WO2021023087A1 - 底盘组件和食物处理装置 - Google Patents

底盘组件和食物处理装置 Download PDF

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Publication number
WO2021023087A1
WO2021023087A1 PCT/CN2020/105714 CN2020105714W WO2021023087A1 WO 2021023087 A1 WO2021023087 A1 WO 2021023087A1 CN 2020105714 W CN2020105714 W CN 2020105714W WO 2021023087 A1 WO2021023087 A1 WO 2021023087A1
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WO
WIPO (PCT)
Prior art keywords
assembly
connecting portion
processing device
food processing
chassis assembly
Prior art date
Application number
PCT/CN2020/105714
Other languages
English (en)
French (fr)
Inventor
郑新颜
Original Assignee
主力智业(深圳)电器实业有限公司
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Priority claimed from CN201921245615.5U external-priority patent/CN211408747U/zh
Priority claimed from CN201910713805.3A external-priority patent/CN112294149A/zh
Application filed by 主力智业(深圳)电器实业有限公司 filed Critical 主力智业(深圳)电器实业有限公司
Publication of WO2021023087A1 publication Critical patent/WO2021023087A1/zh

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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47JKITCHEN EQUIPMENT; COFFEE MILLS; SPICE MILLS; APPARATUS FOR MAKING BEVERAGES
    • A47J43/00Implements for preparing or holding food, not provided for in other groups of this subclass
    • A47J43/04Machines for domestic use not covered elsewhere, e.g. for grinding, mixing, stirring, kneading, emulsifying, whipping or beating foodstuffs, e.g. power-driven
    • A47J43/07Parts or details, e.g. mixing tools, whipping tools

Definitions

  • This application relates to the technical field of household appliances, and specifically to a chassis assembly and a food processing device.
  • This application aims to solve at least one of the technical problems existing in the prior art or related technologies.
  • the first aspect of this application is to propose a chassis assembly.
  • the second aspect of the application is to provide a food processing device.
  • a chassis assembly which includes: a work plate assembly; a gripping portion, which is movably connected to the work plate assembly.
  • the chassis assembly provided by the present application includes a working plate assembly and a holding part that cooperate with each other.
  • the holding part and the working plate assembly are movably connected, preferably a rotatable connection.
  • the holding part By rotating the holding part, the holding part can be hidden in the chassis The inside of the assembly, or the holding part protrudes from the work plate assembly.
  • the holding part is hidden inside the chassis assembly, and the holding part will not affect the normal use of the chassis assembly; when the work plate assembly needs to be taken out for cleaning, rotate the holding part so that the holding part protrudes from the work plate assembly At this time, the chassis assembly can be removed through the grip to thoroughly clean the chassis assembly.
  • the chassis assembly proposed in the present application is provided with a rotatable holding part on the working plate assembly.
  • the holding part will not affect the normal use of the chassis assembly, but also provide convenience for disassembling the chassis assembly, and has a simple structure, convenient use, and user convenience Removal and installation operations.
  • chassis assembly in the above-mentioned technical solution provided by this application may also have the following additional technical features:
  • the holding part includes a main body; a connecting part, the connecting part is arranged at both ends of the main body, and the connecting part is rotatably connected with the working plate assembly.
  • the holding portion includes a main body and a connecting portion, wherein the connecting portion is located at two opposite ends of the main body, and the two ends of the main body are rotatably connected to the working plate assembly through the connecting portion.
  • the main body is hidden on one side of the work plate assembly; when the work plate assembly needs to be cleaned, the main body drives the connecting part to rotate so that the main body protrudes from the work plate assembly.
  • the function of the handle facilitates the disassembly of the work plate assembly and facilitates the thorough cleaning of the work plate assembly.
  • the connecting portion includes a first connecting portion and a second connecting portion connected to the first connecting portion; wherein the first connecting portion and the second connecting portion are located on both sides or the same side of the main body, The rotation axis of one connecting portion and the rotation axis of the second connecting portion are relatively eccentrically arranged.
  • the connecting portion includes a first connecting portion and a second connecting portion, wherein the first connecting portion is a protruding structure or a groove structure toward the inner side of the main body, and the second connecting portion is protrudingly arranged or disposed toward the outer side of the main body. It is recessed, the first connecting part is used for connecting with the working plate assembly, and the second connecting part is used for setting the corresponding mounting position of the cup holder; or the first connecting part and the second connecting part are located on the same side of the main body.
  • the first connection part and the second connection part form an eccentric structure.
  • the first connection part can provide the working disk
  • the component has a pressing force to achieve the purpose of pressing the work plate assembly and ensure the stable installation of the work plate assembly.
  • the first connecting portion and the second connecting portion are both columns, and the working plate assembly is provided with a mounting hole for mating connection with the connecting portion.
  • the first connecting part and the second connecting part are arranged as cylinders, and a mounting hole for mating connection with the connecting part is provided on the work plate assembly, and the position and shape of the cylinder and the mounting hole are adapted .
  • the column is located in the mounting hole to realize the rotatable connection between the grip and the working plate assembly.
  • the first connecting portion and the second connecting portion are both grooved structures, and the working disk assembly is provided with a connecting post that is rotatably connected with the grooved structure.
  • the first connecting portion and the second connecting portion are arranged in a groove structure, and a connecting post that is rotatably connected with the groove structure is provided on the working disk assembly, and the position of the connecting post and the groove structure is and The shape matches.
  • the connecting column is located inside the groove structure to realize the rotatable connection between the grip and the working plate assembly.
  • one of the first connecting portion and the second connecting portion is a column, and the other has a groove structure.
  • one of the first connecting portion and the second connecting portion is configured as a column, and the other is configured as a groove structure.
  • first connecting portion is a column
  • a mounting hole is provided on the work plate assembly to be matched and connected with the column
  • the first connecting portion is a groove structure
  • the work plate assembly is provided with a groove
  • the structure is rotatably connected with the connecting column to realize the rotatable connection between the holding part and the working plate assembly.
  • the gripping portion has a bent structure; the gripping portion further includes a gripping position, which is arranged on the main body.
  • the holding part is a bent structure, and the holding part is in the shape of a curved handle, which is convenient for the user to operate; the main body is provided with a holding position for the user to hold and quickly Disassembly and assembly of the control unit.
  • it further includes: a cutter, the cutter is rotatably arranged on the work disc assembly, and the cutter and the grip are respectively located on both sides of the work disc assembly.
  • a rotatable knife is provided on the working plate assembly, and the food is stirred and crushed by the knife; the knife is set toward the inside of the food processing device, and the grip is set toward the outside of the food processing device.
  • the parts are respectively located on both sides of the working plate assembly. While improving the convenience of disassembling the chassis components, it avoids interference between the gripping part and the knife, and at the same time avoids the gripping part from contacting the food, ensuring food hygiene.
  • the work plate assembly includes: a bracket, the holding part is rotatably connected with the bracket; the work plate, the work plate is arranged on the bracket, and the cutter is installed on the work plate.
  • the technical solution includes a bracket and a working plate, wherein the bracket is located on the peripheral side of the working plate, and the bracket provides an installation position for the holding part; the working plate is used to generate heat during food processing to process food.
  • the working plate and the support can be set as an integral structure or a split structure. Further, the working plate can be a heating plate, which is convenient for heating food to be heated.
  • the bracket includes: a mounting seat, the working plate is arranged on the mounting seat; the mounting frame, the mounting frame is connected with the mounting seat, and the holding part is configured to be suitable for being set on the mounting frame and is located on the first holding part.
  • a recessed part is provided on the mounting frame on the side, and the holding part can be rotated to overlap with the recessed part; the first limiting member is arranged on the mounting frame on the other side of the holding part, and the limiting protrusion is used to rotate the holding part The angle is limited; the second limiting member is arranged on the peripheral side of the recessed portion and is used for limiting the holding portion.
  • the bracket includes a mounting base and a mounting frame, the mounting base is used for mounting the work plate, and the mounting frame is used for mounting the holding part, and the mounting base and the mounting frame are preferably an integrated structure.
  • the height of the mounting frame on both sides of the holding part is different, one of which is set as a recessed part, when the chassis assembly is in the installed state, the holding part can be accommodated in the recessed part, reducing the occupied space of the chassis assembly;
  • Ground a second limiting member is provided on the peripheral side of the recessed portion, and the second limiting member is preferably a convex structure protruding from the peripheral side of the recessed portion, and the number can be one or more.
  • the time limit continues to rotate the grip to the side of the mounting seat to avoid installation interference.
  • a first limiting member is also provided on the outer side wall of the other side of the mounting bracket to limit the rotation of the grip portion toward this side, and further limit the rotation angle of the grip portion.
  • the setting position of the piece can define different rotation angles.
  • the rotation angle is 0 degrees to 90 degrees.
  • a food processing device including: a cup assembly; and a chassis assembly as in any one of the first aspect of the present application, the chassis assembly being detachably disposed on the cup assembly.
  • the food processing device proposed in the present application includes a cup body assembly and a chassis assembly as in any one of the first aspect of the present application, and therefore, has all the beneficial effects of the aforementioned chassis assembly.
  • the chassis assembly is detachably arranged on the cup body assembly, and the working plate assembly of the chassis assembly is arranged toward the inside of the food processing device.
  • the work plate assembly is used for processing food inside the food processing device, and the gripping portion faces the outside of the processing device.
  • the holding part is used to disassemble and assemble the work plate assembly.
  • the food processing device in the above technical solution provided by this application may also have the following additional technical features:
  • the cup body assembly includes: a cup holder, the chassis assembly is detachably arranged on the cup holder; a guide groove is provided on the cup holder; and the second connecting part of the holding part is rotatably installed on the guide groove.
  • the cup holder is provided with a guide groove, and the position of the guide groove corresponds to the second connecting portion of the holding portion.
  • the second connecting portion of the holding portion is in contact with the inner wall of the guide groove, and the rotation axis of the first connecting portion and the rotation axis of the second connecting portion are relatively eccentrically arranged, so that in the process of rotating the holding portion, the guide groove Under the action of the inner wall and the second connecting part, the first connecting part will give a pressing force to the working plate assembly, thereby playing a role of pressing the working plate assembly and ensuring the stable installation of the working plate assembly.
  • it further includes a positioning column, the positioning column is arranged in the guide groove, and the second connecting portion is rotatably connected with the positioning column.
  • a positioning column is arranged in the guide groove, and the positioning column is adapted to the shape of the second connecting portion.
  • the rotating connection of the gripping part is realized through the cooperation of the positioning column and the second connecting part, which is convenient for users to disassemble and assemble the chassis assembly.
  • the second connecting portion is a hollow cylinder
  • a side wall of the hollow cylinder is provided with an installation notch
  • the positioning column is rotatably connected with the inner hole of the hollow cylinder through the installation notch.
  • the second connecting portion is a hollow cylinder, and an installation notch is provided on the side wall of the hollow cylinder.
  • the positioning column is installed in the inner hole of the hollow column after passing through the installation gap, and the positioning column is matched with the inner hole of the hollow column to ensure the rotating connection of the holding part.
