CN214804257U - Food processor - Google Patents

Food processor Download PDF

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Publication number
CN214804257U
CN214804257U CN202022586225.3U CN202022586225U CN214804257U CN 214804257 U CN214804257 U CN 214804257U CN 202022586225 U CN202022586225 U CN 202022586225U CN 214804257 U CN214804257 U CN 214804257U
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China
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driving
cup
cover
switch
piece
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CN202022586225.3U
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Chinese (zh)
Inventor
邹丽华
夏川川
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Zhejiang Shaoxing Supor Domestic Electrical Appliance Co Ltd
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Abstract

The application provides a cooking machine. The cooking machine comprises a stirring host machine component and a cooking cup. The stirring main machine component is provided with a main machine switch and a trigger piece, and the trigger piece is movably arranged in the stirring main machine component; the cooking cup comprises a cup body and a cup cover covering the cup body, and the stirring host machine assembly is assembled on the cup cover; the bowl cover is equipped with the driving piece, the driving piece is in when the bowl cover lid fits the cup under the effect of cup, can drive the trigger piece triggers the host computer switch switches on. The setting of driving piece in above-mentioned cooking machine is favorable to improving the security that cooking machine used.

Description

Food processor
Technical Field
The application relates to a small household electrical appliance field especially relates to a cooking machine.
Background
With the increasing living standard of people, many different types of food processors appear on the market. A meat chopper is a common food processor. The main mixer of the meat chopper is usually assembled on a cup cover which covers the meat mincing cup. In the related technology, a switch and an ejector rod are arranged on the stirring host machine, and a corresponding cup cover boss is arranged on the cup cover. According to the design of the meat mincing machine, under the condition that the stirring main machine is connected with the power supply, the stirring main machine is assembled on the cup cover, the boss of the cup cover pushes the ejector rod upwards to enable the ejector rod to trigger the switch so as to enable the switch to be switched on, and the stirring main machine starts to work and has certain potential safety hazards.
SUMMERY OF THE UTILITY MODEL
The application provides a cooking machine, through set up needs and cup complex driving piece on the bowl cover to when the bowl cover lid closed the cup, the drive triggered the piece and triggers the host computer switch and switch on, be favorable to improving the security that the cooking machine used.
In order to achieve the above object, an embodiment of the present application provides a food processor, which includes:
the stirring main machine component is provided with a main machine switch and a trigger piece, and the trigger piece is movably arranged in the stirring main machine component;
the cooking cup comprises a cup body and a cup cover covering the cup body, and the stirring host machine assembly is assembled on the cup cover; the bowl cover is equipped with the driving piece, the driving piece is in when the bowl cover lid fits the cup under the effect of cup, can drive the trigger piece triggers the host computer switch switches on.
In this embodiment, through set up on the bowl cover need with cup complex driving piece to when the bowl cover lid closes the cup, the drive triggers the piece and triggers the host computer switch and switches on, can effectively avoid stirring host computer subassembly and bowl cover work outside the cup, is favorable to improving the security that the cooking machine used.
Optionally, the trigger includes a switch ejector rod disposed close to the host switch, and the switch ejector rod is capable of moving in the stirring host assembly; when the cup cover covers the cup body, the driving piece can drive the switch ejector rod to move under the action of the cup body so as to trigger the switch of the host machine to be switched on. In this embodiment, the trigger piece sets up to the switch ejector pin that can remove, simple structure, maneuverability is strong.
Optionally, the driving part comprises a first driving part capable of moving up and down the cup cover, and when the cup cover covers the cup body, the first driving part can move up to drive the switch ejector rod to move up to trigger the switch of the host machine to be switched on under the action of the cup body. In this embodiment, the driving piece sets up to including the first driving piece that can reciprocate at the bowl cover, just can drive the switch ejector pin at the in-process of first driving piece rebound and upwards remove to trigger the host computer switch and switch on. The first driving piece is simple in driving mode and high in operability.
