect of antioxidant, but also has the function of promoting blood circulation and accelerating metabolism, which can help the human body detoxify and lose weight.
- the technical solution adopted by the present application is: to provide a food processor, including: a housing assembly and a cutting mechanism, wherein the housing assembly is provided with a feeding bin, and the feeding bin is used to accommodate the food to be processed; the cutting mechanism includes: a cutting mechanism and a grinding mechanism. The cutting mechanism is used to cut the food to be processed; and the grinding mechanism is used to grind the food to be processed after being cut by the cutting mechanism.
- FIG. 5 is a schematic cross-sectional view of the cutting mechanism in FIG. 3 or FIG. 4 .
- first and second in this application are only used for descriptive purposes and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features.
- the meaning of “multiple” is at least two, such as two, three, etc., unless otherwise clearly and specifically limited.
- the terms “including” and “having” and any of their variations are intended to cover exclusive inclusions.
- a process, method, electronic device, product or device that includes a series of steps or units is not limited to the listed steps or units, but optionally also includes steps or units that are not listed, or optionally also includes other steps or units inherent to these processes, methods, products or devices.
- the present application provides a cutting mechanism 20, as shown in FIGS. 1-5 , the cutting mechanism 20 is used in a food processor 10, and the food processor 10 is used to process food materials into a state with higher nutritional value, such as processing garlic into garlic paste, etc.
- the present application mainly describes the cutting mechanism 20 and the food processor 10 of the present application in detail based on the specific application of processing garlic by the food processor 10.
- the food processor 10 equipped with the cutting mechanism 20 of the present application can also be used to process other types of food materials, such as potatoes, etc., which will not be described in detail herein.
- the cutting mechanism 20 includes: a knife cutting mechanism 200 and a grinding mechanism 100.
- the knife cutting mechanism 200 is used to cut the food to be processed;
- the grinding mechanism 100 is provided with a grinding chamber 130, and the grinding chamber 130 is provided with a feed inlet 150 and a discharge port 140, wherein the food to be processed cut by the knife cutting mechanism 200 enters the grinding chamber 130 along the feed inlet 150, and the grinding mechanism 100 is used to grind the food to be processed in the grinding chamber 130, and send the ground food to be processed out along the discharge port 140.
- the cutting mechanism 20 serves as a cutter of the food processor 10, which includes a cutting mechanism 200 and a grinding mechanism 100, wherein the cutting mechanism 200 is used to pre-treat the food to be processed by cutting, so as to process the food to be processed into a sheet or a smaller shape. Further, the food to be processed after pre-treatment is guided to the grinding mechanism 100.
- the grinding mechanism 100 is provided with a special grinding chamber 130, and the pre-treated food to be processed is guided to the grinding chamber 130 for grinding.
- the grinding chamber 130 is provided with a feed port 150 and a discharge port 140, and the pre-treated food to be processed enters the grinding chamber 130 from the feed port 150, and after being completely ground by the grinding mechanism 100, it is guided out along the discharge port 140 of the grinding chamber 130 to the corresponding material receiving part.
- the cutting mechanism 20 of the present application is provided with a grinding mechanism 100. After the food to be processed by the cutting mechanism 200, it enters the grinding chamber 130 along the feed inlet 150 and is completely processed by the grinding mechanism 100 before being discharged from the discharge port 140. Based on this, the cutting mechanism 20 introduces the food to be processed pre-processed by the cutting mechanism 200 into the grinding chamber 130, and grinds it through the grinding mechanism 100, which can effectively process the food to be processed into a viscous mud with higher nutritional value, thereby effectively improving the food processing quality of the cutting mechanism 20.
- the grinding mechanism 100 is provided with a special grinding chamber 130.
- the food to be processed pre-processed by the cutting mechanism 200 enters the grinding chamber 130 along the feed inlet 150 and is ground by the grinding mechanism 100, and the food is discharged from the discharge port 140 only after the grinding is completed. Based on this, all the food to be processed can be ground by the grinding mechanism 100, thereby effectively improving the food processing quality of the cutting mechanism 20.
- the grinding mechanism 100 includes: a first blade disc 110 and a second blade disc 120.
- the first blade disc 110 is provided with a feed port 150;
- the second blade disc 120 is provided on a side of the first blade disc 110 away from the cutting mechanism 200, and is provided opposite to the first blade disc 110 and spaced apart along the feeding direction X1 of the food to be processed, so as to form a grinding chamber 130; wherein any one or more of the first blade disc 110 and the second blade disc 120 are provided as rotating parts, and the first blade disc 110 and the second blade disc 120 can rotate relative to each other.
- the feeding direction X1 is perpendicular to the support plane of the food processor 10. Based on this setting, the food to be processed can flow into the cutting mechanism 20 more quickly under the action of gravity, thereby effectively improving the processing efficiency of the food processor 10.
- the grinding mechanism 100 includes a first blade disc 110 and a second blade disc 120, wherein the first blade disc 110 and the second blade disc 120 are arranged at intervals along the feeding direction X1 in the manner described above to form the above-mentioned grinding chamber 130.
- the cutting mechanism 200 is located on one side of the first blade disc 110 along the feeding direction X1, that is, the cutting mechanism 200 is located above the first blade disc 110 along the feeding direction X1, and the feeding port 150 is provided on the first blade disc 110.
- the pre-processed food to be processed can be introduced into the grinding chamber 130 more quickly and efficiently, thereby effectively improving the processing efficiency of the food processor 10.
- either the first blade disc 110 or the second blade disc 120 is configured as a rotating member, and the first blade disc 110 and the second blade disc 120 can rotate relative to each other.
- the first blade disc 110 is a fixed member fixedly connected to the housing assembly 600 of the food processor 10
- the second blade disc 120 is a rotating member, which can rotate with the first blade disc 110 under the drive of the driving mechanism 400, thereby realizing the grinding function.
- the first blade disc 110 and the second blade disc 120 are arranged at intervals along the feeding direction X1.
- the second blade disc 120 is located below the first blade disc 110 along the feeding direction X1. Based on this, the food to be processed that falls into the grinding chamber 130 along the feeding port 150 will be directly carried by the second blade disc 120, and the second blade disc 120 as a rotating member can play a function of throwing away the food to be processed, thereby grinding the food to be processed in the grinding chamber 130 more efficiently, effectively improving the grinding efficiency of the grinding mechanism 100.
- the first cutter disc 110 and the second cutter disc 120 can be both set as rotating parts.
- the rotation directions of the first cutter disc 110 and the second cutter disc 120 can be set to be opposite to each other, so that the first cutter disc 110 and the second cutter disc 120 can achieve relative rotation, thereby achieving a grinding function.
- the feeding direction X1 may also be arranged in other ways, which will not be described in detail herein.
- the feed port 150 is coaxially arranged with the second cutter disc 120, and the distance between the first cutter disc 110 and the second cutter disc 120 gradually decreases along a rotation axis perpendicular to the second cutter disc 120 and along a grinding direction X2 away from the rotation axis, wherein the discharge port 140 is arranged at a position where the distance between the first cutter disc 110 and the second cutter disc 120 is the smallest.