  • the relative positions of the positioning column, the hollow column, the inner hole of the hollow column, and the first connecting portion are optimized. Specifically, it includes but is not limited to the following methods: the geometric center line of the positioning column coincides with the geometric center line of the hollow column and the center line of the inner hole, and the geometric center line of the first connecting portion is different from the geometric center line of the positioning column.
  • the geometric center line of the positioning column coincides with the geometric center line of the hollow column and the geometric center line of the first connecting part, and there is an eccentric distance between the center line of the inner hole and the geometric center line of the positioning column;
  • the geometric center line of the column coincides with the center line of the inner hole and the geometric center line of the first connecting part, and the geometric center line of the positioning column and the geometric center line of the hollow column have an eccentric distance.
  • the work plate assembly is provided with a mounting hole that matches the column structure, and the installation hole is perpendicular to the geometric center line of the work plate assembly.
  • the width of the hole is greater than the sum of the radial length of the cylindrical structure and twice the eccentric distance.
  • the first connecting portion is a column structure
  • the work plate assembly is provided with a mounting hole that is matched and connected with the column structure
  • the first connecting portion and the second connecting portion are relatively eccentrically arranged
  • the grip portion rotates.
  • the connecting column will produce displacement, so the width of the mounting hole along the direction perpendicular to the geometric centerline of the working disk assembly is set to be greater than the sum of the radial length of the column structure and 2 times the eccentric distance.
  • the column structure is a cylinder
  • the width of the mounting hole is greater than the sum of the diameter of the cylinder and the eccentric distance twice.
  • the guide groove is an L-shaped guide groove.
  • the guide groove is set as an L-shaped guide groove.
  • the L-shaped guide groove can give a limit to the working plate assembly in the direction of taking out the chassis assembly.
  • the L-shaped guide groove facilitates the installation of the chassis assembly and can ensure the stability of the chassis assembly Located inside the cup holder to avoid accidents caused by chassis components falling off.
  • the L-shaped guide groove includes a guide part and a fixed part connected to the guide part; wherein the second connecting part is installed into the L-shaped guide groove through the guide part, and then the working plate assembly is rotated to make the second The connecting part is installed in the fixed part.
  • the L-shaped guide groove includes a guide part and a fixed part connected with the guide part.
  • the guiding part is arranged in a guiding notch formed on the side wall of the cup holder, and the fixing part is communicated with the guiding part to form a fixing position of the second connecting part.
  • the rotation axis of the first connecting portion has an eccentric distance from the geometric center line of the fixed portion; or the rotation axis of the second connecting portion has an eccentric distance from the geometric center line of the fixed portion.
  • the relative positions of the fixing part, the first connecting part, and the second connecting part are optimized. Specifically, it includes but is not limited to the following: the rotation axis of the second connecting portion coincides with the geometric centerline of the fixed portion, and the rotation axis of the first connecting portion has an eccentric distance from the geometric centerline of the fixed portion; the geometry of the fixed portion The center line coincides with the rotation axis of the first connection part, and the rotation axis of the second connection part has an eccentric distance from the geometric center line of the fixed part.
  • it further includes: a first limiting portion, which is provided on the cup body assembly; a second limiting portion, which is provided on the gripping portion, and the first limiting portion can be connected with the second limiting portion to Limit the holding part.
  • the cup holder of the cup body assembly is provided with a first limiting portion
  • the holding portion is provided with a second limiting portion
  • the shape and position of the first limiting portion and the second limiting portion match.
  • one of the first limiting portion and the second limiting portion is a buckle structure, and the other is a groove structure adapted to the buckle structure.
  • the specific structures of the first limiting portion and the second limiting portion can take various forms, including but not limited to the following structures: the first limiting portion is a snap structure, and the second limiting portion is Groove structure; the first limiting portion is a groove structure, and the second limiting portion is a buckle structure.
  • the overall structure of the buckle structure and the groove structure is simple, which is convenient for processing and manufacturing, and effectively reduces the processing cost of the food processing device on the premise of ensuring the stability of the holding portion.
  • the cup body assembly further includes: a cup body, the cup body is configured to be placed on the cup holder; a sealing ring, the sealing ring is arranged at the connection between the cup body and the cup holder, wherein the chassis assembly is installed When placed on the cup holder, the working plate assembly abuts against the sealing ring.
  • a cup body connected to the cup holder is provided, so that the cup body and the cup holder together form a cavity structure to provide a place for food processing; in order to ensure the tightness of the cavity structure and avoid food leakage, A sealing ring is arranged at the connection between the cup body and the cup holder, and it is ensured that when the chassis assembly is installed on the cup holder, the working plate assembly and the sealing ring abut to ensure the use performance of the food processing device. Further, by arranging the rotation axis of the first connecting part and the second connecting part of the holding part in an eccentric structure, the eccentric arrangement can ensure that the first connecting part of the holding part rotates when the working plate assembly is installed.
  • the working plate assembly produces a displacement of the compression seal ring, and the displacement is equal to the eccentricity of the eccentric structure. In this way, when the gripping part of the chassis assembly is in the closed position, the chassis assembly and the cup body are connected and kept in the locked position, and at the same time, the seal between the cup holder and the working plate assembly is ensured.
  • the cup holder includes: a first mounting end, the first mounting end is used for mounting the cup body; a second mounting end, the second mounting end and the first mounting end are located at both ends of the cup holder, the chassis assembly The second installation end is installed in the cup holder, and the guide groove is arranged on the second installation end.
  • the two ends of the cup holder are respectively a first mounting end for installing the cup body and a second mounting end for installing the chassis component; this application uses the other end of the cup holder as the mounting end of the chassis component This facilitates the installation and disassembly operations of the chassis assembly, and avoids the removal and cleaning of the knife through the cup body in the prior art, and the user is cut by the knife due to the limited space in the cup body.
  • the cup holder and chassis assembly provided in the present application can make the knives and the working plate on which the knives are installed can be taken out as a whole, thereby achieving thorough cleaning of the chassis assembly, ensuring the sanitation of the food processing device, and improving the user experience.
  • it further includes: a cover assembly, the cover assembly covering the opening of the cup body.
  • a cover assembly is provided at the opening of the cup body.
  • the cover assembly is set at the opening of the cup body to ensure the sealing of the cavity structure and avoid food leakage; when the food processing is completed, open the opening of the cup body to treat The finished food is taken out.
  • Fig. 1 is a schematic structural diagram of a chassis assembly in an embodiment of the present application
  • FIG. 2 is a top view of the chassis assembly of the embodiment shown in Figure 1;
  • FIG 3 is a cross-sectional view of the chassis assembly of the embodiment shown in Figure 2 along the F-F direction;
  • Fig. 4 is a partial enlarged view of A of the chassis assembly of the embodiment shown in Fig. 1;
  • Figure 5 is a partial enlarged view of B of the chassis assembly of the embodiment shown in Figure 3;
  • Fig. 6 is a schematic structural exploded view of a food processing device according to an embodiment of the present application.
  • FIG. 7 is a schematic diagram of the food processing device of the embodiment shown in FIG. 6 from another perspective;
  • Fig. 8 is a schematic view of another perspective of the food processing device of the embodiment shown in Fig. 6 (the cover assembly is omitted);
  • Fig. 9 is a schematic view of the food processing device of the embodiment shown in Fig. 6 from another perspective (the cover assembly is omitted);
  • Fig. 10 is a schematic view from another perspective of the food processing device of the embodiment shown in Fig. 6 (the cover assembly is omitted);
  • Fig. 11 is a schematic view of the food processing device of the embodiment shown in Fig. 6 from another perspective (the cover assembly is omitted);
  • Figure 12 is a top view of the food processing device of the embodiment shown in Figure 11;
  • Figure 13 is a cross-sectional view of the food processing device of the embodiment shown in Figure 12 along the G-G direction;
  • Figure 14 is a left side view of the food processing device of the embodiment shown in Figure 11;
  • Fig. 15 is a partial enlarged view of the food processing device at C of the embodiment shown in Fig. 8;
  • Fig. 16 is a partial enlarged view of D of the food processing device of the embodiment shown in Fig. 8;
  • Fig. 17 is a partial enlarged view of E of the food processing device of the embodiment shown in Fig. 13;
  • FIG. 18 is a schematic structural diagram of a food processing device according to another embodiment of the present application.
  • Fig. 19 is a schematic structural diagram of the food processing device of the embodiment shown in Fig. 18 from another perspective;
  • FIG. 20 is a schematic structural diagram of the food processing device of the embodiment shown in FIG. 19 from another perspective;
  • Figure 21 is a bottom view of the food processing device of the embodiment shown in Figure 19;
  • Figure 22 is a front view (reverse) of the food processing device of the embodiment shown in Figure 19;
  • Figure 23 is a front view (front view) of the food processing device of the embodiment shown in Figure 19;
  • Figure 24 is a cross-sectional view of the food processing device of the embodiment shown in Figure 21 along the H-H direction;
  • Figure 25 is a left side view of the food processing device of the embodiment shown in Figure 22;
  • FIG. 26 is a schematic structural diagram of a food processing device according to another embodiment of the application.
  • FIG. 27 is a schematic structural diagram of the food processing device of the embodiment shown in FIG. 26 from another perspective;
  • Figure 28 is a bottom view of the food processing device of the embodiment shown in Figure 26;
  • Figure 29 is a front view (front view) of the food processing device of the embodiment shown in Figure 26;
  • FIG. 30 is a schematic structural diagram of the food processing device of the embodiment shown in FIG. 26 from another perspective;
  • Figure 31 is a front view (reverse) of the food processing device of the embodiment shown in Figure 30;
  • Figure 32 is a cross-sectional view of the food processing device of the embodiment shown in Figure 28 along the I-I line;
  • Figure 33 is a schematic structural diagram of a food processing device according to another embodiment of the present application (retaining the cover assembly);
  • FIG. 34 is a schematic diagram of an exploded structure of the food processing device of the embodiment shown in FIG. 33;
  • Figure 35 is a top view of the food processing device of the embodiment shown in Figure 33;
  • Figure 36 is a cross-sectional view of the food processing device of the embodiment shown in Figure 35 along the J-J direction;
  • Fig. 37 is a partial enlarged view of the L position of the food processing device of the embodiment shown in Fig. 34;
  • FIG. 38 is a schematic structural diagram of a food processing device according to another embodiment of the present application.
  • Figure 39 is a top view of the food processing device of the embodiment shown in Figure 38;
  • Fig. 40 is a cross-sectional view of the food processing device of the embodiment shown in Fig. 39 taken along the K-K direction.
  • chassis components 12 working plate components, 120 brackets, 121 mounting seats, 122 mounting brackets, 123 recesses, 124 working plates, 125 first stoppers, 126 mounting holes, 14 grips, 142 main bodies, 144 connecting parts, 146 first connection part, 148 second connection part, 150 holding position, 152 installation notch, 16 cutter, 200 cup holder, 22 guide groove, 222 guide part, 224 fixed part, 24 positioning post, 300 cup body, 400 seal ring , 500 cover components.
  • chassis assembly 100 and the food processing device according to some embodiments of the present application will be described with reference to FIGS. 1 to 40.
  • the chassis assembly 100 includes: a work plate assembly 12; a gripping portion 14. The two ends of the gripping portion 14 are movably connected to the work plate assembly 12 .