Optionally, the driving member comprises a second driving member capable of driving the first driving member to move upwards; the cup cover covers the cup body, and the second driving piece drives the first driving piece to move upwards under the action of the cup body so as to drive the switch ejector rod to trigger the host switch to be switched on. In this embodiment, drive first driving piece rebound through the setting can with the second driving piece of cup contact, simple structure, maneuverability is strong.
Optionally, the first driving element is arranged at the inner side of the second driving element, and the second driving element can transversely move inwards or outwards in the cup cover; first driving piece is equipped with the first glide plane of slope decurrent, the inner of second driving piece including the slope upwards and can with first glide plane sliding fit's second glide plane, the outer end of second driving piece be equipped with the slope downwards and can with cup complex third glide plane, the bowl cover lid fits the cup, the second driving piece is in the third glide plane with cup complex in-process is inside to be removed, first driving piece is in first glide plane with second glide plane cooperation in-process rebound. In the embodiment, the second driving piece moves inwards in the process of covering the cup body by the cup cover through the matching of the inclined sliding surface, and the first driving piece moves upwards under the action of the second driving piece. The inclined sliding surface has a simple structure and is stable in matching. And this kind of cooperation through the slope sliding surface realizes the setting that second driving piece and first driving piece moved in the equidirectional not, is favorable to saving space, is favorable to reducing the bowl cover size.
Optionally, the bowl cover includes bowl cover main part and bowl cover upper cover, the bowl cover upper cover with the bowl cover main part forms the bowl cover cavity, the driving piece is located in the bowl cover cavity, the bowl cover upper cover is equipped with first through-hole, the upper end of first driving piece certainly leak outward in first through-hole, the drive opening is established to the periphery side of bowl cover, the outer end of second driving piece stretches out outside the drive opening. In this embodiment, locate the driving piece in the bowl cover cavity, be favorable to protecting the driving piece, and make overall structure more pleasing to the eye.
Optionally, the bowl cover is equipped with first elasticity piece that resets, first elasticity reset with the second driving piece is connected, can provide outside elastic force that resets for the second driving piece, makes the outer end of second driving piece be located outside the drive opening. In this embodiment, first elasticity piece that resets can drive the second driving piece and reset, and the first driving piece lapse of being convenient for is convenient for the second driving piece when the bowl cover lid fits the cup with the cup cooperation.
Optionally, two sides of the second driving member are provided with limiting lugs, and the limiting lugs are provided with resetting member mounting posts facing the inner ends; the cup cover is provided with a first limiting wall positioned on the inner side of the driving opening and a second limiting wall positioned in the first limiting wall; the limiting lug and the resetting piece mounting column are arranged between the first limiting wall and the second limiting wall, the resetting piece mounting column is sleeved with the first elastic resetting piece and abuts against the second limiting wall, and the limiting lug can abut against the first limiting wall. In this embodiment, through the setting of spacing lug and spacing wall, can guarantee that the second driving piece inwards or outwards removes in certain area, and the setting of first spacing wall can prevent that the second driving piece from droing.
Optionally, the cup cover upper cover comprises a first cover body part and a second cover body part spliced with the first cover body part, and the second cover body part is detachably covered above the driving part. In this embodiment, the second cover portion is detachably disposed, which is beneficial to the assembly, disassembly, and maintenance of the driving member.
Optionally, the first driving member includes a driving portion and an installation portion located below the driving portion; the cup cover is provided with a mounting groove, and the lower end of the mounting part can move to the mounting groove; or the like, or, alternatively,
the first driving piece comprises a driving part and a mounting part positioned below the driving part; the installation department is equipped with the spout that extends from top to bottom, the bowl cover corresponds and is equipped with the installation and founds the wall, the wall outside is located to the spout cover installation, the installation department can be followed the wall is found in the installation reciprocates, and in this embodiment, the setting of wall and spout is found in the installation, can prevent that first driving piece from removing to other directions at the in-process that reciprocates.
Optionally, the cup cover is provided with a second elastic resetting piece, and the second elastic resetting piece is sleeved on the first driving piece and can provide downward resetting elastic force for the first driving piece. In this embodiment, the setting of second elastic component that resets is favorable to driving first driving piece lapse when bowl cover and cup are separated to the protection switch ejector pin can not trigger the host computer switch when bowl cover and cup are separated and switch on.