- the second blade disc 120 is configured as a rotating member, wherein the feed port 150 is coaxially arranged with the second blade disc 120, that is, the feed port 150 is coaxially arranged with the rotation axis of the second blade disc 120, based on which the food to be processed falls directly into the middle of the second blade disc 120 (that is, the area close to the rotation axis of the second blade disc 120) along the feed port 150.
- the spacing component between the first blade disc 110 and the second blade disc 120 is reduced, based on which the overall shape of the grinding chamber 130 is a structure that is narrow outside and wide inside, so that the food to be processed entering the grinding chamber 130 is gradually ground into a viscous mud by the grinding mechanism 100 along the grinding direction X2 under the action of the centrifugal force given by the second blade disc 120.
- the discharge port 140 is arranged at the position where the distance between the first blade disc 110 and the second blade disc 120 is the smallest, that is, the discharge port 140 is arranged at the smallest distance between the first blade disc 110 and the second blade disc 120 along the grinding direction X2.
- all the food materials to be processed can be fully ground in the grinding chamber 130 before being discharged, thereby effectively improving the food processing quality of the grinding mechanism 100.
- the food materials to be processed after grinding can be efficiently discharged from the grinding chamber 130 along the discharge port 140 under the action of the centrifugal force provided by the second blade disc 120, thereby effectively improving the processing efficiency of the grinding mechanism 100.
- first blade disc 110 and the second blade disc 120 are both provided with grinding teeth on one side close to the grinding chamber 130, wherein the grinding teeth include conical teeth or ghost teeth, and the tooth direction of the grinding teeth of the first blade disc 110 is opposite to the tooth direction of the grinding teeth of the second blade disc 120.
- first blade disc 110 and the second blade disc 120 may also adopt other types of blade discs, which will not be described in detail herein.
- the grinding mechanism 100 includes: a gear connection assembly 300 for adjusting the distance between the first cutter disc 110 and the second cutter disc 120 .
- the grinding mechanism 100 is provided with a gear connection assembly 300, wherein the gear connection assembly 300 can be used to adjust the distance between the first blade disc 110 and the second blade disc 120, based on which the grinding mechanism 100 can adjust different gears according to the grinding degree required by different ingredients to obtain the best grinding product, effectively improving the applicability of the food processor 10.
- garlic has the highest nutritional value when it is mashed garlic.
- the user can reduce the distance between the first blade disc 110 and the second blade disc 120 through the gear connection assembly 300 to obtain viscous mashed garlic, thereby effectively improving the user's eating experience.
- the user likes to eat granular garlic paste, the user can appropriately increase the distance between the first blade disc 110 and the second blade disc 120 through the gear connection assembly 300 to obtain the corresponding garlic paste.
- the gear connection assembly 300 includes a first connection portion 310 and a second connection portion 320 that are detachably connected; wherein, either the first connection portion 310 or the second connection portion 320 is fixed to the housing assembly 600 of the food processor 10, and the other is fixed to the first blade disc 110; the gear connection assembly 300 is configured such that when the first connection portion 310 and the second connection portion 320 move around the rotating axis at a preset angular displacement, the distance between the first blade disc 110 and the housing assembly 600 along the feeding direction X1 changes, thereby adjusting the distance between the first blade disc 110 and the second blade disc 120.
- the first blade disc 110 is a fixing member fixedly connected to the housing assembly 600, wherein the gear connection assembly 300 includes a first connection portion 310 and a second connection portion 320 that are detachably connected, one of the first connection portion 310 and the second connection portion 320 is fixed to the housing assembly 600 of the food processor 10, and the other is fixed to the first blade disc 110, and the first blade disc 110 and the housing assembly 600 are quickly detachably connected based on the connection portion and the second connection portion 320.
- the first connection portion 310 and the second connection portion 320 are configured to be relatively rotated around the rotation axis after disassembly and separation to a corresponding preset angular displacement and then connected, so that the spacing between the first blade disc 110 and the housing assembly 600 can be adjusted to change, thereby adjusting the spacing between the first blade disc 110 and the second blade disc 120.
- the first blade disc 110 is detachably connected to the shell assembly 600 via the above-mentioned gear connector.
- the first blade disc 110 can be disassembled along the feed direction X1, and after rotating around the rotating axis by a preset angle, the first blade disc 110 and the shell assembly 600 can be reassembled along the feed direction X1 so that the first blade disc 110 and the shell assembly 600 can obtain a connection relationship with different distances along the feed direction X1 before being relative to each other, thereby realizing gear adjustment.
- the first connecting portion 310 includes a plurality of first connecting members spaced apart along an arc direction X3 centered on the rotation axis of the rotating member, and the lengths of the plurality of first connecting members increase in sequence by a preset length along the arc direction X3;
- the second connecting portion 320 includes a plurality of second connecting members spaced apart along the arc direction X3, and the lengths of the plurality of second connecting members decrease in sequence by a preset length along the arc direction X3; wherein the corresponding first connecting members are detachably connected to the corresponding second connecting members.
- the number of first connectors of different lengths and the number of second connectors of different lengths determine the number of gears of the grinding mechanism 100.
- the number of gears of the grinding mechanism 100 is three gears
- the first connecting portion 310 includes three first connectors of different lengths, wherein the three first connectors can be arranged along the arc direction X3 and in a short-to-long arrangement.
- the corresponding second connecting portion 320 includes three second connectors of different lengths, wherein the three second connectors can be arranged along the arc direction X3 and in a long-to-short arrangement direction.
- the first connecting portion 310 and the second connecting portion 320 can have three connection relationships with different lengths along the feed direction X1 at three corresponding relative positions in the arc direction X3, so that there are three adjustable spacing relationships between the first cutter disc 110 and the second cutter disc 120, that is, three grinding gears.
- the grinding gear can be set to four gears, wherein the number of corresponding first connecting members is four, the number of corresponding second connecting members is four, and they are arranged in the above manner, which is not described in detail herein.
- the first connecting portion 310 and the second connecting portion 320 can adopt other methods to achieve multiple grinding gears, which is not described in detail herein.
- the arc reverse direction X3 can be set to the grinding direction X2 described above.
- the gear connection assembly 300 includes three groups of first connection parts 310 and three groups of second connection parts 320, wherein the three groups of first connection parts 310 are evenly spaced and fixed on the shell assembly 600 around the rotating shaft, and the three groups of second connection parts 320 are evenly spaced and fixed on the first blade disc 110 around the rotating shaft; the corresponding first connection parts 310 and the corresponding second connection parts 320 are detachably connected.
- the first connection part 310 is arranged on the housing assembly 600
- the second connection part 320 is arranged on the first blade disc 110.