  • the chassis assembly 100 includes a working plate assembly 12 and a holding portion 14 that are rotatably connected.
  • the gripping portion 14 is hidden inside the chassis assembly 100, and the gripping portion 14 will not affect the normal use of the chassis assembly 100; when the work plate assembly 12 needs to be taken out for cleaning, the gripping portion 14 is rotated to make the grip The portion 14 protrudes from the working plate assembly 12, and the chassis assembly 100 can be removed by the gripping portion 14 at this time to thoroughly clean the chassis assembly 100.
  • the chassis assembly 100 proposed in the present application is provided with a movably connected holding portion 14 on the working plate assembly 12.
  • the holding portion 14 will not affect the normal use of the chassis assembly 100, and can provide convenience for disassembling the chassis assembly 100, and has a simple structure. , Easy to use, convenient for users to disassemble and install.
  • the chassis assembly 100 shown in FIGS. 1 to 5 shows two working states of the gripping portion 14.
  • the gripping portion 14 shown by the dashed line is in the upright state when the gripping portion 14 is in the disassembled state. It is convenient for the user to hold the grip 14 for disassembly and installation; the grip 14 shown in solid lines is in the state of the grip 14 after the chassis assembly 100 is installed in place. After the chassis assembly 100 is installed in place, rotate the grip 14 to make It fits on the working plate assembly to avoid occupying more space in a standing state.
  • a rotatable cutter 16 is provided on the working disc assembly 12, and the cutter 16 It is arranged toward the inside of the food processing device, and the gripping portion 14 is set toward the outside of the food processing device.
  • the cutter 16 and the gripping portion 14 are respectively located on both sides of the working plate assembly 12. While improving the ease of disassembly of the chassis assembly 100, the gripping portion 14 is avoided. It interferes with the knife 16 and at the same time prevents the grip 14 from contacting the food to ensure food hygiene.
  • the working plate assembly 12 includes a bracket 120 and a working plate 124.
  • the bracket 120 provides an installation position for the holding portion 14; the working plate 124 is preferably a heating plate for heating during food processing. To process food.
  • the working plate 124 and the support 120 may be provided as an integral structure, or may be provided as a separate structure. Further, the working plate 124 may be a heating plate, which is convenient for heating the food to be heated.
  • the bracket 120 includes: a mounting seat 121 on which the working plate 124 is arranged; a mounting bracket 122, the mounting bracket 122 is connected to the mounting seat 121, and the holding portion 14 is configured
  • the mounting frame 122 located on the side of the holding portion 14 is provided with a recessed portion 123, the holding portion 14 can be rotated to overlap the recessed portion 123;
  • the first limiting member 125 is provided at On the mounting frame 122 on the other side of the holding portion 14, the first limiting member 125 is used for limiting the rotation angle of the holding portion 14;
  • the second limiting member is provided on the peripheral side of the recessed portion 123 for holding
  • the part 14 performs a limit.
  • the mounting base 121 and the mounting frame 122 are an integral structure. Furthermore, the height of the mounting bracket 122 on both sides of the holding portion 14 is different, and one side is provided as a recessed portion 123.
  • the holding portion 14 can be accommodated in the recessed portion 123 to reduce The space occupied by the chassis assembly 100; further, a second limiting member is provided on the peripheral side of the recess 123, and the second limiting member is preferably a convex structure protruding from the peripheral side of the recess 123, and the number can be one or There are more than one.
  • a first limiting member 125 is also provided on the outer side wall of the other side of the mounting bracket 120 to limit the rotation of the holding portion 14 toward this side, so as to limit the rotation of the holding portion 14
  • the rotation angle is limited, and the setting position of the first limiting member 125 can define different rotation angles.
  • the rotation angle is 0 degrees to 180 degrees.
  • the rotation angle is from 0 degrees to 90 degrees, which is convenient for users to operate.
  • the gripping portion 14 is a bent structure, and the gripping portion 14 is a handle as a whole, which is convenient for the user to operate; a grip is provided on the main body 142 The position 150 is convenient for the user to hold for quick disassembly and assembly of the chassis assembly 100.
  • An embodiment of the present application proposes a chassis assembly 100, which includes: a working plate assembly 12; a gripping portion 14. Two ends of the gripping portion 14 are rotatably connected with the working plate assembly 12; as shown in FIG. 1, the gripping portion 14 includes a main body 142 and a connecting portion 144, the connecting portion 144 is provided at both ends of the main body 142, and the connecting portion 144 is rotatably connected with the working plate assembly 12.
  • the holding portion includes a main body 142 and a connecting portion 144, wherein the connecting portion 144 is located at two opposite ends of the main body 142, and both ends of the main body 142 are rotatably connected to the working plate assembly 12 through the connecting portion 144; the connecting portion 144 includes a first connecting portion 146 and a second connecting portion 148 connected to the first connecting portion 146.
  • the first connecting portion 146 and the second connecting portion 148 are located on both sides or the same side of the main body 142, wherein the first connecting portion 146 is used to connect with the working plate assembly 12, and the second connecting portion 148 is used to set a corresponding installation position of the cup holder 200.
  • first connecting portion 146 and the second connecting portion 148 include but are limited to the following: both the first connecting portion 146 and the second connecting portion 148 are cylindrical bodies, and the working plate assembly 12 is provided with a connecting portion 144 is a mounting hole for mating connection; the first connecting portion 146 and the second connecting portion 148 are both grooved structures, and the working disk assembly 12 is provided with a connecting post that is rotatably connected with the grooved structure; the first connecting portion 146 and the second connecting portion 146 One of the two connecting parts 148 is a column, and the other has a groove structure.
  • the second connecting portion 148 is a column
  • the work plate assembly 12 is provided with a mounting hole that is mated and connected with the connecting portion 144; when the second connecting portion 148 is a groove structure, the work plate assembly 12 is provided There is a connecting column that is rotatably connected with the groove structure.
  • the cross-sectional area of the cylinder may be circular, oval or convex.
  • the relative positions of the first connecting portion 146 and the second connecting portion 148 are optimized so that the rotation axis of the first connecting portion 146 and the rotation axis of the second connecting portion 148 are opposite Eccentric setting. Since the rotation axis of the first connection portion 146 and the rotation axis of the second connection portion 148 are relatively eccentric, the first connection portion 146 and the second connection portion 148 form an eccentric structure.
  • the first connection The part 146 can give a pressing force to the work disc assembly 12, thereby achieving the purpose of pressing the work disc assembly 12 and ensuring the stable installation of the work disc assembly 12.
  • the first connecting portion 146 has a cylindrical structure, and the working plate assembly 12 is provided with a mounting hole 126 that is matched and connected with the cylindrical structure.
  • the first connecting portion 146 and the second The two connecting parts 148 are relatively eccentrically arranged, and the connecting column will produce displacement during the rotation of the holding part. Therefore, the width of the mounting hole 126 along the direction perpendicular to the geometric center line of the working plate assembly 12 is set to be greater than the diameter of the column structure. The sum of the longitudinal length and 2 times the eccentric distance. Further, if the column structure is a cylinder, the width of the mounting hole 126 is greater than the sum of the diameter of the cylinder and the eccentric distance twice.
  • An embodiment of the present application provides a food processing device, as shown in FIGS. 6 to 40, including: a cup assembly; and a chassis assembly 100 according to any one of the embodiments in the first aspect of the present application, the chassis assembly 100 can It is detachably arranged on the cup body assembly.
  • the food processing device proposed in the present application includes a cup body assembly and the chassis assembly 100 according to any embodiment in the first aspect of the present application, and therefore, has all the beneficial effects of the aforementioned chassis assembly 100.
  • the chassis assembly 100 is detachably arranged on the cup assembly, and the working plate assembly 12 of the chassis assembly 100 is arranged toward the inside of the food processing device.
  • the working plate assembly 12 is used to process food inside the food processing device, and the holding part 14 It is arranged toward the outside of the food processing device, and the gripping portion 14 is used for disassembling and assembling the working plate assembly 12.
  • the handle 14 is rotated, and the entire chassis assembly 100 is taken out through the handle 14, and then the chassis assembly 100 is cleaned.
  • the cup assembly includes: a cup holder 200, a cup body 300, and a cover assembly 500, and the cup body 300 and The cup holder 200 can be detachably connected; the cover assembly 500 is arranged at the opening of the cup 300.
  • a cup body 300 connected to the cup holder 200 is provided, so that the cup body 300 and the cup holder 200 jointly form a cavity structure to provide a place for food processing; in the food processing device for food processing During the process, the lid assembly 500 is installed at the opening of the cup 300 to ensure the sealing of the cavity structure and avoid food leakage; when the food is processed, the opening of the cup 300 is opened, and the processed food is taken out.
  • the work plate assembly 12 includes a support 120 and a work plate 124.
  • the support 120 is located on the peripheral side of the work plate 124 and protrudes from the work plate 124.
  • the support 120 provides an installation position for the holding portion 14; Heat during processing to process food.
  • the working plate 124 and the support 120 can be set as an integral structure or a split structure.
  • a sealing ring 400 is provided at the connection between the cup body 300 and the cup holder 200 to ensure that the chassis assembly When 100 is installed on the cup holder 200, the working plate assembly 12 abuts against the sealing ring 400 to ensure the use performance of the food processing device.
  • a first limiting portion (not shown in the figure) is provided on the cup holder 200
  • a second limiting portion (not shown in the figure) is provided on the gripping portion 14, the first limiting portion and the second limiting portion Match the shape and position of the position.
  • the gripping portion 14 is restricted by the cooperation of the first and second restricting portions, so that the gripping portion 14 is stably located inside the base, and the gripping portion 14 is prevented from accidentally detaching from the working plate assembly 12.
  • the specific structures of the first limiting portion and the second limiting portion can take various forms, including but not limited to the following structures: the first limiting portion is a buckle structure, and the second limiting portion is a groove structure ; The first limiting portion is a groove structure, and the second limiting portion is a buckle structure.
  • the overall structure of the buckle structure and the groove structure is simple, which is convenient for processing and manufacturing. Under the premise of ensuring the stability of the holding portion 14, the processing cost of the food processing device is effectively reduced.
  • the two ends of the cup holder 200 are respectively a first installation end for installing the cup body 300 and a second installation end for installing the chassis assembly 100;
  • the other end of 200 is used as the installation end of the chassis assembly 100, which facilitates the installation and disassembly operations of the chassis assembly 100, and avoids the removal and cleaning of knives in the cup body 300 in the prior art.
  • the user is caused by the limited space in the cup body 300. Cuts from a knife occurred.
  • the knives and the working plate on which the knives are installed can be taken out as a whole, so that the chassis assembly 100 can be thoroughly cleaned to ensure the sanitation of the food processing device and improve the user's Use experience.
  • FIG. 16 Another embodiment of the present application provides a food processing device, including: a cup holder 200; and any of the above-mentioned chassis assembly 100, the chassis assembly 100 is detachably disposed on the cup holder 200; as shown in Figures 8 and 15 16.
  • a guide groove 22 is provided on the cup holder 200; the second connecting portion 148 of the holding portion 14 is rotatably mounted on the guide groove 22.
  • the cup holder 200 is provided with a guide groove 22, and the position of the guide groove 22 corresponds to the second connecting portion 148 of the holding portion 14.
