WO2018103445A1 - 防溢圈和食物料理机 - Google Patents
防溢圈和食物料理机 Download PDFInfo
- Publication number
- WO2018103445A1 WO2018103445A1 PCT/CN2017/105424 CN2017105424W WO2018103445A1 WO 2018103445 A1 WO2018103445 A1 WO 2018103445A1 CN 2017105424 W CN2017105424 W CN 2017105424W WO 2018103445 A1 WO2018103445 A1 WO 2018103445A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- annular body
- cup
- overflow
- detecting portion
- ring
- 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.)
- Ceased
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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
- A47J27/00—Cooking-vessels
- A47J27/56—Preventing boiling over, e.g. of milk
-
- 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
- A47J43/04—Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
- A47J43/07—Parts or details, e.g. mixing tools, whipping tools
- A47J43/075—Safety devices
- A47J43/0761—Safety devices for machines with tools driven from the lower side
-
- 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
- A47J43/04—Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
- A47J43/046—Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven with tools driven from the bottom side
-
- 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
- A47J43/04—Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
- A47J43/07—Parts or details, e.g. mixing tools, whipping tools
- A47J43/0727—Mixing bowls
Definitions
- the present application relates to the field of home appliance technology, and in particular, to an anti-overflow ring and a food cooking machine having the anti-overflow ring.
- the main purpose of the present application is to provide an anti-overflow ring, which is intended to simplify the anti-overflow detection structure of the food cooking machine, and accurately detect whether the food material overflows during the food cooking machine stirring the food material.
- an anti-overflow ring proposed by the present application includes an annular body, a detecting portion connected to an inner edge of the annular body and extending along one side of the annular body, and a lead connecting structure connected to an outer edge of the annular body.
- the annular body, the detecting portion, and the lead connecting structure are electrically connected.
- the outer diameter D1 of the annular body ranges from 50 mm to 80 mm.
- the inner diameter of the annular body ranges from 55 to 65 millimeters.
- the horizontal projected area of the annular body ranges from 1300 mm2 to 2000 mm2.
- the annular body has a thickness d ranging from 0.5 mm to 3 mm.
- the angle a between the side wall of the detecting portion and the annular body ranges from 60 to 120 degrees.
- the height h of the detecting portion ranges from 1 to 25 mm.
- the detecting portion is a cylindrical body fixedly connected to an inner edge of the annular body.
- the lead connection structure includes a rib connected to an outer edge of the annular body, and the rib is provided with a threading hole away from an end of the annular body.
- the annular body, the detecting portion and the protruding rib are all made of metal, and the three are of a unitary structure.
- the present application also provides a food cooking machine comprising a stirring cup assembly, the agitating cup assembly comprising a stirring cup and a lid assembly covering the cup mouth of the stirring cup, the lid assembly comprising a lid
- a food cooking machine comprising a stirring cup assembly, the agitating cup assembly comprising a stirring cup and a lid assembly covering the cup mouth of the stirring cup, the lid assembly comprising a lid
- the lower cover of the cup mouth of the agitating cup, the lower cover is provided with a feeding port that communicates with the inner cavity of the stirring cup, and the agitating cup assembly further comprises an anti-overflow ring mounted on the periphery of the feeding port.
- the lower cover is recessed at a periphery of the feeding opening to form a mounting groove that communicates with the feeding port, and the overflow ring includes an annular body, and the annular body is embedded in the mounting groove.
- the annular body has a thickness of 0.5 to 3 mm, and the depth of the mounting groove matches the thickness of the annular body.
- the ratio of the diameter D2 of the lower cover to the outer diameter D1 of the annular body ranges from 1.1 to 3.5.
- the diameter D2 of the lower cover ranges from 90 to 180 mm, and the outer diameter D1 of the annular body ranges from 55 to 80 mm.
- the horizontal projected area of the annular body ranges from 1300 mm2 to 2000 mm2.
- the overflow ring further includes a detecting portion connected to an inner edge of the annular body and extending along a side of the annular body, the detecting portion abutting against an inner wall of the feeding port.
- the angle a between the side wall of the detecting portion and the annular body ranges from 60 to 120 degrees.
- the height h of the detecting portion ranges from 1 to 25 mm.
- the detecting portion is a cylindrical body fixedly connected to an inner edge of the annular body.
- the anti-overflow ring further includes a lead connection structure connected to an outer edge of the annular body, and the lower cover is further recessed at a periphery of the feed opening to form a fixing groove communicating with the mounting groove.
- the lead connection structure is embedded in the fixing groove.
- the lead connection structure includes a rib connected to an outer edge of the annular body, and the rib is provided with a threading hole away from an end of the annular body.
- the agitating cup comprises a cup body and a handle connected to the cup body, the bottom of the stirring cup is provided with a signal connection probe, and the side wall of the cup body and/or the handle is provided with a signal wire having one end connected to the lead connection structure and the other end connected to the signal connection probe.
- the technical solution of the present application is that the anti-overflow ring is connected to the detecting portion by connecting the anti-overflow ring and the inner peripheral edge of the annular body, and the anti-overflow ring is relatively easy to be installed at the feeding port of the lower cover by setting the anti-overflow ring in a ring shape.
- the detecting portion is disposed on the inner edge of the annular body, so that the anti-overflow ring can be combined with the cup mouth of the food processor, and the overflow prevention detection of the food processor is also facilitated, so that the effect of the anti-overflow detection is improved.
- FIG. 1 is a schematic perspective view of a first embodiment of an anti-overflow ring of the present application
- Figure 2 is a cross-sectional structural view of the overflow ring of Figure 1;
- FIG. 3 is a schematic perspective view of a second embodiment of the anti-overflow ring of the present application.
- Figure 4 is a front elevational view showing the food cooking machine of the present application.
- Figure 5 is a cross-sectional structural view showing the stirring cup assembly of the food cooking machine of the present application.
- Figure 6 is a schematic exploded view of the lower cover and the anti-overflow ring of the agitating cup assembly of Figure 5.
- fixed may be a fixed connection, or may be a detachable connection, or may be integrated; It may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and may be an internal connection of two elements or an interaction relationship of two elements unless explicitly defined otherwise.
- fix may be a fixed connection, or may be a detachable connection, or may be integrated; It may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and may be an internal connection of two elements or an interaction relationship of two elements unless explicitly defined otherwise.
- specific meanings of the above terms in the present application can be understood on a case-by-case basis.