- the gear assembly includes at least three groups of the above-mentioned first connection parts 310 and three groups of the above-mentioned second connection parts 320, and the three groups have the first connection parts 310 described in the above-mentioned embodiment, which are evenly spaced around the above-mentioned rotating shaft, and correspondingly, the three groups have the second connection parts 320 described in the above-mentioned embodiment, which are evenly spaced around the above-mentioned rotating shaft. Based on this arrangement, the connection stability between the first blade disc 110 and the housing assembly 600 can be effectively increased.
- the gear connection assembly 300 includes a total of 9 first connection members and 9 second connection members.
- the gear connection assembly 300 includes a total of 12 first connection members and 12 second connection members.
- both the first connecting member and the second connecting member are magnetic members, based on which the first connecting portion 310 and the second connecting portion 320 are detachably connected by magnetic force, which can effectively improve the shifting efficiency of the grinding mechanism 100 .
- the cutting mechanism 20 further includes: a driving mechanism 400 and a transmission shaft 500.
- the transmission shaft 500 is transmission-connected to the driving mechanism 400, and is transmission-connected to the cutting mechanism 200 and the grinding mechanism 100 in sequence along the feeding direction X1.
- the cutting mechanism 200 and the grinding mechanism 100 are driven by the same driving mechanism 400, and the cutting mechanism 200 and the grinding mechanism 100 are arranged on the same transmission shaft 500. Based on this, the component structure of the cutting mechanism 20 can be effectively saved, thereby effectively saving the cost of the cutting mechanism 20.
- the knife cutting mechanism 200 includes a plurality of blades spaced apart along the feeding direction X1, wherein the blades are connected to the transmission shaft 500.
- the knife cutting mechanism 200 includes a plurality of blades spaced apart along the feeding direction X1, based on which the knife cutting mechanism 200 can effectively cut the food to be processed arranged in the feeding direction X1, effectively preventing the food to be processed from being missed, thereby affecting the grinding of the grinding mechanism 100.
- the rotating shaft of the second cutter disc 120 described above is arranged to be coaxial with the transmission shaft 500 .
- the present application also provides a food processor 10, which includes: a shell assembly 600, which is provided with a feed bin 613, and the feed bin 613 is used to accommodate the food to be processed; the cutting mechanism 20 includes: a knife cutting mechanism 200 and a grinding mechanism 100; the knife cutting mechanism 200 is used to cut the food to be processed; the grinding mechanism 100 is used to grind the food to be processed after being cut by the knife cutting mechanism 200.
- the food processor 10 is provided with a housing assembly 600, wherein the housing assembly 600 is provided with a feed bin 613 for accommodating food to be processed, and the food to be processed in the feed bin 613 is guided to the knife cutting mechanism 200 along the feeding direction X1, and the knife cutting mechanism 200 cuts the food to be processed, and further, the grinding mechanism 100 grinds the food to be processed after being cut by the knife cutting mechanism 200.
- the cutting mechanism 20 of the food processor 10 is the cutting mechanism 20 described in any of the above embodiments, wherein, in other embodiments, the food processor 10 may also adopt other cutting components with a combination of knife cutting function and grinding function, and here the present invention mainly describes the food processor 10 of the present application with the cutting mechanism 20 described in any of the above embodiments.
- the food processor 10 of the present application includes a cutting mechanism 20, wherein the cutting mechanism 20 is provided with a knife cutting mechanism 200 and a grinding mechanism 100. After being cut by the knife cutting mechanism 200, the food to be processed is guided to the grinding mechanism 100. The grinding mechanism 100 grinds the food to be processed after being cut by the knife cutting mechanism 200. Based on this, the food to be processed can be effectively processed into a viscous mud with higher nutritional value, thereby effectively improving the food processing quality of the food processor 10.
- the cutting mechanism 20 and the shell assembly 600 are detachably connected, based on which the food processor 10 can separate the shell assembly 600 from the cutting mechanism 20 and clean them during daily use, thereby effectively improving the cleaning convenience of the food processor 10.
- the shell assembly 600 includes: a first shell 610 and a second shell 620 , the feed bin 613 is arranged in the first shell 610 ; the receiving bin 621 is arranged in the second shell 620 ; the first shell 610 and the cutting mechanism 20 are detachably arranged in the receiving bin 621 .
- the shell assembly 600 includes a first shell 610 and a second shell 620, and the second shell 620 is provided with a material receiving bin 621, wherein the feed bin 613 is formed by deformation of the first shell 610, wherein the first shell 610 and the second shell 620 are detachably connected, and the first shell 610 is arranged in the material receiving bin 621 of the second shell 620, wherein the side wall of the first shell 610 completely separates the material receiving bin 621 and the feed bin 613, based on this, it can effectively prevent unprocessed food to be processed from directly entering the material receiving bin 621.
- the cutting mechanism 20 and the first housing 610 are detachably assembled and then detachably assembled in the material receiving bin 621.
- the first housing 610, the second housing 620 and the cutting mechanism 20 are all detachably assembled, which can effectively improve the convenience of use of the food processor 10.
- the food processor 10 can separate and disassemble the first housing 610, the second housing 620 and the cutting mechanism 20 during daily use and clean them, thereby effectively improving the cleaning convenience of the food processor 10.
- the material receiving bin 621 is used to hold the processed food to be processed, and the details are described below.
- the housing assembly 600 further includes a lining cover 630, which is disposed on the opening of the feed bin 613, wherein the driving mechanism 400 is supported on a side of the lining cover 630 away from the feed bin 613, and a through hole is provided on the lining cover 630, through which the transmission shaft 500 passes through the feed bin 613 and extends to the receiving bin 621.
- the lining cover 630 is detachably connected to the first housing 610 and the second housing 620, respectively.
- the feed bin 613 includes a storage portion 611 and a cutting portion 612 arranged along the feed direction X1, and the knife cutting mechanism 200 is at least partially located in the cutting portion 612, wherein, along the vertical direction perpendicular to the feed direction X1, the difference between the radial dimension of the cutting portion 612 and the cutting radius of the knife cutting mechanism 200 is less than or equal to a preset threshold.
- the material storage part 611 is used to expand the storage capacity of the feed bin 613 for the food to be processed, so as to improve the working efficiency of the food processor 10.
- the cutting part 612 is arranged below the material storage part 611 along the feeding direction X1, and is used to cooperate with the knife cutting mechanism 200 to cut the food to be processed.
- the difference between the radial dimension of the cutting part 612 along the feeding direction X1 and the cutting radius of the knife cutting mechanism 200 is less than or equal to a preset threshold.
- the inner side wall of the material storage part 611 is inclined relative to the inner side wall of the material cutting part 612.
- the inner side wall of the material storage part 611 is inclined relative to the inner side wall of the material cutting part 612, thereby effectively improving the flow capacity of the food to be processed in the material storage part 611, so that the food to be processed in the material storage part 611 can flow to the material cutting part 612 more efficiently, thereby avoiding the food to be processed remaining in the material storage part 611 after the food processor 10 finishes working.