  • the second connecting portion 148 of the holding portion 14 is directly installed in the guide groove 22, so that the second connecting portion 148 and the guide groove 22 are rotatably connected to ensure a stable connection of the chassis assembly 100.
  • the second connecting portion 148 of the holding portion 14 is in contact with the inner wall of the guide groove 22, and the rotation axis of the first connecting portion 146 and the rotation axis of the second connecting portion 148 are relatively eccentrically arranged, so that the rotation of the holding portion 14
  • the first connecting portion 146 will give a pressing force to the work plate assembly 12, thereby pressing the work plate assembly 12 and ensuring the work plate assembly 12 12 stable installation.
  • the positioning column 24 is provided in the guide groove 22.
  • the second connecting portion 148 is a hollow column, and the side wall of the hollow column is provided with an installation notch 152.
  • the positioning column 24 is located in the inner hole of the hollow column after passing through the installation notch 152, and the positioning column 24 is matched with the inner hole of the hollow column to ensure the rotating connection of the holding portion 14.
  • the relative positions of the positioning column 24, the hollow column, the inner hole of the hollow column, and the first connecting portion 146 are optimized. Specifically, it includes but is not limited to the following methods: the geometric center line of the positioning column 24 coincides with the geometric center line of the hollow column and the center line of the inner hole, and the geometric center line of the first connecting portion 146 is coincident with the geometric center line of the positioning column 24 There is an eccentric distance between the center lines; the geometric center line of the positioning column 24 coincides with the geometric center line of the hollow column and the geometric center line of the first connecting portion 146, and the center line of the inner hole is different from the geometric center line of the positioning column 24 There is an eccentric distance between the geometric center line of the hollow cylinder and the center line of the inner hole and the geometric center line of the first connecting portion 146 coincide, and the geometric center line of the positioning column 24 and the geometric center line of the hollow cylinder have an eccentric distance.
  • the food processing device in this embodiment includes: a cup body 300, a cup holder 200, a cover assembly 500 and a chassis assembly 100.
  • Figures 6 to 17 show that the chassis assembly 100 is in position
  • the schematic diagram of the structure in the disassembled state wherein the guide groove 22 is provided on the inner side wall of the cup holder 200, and the positioning column 24 is provided in the guide groove 22.
  • the first connecting portion 146 of the holding portion 14 is a protruding column
  • the second connecting portion 148 of the holding portion 14 is a hollow column.
  • the side wall of the hollow column is provided with a mounting notch 152, and the positioning column 24 passes through the mounting notch 152
  • the back is located in the inner hole of the hollow cylinder.
  • FIGS. 18 to 32 are schematic diagrams showing the structure of the chassis assembly 100 installed in the cup holder 200. Further, the guide groove 22 is symmetrically arranged on the inner side wall of the cup holder 200, so the installation direction of the chassis assembly 100 can be adjusted. Specifically, as shown in FIGS. 18 to 25, the gripping portion of the chassis assembly 100 is located on the handle one of the cup body 300 after installation. On the other hand, as shown in FIGS. 26 to 32, the holding portion of the chassis assembly 100 after installation is located on the side opposite to the handle of the cup body 300; in specific embodiments, the opening position of the guide groove 22 is not limited to this.
  • FIGS. 33 to 40 Another embodiment of the present application proposes a food processing device, as shown in FIGS. 33 to 40, including: a cup holder 200; and the chassis assembly 100 according to any one of the embodiments in the first aspect of the present application, the chassis assembly 100 Removably set on the cup holder 200; as shown in Figure 34 to Figure 37, the guide groove 22 is an L-shaped guide groove, as shown in Figure 37, the L-shaped guide groove includes a guide portion 222 and the guide portion 222 connected The fixed portion 224; wherein, the second connecting portion 148 is installed into the L-shaped guide groove through the guide portion 222, and then the working plate assembly 12 is rotated so that the second connecting portion 148 is installed in the fixed portion 224.
  • the L-shaped guide groove includes a guide portion 222 and a fixing portion 224 connected to the guide portion 222.
  • the guiding portion 222 is disposed at a guiding notch formed on the side wall of the cup holder 200, and the fixing portion 224 is communicated with the guiding portion 222 to form a fixing position of the second connecting portion 148.
  • fix The portion 224 provides a limit for the chassis assembly 100 to avoid accidents caused by the chassis assembly 100 falling off.
  • the relative positions of the fixing portion 224, the first connecting portion 146, and the second connecting portion 148 are optimized. Specifically, it includes but is not limited to the following manner: the rotation axis of the second connecting portion 148 coincides with the geometric centerline of the fixing portion 224, and the rotation axis of the first connecting portion 146 and the geometric centerline of the fixing portion 224 have an eccentric distance; The geometric center line of the fixed portion 224 coincides with the rotation axis of the first connecting portion 146, and the rotation axis of the second connecting portion 148 has an eccentric distance from the geometric center line of the fixed portion 224.
  • the working disk assembly 12 is provided with a pressing force during the rotation of the holding portion 14 so as to realize the stable installation of the working disk assembly 12.
  • the food processing device includes a cup body 300, a cup cover assembly, a detachable chassis assembly 100, a cup holder 200, and a sealing ring 400;
  • the chassis assembly 100 includes a working plate assembly 12 (or knife holder), a knife 16, Coupler (or clutch).
  • the chassis assembly 100 is provided with a rotatable gripping portion 14.
  • the inner and outer sides of the gripping portion 14 are provided with convex (or concave) cylinders (ie, the first connecting portion 146 and the second connecting portion 148), and inner and outer cylinders
  • the relative eccentric setting, the eccentricity is greater than 0mm, in this example is set to 1.0mm, the eccentric setting can ensure that when the grip 14 rotates around the outer cylinder (in this example, the rotation is 90°), the working disk assembly 12 can produce a When the displacement of the sealing ring 400 is compressed, the displacement of the working disk assembly 12 is equal to the eccentricity. In this way, when the holding portion 14 is in the closed position of the chassis assembly 100, the chassis assembly 100 is connected to the cup body 300 and held in the locked position, while maintaining the seal between the bottom of the cup and the working plate assembly 12 at the same time.
  • the grip 14 When the grip 14 is in the closed position, according to the design principle of the eccentric cam, it will not be accidentally loosened due to the dead center of the mechanism. When the grip 14 is rotated with a hand, the chassis assembly 100 can be loosened and removed.
  • the cup body 300 is provided with a cup holder 200.
  • One end of the cup holder 200 is connected with the cup body 300 (threaded, buckled, bonded, etc.).
  • the cup holder The other end of the 200 is connected to the detachable work plate assembly 12.
  • the connecting end of the cup holder 200 and the working plate assembly 12 is provided with a guide groove 22 that is convenient for the holding part 14 to be inserted into.
  • the guide groove 22 is provided with a positioning column 24.
  • the positioning column 24 is a convex (or concave) column.
  • the column is used to form a rotating connection with the outer cylinder of the holding portion 14; the column in the guide groove 22 of the cup holder 200 and the outer cylinder of the holding portion 14 are in a mutually matched relationship and can form a rotating connection.
  • the cylinder outside the holding portion 14 is hollow, and through a gap, the cylinder in the guiding groove 22 of the cup holder 200 can enter the hollow cylinder outside the holding portion 14.
  • This application proposes a food processing device with a detachable chassis assembly 100, which includes a cup body 300, a cup lid assembly, a detachable chassis assembly 100, a cup holder 200, and a sealing ring 400; the chassis assembly 100 includes a working plate assembly 12 (or Tool holder), tool 16, coupling (or clutch).
  • a working plate assembly 12 or Tool holder
  • tool 16 coupling or clutch
  • the food processing device includes a cup body 300, a cup cover assembly, a detachable chassis assembly 100, a cup holder 200, and a sealing ring 400;
  • the chassis assembly 100 includes a working plate assembly 12 (or knife holder), a knife 16, Coupler (or clutch).
  • the guide groove 22 at the connecting end of the cup holder 200 and the working plate assembly 12 is made into an L shape, the cylindrical body outside the holding portion 14 is inserted into the L-shaped guide groove and rotated horizontally in place, and then the holding portion 14 is turned over to the closed position.
  • the angle of rotation is between 10° and 45°.
  • the term “plurality” refers to two or more than two, unless specifically defined otherwise.
  • the terms “installed”, “connected”, “connected”, “fixed” and other terms should be understood in a broad sense.
  • “connected” can be a fixed connection, a detachable connection, or an integral connection;
  • “connected” can be It is directly connected or indirectly connected through an intermediary.