Optionally, when the switch ejector rod is located at the initial disconnection position, the distance between the upper end of the switch ejector rod and the host switch is greater than or equal to 0.5 mm. In this embodiment, the upper end of switch ejector pin with the distance of host computer switch is injectd, is favorable to improving the security that cooking machine used.
Optionally, the cooking machine is the meat grinder, stirring host computer subassembly is equipped with drive assembly, the drive assembly lower extreme is equipped with the stirring subassembly, drive assembly with the stirring subassembly drive is connected with the drive the stirring subassembly stirs, the drive assembly drive the driving speed of stirring subassembly stirring is 1500r/min-5000 r/min. In the embodiment, the driving rotating speed of the driving component is controlled within the range of 1500r/min-5000r/min, so that the stirring effect of the stirring component is better.
Optionally, the stirring host assembly is provided with a gear switch, the driving assembly is electrically connected with the host switch and the gear switch, and the driving assembly drives the stirring assembly to stir when the host switch and the gear switch are both switched on. In this embodiment, through gear switch and the cooperation of host computer switch jointly, can realize the safe work of drive assembly drive stirring subassembly.
It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the application.
Drawings
Fig. 1(a) is a schematic cross-sectional structural diagram of a food processor according to an exemplary embodiment of the present application.
Fig. 1(b) is an enlarged schematic view of a place a of the food processor shown in fig. 1 (a).
Fig. 2 is an exploded perspective view of the food processor shown in fig. 1 (a).
Fig. 3(a) is a partial schematic view of a three-dimensional structure of the food processor shown in fig. 1.
Fig. 3(b) is a partial structural schematic view of an assembly structure of the cup lid and the cup body of the food processor shown in fig. 3 (a).
Fig. 4(a) is a partial schematic view of a three-dimensional structure of the mixing main machine assembly and the cup cover assembly of the food processor shown in fig. 1.
FIG. 4(b) is a sectional view of the mixing main assembly shown in FIG. 4(a) combined with a lid.
Fig. 5(a) is a sectional view of the cap in an independent state.
Fig. 5(b) is a perspective structure view of a viewing angle in an independent state of the cup cover.
Fig. 5(c) is a perspective view of a part of the structure at another viewing angle when the cup cover is in an independent state.
FIG. 6(a) is a schematic view of the structure of the unassembled driving member in the lid.
Fig. 6(b) is a schematic structural diagram of a second lid portion according to an exemplary embodiment of the present application.
Fig. 6(c) is a schematic structural diagram of a second driving member according to an exemplary embodiment of the present application.
Fig. 6(d) is a schematic structural diagram of the first driving member according to an exemplary embodiment of the present application.
Fig. 6(e) a schematic structural view of the cup cover assembled with the driving member.
Detailed Description
Reference will now be made in detail to the exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, like numbers in different drawings represent the same or similar elements unless otherwise indicated. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus consistent with certain aspects of the present application, as detailed in the appended claims.
The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. Unless defined otherwise, technical or scientific terms used herein shall have the ordinary meaning as understood by those of ordinary skill in the art to which the invention belongs. The use of "first," "second," and similar terms in the description and in the claims does not indicate any order, quantity, or importance, but rather is used to distinguish one element from another. Similarly, the terms "a" or "an" and the like do not denote a limitation of quantity, but rather denote the presence of at least one, and if only "a" or "an" is denoted individually. "plurality" or "a number" means two or more. Unless otherwise indicated, "front", "rear", "lower" and/or "upper" and the like are for convenience of description and are not limited to one position or one spatial orientation. The word "comprising" or "comprises", and the like, means that the element or item listed as preceding "comprising" or "includes" covers the element or item listed as following "comprising" or "includes" and its equivalents, and does not exclude other elements or items. The terms "connected" or "coupled" and the like are not restricted to physical or mechanical connections, but may include electrical connections, whether direct or indirect. As used in this specification and the appended claims, the singular forms "a", "an", and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be understood that the term "and/or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
The cooking machine that this application is related to can be used to the minced meat also can be used to knead dough.