- the shell assembly 600 includes a first shell 610 and a second shell 620, and the second shell 620 is provided with a material receiving bin 621, wherein the material feeding bin 613 is formed by deformation of the first shell 610, wherein the first shell 610 is provided with a first port connecting portion 615, wherein the port connecting portion is arranged around the outer peripheral side of the cutting portion 612, and the outer peripheral side of the corresponding first blade disc 110
- the feed port 150 is provided with a second port connecting portion 160, wherein the first port connecting portion 615 and the second port connecting portion 160 cooperate to achieve sealing between the cutting portion 612 and the grinding chamber 130, based on this, it can effectively prevent the processed food from overflowing into the material receiving bin 621 during the cutting process, thereby effectively improving the processing quality of the food processor 10.
- part of the blades of the cutting mechanism 200 are located in the grinding chamber 130 . Based on this, the part of the blades located in the grinding chamber 130 can further cut the food to be processed in the grinding chamber 130 , thereby effectively improving the processing efficiency of the food processor 10 .
- the housing assembly 600 is further provided with a material receiving bin 621 , which is spaced apart from the material feeding bin 613 , and the material outlet 140 communicates with the grinding chamber 130 and the material receiving bin 621 .
- the material receiving bin 621 is spaced apart from the material feeding bin 613.
- the second housing 620 is provided with the material receiving bin 621
- the first housing 610 is provided in the material receiving bin 621 of the second housing 620, wherein the side wall of the first housing 610 completely separates the material receiving bin 621 from the material feeding bin 613, based on which it can effectively prevent the unprocessed food to be processed from directly entering the material receiving bin 621.
- the food processor 10 further includes: a blocking member 700, which is disposed on the cutting portion 612 and is used to slow down the movement of the food to be processed along the feeding direction X1, so as to cooperate with the knife cutting mechanism 200 to complete the cutting work.
- the blocking member 700 is a convex rib portion 700a extending along the axial direction of the cutting portion 612 of the cutting portion 612.
- the blocking member 700 is a horizontal bar 700b extending radially along the cutting portion 612, and is arranged at the bottom of the cutting portion 612 along the feeding direction X1. Based on this, the horizontal bar 700b can play a certain supporting role on the food to be processed located in the feed bin 613, thereby slowing down the descending speed of the food to be processed, and then cooperating with the knife cutting mechanism 200 to efficiently complete the cutting work.
- the inner wall of the feed bin 613 is evenly spaced with a plurality of raised portions 614 extending along the feed direction X1.
- the inner wall of the feed bin 613 presents a corrugated structure, thereby effectively reducing the contact area between the food to be processed and the wall surface of the inner wall of the feed bin 613, thereby effectively reducing the resistance of the food to be processed in the feed bin 613, and preventing some processed food from remaining on the inner wall of the feed bin 613.
Landscapes
- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- Food Science & Technology (AREA)