  • the specific meanings of the above terms in this application can be understood according to specific circumstances.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Food Science & Technology (AREA)
  • Food-Manufacturing Devices (AREA)

Abstract

一种底盘组件(100)及食物处理装置,其中,底盘组件(100)包括:工作盘组件(12);把持部(14),把持部(14)的两端与工作盘组件(100)活动连接。底盘组件(100),在工作盘组件(12)上设置有活动连接的把持部(14),把持部(14)既不会影响底盘组件(100)的正常使用,又可以为拆卸底盘组件(100)提供便利,且结构简单、使用方便,方便用户拆卸及安装操作。

Description

底盘组件和食物处理装置
本申请要求于2019年08月02日提交中国专利局、申请号为“201910713805.3”、发明名称为“底盘组件和食物处理装置”的中国专利申请的优先权,于2019年08月02日提交中国专利局、申请号为“201921245615.5”、发明名称为“底盘组件和食物处理装置”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及生活电器技术领域,具体而言,涉及一种底盘组件及一种食物处理装置。
背景技术
现有料理产品或加热破壁机,为便于杯体底部和刀组清洗,通常设计有可拆方式。相关技术中,是将刀组拆出,刀组要从杯内取出导致装拆不方便且易于对使用者造成意外伤害。
发明内容
本申请旨在至少解决现有技术或相关技术中存在的技术问题之一。
为此,本申请的第一个方面在于,提出一种底盘组件。
本申请的第二个方面在于,提出一种食物处理装置。
有鉴于此,根据本申请的一个方面,提供了一种底盘组件,包括:工作盘组件;把持部,把持部与工作盘组件活动连接。
本申请提供的底盘组件包括配合使用的工作盘组件及把持部,其中,把持部与工作盘组件为活动式连接,优选地为可转动式连接,通过转动把持部,可使得把持部隐藏于底盘组件的内部,或使得把持部凸出于工作盘组件。在底盘组件使用过程中,把持部隐藏于底盘组件的内部,把持部不会影响底盘组件的正常使用;在需要取出工作盘组件进行清洗时,转动把持部,使得把持部凸出于工作盘组件,此时便可通过把持部取下底盘组件, 以对底盘组件进行彻底的清洗。
本申请提出的底盘组件,在工作盘组件上设置有可转动的把持部,把持部既不会影响底盘组件的正常使用,又可以为拆卸底盘组件提供便利,且结构简单、使用方便,方便用户拆卸及安装操作。
另外,根据本申请提供的上述技术方案中的底盘组件,还可以具有如下附加技术特征:
在上述技术方案中,把持部包括:主体;连接部,连接部设置于主体的两端,连接部与工作盘组件转动连接。
在该技术方案中,把持部包括主体及连接部,其中,连接部位于主体相对的两端,主体的两端通过连接部与工作盘组件可转动式连接。在底盘组件的使用过程中,主体隐藏于工作盘组件的一侧;当需要对工作盘组件进行清洗时,通过主体带动连接部转动以得使得主体凸出工作盘组件设置,此时主体可起到把手的作用,便于工作盘组件的拆卸,方便对工作盘组件进行彻底清洗。
在上述任一技术方案中,连接部包括第一连接部和与第一连接部相连接的第二连接部;其中,第一连接部和第二连接部位于主体的两侧或同侧,第一连接部的转动轴线和第二连接部的转动轴线相对偏心设置。
在该技术方案中,连接部包括第一连接部和第二连接部,其中,第一连接部为朝向主体的内侧凸出结构或凹槽结构,第二连接部朝向主体的外侧凸出设置或凹陷设置,第一连接部用于与工作盘组件相连接,第二连接部用于与杯座相应的安装部位设置;或者第一连接部和第二连接部位于主体的同侧。通过对第一连接部及第二连接部的相对位置进行优化,使得第一连接部的转动轴线和第二连接部的转动轴线相对偏心设置。由于第一连接部的转动轴线和第二连接部的转动轴线相对偏心,使得第一连接部与第二连接部构成一个偏心结构,在转动把持部的过程中,第一连接部可以给工作盘组件一个压紧力,从而起到压紧工作盘组件的目的,保证工作盘组件的稳定安装。
在上述任一技术方案中,第一连接部和第二连接部均为柱体,工作盘组件上设置有与连接部相配合连接的安装孔。
在该技术方案中,将第一连接部与第二连接设置为柱体,并在工作盘组件上设置有与连接部相配合连接的安装孔,柱体与安装孔的位置及形状相适配。在使用过程中,柱体位于安装孔内,实现把持部与工作盘组件的可转动式连接。
在上述任一技术方案中,第一连接部和第二连接部均为凹槽结构,工作盘组件上设置有与凹槽结构相转动连接的连接柱。
在该技术方案中,将第一连接部与第二连接部设置为凹槽结构,并在工作盘组件上设置有与凹槽结构相转动连接的连接柱,连接柱与凹槽结构的位置及形状相适配。在使用过程中,连接柱位于凹槽结构内部,实现把持部与工作盘组件的可转动式连接。
在上述任一技术方案中,第一连接部和第二连接部中的一个为柱体,另一个凹槽结构。
在该技术方案中,将第一连接部和第二连接部中的一个设置为柱体,另一个设置为凹槽结构。其中,当第一连接部为柱体时,在工作盘组件上设置有与柱体相配合连接的安装孔;当第一连接部为凹槽结构时,在工作盘组件上设置有与凹槽结构相转动连接的连接柱,以实现把持部与工作盘组件的可转动式连接。
在上述任一技术方案中,把持部为折弯状结构;把持部还包括:把持位,把持位设置于主体上。
在该技术方案中,为达到最佳的拆装效果,将把持部为折弯状结构,把持部整体呈弯曲手柄状,便于用户操作;在主体上设置有把持位,便于用户把持,以快速拆装把持部。
在上述任一技术方案中,还包括:刀具,刀具能够转动地设置于工作盘组件上,刀具与把持部分别位于工作盘组件的两侧。
在该技术方案中,在工作盘组件上设置有可转动的刀具,通过刀具对食物进行搅拌及粉碎操作;刀具朝向食物处理装置的内部设置,把持部朝向食物处理装置的外部设置,刀具与把持部分别位于工作盘组件的两侧。在提升底盘组件拆卸便捷性的同时,避免把持部与刀具干涉,同时避免把持部与食物相接触,保证食物的卫生。
在上述任一技术方案中,工作盘组件包括:支架,把持部与支架转动连接;工作盘,工作盘设置于支架,刀具安装于工作盘。
在该技术方案中,包括支架及工作盘,其中,支架位于工作盘的周侧,支架为把持部提供安装位置;工作盘用于在食物处理的过程中发热,以对食物进行处理。
具体地,工作盘与支架可设置为一体式结构,也可设置为分体式结构。进一步地,工作盘可以为发热盘,方便对需要加热的食物进行加热处理。
在上述任一技术方案中,支架包括:安装座,工作盘设置于安装座上;安装架,安装架与安装座相连接,把持部被配置为适于设置在安装架上,位于把持部一侧的安装架上设置有凹陷部,把持部转动能够与凹陷部相搭接;第一限位件,设置于位于把持部另一侧的安装架上,限位凸起用于对把持部的转动角度进行限位;第二限位件,设置于凹陷部的周侧,用于对把持部进行限位。
在该技术方案中,支架包括安装座和安装架,安装座用于安装工作盘,安装架用于安装保持部,安装座和安装架优选为一体式结构。进一步地,安装架位于把持部两侧的高度是不同的,其中的一侧设置为凹陷部,当底盘组件处于安装状态时,把持部可以收纳与凹陷部内,减小底盘组件的占用空间;进一步地,在凹陷部的周侧设置有第二限位件,第二限位件优选为凸出于凹陷部周侧的凸起结构,数量可以为一个或多个,通过设置第二限位件时限对把持部向安装座一侧继续转动,避免发生安装干涉等情况的发生。进一步地,在安装支架的另一侧的外侧壁上也设置有第一限位件,对把持部朝向该侧转动进行限位,进而可以对把持部的转动角度进行限位,第一限位件的设置位置可以限定出不同的转动角度。优选地转动角度为0度至90度。
根据本申请的第二个方面,提供了一种食物处理装置,包括:杯体组件;及如本申请第一方面中任一项的底盘组件,底盘组件能够拆卸地设置于杯体组件上。
本申请提出的食物处理装置包括杯体组件及如本申请第一方面中任一项的底盘组件,因此,具有上述底盘组件的全部有益效果。
具体地,底盘组件可拆卸地设置于杯体组件,且底盘组件的工作盘组件朝向食物处理装置的内部设置,工作盘组件用于对食物处理装置内部食物进行处理,把持部朝向处理装置的外部设置,把持部用于拆装工作盘组件。当需要对底盘组件进行清洗时,转动把持部使得把持部凸出于工作盘组件,并通过把持部将底盘组件整体取出,进而对底盘组件进行清洗,本结构设计简单,安全可靠,极大地方便了用户对料理装置的清洗工作。
另外,根据本申请提供的上述技术方案中的食物处理装置,还可以具有如下附加技术特征:
在上述技术方案中,杯体组件包括:杯座,底盘组件能够拆卸地设置于杯座上;导向槽,导向槽设置于杯座;把持部的第二连接部转动地安装于导向槽。
在该技术方案中,杯座设置有导向槽,且导向槽的位置与把持部的第二连接部相对应。在安装底盘组件时,直接将把持部的第二连接部安装于导向槽内,使得第二连接部与导向槽可转动式连接,以保证底盘组件的稳定连接。
具体地,把持部的第二连接部与导向槽的内壁相接触,由于第一连接部的转动轴线和第二连接部的转动轴线相对偏心设置,使得在转动把持部的过程中,在导向槽内壁与第二连接部的作用下,第一连接部会给工作盘组件一个压紧力,从而起到压紧工作盘组件的作用,保证工作盘组件的稳定安装。
在上述任一技术方案中,还包括:定位柱,定位柱设置于导向槽内,第二连接部与定位柱转动连接。
在该技术方案中,导向槽内设置有定位柱,且定位柱与第二连接部的形状相适配。通过定位柱与第二连接部的配合实现把持部的转动式连接,便于用户拆装底盘组件。
在上述任一技术方案中,第二连接部为空心柱体,空心柱体的侧壁上设置有安装缺口,定位柱通过安装缺口与空心柱体的内孔转动连接。
在该技术方案中,第二连接部为空心柱体,且空心柱体的侧壁上设置有安装缺口。在安装底盘组件的过程中,定位柱通过安装缺口后安装于空 心柱体的内孔中,定位柱与空心柱体的内孔配合,保证把持部的转动式连接。
在上述任一技术方案中,第一连接部的几何中心线与定位柱的几何中心线之间具有偏心距离;或内孔的中心线与定位柱的几何中心线之间具有偏心距离;或定位柱的几何中心线与空心柱体的几何中心线具有偏心距离。
在该技术方案中,为保证第一连接部可为工作盘组件提供挤压力,对定位柱、空心柱体、空心柱体的内孔及第一连接部的相对位置进行优化。具体地,包括但不局限于以下方式:定位柱的几何中心线与空心柱体的几何中心线及内孔的中心线相重合,第一连接部的几何中心线与定位柱的几何中心线之间具有偏心距离;定位柱的几何中心线与空心柱体的几何中心线及第一连接部的几何中心线相重合,内孔的中心线与定位柱的几何中心线之间具有偏心距离;空心柱体的几何中心线与内孔的中心线及第一连接部的几何中心线相重合,定位柱的几何中心线与空心柱体的几何中心线具有偏心距离。通过设置偏心结构,把持部在处于闭合位置时,按偏心凸轮的设计原理,因机构死点原因不会意外松开,进而实现了底盘组件与杯体的连接状态保持在锁紧位置,同时进一步保证了杯座与工作盘组件间的密封。当用手拉起把持部进行旋转,就可以松开并拆出底盘组件。通过上述优化设置,可以保证转动把持部的过程中为工作盘组件提供挤压力,保证工作盘组件的稳定安装。
在上述任一技术方案中,基于第一连接部为柱体结构的情况下,工作盘组件上设置有与柱体结构相配合的安装孔,沿垂直工作盘组件的几何中心线的方向,安装孔的宽度大于柱体结构的径向长度与二倍的偏心距离之和。