- first”, “second”, and the like in this application are used for descriptive purposes only, and are not to be construed as indicating or implying their relative importance or implicitly indicating the number of technical features indicated.
- features defining “first” or “second” may include at least one of the features, either explicitly or implicitly.
- the technical solutions between the various embodiments may be combined with each other, but must be based on the realization of those skilled in the art, and when the combination of the technical solutions is contradictory or impossible to implement, it should be considered that the combination of the technical solutions does not exist. Nor is it within the scope of protection required by this application.
- the application proposes an anti-overflow ring.
- the anti-overflow ring 100 includes an annular body 10, a detecting portion 30 connected to the inner edge of the annular body 10, and extending toward one side of the annular body 10, and a ring shape.
- the lead connecting structure 50 to which the outer edge of the main body 10 is connected, the detecting portion 30, the annular main body 10, and the lead connecting structure 50 are electrically connected, wherein the outer diameter D1 of the annular main body 10 ranges from 50 to 80 mm.
- the annular body 10, the detecting portion 30, and the rib 51 are made of a metal material, and the three are integrated structures.
- the annular body 10, the detecting portion 30 and the rib 51 can be made of stainless steel, and the three are produced by stamping. Of course, the three can also be produced by die casting or welding.
- the overflow prevention ring 100 is installed in the food processor 500, the annular body 10 is embedded in the mouth of the stirring cup assembly of the food processor 500 or the periphery of the feeding port, and the detecting portion 30 extends into the cavity of the stirring cup, and the lead connecting structure 50 Connect the wires that carry the signal.
- the food cooking machine equipped with the anti-overflow ring 100 also has an anti-overflow function during the heating of the food material.
- the foam generated by the foodstuff of the agitating cup assembly during the heating process touches the detecting portion 30.
- the main control board of the food processor receives the overflow signal, and controls the heating device to stop heating according to the overflow signal to prevent the food in the agitating cup assembly from overflowing.
- the technical solution of the present application is to provide the overflow preventing ring 100 as a lead connecting structure 50 connected to the outer edge of the annular body 10, and the detecting portion 30 connected to the inner edge of the annular body 10, and the annular body 10, the detecting portion 30, and the lead connecting structure 50 electrically conductive, by setting the anti-overflow ring 100 in a ring shape, the anti-overflow ring 100 is easier to install at the cup mouth or the feeding port of the agitating cup assembly, and the outer diameter of the annular body 10 is also set to 50 to 80 mm, in the case of ensuring that the anti-overflow 100 has a relatively firm mounting area with the agitating cup assembly, the opening size of the anti-overflow ring 100 can be reasonably set, which is advantageous for the food into the mixing cup during use of the food processor.
- the overflow ring 100 and the mixing cup assembly of the food processor can be better integrated.
- the outer diameter of the annular body 10 of the overflow prevention ring is less than 50 mm
- the opening diameter of the overflow prevention ring 100 is too small to facilitate the feeding during use of the food processor, and the outer diameter of the annular body 10 of the overflow prevention ring 100 is large.
- the opening diameter of the overflow prevention ring 100 is too large, and the food material is not easily contacted with the overflow prevention ring 100 during use of the food cooking machine, so that the food cooking machine detects The accuracy is reduced.
- the outer diameter of the annular body 10 of the anti-overflow ring 100 of the present application is set to be between 50 and 80 mm, so that the anti-overflow ring has a better detection width, and is disposed in the ring body during the food cooking machine stirring the food.
- the detecting portion 30 of the inner edge 10 can accurately detect whether the food material is rushed to the cup mouth or the feeding port of the stirring cup assembly during the stirring process, so that the anti-overflow ring 100 of the present application can realize whether the food cooking machine stirs the ingredients during the food cooking machine Accurate detection of spillage of ingredients.
- the outer diameter D1 of the annular body 10 of the present embodiment ranges from 65 to 75 mm. In the present embodiment, it is preferable that the outer diameter D1 of the annular body 10 is 74 mm, and at this value, the detection effect of the overflow prevention ring 100 is optimal.
- the annular body 10 has an inner diameter ranging from 55 to 65 mm on the basis that the annular body 10 has an outer diameter of 65 to 75 mm. And in the case where the outer diameter D1 of the annular body 10 is 74 mm, the inner diameter of the annular body 10 can take a value of 64 mm. Under this numerical range, the detection effect of the overflow prevention ring 100 is optimal.
- the horizontal projection area of the annular body 10 of the present application ranges from 1300 to 2000 mm2.
- the present application also sets the horizontal projection area of the annular body 10 to 1300 to 2000 mm2.
- the annular body 10 has a suitable contact area for the annular body 10 and the agitating cup assembly, and the annular body 10 is glued or
- the connection between the annular body 10 and the agitating cup assembly is relatively stable, and the anti-overflow ring 100 does not detach from the agitating cup assembly during the working shaking process of the food processor, so that the anti-overflow ring
- the mixing cup assembly with the food processor can be better combined.
- the horizontal projection area of the ring body is less than 1300 Mm2
- the joint area of the anti-overflow ring 100 and the agitating cup assembly is small, so that the connection between the two is not strong, and when the horizontal projection area of the annular body is greater than 2000 At mm2, the mixing cup assembly needs to reserve more installation space for the anti-overflow ring, which is not conducive to the structural design of the agitating cup assembly, and may also reduce the structural strength of the mixing cup assembly, and also increase the material of the anti-overflow ring 100. cost.
- the horizontal projection area of the annular body 10 is set in the range of 1300 to 2000 mm 2 , and the anti-overflow 100 has a better detection range.
- the detection of the inner edge of the annular body 10 during the food cooking of the food processor is detected.
- the portion 30 can accurately detect whether the food material is rushed to the cup mouth or the feeding port of the stirring cup assembly during the stirring process, so that the anti-overflow ring 100 of the present application can realize whether the food material overflows during the food cooking machine stirring the food material. Accurate detection.
- the horizontal projection area of the annular body 10 of the annular body 10 of the present embodiment ranges from 1400 to 1800 mm 2 , and the detection effect of the overflow prevention ring 100 is optimal at this value.
- the detecting portion 30 of the overflow ring 100 of the present application may have various structural forms, and the angle a between the side wall of the detecting portion 30 and the annular body 10 ranges from 60 to 120 degrees.
- the detecting portion 30 is a cylindrical body fixedly connected to the inner edge of the annular body 10.