- Food-Manufacturing Devices (AREA)
Abstract
本申请提供一种料理机,包括:壳体组件及切料机构,壳体组件设置有进料仓,进料仓用于容置待处理食材;切料机构,包括:刀切机构及研磨机构。刀切机构用于切割待处理食材;研磨机构用于研磨被刀切机构切割后的待处理食材。通过上述方式,能有效地提升料理机的食材加工质量。
Description
本申请要求在2023年12月21日申请的申请号为CN202311774642.2,名称为《料理机》的中国专利申请的优先权。
本申请涉及电器技术领域,特别涉及一种料理机。
随着人们对健康生活要求的提高,人们对食材的营养价值也越来越重视。而实际生活中,大多数食材需要捣碎成粘稠泥状后才能更有效地的发挥其营养价值,例如大蒜,其作为拌料能有效提高食品口感,大蒜做成蒜泥后大蒜中的内源酶即蒜氨酸酶被激活,催化蒜氨酸分解合成的大蒜能使血管扩张降血压,可杀死多种类细菌。它不但具有抗氧化的功效,还有促进血液循环、加速新陈代谢的功能,能帮助人体排毒减重。目前人们要么通过传统手工的方法将食材加工成粘稠泥状,要么就是采用料理机自动对食材进行加工。采用传统手工方法加工食材,需要大量的人工成本才能将食材加工成粘稠泥状,而采用料理机加工食材,虽然效率有一定的提升,但现有的料理机只能做简单的捣碎处理,其加工质量并不能使得食材发挥其营养价值。
本申请提供一种料理机,用于提升料理机的食材加工质量。
为了解决上述技术问题,本申请采用的技术方案是:提供一种料理机,包括:壳体组件及切料机构,壳体组件设置有进料仓,进料仓用于容置待处理食材;切料机构,包括:刀切机构及研磨机构。刀切机构用于切割待处理食材;研磨机构用于研磨被刀切机构切割后的待处理食材。
本申请实施例的有益效果是:本申请的料理机包括壳体组件及切料机构,壳体组件设置有进料仓,进料仓用于容置待处理食材;切料机构,包括:刀切机构及研磨机构。刀切机构用于切割待处理食材;研磨机构用于研磨被刀切机构切割后的待处理食材。其中,切料机构设置有刀切机构和研磨机构,待处理食材经过刀切机构切割处理后导至研磨机构,研磨机构对经过刀切机构切割处理后的待处理食材进行研磨,基于此能有效地将待处理食材加工成具有更高营养价值的粘稠泥状,进而有效地提升料理机的食材加工质量。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,而非限制本申请。
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请的料理机的三维结构示意图;
图2是图1中的料理机的爆炸结构示意图;
图3是图1中的料理机的A向截面一实施例的结构示意图;
图4是图1中的料理机的A向截面另一实施例的结构示意图;
图5是图3或图4中的切料机构的截面示意图。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,均属于本申请保护的范围。
本申请中的术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。本申请的描述中,“多个”的含义是至少两个,例如两个,三个等,除非另有明确具体的限定。此外,术语“包括”和“具有”以及它们任何变形,意图在于覆盖排他的包含。例如包含了一系列步骤或单元的过程、方法、电子设备、产品或设备没有限定于已列出的步骤或单元,而是可选地还包括没有列出的步骤或单元,或可选地还包括对于这些过程、方法、产品或设备固有的其它步骤或单元。
本申请提供一种切料机构20,如图1-5所示,切料机构20用于料理机10,料理机10用于将食材加工为更具营养价值的状态,例如将大蒜加工为蒜泥等,本申请主要以料理机10加工大蒜的具体应用对本申请的切料机构20和料理机10进行详细的阐述。在其它实施例中,装备本申请的切料机构20的料理机10也可用于加工其它类型的食材,例如土豆等,这里本文不加以详细赘述。
其中,如图3-5所示,切料机构20包括:刀切机构200和研磨机构100。刀切机构200用于切割待处理食材;研磨机构100设置有研磨腔130,研磨腔130设置有进料口150及出料口140,其中,被刀切机构200切割后的待处理食材沿进料口150进入研磨腔130,研磨机构100用于研磨研磨腔130内的待处理食材,并将研磨完全后的待处理食材沿出料口140送出。
具体地,在本实施例中,切料机构20作为料理机10的刀具,其包括刀切机构200和研磨机构100,其中,刀切机构200用于通过刀割方式对待处理食材进行预处理,以将待处理食材加工成片状或形态更小形状。进一步地,经过预处理后的待处理食材被引导至研磨机构100。其中,研磨机构100设置有专门的研磨腔130,预处理后的待处理食材被引导至研磨腔130进行研磨处理。其中,研磨腔130设置有进料口150和出料口140,预处理后的待处理食材从进料口150进入研磨腔130,并被研磨机构100研磨完全后沿研磨腔130的出料口140导出至对应的接料的部位。
区别于现有技术,本申请的切料机构20设置有研磨机构100,待处理食材经过刀切机构200处理后沿进料口150进入研磨腔130被研磨机构100加工完全后再沿出料口140导出,基于此切料机构20将刀切机构200预处理后的待处理食材导入研磨腔130,并通过研磨机构100进行研磨,能有效地将待处理食材加工成具有更高营养价值的粘稠泥状,进而有效地提升切料机构20的食材加工质量。并且,研磨机构100设置有专门的研磨腔130,被刀切机构200预处理后的待处理食材沿进料口150进入研磨腔130内被研磨机构100研磨,并且食材在完成研磨后才会沿出料口140导出,基于此使得所有待处理食材均能被研磨机构100研磨,从而有效地提升切料机构20的食材加工质量。
可选地,研磨机构100包括:第一刀盘110和第二刀盘120。第一刀盘110设置有进料口150;第二刀盘120设置于第一刀盘110背离刀切机构200的一侧,且沿待处理食材的进料方向X1,与第一刀盘110相对设置间隔设置,以形成研磨腔130;其中,第一刀盘110和第二刀盘120中的任一者或多者设置为转动件,第一刀盘110与第二刀盘120可相对转动。
具体地,在本实施例中,进料方向X1与料理机10的支撑平面垂直,基于此设置使得待处理食材能在重力的作用下,更快地流入切料机构20,从而有效地提升料理机10的加工效率。研磨机构100包括第一刀盘110和第二刀盘120,其中,第一刀盘110和第二刀盘120通过上述内容所阐述的方式沿进料方向X1间隔布置,以形成上述的研磨腔130。其中,刀切机构200沿进料方向X1位于第一刀盘110的一侧,也即刀切机构200沿进料方向X1位于第一刀盘110的上方,进料口150设置于第一刀盘110,基于此经过预处理的待处理食材能更快速高效地,导入研磨腔130,从而有效地提升料理机10的加工效率。进一步地,第一刀盘110和第二刀盘120中的任一者或者设置为转动件,第一刀盘110与第二刀盘120可相对转动。例如在本实施例中,第一刀盘110为与料理机10的壳体组件600固定连接的固定件,第二刀盘120为作为转动件,其在驱动机构400的驱动下可想多第一刀盘110转动,从而实现研磨功能。并且第一刀盘110与第二刀盘120沿进料方向X1上间隔设置,换而言之,第二刀盘120沿进料方向X1位于第一刀盘110的下方,基于此沿进料口150落入研磨腔130的待处理食材将有第二刀盘120直接承载,而第二刀盘120作为转动件能对待处理食材起到甩飞功能,进而能对研磨腔130内的待处理食材进行更高效的研磨,有效地提升研磨机构100的研磨效率。
可选地,在其它实施例中,可以将第一刀盘110和第二刀盘120均设置为转动件,例如将第一刀盘110和第二刀盘120的转动方向设置为互为相反的,从而使得第一刀盘110和第二刀盘120实现相对转动,进而实现研磨功能。
其中,在其它实施例中,进料方向X1也可以按照其它方式布置,在这里本文不进行详细的赘述。
可选地,进料口150与第二刀盘120同轴设置,沿垂直于第二刀盘120的转轴,且沿远离转轴的研磨方向X2,第一刀盘110与第二刀盘120之间的间距逐渐减小,其中,出料口140设置于第一刀盘110与第二刀盘120之间间距最小的位置。