在该技术方案中,第一连接部为柱体结构,工作盘组件上设置有与柱体结构相配合连接的安装孔,第一连接部和第二连接部相对偏心设置,在把持部转动的过程中连接柱会产生位移量,故将安装孔沿垂直工作盘组件的几何中心线的方向对应的宽度设置为大于柱体结构的径向长度与2倍偏心距离之和。进一步地,柱体结构为圆柱体,则安装孔的宽度大于圆柱体的直径与2倍的偏心距离之和。
在上述任一技术方案中,导向槽为L形导向槽。
在该技术方案中,将导向槽设置为L形导向槽,L形导向槽可以在底盘组件的取出方向给工作盘组件一个限位,L形导向槽方便底盘组件的安装且可保证底盘组件稳定位于杯座内部,避免底盘组件脱落造成意外。
在上述任一技术方案中,L形导向槽包括导向部和与导向部相连接的固定部;其中,第二连接部通过导向部安装进L形导向槽,再转动工作盘组件以使第二连接部安装至固定部内。
在该技术方案中,L形导向槽包括导向部和与导向部相连接的固定部。其中,导向部设置于在杯座的侧壁形成导向缺口,固定部与导向部相连通,形成第二连接部的固定位置。在安装底盘组件的过程中,沿导向部安装进L形导向槽,再转动工作盘组件以使第二连接部安装至固定部内;在使用食物处理装置的过程中,固定部为底盘组件提供限位,避免底盘组件脱落造成意外。
在上述任一技术方案中,第一连接部的转动轴线与固定部的几何中心线具有偏心距离;或第二连接部的转动轴线与固定部的几何中心线具有偏心距离。
在该技术方案中,为保证第一连接部可为工作盘组件提供挤压力,对固定部、第一连接部、第二连接部的相对位置进行优化。具体地,包括但不局限于以下方式:第二连接部的转动轴线与固定部的几何中心线相重合,第一连接部的转动轴线与固定部的几何中心线具有偏心距离;固定部的几何中心线与第一连接部的转动轴线相重合,第二连接部的转动轴线与固定部的几何中心线具有偏心距离。通过设置偏心结构,把持部在处于闭合位置时,按偏心凸轮的设计原理,因机构死点原因不会意外松开,进而实现了底盘组件与杯体的连接状态保持在锁紧位置,同时进一步保证了杯座与工作盘组件间的密封。当用手拉起把持部进行旋转,就可以松开并拆出底盘组件。通过上述优化设置,可以保证转动把持部的过程中为工作盘组件提供挤压力,保证工作盘组件的稳定安装。
在上述任一技术方案中,还包括:第一限位部,设置于杯体组件;第二限位部,设置于把持部,第一限位部能够与第二限位部相连接,以对把 持部进行限位。
在该技术方案中,杯体组件的杯座上设置有第一限位部,在把持部设置有第二限位部,第一限位部与第二限位部的形状及位置相匹配。在不需要拆卸底盘组件时,通过第一限位部与第二限位部的配合对把持部进行限位,使得把持部稳定处于底座的内部,避免把持部意外脱离工作盘组件。
在上述任一技术方案中,第一限位部和第二限位部中的一个为卡扣结构,另一个为与卡扣结构相适配的凹槽结构。
在该技术方案中,第一限位部和第二限位部的具体结构可以采用多种形式,包括但不局限于以下结构:第一限位部为卡扣结构,第二限位部为凹槽结构;第一限位部为凹槽结构,第二限位部为卡扣结构。其中,卡扣结构与凹槽结构的整体结构简单,便于加工制造,在保证把持部稳定性的前提下,有效降低食物处理装置的加工成本。
在上述任一技术方案中,杯体组件还包括:杯体,杯体被配置为适于放置在杯座上;密封圈,密封圈设置于杯体与杯座的连接处,其中底盘组件安装于杯座上时,工作盘组件与密封圈相抵接。
在该技术方案中,设置有与杯座相连接的杯体,使得杯体与杯座共同构成一个腔体结构,为食物的处理提供场所;为保证腔体结构的密封性,避免食物泄漏,在杯体与杯座的连接处设置有密封圈,且保证底盘组件安装于杯座上时,工作盘组件与密封圈相抵接,保证食物处理装置的使用性能。进一步地,通过将把持部的第一连接部和第二连接部的转动轴线设置成偏心结构,在工作盘组件安装时,其偏心设置能保证把持部的第一连接部在旋转时,能让工作盘组件产生一个压紧密封圈的位移,其位移量等于偏心结构的偏心量。这样底盘组件在把持部处于闭合位置时,底盘组件与杯体形成连接保持在锁紧位置,同时保证了杯座与工作盘组件间的密封。
在上述任一技术方案中,杯座包括:第一安装端,第一安装端用于安装杯体;第二安装端,第二安装端与第一安装端位于杯座的两端,底盘组件通过第二安装端安装至杯座内,导向槽设置于第二安装端上。
在该技术方案中,杯座的两端分别为用于安装杯体的第一安装端和用于安装底盘组件的第二安装端;本申请通过将杯座的另一端作为底盘组件 的安装端,方便了底盘组件的安装与拆卸操作,避免了现有技术中通过杯体内进行刀具的拆除清洗,由于杯体内空间有限而导致用户被刀具割伤的情况发生。并且,通过本申请提供的杯座和底盘组件,可以使得刀具与安装刀具的工作盘整体被取出,进而可以实现对底盘组件的彻底清洗,保证食物处理装置的使用卫生,提升用户的使用体验。
在上述任一技术方案中,还包括:盖体组件,盖体组件盖设与杯体的开口处。
在该技术方案中,在杯体的开口处设置有盖体组件。在食物处理装置对食物进行处理的过程中,盖体组件盖设于杯体的开口处,保证腔体结构的密封性,避免食物泄漏;当食物处理完成后,打开杯体的开口,将处理完成的食物取出。
本申请的附加方面和优点将在下面的描述部分中变得明显,或通过本申请的实践了解到。
附图说明
本申请的上述和/或附加的方面和优点从结合下面附图对实施例的描述中将变得明显和容易理解,其中:
图1是本申请的一个实施例中底盘组件的结构示意图;
图2为图1所示实施例的底盘组件的俯视图;
图3为图2所示实施例的底盘组件沿F-F向的剖视图;
图4为图1所示实施例的底盘组件的A处局部放大图;
图5为图3所示实施例的底盘组件的B处局部放大图;
图6是本申请一个实施例的食物处理装置的结构分解示意图;
图7为图6所示实施例的食物处理装置的另一视角的示意图;
图8为图6所示实施例的食物处理装置的又一视角的示意图(省略盖体组件);
图9为图6所示实施例的食物处理装置的又一视角的示意图(省略盖体组件);
图10为图6所示实施例的食物处理装置的又一视角的示意图(省略盖 体组件);
图11为图6所示实施例的食物处理装置的又一视角的示意图(省略盖体组件);
图12为图11所示实施例的食物处理装置的俯视图;
图13为图12所示实施例的食物处理装置沿G-G向的剖视图;
图14为图11所示实施例的食物处理装置的左视图;
图15为图8所示实施例的食物处理装置的C处局部放大图;
图16为图8所示实施例的食物处理装置的D处局部放大图;
图17为图13所示实施例的食物处理装置的E处局部放大图;
图18是本申请另一个实施例的食物处理装置的结构示意图;
图19为图18所示实施例的食物处理装置的另一视角的结构示意图;
图20为图19所示实施例的食物处理装置的又一视角的结构示意图;
图21为图19所示实施例的食物处理装置的仰视图;
图22为图19所示实施例的食物处理装置的主视图(反向);
图23为图19所示实施例的食物处理装置的主视图(正向);
图24为图21所示实施例的食物处理装置沿H-H向的剖视图;
图25是图22所示实施例的食物处理装置的左视图;
图26为本申请又一个实施例的食物处理装置的结构示意图;
图27为图26所示实施例的食物处理装置的另一视角的结构示意图;
图28为图26所示实施例的食物处理装置的仰视图;
图29为图26所示实施例的食物处理装置的主视图(正向);
图30为图26所示实施例的食物处理装置的又一视角的结构示意图;
图31为图30所示实施例的食物处理装置的主视图(反向);
图32为图28所示实施例的食物处理装置沿I-I向的剖视图;
图33是本申请又一个实施例的食物处理装置的结构示意图(保留盖体组件);
图34为图33所示实施例的食物处理装置的分解结构示意图;
图35为图33所示实施例的食物处理装置的俯视图;
图36为图35所示实施例的食物处理装置沿J-J向的剖视图;
图37为图34所示实施例的食物处理装置的L处局部放大图;
图38是本申请又一个实施例的食物处理装置的结构示意图;
图39为图38所示实施例的食物处理装置的俯视图;
图40为图39所示实施例的食物处理装置沿K-K向的剖视图。
其中,图1至图40中附图标记与部件名称之间的对应关系为:
100底盘组件,12工作盘组件,120支架,121安装座,122安装架,123凹陷部,124工作盘,125第一限位件,126安装孔,14把持部,142主体,144连接部,146第一连接部,148第二连接部,150把持位,152安装缺口,16刀具,200杯座,22导向槽,222导向部,224固定部,24定位柱,300杯体,400密封圈,500盖体组件。
具体实施方式
为了能够更清楚地理解本申请的上述目的、特征和优点,下面结合附图和具体实施方式对本申请进行进一步的详细描述。需要说明的是,在不冲突的情况下,本申请的实施例及实施例中的特征可以相互组合。
在下面的描述中阐述了很多具体细节以便于充分理解本申请,但是,本申请还可以采用其他不同于在此描述的其他方式来实施,因此,本申请的保护范围并不受下面公开的具体实施例的限制。
下面参照图1至图40描述根据本申请一些实施例的底盘组件100及食物处理装置。
本申请的一个实施例提出了一种底盘组件100,如图1至图5所示,底盘组件100包括:工作盘组件12;把持部14,把持部14的两端与工作盘组件12活动连接。
在该实施例中,底盘组件100包括可转动式连接的工作盘组件12及把持部14。在底盘组件100使用过程中,把持部14隐藏于底盘组件100的内部,把持部14不会影响底盘组件100的正常使用;在需要取出工作盘组件12进行清洗时,转动把持部14,使得把持部14凸出于工作盘组件12,此时便可通过把持部14取下底盘组件100,以对底盘组件100进行彻底的清洗。
本申请提出的底盘组件100,在工作盘组件12上设置有活动连接的把持部14,把持部14既不会影响底盘组件100的正常使用,又可以为拆卸底盘组件100提供便利,且结构简单、使用方便,方便用户拆卸及安装操作。
具体地,如图1至图5所示的底盘组件100,其中,示出了把持部14的两种工作状态,虚线所示的把持部14是处于拆卸状态时把持部14处于立起状态,便于用户握持住把持部14进行拆卸和安装工作的进行;实线所示的把持部14是处于底盘组件100安装到位后把持部14的状态,底盘组件100安装到位后,转动把持部14使其贴合于工作盘组件,避免处于立起状态占用更多的空间。
进一步地,如图6至图11、图13、图14、图24、图32、图34、图36、及图40所示,在工作盘组件12上设置有可转动的刀具16,刀具16朝向食物处理装置的内部设置,把持部14朝向食物处理装置的外部设置,刀具16与把持部14分别位于工作盘组件12的两侧,在提升底盘组件100拆卸便捷性的同时,避免把持部14与刀具16干涉,同时避免把持部14与食物相接触,保证食物的卫生。
可选地,如图1所示,工作盘组件12包括支架120及工作盘124,支架120为把持部14提供安装位置;工作盘124优选地为发热盘,用于在食物处理的过程中发热,以对食物进行处理。
具体地,工作盘124与支架120可设置为一体式结构,也可设置为分体式结构。进一步地,工作盘124可以为发热盘,方便对需要加热的食物进行加热处理。
可选地,如图1至图5所示,支架120包括:安装座121,工作盘124设置于安装座121上;安装架122,安装架122与安装座121相连接,把持部14被配置为适于设置在安装架122上,位于把持部14一侧的安装架122上设置有凹陷部123,把持部14转动能够与凹陷部123相搭接;第一限位件125,设置于位于把持部14另一侧的安装架122上,第一限位件125用于对把持部14的转动角度进行限位;第二限位件,设置于凹陷部123的周侧,用于对把持部14进行限位。