- the cylinder of the embodiment may have a straight tubular structure, and the side walls of the cylinder are disposed at right angles to the annular body 10.
- the detecting portion 30 is a cylindrical body.
- the food material that is rushed toward the cup mouth or the feeding port is more easily contacted by the detecting portion 30 to generate an overflow signal, so that the overflow detection is more sensitive.
- the inner diameter of the cylindrical body can be gradually enlarged or contracted from one end of the annular body 10 toward the end away from the annular body 10, and is open or constricted.
- the overflow prevention ring 100 When the overflow prevention ring 100 performs the overflow detection, it can be electrically detected by the voltage change of the detection unit 30, and the physical anti-overflow function can be realized by the side wall of the detection unit 30, thereby reducing the food in the stirring cup assembly.
- the cup mouth or the feed opening overflows.
- the height h of the detecting portion 30 ranges from 1 to 25 mm.
- the detection unit 30 has a better detection effect under the above numerical setting.
- the detecting portion 30 includes a plurality of connecting plates 31 fixedly connected to the inner edge of the annular body 10, and a connecting ring 33 connected to the ends of the plurality of connecting plates 31.
- the connecting plate 31 is also disposed at a right angle to the annular body 10.
- the lead connection structure 50 of the present application includes a rib 51 connected to the outer edge of the annular body 10, and the end of the rib 51 away from the annular body 10 is provided with a lead fixing structure.
- the plane of the rib 51 coincides with the plane of the annular body 10.
- the anti-overflow ring 100 of the present application reserves the assembly space for the connection of the wire for transmitting signals and the anti-overflow ring 100 through the arrangement of the rib 51, so that the installation of the anti-overflow ring 100 is easier, and the rib 51 and the ring are simultaneously
- the main body 10 is disposed on the same plane.
- the lead fixing structure is a threading hole 53 formed in the rib 51. During the installation process of the overflow prevention ring 100, after the lead wire is passed through the threading hole 53, the wire is fixed by welding, and the connection structure is relatively stable.
- the present application further provides a food cooking machine 500 including a stirring cup assembly 200 including a stirring cup 202 and a cup mouth covered by the stirring cup 202.
- the lid assembly includes a lower lid 204 that is capped at the cup mouth of the agitating cup 202.
- the lower lid 204 is provided with a feeding port 2042 that communicates with the inner cavity of the agitating cup 202.
- the agitating cup assembly 200 further includes an installation.
- the overflow prevention ring 100 on the periphery of the feed port 2042.
- the lid assembly of the present embodiment further includes an upper cover 206 that is coupled to the lower cover 204, and the upper cover 206 partially extends into the feed opening 2042.
- the mixing cup assembly 200 further includes a stirring knife assembly (not shown) partially extending into the stirring cup 202.
- the stirring knife assembly is rotated at a high speed by the driving of the main motor, and is in the stirring cup 202. Stir the ingredients.
- the foodstuff in the stirring cup 202 can be added before the food cooking machine is started, and the cup lid assembly is added by the cup mouth of the stirring cup 202 before the stirring cup 202 is closed.
- the upper cover 206 can be opened, and the food material is continuously fed from the feeding port 2042, and the overflow ring 100 is attached to the lower cover 204 and located at the periphery of the feeding port 2042.
- the technical solution of the present application provides an overflow preventing ring 100 at the periphery of the feeding opening 2042 of the lower cover 204 in the lid assembly.
- the food material touches the overflow prevention ring 100 to generate an overflow signal, and the food cooking machine can perform corresponding actions according to the received overflow signal to prevent the food material in the stirring cup assembly 200 from overflowing.
- the overflow preventing ring 100 By arranging the overflow preventing ring 100 on the periphery of the feeding opening 2042 of the lower cover 204, there is no need to additionally provide a mounting structure of the overflow preventing ring 100 inside the lid assembly, and the process of assembling the overflow preventing ring 100 to the lower cover 204 is simple, and the overflow prevention ring 100 can accurately detect whether the food material is rushed to the cup mouth or the feeding port 2042 of the stirring cup assembly 200 during the stirring process, so that the anti-overflow ring 100 can accurately detect whether there is any material overflow during the food cooking machine stirring the food material. .
- the lower cover 204 is recessed at a periphery of the feeding opening 2042 to form a mounting groove 2044 that communicates with the feeding opening 2042, and the overflow preventing ring 100 is at least partially embedded in the mounting groove 2044.
- the overflow preventing ring 100 is embedded in the mounting groove 2044, and there is no need to provide a mounting structure of the overflow preventing ring 100 inside the lid assembly, and the overflow preventing ring 100 is convenient to be disassembled and assembled.
- the anti-overflow ring 100 includes an annular body 10, a detecting portion 30 connected to the inner edge of the annular body 10, and a lead connecting structure 50 connected to the outer edge of the annular body 10, the annular body 10
- the detection portion 30 is fitted into the mounting groove 2044, and the detecting portion 30 abuts against the inner wall of the feeding port 2042, and extends into the inner cavity of the agitating cup 202 toward the side of the agitating cup 202.
- the upper cover 206 is recessed on the outer side of the feeding opening 2042 to form a fixing groove 2046 communicating with the mounting groove 2044.
- the wire connecting structure 50 is embedded in the fixing groove 2046.
- the wire connecting structure 50 includes a fixing and fixing groove 2046.
- the inner rib 51 is connected to the outer edge of the annular body 10, and the end of the rib 51 away from the annular body 10 is provided with a threading hole 53.
- the mixing cup includes a cup body 2022 and a handle 2024 connected to the cup body 2022.
- the bottom of the stirring cup 202 is provided with a signal connection probe 210.
- the side wall of the cup body 2022 and/or the handle 2024 are provided with a signal wire 208, and the signal wire 208 is provided.
- One end is connected to the lead connection structure 50, and the other end is connected to the signal connection probe 210.
- the combination of the anti-overflow ring 100, the signal wire 208 and the signal connection probe 210 not only does not hinder the normal operation of the food processor 500.
- Working, and the overflow prevention ring 100 can accurately detect whether the food material is rushed to the cup mouth or the feeding port 2042 of the stirring cup assembly 200 during the stirring process, and the anti-overflow signal is stably transmitted to the host of the food cooking machine, so that the prevention The overflow ring 100 can accurately detect whether there is any spillage of the food during the food cooking machine 500 stirring the food.
- the distance from the detecting portion 30 to the side of the agitating cup 202 ranges from 1 to 25 mm.