具体地,在本实施例中,第二刀盘120设置为转动件,其中,进料口150与第二刀盘120同轴设置,也即进料口150设置为与第二刀盘120的转轴同轴,基于此使得待处理食材沿进料口150直接落在第二刀盘120的中部(也即靠近第二刀盘120的转轴的区域)。进一步地,沿远离转轴的研磨方向X2,第一刀盘110与第二刀盘120之间的间距组件减小,基于此使得研磨腔130的整体形状为外窄里宽的结构,从而使得进入研磨腔130的待处理食材,在第二刀盘120赋予的离心力的作用下,沿研磨方向X2被研磨机构100逐渐地研磨至粘稠泥状。进一步地,出料口140设置于第一刀盘110与第二刀盘120之间间距最小的位置,也即出料口140沿研磨方向X2设置于第一刀盘110和第二刀盘120的最小间隔处,在该位置和第一刀盘110和第二刀盘120的边缘位置,也即研磨腔130的边缘位置,基于此使得所有待处理食材能在研磨腔130内充分研磨后再导出,进而有效地提升研磨机构100的食材加工质量。其中,在本实施例中,研磨完成后的待处理食材在第二刀盘120提供的离心力的作用下能高效地沿出料口140导出研磨腔130,从而有效地提升研磨机构100的加工效率。
可选地,第一刀盘110和第二刀盘120靠近研磨腔130的一侧均设置有研磨齿,其中,研磨齿包括锥形齿或鬼齿,并且第一刀盘110的研磨齿的齿向和第二刀盘120的研磨齿的齿向互逆。可选地,在其它实施例中,第一刀盘110和第二刀盘120也可采用其它类型的刀盘,这里本文不进行详细赘述。
可选地,如图2和图5所示,研磨机构100包括:挡位连接组件300,用于调节第一刀盘110与第二刀盘120之间的间距。
具体地,研磨机构100设置有挡位连接组件300,其中,挡位连接组件300可用于调节第一刀盘110和第二刀盘120之间的间距,基于此使得研磨机构100能针对不同的食材所需的研磨程度,调节不同的挡位,以获得最佳的研磨产物,有效地提升料理机10的适用性。例如,大蒜在作为蒜泥时其营养价值最高,用户可通过挡位连接组件300缩小第一刀盘110与第二刀盘120之间的间距,以获得粘稠泥状的蒜泥,从而有效地提升用户的食用体验。又例如,用户喜欢食用碎粒状的蒜蓉,用户可通过挡位连接组件300适当地增大第一刀盘110和第二刀盘120之间的间距,以获得对应蒜蓉。
可选地,挡位连接组件300包括可拆卸连接的第一连接部310和第二连接部320;其中,第一连接部310和第二连接部320中的任一者固定于料理机10的壳体组件600,另一者固定于第一刀盘110;挡位连接组件300设置为当第一连接部310和第二连接部320围绕转轴运动预设角位移时,沿进料方向X1第一刀盘110与壳体组件600之间的间距发生变化,从而调节第一刀盘110与第二刀盘120之间的间距。
具体地,在本实施例中,第一刀盘110为与壳体组件600固定连接的固定件,其中,挡位连接组件300包括可拆卸连接的第一连接部310和第二连接部320,第一连接部310和第二连接部320中的任一者固定于料理机10的壳体组件600,另一者固定于第一刀盘110,第一刀盘110和壳体组件600基于连接部和第二连接部320实现快速的可拆卸连接。其中,第一连接部310和第二连接部320设置为,拆卸分离后围绕转轴相对转动对应的预设角位移后再连接,能调节第一刀盘110和壳体组件600之间的间距发生变化,从而调节第一刀盘110与第二刀盘120之间的间距。例如,在切料组件与壳体组件600组装后,沿进料方向X1,第一刀盘110与壳体组件600的间距以及第二刀盘120与壳体组件600的间距,均为相对固定的,在本申请中,第一刀盘110通过上述的挡位连接件与壳体组件600进行可拆卸连接,在需要切换挡位(也即在需要调节第一刀盘110和第二刀盘120之间的间距时),可沿进料方向X1将第一刀盘110拆卸,并围绕转轴转动预设角度后,在沿进料方向X1将第一刀盘110和壳体组件600重新组装即可使第一刀盘110和壳体组件600相对之前获得沿进料方向X1间距不同的连接关系,从而实现挡位调节。
可选地,第一连接部310包括多个沿以转动件的转轴为中心的弧形方向X3间隔设置的第一连接件,多个第一连接件的长度沿弧形方向X3依次以预设长度增加;第二连接部320包括多个沿弧形方向X3间隔设置的第二连接件,多个第二连接件的长度沿弧形方向X3依次以预设长度减小;其中,对应的第一连接件与对应的第二连接件可拆卸连接。
具体地,在本实施例中,不同长度的第一连接件的个数和不同长度的第二连接件的个数决定着研磨机构100的挡位个数。例如在本实施例中,研磨机构100的挡位个数为三挡,那么第一连接部310包括三个不同长度的第一连接件,其中,这三个第一连接件可沿弧形方向X3并按照由短到长的排布方式排布。对应的第二连接部320包括三个不同长度的第二连接件,其中,这三个第二连接件可沿弧形方向X3并按照长到短的排布方向排布。基于上述排布方式,能使得第一连接部310和第二连接部320在弧形方向X3上的三个对应的相对位置上具有三个沿进料方向X1长度不同的连接关系,从而使得第一刀盘110和第二刀盘120之间存在三个可调节的间距关系,也即三个研磨挡位。可选地,在其它实施例中,研磨挡位可以设置为四挡,其中,对应的第一连接件的个数为四个,第二连接件的个数为四个,并按照上述方式排布即可,这里本文不再详细赘述。可选地,在其它实施例中,第一连接部310和第二连接部320可采用其它方式实现多个研磨挡位,这里本文不再详细赘述。可选地,在本实施例中,弧形反向X3可设置为上述所阐述的研磨方向X2。
可选地,挡位连接组件300包括三组第一连接部310及三组第二连接部320,其中,三组第一连接部310围绕转轴均匀间隔固定于壳体组件600上,三组第二连接部320围绕转轴均匀间隔固定于第一刀盘110上;对应的第一连接部310与对应的第二连接部320可拆卸连接。
具体地,在本实施例中,第一连接部310设置于壳体组件600上,第二连接部320设置于第一刀盘110上。其中,挡位组件包括至少三组上述的第一连接部310和三组上述第二连接部320,三组具有上述实施例所阐述的第一连接部310,围绕上述所阐述的转轴,均匀间隔设置,对应的,三组具有上述实施例所阐述的第二连接部320围绕上述所阐述的转轴,均匀间隔设置。基于此设置能有效地增加第一刀盘110与壳体组件600之间的连接稳定性。基于上述方式,具有三个挡位的研磨机构100,挡位连接组件300总共包括9个第一连接件和9个第二连接件。对应的,若研磨机构100的挡位为四个挡位,挡位连接组件300总共包括12个第一连接件和12个第二连接件。
可选地,第一连接件和第二连接件均为磁性件,基于此使得第一连接部310和第二连接部320通过磁性力实现可拆卸连接能有效地提升研磨机构100的换挡效率。
可选地,切料机构20还包括:驱动机构400及传动轴500。传动轴500与驱动机构400传动连接,且沿进料方向X1依次与刀切机构200及研磨机构100传动连接。
具体地,在本实施例中,刀切机构200与研磨机构100采用同一个驱动机构400进行驱动,并且刀切机构200和研磨机构100设置在同一传动轴500上,基于此能有效地节省切料机构20的部件结构,从而有效地节省切料机构20的成本。
可选地,刀切机构200包括多个沿进料方向X1间隔设置的刀片,其中,刀片与传动轴500连接。具体地,在本实施例中,刀切机构200包括多个刀片,其中,多个刀片沿进料方向X1间隔设置,基于此刀切机构200能对进料方向X1上排布的待处理食材进行有效地切割,有效地防止待处理食材出现漏切等情况,从而影响研磨机构100的研磨。
可选地,在本实施例中,上述内容所阐述的第二刀盘120的转轴设置为与传动轴500同轴设置。
可选地,如图2-4所示,本申请还提供一种料理机10,其包括:壳体组件600,设置有进料仓613,进料仓613用于容置待处理食材;切料机构20包括:刀切机构200及研磨机构100;刀切机构200用于切割待处理食材;研磨机构100用于研磨被刀切机构200切割后的待处理食材。
具体地,在本实施例中,料理机10设置有壳体组件600,其中,壳体组件600设置有用于容置待处理食材的进料仓613,进料仓613内的待处理食材沿进料方向X1导至刀切机构200,刀切机构200对待处理食材进行切割处理,进一步,研磨机构100对被刀切机构200切割处理后的待处理进行研磨。可选地,在本实施例中,料理机10的切料机构20为上述任一实施例所阐述的切料机构20,其中,在其它实施例中,料理机10也可采用其它具备有刀切功能和研磨功能组合的切料组件,这里本文主要以上述任一实施例所阐述的切料机构20对本申请的料理机10进行阐述。
区别于现有技术,本申请的料理机10包括切料机构20,其中,切料机构20设置有刀切机构200和研磨机构100,待处理食材经过刀切机构200切割处理后导至研磨机构100,研磨机构100对经过刀切机构200切割处理后的待处理食材进行研磨,基于此能有效地将待处理食材加工成具有更高营养价值的粘稠泥状,进而有效地提升料理机10的食材加工质量。