在该实施例中,安装座121和安装架122为一体式结构。进一步地,安装架122位于把持部14两侧的高度是不同的,其中的一侧设置为凹陷部123,当底盘组件100处于安装状态时,把持部14可以收纳与凹陷部123内,减小底盘组件100的占用空间;进一步地,在凹陷部123的周侧设置有第二限位件,第二限位件优选为凸出于凹陷部123周侧的凸起结构,数量可以为一个或多个,通过设置第二限位件时限对把持部14向安装座121一侧继续转动,避免发生安装干涉等情况的发生。进一步地,如图15所示,在安装支架120的另一侧的外侧壁上也设置有第一限位件125,对把持部14朝向该侧转动进行限位,进而可以对把持部14的转动角度进行限位,第一限位件125的设置位置可以限定出不同的转动角度。优选地转动角度为0度至180度。更转动角度为0度至90度,方便用户的操作。
可选地,如图1至图3所示,为达到最佳的拆装效果,将把持部14为折弯状结构,把持部14整体呈手柄,便于用户操作;在主体142上设置有把持位150,便于用户把持,以快速拆装底盘组件100。
本申请的一个实施例提出了一种底盘组件100,包括:工作盘组件12;把持部14,把持部14的两端与工作盘组件12转动连接;如图1所示,把持部14包括主体142和连接部144,连接部144设置于主体142的两端,连接部144与工作盘组件12转动连接。
在该实施例中,持部包括主体142及连接部144,其中,连接部144位于主体142相对的两端,主体142的两端通过连接部144与工作盘组件12可转动式连接;连接部144包括第一连接部146和与第一连接部146相连接的第二连接部148,第一连接部146和第二连接部148位于主体142的两侧或同侧,其中,第一连接部146用于与工作盘组件12相连接,第二连接部148用于与杯座200相应的安装部位设置。
具体地,第一连接部146与第二连接部148的具体形式包括但部局限于以下方式:第一连接部146和第二连接部148均为柱体,工作盘组件12上设置有与连接部144相配合连接的安装孔;第一连接部146和第二连接部148均为凹槽结构,工作盘组件12上设置有与凹槽结构相转动连接的连接柱;第一连接部146和第二连接部148中的一个为柱体,另一个凹槽结 构。
通过上述设置,可以在保证把持部14与工作盘组件12转动连接的基础上,简化底盘组件100的整体结构。具体地,当第二连接部148为柱体时,工作盘组件12上设置有与连接部144相配合连接的安装孔;当第二连接部148为凹槽结构时,工作盘组件12上设置有与凹槽结构相转动连接的连接柱。
进一步地,当第二连接部148为柱体时,柱体的横截面积可以为圆形、椭圆形或凸圆形。
可选地,如图3至图5所示,对第一连接部146及第二连接部148的相对位置进行优化,使得第一连接部146的转动轴线和第二连接部148的转动轴线相对偏心设置。由于第一连接部146的转动轴线和第二连接部148的转动轴线相对偏心,使得第一连接部146与第二连接部148构成一个偏心结构,在转动把持部14的过程中,第一连接部146可以给工作盘组件12一个压紧力,从而起到压紧工作盘组件12的目的,保证工作盘组件12的稳定安装。
具体实施例中,如图1至图5所示,第一连接部146为柱体结构,工作盘组件12上设置有与柱体结构相配合连接的安装孔126,第一连接部146和第二连接部148相对偏心设置,在把持部转动的过程中连接柱会产生位移量,故将安装孔126沿垂直工作盘组件12的几何中心线的方向对应的宽度设置为大于柱体结构的径向长度与2倍偏心距离之和。进一步地,柱体结构为圆柱体,则安装孔126的宽度大于圆柱体的直径与2倍的偏心距离之和。
本申请的一个实施例提供了一种食物处理装置,如图6至图40所示,包括:杯体组件;及如本申请第一方面中任一实施例的底盘组件100,底盘组件100能够拆卸地设置于杯体组件上。
本申请提出的食物处理装置包括杯体组件及如本申请第一方面中任一实施例的底盘组件100,因此,具有上述底盘组件100的全部有益效果。
具体地,底盘组件100可拆卸地设置于杯体组件,且底盘组件100的工作盘组件12朝向食物处理装置的内部设置,工作盘组件12用于对食物 处理装置内部食物进行处理,把持部14朝向食物处理装置的外部设置,把持部14用于拆装工作盘组件12。当需要对底盘组件100进行清洗时,转动把持部14,并通过把持部14将底盘组件100整体取出,进而对底盘组件100进行清洗。
进一步地,本申请的一个实施例中,如图6至图17所示及图18至图34所示,杯体组件包括:杯座200、杯体300和盖体组件500,杯体300与杯座200能够拆卸地连接;盖体组件500盖设于杯体300的开口处。
在该实施例中,设置有与杯座200相连接的杯体300,使得杯体300与杯座200共同构成一个腔体结构,为食物的处理提供场所;在食物处理装置对食物进行处理的过程中,盖体组件500盖设于杯体300的开口处,保证腔体结构的密封性,避免食物泄漏;当食物处理完成后,打开杯体300的开口,将处理完成的食物取出。
进一步地,工作盘组件12包括支架120及工作盘124,支架120位于工作盘124的周侧并凸出于工作盘124设置,支架120为把持部14提供安装位置;工作盘124用于在食物处理的过程中发热,以对食物进行处理。其中,工作盘124与支架120可设置为一体式结构,也可设置为分体式结构。
进一步地,如图12、图13和图17所示,为保证腔体结构到的密封性,避免食物泄漏,在杯体300与杯座200的连接处设置有密封圈400,且保证底盘组件100安装于杯座200上时,工作盘组件12与密封圈400相抵接,保证食物处理装置的使用性能。
进一步地,在杯座200设置有第一限位部(图中未示出),在把持部14设置有第二限位部(图中未示出),第一限位部与第二限位部的形状及位置相匹配。在不需要拆卸底盘组件100时,通过第一限位部与第二限位部的配合对把持部14进行限位,使得把持部14稳定处于底座的内部,避免把持部14意外脱离工作盘组件12。
具体地,第一限位部和第二限位部的具体结构可以采用多种形式,包括但不局限于以下结构:第一限位部为卡扣结构,第二限位部为凹槽结构;第一限位部为凹槽结构,第二限位部为卡扣结构。其中,卡扣结构与凹槽 结构的整体结构简单,便于加工制造,在保证把持部14稳定性的前提下,有效降低食物处理装置的加工成本。
进一步地,如图6至图14所示,杯座200的两端分别为用于安装杯体300的第一安装端和用于安装底盘组件100的第二安装端;本申请通过将杯座200的另一端作为底盘组件100的安装端,方便了底盘组件100的安装与拆卸操作,避免了现有技术中通过杯体300内进行刀具的拆除清洗,由于杯体300内空间有限而导致用户被刀具割伤的情况发生。并且,通过本申请提供的杯座200和底盘组件100,可以使得刀具与安装刀具的工作盘整体被取出,进而可以实现对底盘组件100的彻底清洗,保证食物处理装置的使用卫生,提升用户的使用体验。
本申请的又一个实施例提供了一种食物处理装置,包括:杯座200;及上述任一实施的底盘组件100,底盘组件100能够拆卸地设置于杯座200上;如图8、图15、图16所示,杯座200上设置有导向槽22;把持部14的第二连接部148转动地安装于导向槽22。
在该实施例中,杯座200设置有导向槽22,且导向槽22的位置与把持部14的第二连接部148相对应。在安装底盘组件100时,直接将把持部14的第二连接部148安装于导向槽22内,使得第二连接部148与导向槽22可转动式连接,以保证底盘组件100的稳定连接。
具体地,把持部14的第二连接部148与导向槽22的内壁相接触,由于第一连接部146的转动轴线和第二连接部148的转动轴线相对偏心设置,使得在转动把持部14的过程中,在导向槽22内壁与第二连接部148的作用下,第一连接部146会给工作盘组件12一个压紧力,从而起到压紧工作盘组件12的作用,保证工作盘组件12的稳定安装。
进一步地,如图15所示,导向槽22内设置有定位柱24第二连接部148为空心柱体,空心柱体的侧壁上设置有安装缺口152。在安装底盘组件100的过程中,定位柱24通过安装缺口152后位于空心柱体的内孔中,定位柱24与空心柱体的内孔配合,保证把持部14的转动式连接。
可选地,为保证第一连接部146可为工作盘组件12提供挤压力,对定位柱24、空心柱体、空心柱体的内孔及第一连接部146的相对位置进行优 化。具体地,包括但不局限于以下方式:定位柱24的几何中心线与空心柱体的几何中心线及内孔的中心线相重合,第一连接部146的几何中心线与定位柱24的几何中心线之间具有偏心距离;定位柱24的几何中心线与空心柱体的几何中心线及第一连接部146的几何中心线相重合,内孔的中心线与定位柱24的几何中心线之间具有偏心距离空心柱体的几何中心线与内孔的中心线及第一连接部146的几何中心线相重合,定位柱24的几何中心线与空心柱体的几何中心线具有偏心距离。通过设置偏心结构,把持部14在处于闭合位置时,按偏心凸轮的设计原理,因机构死点原因不会意外松开,进而实现了底盘组件100与杯体300的连接状态保持在锁紧位置,同时进一步保证了杯座200与工作盘组件12间的密封。当用手拉起把持部14进行旋转,就可以松开并拆出底盘组件100。通过上述优化设置,可以保证转动把持部14的过程中为工作盘组件12提供挤压力,保证工作盘组件的稳定安装。
具体地,如图6至图17,该实施例中的食物处理装置包括:杯体300、杯座200、盖体组件500及底盘组件100,如图6至图17示出了底盘组件100处于拆卸状态的结构示意图,其中,导向槽22设置于杯座200的内侧壁上,导向槽22内设置有定位柱24。把持部14的第一连接部146为凸出的柱体,把持部14的第二连接部148为空心柱体,空心柱体的侧壁上设置有安装缺口152,定位柱24通过安装缺口152后位于空心柱体的内孔中。如图18至图32为,底盘组件100安装至杯座200内的结构示意图。进一步地,导向槽22对称设置于杯座200的内侧壁上,故而底盘组件100的安装方向可以调整,具体如图18至图25为安装后底盘组件100的把持部位于杯体300的把手一侧,如图26至图32为安装后的底盘组件100的把持部位于与杯体300的把手相对的一侧;具体实施例中,导向槽22的开设位置也不局限于此。
本申请的又一个实施例提出了一种食物处理装置,如图33至图40所示,包括:杯座200;及如本申请第一方面中任一实施例的底盘组件100,底盘组件100能够拆卸地设置于杯座200上;如图34至图37所示,导向槽22为L形导向槽,如图37所示,L形导向槽包括导向部222和与导向 部222相连接的固定部224;其中,第二连接部148通过导向部222安装进L形导向槽,再转动工作盘组件12以使第二连接部148安装至固定部224内。
在该实施例,L形导向槽包括导向部222和与导向部222相连接的固定部224。导向部222设置于在杯座200的侧壁形成导向缺口,固定部224与导向部222相连通,形成第二连接部148的固定位置。在安装底盘组件100的过程中,沿导向部222安装进L形导向槽,再转动工作盘组件12以使第二连接部148安装至固定部224内;在使用食物处理装置的过程中,固定部224为底盘组件100提供限位,避免底盘组件100脱落造成意外。
可选地,为保证第一连接部146可为工作盘组件12提供挤压力,对固定部224、第一连接部146、第二连接部148的相对位置进行优化。具体地,包括但不局限于以下方式:第二连接部148的转动轴线与固定部224的几何中心线相重合,第一连接部146的转动轴线与固定部224的几何中心线具有偏心距离;固定部224的几何中心线与第一连接部146的转动轴线相重合,第二连接部148的转动轴线与固定部224的几何中心线具有偏心距离。
通过上述优化设置,可以保证转动把持部14的过程中为工作盘组件12提供挤压力,以实现工作盘组件12的稳定安装。
具体实施例一:
在该实施例中,食物处理装置包括杯体300、杯盖组件、可拆卸的底盘组件100、杯座200、密封圈400;底盘组件100包括工作盘组件12(或刀座)、刀具16、联接器(或离合器)。