- the wall thickness d of the annular body 10 of the present embodiment is 0.5 to 3 mm, and the depth of the mounting groove 2044 matches the wall thickness of the annular body 10.
- the connection between the overflow ring 100 and the lower cover 204 of the present embodiment can be achieved by gluing, and after the annular body 10 is embedded in the mounting groove 2044, the annular body 10 and the lower cover 204 have the surface of the feeding opening 2042 flush, The overflow prevention ring 100 does not protrude from the lower cover 204. During use of the food processor, the overflow prevention ring 100 is not separated from the lower cover 204 by scratching, and the overall structure is also beautiful.
- the detecting portion 30 of the overflow ring 100 of the present application may have various structural forms, and the detecting portion 30 is a cylindrical body fixedly connected to the inner edge of the annular body 10.
- the cylinder of the embodiment may have a straight tubular structure, and the side walls of the cylinder are disposed at right angles to the annular body 10.
- the detecting portion 30 is a cylindrical body.
- the inner diameter of the cylindrical body can be gradually enlarged or contracted from one end of the annular body 10 toward the end away from the annular body 10, and is open or constricted.
- the electric leakage detection is performed by the voltage change of the detecting portion 30, and the physical anti-overflow function can be realized by the side wall of the detecting portion 30, so that the food in the stirring cup assembly 200 can be reduced.
- the cup mouth or the feed port 2042 overflows.
- the ratio of the outer diameter D2 of the lower cover 204 to the outer diameter D1 of the annular body 10 ranges from 1.1 to 3.5.
- the technical solution of the present application makes the anti-overflow ring 100 easier to install on the lower cover by providing the anti-overflow ring 100 as the annular main body 10 and connecting the detecting portion 30 with the inner edge of the annular main body 10, and by setting the anti-overflow ring 100 in a ring shape.
- the feed port 2042 of 204 At the feed port 2042 of 204.
- the present application also sets the ratio of the outer diameter D2 of the lower cover 204 to the outer diameter D1 of the annular body to be 1.1 to 3.5.
- the lower cover 204 is provided with an anti-overflow ring.
- the opening size of the 100-matching feeding port 2042 can be reasonably set, which is beneficial for the food material to be put into the mixing cup assembly during use of the food cooking machine, so that the anti-overflow ring 100 and the mixing cup assembly 200 of the food cooking machine can be better combined. .
- the application sets the ratio of the outer diameter D2 of the lower cover 204 to the outer diameter D1 of the annular body 10 to be between 1.1 and 3.5, so that the overflow prevention ring 100 has a better detection range, during the food cooking machine stirring the food,
- the detecting portion 30 disposed on the inner edge of the annular body 10 can accurately detect whether the food material is rushed to the cup mouth or the feeding port of the stirring cup assembly during the stirring process, so that the anti-overflow ring 100 of the present application can be stirred in the food cooking machine. Accurate detection of spillage of ingredients during the course of the ingredients.
- the ratio of the outer diameter D2 of the lower cover 204 to the outer diameter D1 of the annular body 10 is less than 1.1, the opening diameter of the feeding port 2042 of the agitating cup assembly 200 is too large, and the food may be fed during the use of the food processor 500.
- the stirring cup assembly is not easily accessible to the overflow cup 100 in the middle portion of the mouth, so that the detection accuracy of the food processor 500 is lowered.
- the ratio of the outer diameter D2 of the lower cover 204 to the outer diameter D1 of the annular body 10 is greater than 3.5, the opening diameter of the dispensing opening 2042 of the agitating cup assembly is too small to facilitate the feeding during use of the food processor 500.
- the diameter D2 of the lower cover 204 ranges from 90 to 180 mm, and the outer diameter D1 of the annular body 10 ranges from 55 to 80 mm.
- the diameter D2 of the lower cover 204 ranges from 130 to 160 mm, preferably 150 mm in this embodiment, and the outer diameter D1 of the annular body 10 ranges from 60 to 80 mm. This embodiment is preferably outside the annular body 10.
- the diameter D2 is 74 mm.
- the inner diameter of the annular body 10 ranges from 50 to 70 mm.
- the inner diameter of the annular body 10 can be further reduced to a range of 55 to 65 mm.
- the inner diameter of the annular body 10 may take a value of 64 mm. Under this numerical range, the detection effect of the overflow prevention ring 100 is optimal.
- the horizontal projection area of the annular body 10 of the present application ranges from 1300 to 2000 mm2.
- the present application also sets the horizontal projection area of the annular body 10 to 1300 to 2000 mm2.
- the annular body 10 has a suitable contact area for the annular body 10 and the agitating cup assembly, and the annular body 10 is glued or
- the connection between the annular body 10 and the agitating cup assembly is relatively stable, and the anti-overflow ring 100 is not detached from the agitating cup assembly 200 during the working shaking process of the food processor 500, so that the anti-overflow is prevented.
- the overflow cup and the mixing cup assembly 200 of the food processor 500 can be better combined.