可选地,切料机构20与壳体组件600可拆卸连接,基于此使得料理机10在日常实用过程中能将壳体组件600与切料机构20分开拆卸并进行清洁,从而有效地提升料理机10的清洁便捷性。
可选地,壳体组件600包括:第一壳体610和第二壳体620,进料仓613设置于第一壳体610;接料仓621设置于第二壳体620;第一壳体610及切料机构20可拆卸设置于接料仓621内。
具体地,在本实施例中,壳体组件600包括第一壳体610和第二壳体620,第二壳体620设置有接料仓621,其中,进料仓613由第一壳体610形变形成,其中,第一壳体610与第二壳体620可拆卸连接,切第一壳体610设置于第二壳体620的接料仓621中,其中,第一壳体610的侧壁将接料仓621和进料仓613完全隔开,基于此能有效地防止未处理过的待处理食材直接进入接料仓621。其中,切料机构20与第一壳体610以可拆卸组装后可拆卸组装于接料仓621内,基于此,第一壳体610、第二壳体620及切料机构20均以可拆卸方式进行组装,基于此能有效地提升料理机10的使用便捷性,并且基于该方式,使得料理机10在日常使用过程中能将第一壳体610、第二壳体620和切料机构20分开拆卸并进行清洁,从而有效地提升料理机10的清洁便捷性。其中,接料仓621为用于盛放加工处理好后的待处理食材,具体参见下文内容所阐述的。
可选地,壳体组件600还包括衬盖630,其盖设于进料仓613的仓口,其中,驱动机构400承托于衬盖630背离进料仓613的一侧,衬盖630上设置由过孔,传动轴500穿过该过孔穿过进料仓613并延伸至接料仓621。其中,衬盖630分别与第一壳体610和第二壳体620可拆卸连接。
可选地,进料仓613包括沿进料方向X1设置的存料部611及切料部612,刀切机构200至少部分位于切料部612,其中,沿垂直于进料方向X1的垂直方向,切料部612的径向尺寸与刀切机构200的切割半径之差小于等于预设阈值。
具体地,在本实施例中,存料部611用于扩到进料仓613对待处理食材的存储容量,以提升料理机10的工作效率。其中,切料部612沿进料方向X1设置于存料部611的下方,用于配合刀切机构200切割待处理食材。其中,切料部612沿进料方向X1的径向尺寸于刀切机构200的切割半径之差小于等于预设阈值。例如在本实施例中,切料部612位以圆柱形长筒,刀切机构200包括多个刀片组成,其中刀切机构200中的至少部分刀片位于切料部612内,其中,每个刀片围绕传动轴500所扫过的切割面的半径即为切割半径。切割半径于切料部612的径向尺寸之差小于等于预设阈值,其中,该预设阀值可根据料理机10的实际应用来确定,基于此设置,能使得切料机构20能对切料部612中的待处理食材进行充分的切割。
可选地,存料部611的内侧壁相对切料部612的内侧壁倾斜设置。具体地,在本实施例中,存料部611的内侧壁相对切料部612的内侧壁倾斜设置,基于此有效地提升位于存料部611内的待处理食材的流动能力,使得位于存料部611内的待处理食材能更高效地流动至切料部612,避免料理机10工作结束后存料部611中还残留有待处理食材。
可选地,在一些实施例中,只需将靠近切料部612的存料部611的部分内侧壁设置为相对切料部612的内侧壁倾斜,即可实现上述相同的效果,同时还能有效地提升存料部611的容量。
可选地,研磨腔130与切料部612连通,刀切机构200至少部分位于研磨腔130。
具体地,在本实施例中,切料部612和研磨腔130连通切密封设置,其中,切料部612和研磨腔130密封设置可以理解为,切料部612和研磨腔130之间设置为不允许待处理食材溢出。例如,如图3所示,在本实施例中,壳体组件600包括第一壳体610和第二壳体620,第二壳体620设置有接料仓621,其中,进料仓613由第一壳体610形变形成,其中,第一壳体610设置有第一端口连接部615,其中,端口连接部围设于切料部612的外周侧,对应的第一刀盘110的进料口150的外周侧设置有第二端口连接部160,其中,第一端口连接部615和第二端口连接部160配合,从而实现切料部612和研磨腔130密封,基于此能有效地防止待处理食材在切割处理的过程中溢出至接料仓621,从而有效地提升料理机10的加工质量。其中,如图3和图4所示,刀切机构200的部分刀片位于研磨腔130内,基于此位于研磨腔130内的该部分刀片能进一步地对研磨腔130内的待处理食材进行切割,从而有效地提升料理机10的加工效率。
可选地,壳体组件600还设置有接料仓621,接料仓621与进料仓613间隔设置,且出料口140连通研磨腔130与接料仓621。
具体地,在本实施例中,接料仓621与进料仓613间隔设置,例如,在本实施例中,第二壳体620设置由接料仓621,第一壳体610设置于第二壳体620的接料仓621中,其中,第一壳体610的侧壁将接料仓621和进料仓613完全隔开,基于此能有效地防止未处理过的待处理食材直接进入接料仓621。进一步地,研磨腔130通过出料口140与接料仓621连通,基于此在进料仓613内的待处理食材只能沿进料方向X1依次经过刀切机构200和切料机构20后才能沿出料口140导出至接料仓621,从而有效地提升料理机10的加工质量。
可选地,料理机10还包括:阻挡件700,其设置于切料部612,用于沿进料方向X1减缓待处理食材的移动,以配合刀切机构200完成切割工作。可选地,如图3所示,在本实施例中,阻挡件700为切料部612沿切料部612的轴向延伸的凸肋部700a,具体地,在本实施例中,凸肋部700a从存料部611开始沿切料部612的轴向延伸至切料部612的底部,其中,凸肋部700a沿切料部612的径向的突出高度小于上述内容所阐述的预设阈值,基于此,凸肋部700a能配合刀切机构200对待处理食材进行更有效地的切割。
可选地,图4所示,阻挡件700为切料部612沿切料部612的径向延伸的横条700b,其沿进料方向X1设置于切料部612的底部,基于此横条700b能对位于进料仓613内的待处理食材起到一定的承托作用,从而延缓待处理食材的下降速度,进而配合刀切机构200高效地完成切割工作。
可选地,进料仓613的内侧壁均匀间隔设置有多个沿进料方向X1延伸的凸起部614,基于该方式,使得进料仓613的内侧壁呈现波纹状的机构,从而有效地减少待处理食材与进料仓613的内侧壁的壁面的接触面积,进而有效地减少待处理食材在进料仓613内的阻力,防止部分处理食材残留在进料仓613的内侧壁上。
值得注意的是,在本文附图仅是为了展示本申请发明产品的结构关系以及连接关系,并不因此限定本申请发明产品的具体结构尺寸。
以上所述仅为本发明的实施方式,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。
Claims (10)
- 一种料理机,其特征在于,包括:壳体组件,设置有进料仓,所述进料仓用于容置待处理食材;切料机构,包括:刀切机构,用于切割所述待处理食材;研磨机构,用于研磨被所述刀切机构切割后的所述待处理食材。
- 根据权利要求1所述的料理机,其特征在于,所述进料仓包括沿进料方向设置的存料部及切料部,所述刀切机构至少部分位于所述切料部,其中,沿垂直于所述进料方向的垂直方向,所述切料部的径向尺寸与所述刀切机构的切割半径之差小于等于预设阈值。
- 根据权利要求2所述的料理机,其特征在于,所述存料部的内侧壁相对所述切料部的内侧壁倾斜设置。
- 根据权利要求2所述料理机,其特征在于,所述研磨机构设置有研磨腔,所述研磨腔与所述切料部连通,所述刀切机构至少部分位于所述研磨腔。
- 根据权利要求4所述的料理机,其特征在于,所述研磨腔设置有出料口,所述壳体组件还设置有接料仓,所述接料仓与所述进料仓间隔设置,且所述出料口连通所述研磨腔与所述接料仓。
- 根据权利要求4所述的料理机,其特征在于,所述研磨机构包括:第一刀盘,设置有与所述切料部连通的进料口;第二刀盘,设置于所述第一刀盘背离所述刀切机构的一侧,且沿所述待处理食材的进料方向,与所述第一刀盘相对设置间隔设置,以形成所述研磨腔;所述第一刀盘和所述第二刀盘中的任一者或多者设置为转动件,所述第一刀盘与所述第二刀盘可相对转动;挡位连接组件,分别与所述第一刀盘及所述壳体组件连接,所述挡位连接组件用于调节所述第一刀盘与所述第二刀盘之间的间距。
- 根据权利要求2所述的料理机,其特征在于,所述料理机还包括:阻挡件,设置于所述切料部,用于沿所述进料方向减缓所述待处理食材的移动,以配合所述刀切机构完成切割工作。