Fig. 1(a) is a schematic cross-sectional structural diagram of a food processor according to an exemplary embodiment of the present application. Referring to fig. 1(a) and as necessary with reference to fig. 1(b) to 6(e), the present application provides a food processor 100, wherein the food processor 100 includes a stirring main unit 10 and a food cup. The cooking cup comprises a cup body 30 and a cup cover 20 covering the cup body 30. The stirring main machine component 10 is assembled on the cup cover 20.
The stirring main machine assembly 10 is provided with a main machine switch 101 and a switch push rod 102 positioned below the main machine switch 101. The switch ram 102 is movable up and down within the mixer main assembly 10. Of course, in other embodiments, the switch plunger 102 may be another trigger capable of triggering the conduction of the host switch 101. And the switch plunger or other trigger may also be movable in other directions. The present application is not limited to this, and may be set according to a specific application environment. Alternatively, in other embodiments, the switch is a magnetic switch and the trigger may be a corresponding magnetic trigger.
The stirring host assembly has an upper housing 105 and a base 104. The upper case 105 and the base 104 enclose a host receiving space. The base 104 is provided with a through hole from which the switch plunger 102 can be exposed. A driving assembly is arranged in the accommodating space of the stirring main machine assembly 10. The drive assembly includes a drive motor 1001. The drive motor 1001 is electrically connected to the main unit switch 101. The main stirring machine assembly 10 is provided with an external power line 1002 to supply power to components such as a driving motor. The stirring assembly 40 is arranged below the driving motor 1001, and the driving motor 1001 is in driving connection with the stirring assembly 40. When the host switch 101 is turned on in a state where the external power line 1002 is powered on, the driving motor 1001 drives the stirring assembly 40 to stir.
In some embodiments, the drive assembly includes a speed reduction device 1003. The reduction gear 1003 is provided below the drive motor 1001. The output shaft of the driving motor 1001 is drivingly connected to the input of the reduction device 1003. The stirring assembly 40 may be disposed below the speed reducer 1003, and is in driving connection with an output shaft of the speed reducer 1003. When the driving motor 1001 operates, the speed reducer 1003 reduces the output rotation speed of the driving motor, and drives the stirring assembly 40 to stir at the reduced rotation speed. Of course, in some other embodiments, the reduction gear may not be provided, which is not limited in this application and may be set according to a specific application environment.
In some embodiments, the driving speed after being reduced by the reduction device 1003 is 1500r/min-5000 r/min. Namely, the stirring component 40 can rotate within the range of 1500r/min-5000r/min under the driving of the driving component. The driving rotating speed of the driving component is controlled within the range of 1500r/min-5000r/min, so that the stirring effect of the stirring component 40 is better.
In some embodiments, a shift switch (not shown) is provided on the mixer main body assembly 10. The shift switch is electrically connected to the driving motor 1001, and may be specifically disposed between the power line 1002 and the driving motor 1001. When the host switch 101 is turned on in the state where the external power line 1002 is powered on, the driving motor 1001 drives the stirring unit 40 to stir. Specifically, when the external power line 1002 is powered on and the shift switch and the host switch 101 are both turned on, the driving motor 1001 drives the stirring assembly 40 to stir.
It should be noted that in some embodiments, the inhibitor switch is configured to be turned on when pressed by a user, and to be turned off when released by the user. Therefore, when the meat chopper is required to work continuously, the user needs to continuously press the gear switch.
In some embodiments, the host switch 101 may comprise a microswitch. The host switch 101 is mounted in the host through a switch bracket 103.
The cap 20 is provided with a driving member. The driving member is an open/close protection structure of the main switch 101. When the cup cover 20 is covered on the cup body 30, the driving piece can drive the switch mandril 102 to trigger the main machine switch 101 to be conducted under the action of the cup body 30. The drive includes a first drive 231 that is movable up and down the lid 20. When the lid 20 is covered on the cup 30, under the action of the cup 30, the first driving member 231 can move upward to drive the switch post 102 to move upward to trigger the main switch 101 to be turned on (for example, as shown in fig. 1(a), 1(b), fig. 3(a) and 3 (b)). When the cup 30 is separated from the lid 20, the first driving member 231 descends, and the switch plunger 102 descends to the off initial position (for example, as shown in fig. 4(a) and 4 (b)).