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- Food-Manufacturing Devices (AREA)
Abstract
一种防溢圈(100)和食物料理机,防溢圈(100)包括环形主体(10)、与所述环形主体(10)的内缘连接且沿环形主体(10)一侧延伸的检测部(30)、以及与所述环形主体(10)外缘连接的引线连接结构(50),所述环形主体(10)、所述检测部(30)、以及所述引线连接结构(50)三者电性导通。
Description
技术领域
本申请涉及家电技术领域,特别涉及一种防溢圈和具有该防溢圈的食物料理机。
背景技术
现有的电动食品加工机(如食物料理机),大都未设置有防溢结构,即使设有防溢结构的食物料理机,其防溢结构于食物料理机上的位置也设置不合理,安装结构较为复杂,安装过程不方便,在食物料理机搅拌食物过程中,不能对搅拌杯内的食材是否溢出进行准确检测,因而在搅拌食材过程中,食材有可能溢出。
申请内容
本申请的主要目的是提供一种防溢圈,旨在简化食物料理机的防溢检测结构,对食物料理机搅拌食材过程中食材是否溢出进行精准检测。
为实现上述目的,本申请提出的防溢圈,包括环形主体、与所述环形主体的内缘连接且沿环形主体一侧延伸的检测部、以及与所述环形主体外缘连接的引线连接结构,所述环形主体、所述检测部、以及所述引线连接结构三者电性导通。
在一实施例中,所述环形主体的外径D1的范围为50毫米到80毫米。
在一实施例中,所述环形主体的内径的范围为55到65毫米。
在一实施例中,所述环形主体的水平投影面积的范围为1300 mm²到2000mm²。
在一实施例中,所述环形主体的厚度d范围为0.5 mm到3mm。
在一实施例中,所述检测部的侧壁与所述环形主体的夹角a的范围为60到120度。
在一实施例中,所述检测部的高度h的范围为1到25毫米。
在一实施例中,所述检测部为与所述环形主体内缘固定连接的筒体。
在一实施例中,所述引线连接结构包括与所述环形主体外缘连接的凸筋,所述凸筋远离所述环形主体的一端设置有穿线孔。
在一实施例中,所述环形主体、所述检测部以及所述凸筋均为金属材质,且三者为一体结构。
本申请还提出一种食物料理机,包括搅拌杯组件,所述搅拌杯组件包括搅拌杯以及盖合于所述搅拌杯的杯口的杯盖组件,所述杯盖组件包括盖合于所述搅拌杯的杯口的下盖,所述下盖开设有连通所述搅拌杯的内腔的投料口,该搅拌杯组件还包括安装于所述投料口周缘的防溢圈。
在一实施例中,所述下盖于所述投料口的周缘凹设形成有连通所述投料口的安装槽,所述防溢圈包括环形主体,所述环形主体嵌设于所述安装槽内。
在一实施例中,所述环形主体的厚度为0.5到3毫米,所述安装槽的深度与所述环形主体厚度相匹配。
在一实施例中,所述下盖的直径D2和所述环形主体的外径D1的比值的范围为1.1到3.5。
在一实施例中,所述下盖的直径D2的范围为90到180毫米,所述环形主体的外径D1的范围为55到80毫米。
在一实施例中,所述环形主体的水平投影面积的范围为1300 mm²到2000mm²。
在一实施例中,所述防溢圈还包括与所述环形主体的内缘连接且沿环形主体一侧延伸的检测部,所述检测部抵接所述投料口的内壁。
在一实施例中,所述检测部的侧壁与所述环形主体的夹角a的范围为60到120度。
在一实施例中,所述检测部的高度h的范围为1到25毫米。
在一实施例中,所述检测部为与所述环形主体内缘固定连接的筒体。
在一实施例中,该防溢圈还包括与所述环形主体外缘连接的引线连接结构,所述下盖于所述投料口的外围还凹设形成有与所述安装槽连通的固定槽,所述引线连接结构嵌设于所述固定槽内。
在一实施例中,所述引线连接结构包括与所述环形主体外缘连接的凸筋,所述凸筋远离所述环形主体的一端设置有穿线孔。
在一实施例中,所述搅拌杯包括杯体以及与杯体连接的把手,所述搅拌杯的底部设置有信号连接探针,所述杯体的侧壁和/或者所述把手上设置有信号导线,所述信号导线的一端连接所述引线连接结构,另一端连接所述信号连接探针。
本申请技术方案通过将防溢圈设置为环形主体,以及于环形主体内缘连接检测部,通过将防溢圈呈环形的设置,使得防溢圈较容易安装于下盖的投料口处,而于环形主体内缘设置检测部,使得防溢圈能够与食物料理机的杯口进行结合的同时,也便于对食物料理机进行防溢检测,使得防溢检测的效果得到提升。
附图说明
为了更清楚地说明本申请实施例或现有技术中的技术方案,下面将对实施例或现有技术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示出的结构获得其他的附图。
图1为本申请防溢圈第一实施例的立体结构示意图;
图2为图1中防溢圈的剖视结构示意图;
图3为本申请防溢圈第二实施例的立体结构示意图;
[根据细则91更正 20.11.2017]
图4为本申请食物料理机的正视结构示意图;
图4为本申请食物料理机的正视结构示意图;
[根据细则91更正 20.11.2017]
图5为本申请食物料理机的搅拌杯组件的剖视结构示意图;
图5为本申请食物料理机的搅拌杯组件的剖视结构示意图;
[根据细则91更正 20.11.2017]
图6为图5中搅拌杯组件的下盖和防溢圈的分解结构示意图。
图6为图5中搅拌杯组件的下盖和防溢圈的分解结构示意图。
附图标号说明:
| 标号 | 名称 | 标号 | 名称 |
| 100 | 防溢圈 | 2024 | 把手 |
| 10 | 环形主体 | 204 | 下盖 |
| 30 | 检测部 | 2042 | 投料口 |
| 31 | 连接板 | 2044 | 安装槽 |
| 33 | 连接环 | 2046 | 固定槽 |
| 50 | 引线连接结构 | 206 | 上盖 |
| 51 | 凸筋 | 208 | 信号导线 |
| 53 | 穿线孔 | 210 | 信号连接探针 |
| 200 | 搅拌杯组件 | 300 | 主机 |
| 2022 | 杯体 | 500 | 食物料理机 |
本申请目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
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的一部分实施例,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作出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
需要说明,本申请实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