- 根据权利要求1所述的料理机,其特征在于,所述进料仓的内侧壁均匀间隔设置有多个沿所述进料方向延伸的凸起部。
- 根据权利要求1或5所述的料理机,其特征在于,所述研磨机构设置有出料口,所述壳体组件包括:第一壳体,所述进料仓设置于所述第一壳体;第二壳体,所述接料仓设置于所述第二壳体;所述第一壳体及所述切料机构可拆卸设置于所述接料仓内。
- 根据权利要求1所述的料理机,其特征在于,所述切料机构还包括:驱动机构,与所述刀切机构及所述研磨机构传动连接,用于驱动所述刀切机构及所述研磨机构工作;其中,所述刀切机构包括多个沿进料方向间隔设置的刀片,其中,所述刀片与所述驱动机构传动连接。
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202311774642.2 | 2023-12-21 | ||
| CN202311774642.2A CN117652903A (zh) | 2023-12-21 | 2023-12-21 | 料理机 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2025130573A1 true WO2025130573A1 (zh) | 2025-06-26 |
Family
ID=90066099
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2024/135977 Pending WO2025130573A1 (zh) | 2023-12-21 | 2024-11-30 | 料理机 |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN117652903A (zh) |
| WO (1) | WO2025130573A1 (zh) |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN117652903A (zh) * | 2023-12-21 | 2024-03-08 | 李伟虎 | 料理机 |
Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN201911851U (zh) * | 2010-11-23 | 2011-08-03 | 林暐智 | 蔬果与食物切割研磨机 |
| KR20180004649A (ko) * | 2016-07-04 | 2018-01-12 | 윤임규 | 맷돌 |
| CN111973015A (zh) * | 2020-09-04 | 2020-11-24 | 广东新宝电器股份有限公司 | 研磨机构及研磨机 |
| CN113261862A (zh) * | 2021-06-18 | 2021-08-17 | 唐锋机电科技(深圳)有限公司 | 一种具有一体式双盘结构的研磨机及其装配方法 |
| EP3944795A1 (en) * | 2020-07-31 | 2022-02-02 | D. Joel Cunill Sanchez | Milling system for grinding grain and grinding apparatus that incorporates it |
| CN117582137A (zh) * | 2023-12-21 | 2024-02-23 | 李伟虎 | 切料机构及料理机 |
| CN117652903A (zh) * | 2023-12-21 | 2024-03-08 | 李伟虎 | 料理机 |
-
2023
- 2023-12-21 CN CN202311774642.2A patent/CN117652903A/zh active Pending
-
2024
- 2024-11-30 WO PCT/CN2024/135977 patent/WO2025130573A1/zh active Pending
Patent Citations (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN201911851U (zh) * | 2010-11-23 | 2011-08-03 | 林暐智 | 蔬果与食物切割研磨机 |
| KR20180004649A (ko) * | 2016-07-04 | 2018-01-12 | 윤임규 | 맷돌 |
| EP3944795A1 (en) * | 2020-07-31 | 2022-02-02 | D. Joel Cunill Sanchez | Milling system for grinding grain and grinding apparatus that incorporates it |
| CN111973015A (zh) * | 2020-09-04 | 2020-11-24 | 广东新宝电器股份有限公司 | 研磨机构及研磨机 |
| CN113261862A (zh) * | 2021-06-18 | 2021-08-17 | 唐锋机电科技(深圳)有限公司 | 一种具有一体式双盘结构的研磨机及其装配方法 |
| CN117582137A (zh) * | 2023-12-21 | 2024-02-23 | 李伟虎 | 切料机构及料理机 |
| CN117652903A (zh) * | 2023-12-21 | 2024-03-08 | 李伟虎 | 料理机 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN117652903A (zh) | 2024-03-08 |
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN217161866U (zh) | 一种切菜器用切割组件及手持式电动切菜器 | |
| US4640467A (en) | Kitchen utensil | |
| WO2025130573A1 (zh) | 料理机 | |
| CN110270417A (zh) | 一种谷物原料的混合制粉装置 | |
| WO2018171505A1 (zh) | 一种多功能的食品加工机 | |
| CN208447351U (zh) | 料理机 | |
| CN101803884B (zh) | 食品处理机剪切式粉碎刀具结构 | |
| CN117582137A (zh) | 切料机构及料理机 | |
| CN109590056B (zh) | 留胚米加工成三段的方法和产品及用途 | |
| CN108378277A (zh) | 甜玉米预制粉的制备方法 | |
| CN208822574U (zh) | 电机驱动组件和料理机 | |
| CN207042630U (zh) | 一种绞龙机构及绞肉机 | |
| CN2103249U (zh) | 小型铡草粉碎两用机 | |
| CN110933996A (zh) | 一种玉米脱粒穗轴粉碎同步装置 | |
| CN207561828U (zh) | 料理机的刀片组及料理机 | |
| CN213248619U (zh) | 料理机 | |
| CN212326216U (zh) | 一种食物料理器 | |
| CN208447357U (zh) | 料理机 | |
| CN208524680U (zh) | 料理机 | |
| CN217488401U (zh) | 搅拌杯组件及料理机 | |
| CN207994807U (zh) | 电机和料理机 | |
| CN223008984U (zh) | 料理机 | |
| CN208973540U (zh) | 一种精磨器组件及其动磨件 | |
| CN218791923U (zh) | 一种食材料理机 | |
| CN211049174U (zh) | 一种母婴辅食用搅拌器 |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| 121 | Ep: the epo has been informed by wipo that ep was designated in this application |
Ref document number: 24906058 Country of ref document: EP Kind code of ref document: A1 |