底盘组件100带有可转动的把持部14,在把持部14内、外侧设置有凸起(或凹下)圆柱体(即第一连接部146和第二连接部148),内、外侧圆柱体相对偏心设置,其偏心量大于0mm,本实例中设置为1.0mm,其偏心设置能保证把持部14在绕外侧圆柱体旋转时(本实例为旋转90°),能让工作盘组件12产生一个压紧密封圈400的位移,工作盘组件12的位移量等于偏心量。这样底盘组件100在把持部14处于闭合位置时,底盘组件100与杯体300形成连接保持在锁紧位置,同时并保持杯底与工作盘组 件12间的密封。
把持部14在处于闭合位置时,按偏心凸轮的设计原理,因机构死点原因不会意外松开。当用手拉起把持部14旋转,就可以松开并拆出底盘组件100。
此外,杯底内设置有两个位置可以安装把持部14,底盘组件100可以180°转动切换安装位置。
杯体300带有一个杯座200,杯座200的一端与杯体300连接(螺纹或扣位、粘接等方式),杯体300与杯座200间有防止泄漏的密封圈400,杯座200的另一端与可拆卸的工作盘组件12连接。杯座200与工作盘组件12的连接端设置有方便把持部14装入的导向槽22,导向槽22内设置有定位柱24,定位柱24为凸起(或凹下)的柱体,此柱体用于与把持部14外侧圆柱体形成转动连接;杯座200的导向槽22内的柱体与把持部14外侧的圆柱体是相互配合关系,能形成转动连接。本实例中,把持部14外侧的圆柱体就空心的,通过一个缺口,使得杯座200导向槽22内的圆柱体能进入把持部14外侧的空心圆柱体中。
具体实施例二:
本申请提出一种带可拆底盘组件100的食物处理装置,包括杯体300、杯盖组件、可拆卸的底盘组件100、杯座200、密封圈400;底盘组件100包括工作盘组件12(或刀座)、刀具16、联接器(或离合器)。
在该实施例中,食物处理装置包括杯体300、杯盖组件、可拆卸的底盘组件100、杯座200、密封圈400;底盘组件100包括工作盘组件12(或刀座)、刀具16、联接器(或离合器)。
其中,将杯座200与工作盘组件12连接端的导向槽22做成L形,把持部14外侧的圆柱体插在L形导槽内水平旋转到位后,再翻转把持部14至闭合位置,水平旋转的角度在10°至45°之间,通过增加一个水平旋转动作,可以避免把持部14不小心突然打开时,工作盘组件12突然脱落摔坏。
在本申请中,术语“多个”则指两个或两个以上,除非另有明确的限定。术语“安装”、“相连”、“连接”、“固定”等术语均应做广义理 解,例如,“连接”可以是固定连接,也可以是可拆卸连接,或一体地连接;“相连”可以是直接相连,也可以通过中间媒介间接相连。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。
在本说明书的描述中,术语“一个实施例”、“一些实施例”、“具体实施例”等的描述意指结合该实施例或示例描述的具体特征、结构、材料或特点包含于本申请的至少一个实施例或示例中。在本说明书中,对上述术语的示意性表述不一定指的是相同的实施例或实例。而且,描述的具体特征、结构、材料或特点可以在任何的一个或多个实施例或示例中以合适的方式结合。
以上仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (23)

  1. 一种底盘组件,其中,包括:
    工作盘组件;
    把持部,所述把持部与所述工作盘组件活动连接。
  2. 根据权利要求1所述的底盘组件,其中,所述把持部包括:
    主体;
    连接部,所述连接部设置于所述主体的两端,所述连接部与所述工作盘组件转动连接。
  3. 根据权利要求2所述的底盘组件,其中,
    所述连接部包括第一连接部和与所述第一连接部相连接的第二连接部;
    其中,所述第一连接部和所述第二连接部位于所述主体的两侧或同侧,所述第一连接部的转动轴线和所述第二连接部的转动轴线相对偏心设置。
  4. 根据权利要求3所述的底盘组件,其中,
    所述第一连接部和所述第二连接部均为柱体,所述工作盘组件上设置有与所述连接部相配合连接的安装孔。
  5. 根据权利要求3所述的底盘组件,其中,所述第一连接部和所述第二连接部均为凹槽结构,所述工作盘组件上设置有与所述凹槽结构相转动连接的连接柱。
  6. 根据权利要求3所述的底盘组件,其中,
    所述第一连接部和所述第二连接部中的一个为柱体,另一个为凹槽结构。
  7. 根据权利要求2至6中任一项所述的底盘组件,其中,
    所述把持部还包括:把持位,所述把持位设置于所述主体上。
  8. 根据权利要求1至6中任一项所述的底盘组件,其中,还包括:
    刀具,所述刀具能够转动地设置于所述工作盘组件上,所述刀具与所述把持部分别位于所述工作盘组件的两侧。
  9. 根据权利要求3至6中任一项所述的底盘组件,其中,所述工作盘组件包括:
    支架,所述把持部与所述支架转动连接;
    工作盘,所述工作盘设置于所述支架上。
  10. 根据权利要求9所述的底盘组件,其中,所述支架包括:
    安装座,所述工作盘设置于所述安装座上;
    安装架,所述安装架与所述安装座相连接,所述把持部被配置为适于设置在所述安装架上,位于所述把持部一侧的所述安装架上设置有凹陷部,所述把持部转动能够与所述凹陷部相搭接;
    第一限位件,设置于位于所述把持部另一侧的所述安装架上,所述第一限位件用于对所述把持部的转动角度进行限位;
    第二限位件,设置于所述凹陷部的周侧,用于对所述把持部进行限位。
  11. 一种食物处理装置,其中,包括:
    杯体组件;和
    如权利要求1至10中任一项所述的底盘组件,所述底盘组件被配置为适于拆卸地设置于所述杯体组件上。
  12. 根据权利要求11所述的食物处理装置,其中,所述杯体组件包括:
    杯座,所述底盘组件能够拆卸地设置于所述杯座上;
    导向槽,所述导向槽设置于所述杯座;
    所述把持部的第二连接部转动地安装于所述导向槽。
  13. 根据权利要求12所述的食物处理装置,其中,还包括:
    定位柱,所述定位柱设置于所述导向槽内,所述第二连接部与所述定位柱转动连接。
  14. 根据权利要求13所述的食物处理装置,其中,
    所述第二连接部为空心柱体,所述空心柱体的侧壁上设置有安装缺口,所述定位柱通过所述安装缺口与所述空心柱体的内孔转动连接。
  15. 根据权利要求14所述的食物处理装置,其中,
    所述把持部的第一连接部的几何中心线与所述定位柱的几何中心线之间具有偏心距离;或
    所述内孔的中心线与所述定位柱的几何中心线之间具有偏心距离;或
    所述定位柱的几何中心线与所述空心柱体的几何中心线具有偏心距离。
  16. 根据权利要求15所述的食物处理装置,其中,
    基于所述第一连接部为柱体结构的情况下,所述工作盘组件上设置有与所述柱体结构相配合的安装孔,沿垂直所述工作盘组件的几何中心线的方向,所述安装孔的宽度大于所述柱体结构的径向长度与二倍的所述偏心距离之和。
  17. 根据权利要求12所述的食物处理装置,其中,
    所述导向槽为L形导向槽。
  18. 根据权利要求17所述的食物处理装置,其中,
    所述L形导向槽包括导向部和与所述导向部相连接的固定部;
    其中,所述第二连接部通过所述导向部安装进所述L形导向槽,再转动所述工作盘组件以使所述第二连接部安装至所述固定部内。
  19. 根据权利要求18所述的食物处理装置,其中,
    所述把持部的第一连接部的转动轴线与所述固定部的几何中心线具有偏心距离;或
    所述第二连接部的转动轴线与所述固定部的几何中心线具有偏心距离。
  20. 根据权利要求11至19中任一项所述的食物处理装置,其中,还包括:第一限位部,设置于所述杯体组件;
    第二限位部,设置于所述把持部,所述第一限位部能够与所述第二限位部相连接,以对所述把持部进行限位。
  21. 根据权利要求20所述的食物处理装置,其中,
    所述第一限位部和所述第二限位部中的一个为卡扣结构,另一个为与所述卡扣结构相适配的凹槽结构。
  22. 根据权利要求12至19中任一项所述的食物处理装置,其中,所述杯体组件还包括:
    杯体,所述杯体被配置为适于放置在所述杯座上;
    密封圈,所述密封圈设置于所述杯体与所述杯座的连接处,其中所述底盘组件安装于所述杯座上时,所述工作盘组件与所述密封圈相抵接。
  23. 根据权利要求22所述的食物处理装置,其中,所述杯座包括:
    第一安装端,所述第一安装端用于安装所述杯体;
    第二安装端,所述第二安装端与所述第一安装端位于所述杯座的两端,所 述底盘组件通过所述第二安装端安装至所述杯座内,所述导向槽设置于所述第二安装端上。
PCT/CN2020/105714 2019-08-02 2020-07-30 底盘组件和食物处理装置 WO2021023087A1 (zh)

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CN2215880Y (zh) * 1995-02-16 1995-12-27 陈文莹 自动豆浆机
JPH10117949A (ja) * 1996-10-16 1998-05-12 Kanekichi Yamamoto 調理用の指プロテクタ
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CN2803189Y (zh) * 2005-05-12 2006-08-09 任金勇 带刀片调料磨碎机
CN104771092A (zh) * 2015-04-03 2015-07-15 惠阳亚伦塑胶电器实业有限公司 一种搅拌机的装配刀座
US9119506B2 (en) * 2013-03-01 2015-09-01 Leonid Shendelman Aerodynamic device for use in organizing and holding food and liquid substances and eating utensils and for subsequent recreational use

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2215880Y (zh) * 1995-02-16 1995-12-27 陈文莹 自动豆浆机
JPH10117949A (ja) * 1996-10-16 1998-05-12 Kanekichi Yamamoto 調理用の指プロテクタ
CN1260244A (zh) * 1999-01-08 2000-07-19 叶仲伦 食品加工机
CN2803189Y (zh) * 2005-05-12 2006-08-09 任金勇 带刀片调料磨碎机
US9119506B2 (en) * 2013-03-01 2015-09-01 Leonid Shendelman Aerodynamic device for use in organizing and holding food and liquid substances and eating utensils and for subsequent recreational use
CN104771092A (zh) * 2015-04-03 2015-07-15 惠阳亚伦塑胶电器实业有限公司 一种搅拌机的装配刀座

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