在本申请中,除非另有明确的规定和限定,术语“连接”、“固定”等应做广义理解,例如,“固定”可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系,除非另有明确的限定。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
另外,在本申请中如涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本申请要求的保护范围之内。
本申请提出一种防溢圈。
请参照图1至图2,在本申请一实施例中,该防溢圈100包括环形主体10、与环形主体10内缘连接,且向环形主体10一侧延伸的检测部30、以及与环形主体10外缘连接的引线连接结构50,检测部30、环形主体10以及引线连接结构50电性导通,其中,环形主体10的外径D1的范围为50到80毫米。
本实施例环形主体10、检测部30以及凸筋51均为金属材质,且三者为一体结构。其中环形主体10、检测部30以及凸筋51可为不锈钢材料,三者通过冲压方式生产加工制成。当然,三者也可以是通过压铸或者焊接等方式生产制成。在防溢圈100安装于食物料理机500时,环形主体10嵌设于食物料理机500的搅拌杯组件的杯口或者投料口周缘,检测部30向搅拌杯容腔内延伸,引线连接结构50连接传递信号的导线。在食物料理机搅拌食材过程中,当搅拌杯组件内的食材触碰到防溢圈100的检测部30时,引起检测部30电压的变化,由此产生控制信号通过与引线连接结构50相连接的导线传递给主控板,然后主控板发出指令,食物料理机停止搅拌食材动作。可以理解的,安装有本防溢圈100的食物料理机在加热食材过程中也具有防溢功能,当加热食材过程中,搅拌杯组件的食材在加热过程中产生的泡沫触碰到检测部30时,食物料理机的主控板接收到溢出信号,并根据该溢出信号控制加热装置停止加热,防止搅拌杯组件内的食材溢出。
本申请技术方案通过将防溢圈100设置为与环形主体10外缘连接的引线连接结构50、以及与环形主体10内缘连接的检测部30,并且环形主体10、检测部30以及引线连接结构50电性导通,通过将防溢圈100呈环形的设置,使得防溢圈100较容易安装于搅拌杯组件的杯口或者投料口处,同时本申请还将环形主体10的外径设置为50到80毫米,则在确保防溢圈100具有与搅拌杯组件较牢固的安装面积的情况下,防溢圈100的开口大小可进行合理设置,有利于食物料理机使用过程中食材投入搅拌杯组件内,使得防溢圈100与食物料理机的搅拌杯组件能过更好的结合在一起。当防溢圈的环形主体10的外径小于50毫米时,防溢圈100的开口直径过小而不利于食物料理机使用过程中的投料,当防溢圈100的环形主体10的外径大80毫米时,在防溢圈100具有合适的安装面积情况下,防溢圈100的开口直径过大,则在食物料理机使用过程中,食材不易接触到防溢圈100,使得食物料理机检测准确度降低,本申请防溢圈100的环形主体10的外径设置为50到80毫米之间,使得防溢圈具有较佳的检测宽度,在食物料理机搅拌食物过程中,设置于环形主体10内缘的检测部30可准确检测到是否有食材在搅拌过程中冲向搅拌杯组件的杯口或者投料口处,如此本申请的防溢圈100可实现在食物料理机搅拌食材过程中是否有食材溢出的进行精准检测。
具体地,本实施例环形主体10外径D1的范围为65到75毫米。本实施例优选环形主体10的外径D1为74毫米,在此数值下,防溢圈100的检测效果最佳。
进一步地,在环形主体10具有65到75毫米的外径基础上,环形主体10的内径的范围为55到65毫米。并且在环形主体10的外径D1取值为74毫米的情况下,环形主体10的内径可取值64毫米,在此数值范围下,防溢圈100的检测效果最佳。
进一步地,在环形主体10具有上述外径范围的基础上,本申请环形主体10的水平投影面积的范围为1300到2000mm²。
本申请还将环形主体10的水平投影面积设置为1300到2000mm²,环形主体10在此面积数值范围下,环形主体10和搅拌杯组件具有较合适的接触面积,环形主体10无论是采用胶粘还是嵌设方式与搅拌杯组件连接时,环形主体10和搅拌杯组件之间的连接均较为稳固,防溢圈100不会在食物料理机的工作抖动过程中与搅拌杯组件脱离,使得防溢圈与食物料理机的搅拌杯组件能够更好的结合在一起。
若环形主体的水平投影面积小于1300
mm²,则防溢圈100与搅拌杯组件的结合面积较小,使得二者的连接不牢固,而当环形主体的水平投影面积大于2000
mm²时,搅拌杯组件则需要为防溢圈预留出较多的安装空间,不利于搅拌杯组件的结构设计,也可能降低搅拌杯组件的结构强度,同时也增加了防溢圈100的材料成本。
本申请将环形主体10的水平投影面积设置在1300到2000mm²的范围内,还使得防溢圈100具有较佳的检测范围,在食物料理机搅拌食物过程中,设置于环形主体10内缘的检测部30可准确检测到是否有食材在搅拌过程中冲向搅拌杯组件的杯口或者投料口处,如此本申请的防溢圈100可实现在食物料理机搅拌食材过程中是否有食材溢出的进行精准检测。
进一步地,本实施例环形主体10的环形主体10的水平投影面积的范围为1400到1800mm²,在此数值下,防溢圈100的检测效果最佳。
本申请防溢圈100的检测部30可具有多种结构形式,且检测部30的侧壁与环形主体10的夹角a范围为60到120度。
请参照图2,在一种实施例中,所述检测部30为与环形主体10内缘固定连接的筒体。本实施例筒体可为直筒结构,且筒体的侧壁与环形主体10成直角设置。检测部30为筒体的设置,在食物料理机运行过程中,冲向杯口或者投料口处的食材较容易被检测部30接触到而产生溢出信号,如此溢出检测较灵敏。可以理解的,在检测部30为筒体结构时,筒体的内径可由靠近环形主体10的一端向远离环形主体10的一端逐渐扩大或者缩小设置,而呈敞口状或者缩口状,如此,在防溢圈100进行防溢检测时,在具有通过检测部30电压变化进行电性检测的同时,还可通过检测部30的侧壁实现物理防溢功能,可减少搅拌杯组件内的食材有杯口或者投料口处溢出。检测部30的高度h的范围为1到25毫米。在检测部30上述的数值设置下具有较佳的检测效果。
请参照图3,在一种实施例中,所述检测部30包括多个与环形主体10内缘固定连接的连接板31、以及与多个连接板31端部连接的连接环33。连接板31与环形主体10也呈直角设置。通过将检测件30设置为连接板31与连接环33构成的镂空状,在确保检测部30检测精度高的情况下,也可进一步节省材料。
本申请引线连接结构50包括与环形主体10外缘连接的凸筋51,凸筋51远离环形主体10的一端设置有引线固定结构。凸筋51所在平面和环形主体10所在平面重合。本申请防溢圈100通过凸筋51的设置,为用于传输信号的导线与防溢圈100的连接预留出装配空间,则防溢圈100的安装更容易,同时将凸筋51和环形主体10设于同一平面,在防溢圈100安装后,可实现防溢圈100的整体结构更容易内嵌于搅拌杯组件的杯体侧壁内,防溢圈100不易在使用过程中被触碰到而脱离,同时搅拌杯组件的整体外观更美观。本申请的引线固定结构在一种实施方式中,引线固定结构为开设于凸筋51的穿线孔53。在防溢圈100安装过程中,将引线穿过穿线孔53后,在通过焊接方式实现导线的固定,连接结构较稳固。
请结合参照图4至图6,本申请还提出一种食物料理机500,该食物料理机500包括搅拌杯组件200,该搅拌杯组件200包括搅拌杯202以及盖合于搅拌杯202的杯口处的杯盖组件,杯盖组件包括盖合于搅拌杯202的杯口处的下盖204,下盖204开设有连通搅拌杯202的内腔的投料口2042,该搅拌杯组件200还包括安装于投料口2042周缘的防溢圈100。
本实施例杯盖组件还包括与下盖204盖合连接的上盖206,上盖206部分伸入投料口2042内。搅拌杯组件200还包括部分伸入搅拌杯202内的搅拌刀组件(未图示),在食物料理机500工作过程中,搅拌刀组件在主机电机的驱动下高速旋转,对搅拌杯202内的食材进行搅拌。其中搅拌杯202内的食材可在食物料理机启动前,杯盖组件为盖合搅拌杯202之前由搅拌杯202的杯口处加入,在食物料理机搅拌食材过程中,如需要继续加入食材,可将上盖206打开,并由投料口2042处继续投入食材,防溢圈100则安装于下盖204并位于投料口2042周缘。
本申请技术方案通过在杯盖组件中的下盖204的投料口2042周缘处设置防溢圈100,在食物料理机搅拌食材过程中,当搅拌杯202内的食材较多涌向投料口2042时,食材触碰到防溢圈100而产生溢出信号,食物料理机可根据接收到的溢出信号做出相应动作防止搅拌杯组件200内的食材溢出。通过将防溢圈100设置在下盖204的投料口2042周缘,无需在杯盖组件内部另设防溢圈100的安装结构,则防溢圈100装配于下盖204的过程较简单,并且防溢圈100可准确检测到是否有食材在搅拌过程中冲向搅拌杯组件200的杯口或者投料口2042处,如此防溢圈100可实现在食物料理机搅拌食材过程中对是否有食材溢出进行精准检测。
进一步地,所述下盖204于投料口2042的周缘凹设形成有连通投料口2042的安装槽2044,防溢圈100至少部分嵌设于安装槽2044内。通过在下盖204设置安装槽2044,防溢圈100嵌设于安装槽2044内,而无需在杯盖组件内部设置防溢圈100的安装结构,防溢圈100的拆装较方便。
请结合参照图5和图6,所述防溢圈100包括环形主体10、与环形主体10的内缘连接的检测部30、以及与环形主体10外缘连接的引线连接结构50,环形主体10嵌设于安装槽2044内,检测部30与投料口2042的内壁抵接,且向搅拌杯202一侧延伸嵌入搅拌杯202的内腔。所述上盖206于投料口2042的外侧凹设形成有与安装槽2044连通的固定槽2046,引线连接结构50嵌设于所述固定槽2046内,引线连接结构50包括嵌设与固定槽2046内的凸筋51,凸筋51与环形主体10的外缘连接,凸筋51远离环形主体10的一端设置有穿线孔53。搅拌杯包括杯体2022以及与杯体2022连接的把手2024,搅拌杯202的底部设置有信号连接探针210,杯体2022的侧壁和/或者把手2024上设置有信号导线208,信号导线208的一端连接引线连接结构50,另一端连接信号连接探针210。如此在搅拌杯组件内形成完整的防溢信号传递链路,在食物料理机使用过程中,防溢圈100、信号导线208以及信号连接探针210的组合不仅不会妨碍食物料理机500的正常工作,而且防溢圈100可准确检测到是否有食材在搅拌过程中冲向搅拌杯组件200的杯口或者投料口2042处,并将防溢信号稳定传输至食物料理机的主机,如此该防溢圈100可实现在食物料理机500搅拌食材过程中对是否有食材溢出进行精准检测。
所述检测部30向搅拌杯202一侧延伸的距离范围为1到25毫米。通过如此设置,在食材涌向投料口2042处时,食材容易触碰到检测部30,则本申请的搅拌杯组件200的防溢检测更灵敏更准确。
本实施例环形主体10的壁厚d为0.5到3毫米,安装槽2044的深度与环形主体10的壁厚相匹配。本实施例防溢圈100与下盖204的的连接可通过胶粘方式实现,并且环形主体10嵌设于安装槽2044以后,环形主体10和下盖204具有投料口2042的表面平齐,如此防溢圈100不会凸出于下盖204,在食物料理机使用过程中,防溢圈100不会因刮碰而与下盖204分离,并且整体结构也较美观。
本申请防溢圈100的检测部30可具有多种结构形式,所述检测部30为与所述环形主体10内缘固定连接的筒体。本实施例筒体可为直筒结构,且筒体的侧壁与环形主体10成直角设置。检测部30为筒体的设置,在食物料理机运行过程中,冲向杯口或者投料口2042处的食材较容易被检测部30接触到而产生溢出信号,如此溢出检测较灵敏。可以理解的,在检测部30为筒体结构时,筒体的内径可由靠近环形主体10的一端向远离环形主体10的一端逐渐扩大或者缩小设置,而呈敞口状或者缩口状,如此,在防溢圈进行防溢检测时,在具有通过检测部30电压变化进行电性检测的同时,还可通过检测部30的侧壁实现物理防溢功能,可减少搅拌杯组件200内的食材有杯口或者投料口2042处溢出。
进一步地,下盖204的外径D2和环形主体10的外径D1的比值的范围为1.1到3.5。
本申请技术方案通过将防溢圈100设置为环形主体10,以及与环形主体10内缘连接检测部30,通过将防溢圈100呈环形的设置,使得防溢圈100较容易安装于下盖204的投料口2042处。
同时本申请还将下盖204的外径D2与环形主体的外径D1的比值范围设置为1.1到3.5,则在现有搅拌杯组件通用外径尺寸下,下盖204开设的与防溢圈100相配合的投料口2042的开口大小可合理设置,有利于食物料理机使用过程中食材投入搅拌杯组件内,使得防溢圈100与食物料理机的搅拌杯组件200能更好的结合在一起。
本申请将下盖204的外径D2与环形主体10的外径D1的比值范围设置为1.1到3.5之间,使得防溢圈100具有较佳的检测范围,在食物料理机搅拌食物过程中,设置于环形主体10内缘的检测部30可准确检测到是否有食材在搅拌过程中冲向搅拌杯组件的杯口或者投料口处,如此本申请的防溢圈100可实现在食物料理机搅拌食材过程中对是否有食材溢出进行精准检测。
若下盖204的外径D2与环形主体10的外径D1的比值小于1.1,则搅拌杯组件200的投料口2042的开口直径过大,则在食物料理机500使用过程中,食材可能由投料口中间部位蹦出搅拌杯组件而不易接触到防溢圈100,使得食物料理机500检测准确度降低。若下盖204的外径D2与环形主体10的外径D1的比值大于3.5,则搅拌杯组件的投料口2042的开口直径过小而不利于食物料理机500使用过程中的投料。
进一步地,所述下盖204的直径D2的范围为90到180毫米,所述环形主体10的外径D1的范围为55到80毫米。所述下盖204的直径D2的范围为130到160毫米,本实施例优选为150毫米,所述环形主体10的外径D1的范围为60到80毫米,本实施例优选环形主体10的外径D2为74毫米。如此搅拌杯组件200具有更好的功能状态,投料和检测效果较佳。
进一步地,所述环形主体10的内径的范围为50到70毫米。所述环形主体10的内径的范围还可进一步缩小为55到65毫米。在环形主体10的外径D1取值为74毫米的情况下,环形主体10的内径可取值64毫米,在此数值范围下,防溢圈100的检测效果最佳。
进一步地,在环形主体10具有上述外径范围的基础上,本申请环形主体10的水平投影面积的范围为1300到2000mm²。
本申请还将环形主体10的水平投影面积设置为1300到2000mm²,环形主体10在此面积数值范围下,环形主体10和搅拌杯组件具有较合适的接触面积,环形主体10无论是采用胶粘还是嵌设方式与搅拌杯组件连接时,环形主体10和搅拌杯组件之间的连接均较为稳固,防溢圈100不会在食物料理机500的工作抖动过程中与搅拌杯组件200脱离,使得防溢圈与食物料理机500的搅拌杯组件200能够更好的结合在一起。
以上所述仅为本申请的优选实施例,并非因此限制本申请的专利范围,凡是在本申请的发明构思下,利用本申请说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本申请的专利保护范围内。
Claims (23)
- 一种防溢圈(100),其特征在于,包括环形主体(10)、与所述环形主体(10)的内缘连接且沿环形主体(10)一侧延伸的检测部(30)、以及与所述环形主体(10)外缘连接的引线连接结构(50),所述环形主体(10)、所述检测部(30)、以及所述引线连接结构(50)三者电性导通。
- 如权利要求1所述的防溢圈(100),其中,所述环形主体(10)的外径D1的范围为50毫米到80毫米。
- 如权利要求2所述的防溢圈(100),其中,所述环形主体(10)的内径的范围为55到65毫米。
- 如权利要求1所述的防溢圈(100),其中,所述环形主体(10)的水平投影面积的范围为1300 mm²到2000mm²。
- 如权利要求1所述的防溢圈(100),其中,所述环形主体(10)的厚度d范围为0.5 mm到3mm。
- 如权利要求1所述的防溢圈(100),其中,所述检测部(30)与所述环形主体(10)的夹角a的范围为60到120度。
- 如权利要求5所述的防溢圈(100),其中,所述检测部(30)的高度h的范围为1到25毫米。
- 如权利要求7所述的防溢圈(100),其中,所述检测部(30)为与所述环形主体(10)内缘固定连接的筒体。
- 如权利要求1所述的防溢圈(100),其中,所述引线连接结构(50)包括与所述环形主体(10)外缘连接的凸筋(51),所述凸筋(51)远离所述环形主体(10)的一端设置有穿线孔(53)。
- 如权利要求9所述的防溢圈(100),其中,所述环形主体(10)、所述检测部(30)以及所述凸筋(51)均为金属材质,且三者为一体结构。
- 一种食物料理机,包括搅拌杯组件(200),所述搅拌杯组件包括搅拌杯(202)以及盖合于所述搅拌杯(202)的杯口的杯盖组件,其中,所述杯盖组件包括盖合于所述搅拌杯(202)的杯口的下盖(204),所述下盖(204)开设有连通所述搅拌杯(202)的内腔的投料口(2042),该搅拌杯组件(200)还包括安装于所述投料口(2042)周缘的防溢圈(100)。
- 如权利要求11所述的食物料理机,其中,所述下盖(204)于所述投料口(2042)的周缘凹设形成有连通所述投料口(2042)的安装槽(2044),所述防溢圈(100)包括环形主体(10),所述环形主体(10)嵌设于所述安装槽(2044)内。
- 如权利要求12所述的食物料理机,其中,所述环形主体(10)的厚度为0.5到3毫米,所述安装槽(2044)的深度与所述环形主体(10)厚度相匹配。
- 如权利要求12所述的食物料理机,其中,所述下盖(204)的直径D2和所述环形主体(10)的外径D1的比值的范围为1.1到3.5。
- 如权利要求14所述的食物料理机,其中,所述下盖(204)的直径D2的范围为90到180毫米,所述环形主体(10)的外径D1的范围为55到80毫米。
- 如权利要求15所述的食物料理机,其中,所述环形主体(10)的水平投影面积的范围为1300 mm²到2000mm²。
- 如权利要求11所述的食物料理机,其中,所述防溢圈还包括与所述环形主体(10)的内缘连接且沿环形主体(10)一侧延伸的检测部(30),所述检测部(30)抵接所述投料口(2042)的内壁。
- 如权利要求17所述的食物料理机,其中,所述检测部(30)的侧壁与所述环形主体(10)的夹角a的范围为60到120度。
- 如权利要求18所述的食物料理机,其中,所述检测部(30)的高度h的范围为1到25毫米。
- 如权利要求19所述的食物料理机,其中,所述检测部(30)为与所述环形主体(10)内缘固定连接的筒体。
- 如权利要求11所述的食物料理机,其中,该防溢圈(100)还包括与所述环形主体(10)外缘连接的引线连接结构(50),所述下盖(204)于所述投料口(2042)的外围还凹设形成有与所述安装槽(2044)连通的固定槽(2046),所述引线连接结构(50)嵌设于所述固定槽(2046)内。
- 如权利要求21所述的食物料理机,其中,所述引线连接结构(50)包括与所述环形主体(10)外缘连接的凸筋(51),所述凸筋(51)远离所述环形主体(10)的一端设置有穿线孔(53)。
- 如权利要求22所述的食物料理机,其中,所述搅拌杯包括杯体(2022)以及与杯体(2022)连接的把手(2024),所述搅拌杯(202)的底部设置有信号连接探针(210),所述杯体(2022)的侧壁和/或者所述把手(2024)上设置有信号导线(208),所述信号导线(208)的一端连接所述引线连接结构(50),另一端连接所述信号连接探针(210)。
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