As shown in fig. 1(b) to fig. 5(c), in some embodiments, the driving member includes a second driving member 232 capable of driving the first driving member 231 to move upward. The lid 20 covers the cup 30, and the second driving member 232 drives the first driving member 231 to move upward under the action of the cup 30 to drive the switch plunger 102 to trigger the main switch 101 to be turned on.
Referring to fig. 1(b) to 6(e), in some embodiments, the first driving member 231 is disposed inside the second driving member 232, and the second driving member 232 can move laterally inward or outward in the lid 20. The first driving member 231 is provided with a first sliding surface 20a inclined downward. The inner end of the second driver 232 includes a second sliding surface 20b which is inclined upwardly and is capable of sliding engagement with the first sliding surface 20 a. The outer end of the second driving member 232 is provided with a third sliding surface 20c which is inclined downward and can be engaged with the cup 30. The lid 20 is closed on the cup 30, the second driving member 232 moves inward during the engagement of the third sliding surface 20c with the cup 30, and the first driving member 231 moves upward during the engagement of the first sliding surface 20a with the second sliding surface 20 b.
It should be noted that in other embodiments, the first driving member may be configured to contact the cup when the lid covers the cup, and a portion of the structure of the first driving member contacting the switch plunger may move upward under the action of the cup. In addition, the second driving member can be arranged in other structures or other moving modes to drive the first driving member to move upwards. In addition, the first driving member may be configured not to move up and down, such as being rotatable or laterally movable. The second drive member may be provided as a corresponding drive arrangement. The present application is not limited to this, and may be set according to a specific application environment.
In some embodiments, as shown in fig. 1(b) to 5(a), the cap 20 includes a cap body 21 and a cap upper cover 22, and the cap upper cover 22 and the cap body 21 form a cap chamber 200. The driving part is arranged in the cup cover cavity 200. The upper cover 22 has a first through hole 2221, the upper end of the first driving member 231 is exposed from the first through hole 2221, the outer peripheral side of the cover 20 has a driving opening 2101, and the outer end of the second driving member 232 extends out of the driving opening 2101.
The middle part of the cup cover 20 is formed with a host installation groove 201. The stirring main assembly 10 is provided with a positioning groove 1004, and the lid 20 is correspondingly provided with a positioning block 204. The stirring main body assembly 10 is installed in the installation groove 201. The positioning groove 1004 and the positioning block 204 cooperate to circumferentially limit the stirring main assembly 10. The bottom of the mounting groove 201 is provided with an opening 203 so that the stirring component 40 can extend into the cup body for stirring.
The lid 20 has a first engaging portion 202, and the cup 30 has a second engaging portion 301. The cup 20 is assembled on the cup body 30, and the cup cover 20 can be fixedly covered on the cup body 30 through the buckling of the first buckling part 202 and the second buckling part 301. Alternatively, the driving member may be disposed inside the first fastening portion 202. Of course, the driving piece can also be arranged at other positions of the cup cover. This is not limited in this application.
In some embodiments, referring to fig. 2 and fig. 6(a), fig. 6(b) and fig. 6(e), the cover top cover 22 includes a first cover portion 221 and a second cover portion 222 spliced to the first cover portion 221, and the second cover portion 222 is detachably covered on the driving member. The first through hole 2221 is correspondingly formed in the second cover portion 222. The second lid portion 222 further has a fastening portion 2222 to be fixed to the lid main body 21, and correspondingly, the lid main body 21 has a fastening structure matching with the fastening portion 2222. Of course, the second lid portion 222 may be fixed to the lid body in other manners, and may also be fixed to the first lid portion 221 in other manners.
Further, in some embodiments, the cup cover 20 is provided with a first elastic resetting member 24, and the first elastic resetting member 24 is connected to the second driving member 232 and can provide an outward resetting elastic force to the second driving member 232, so that the outer end of the second driving member 232 is located outside the driving opening 2101. The first resilient return member 24 may be a return spring. Other elastic members capable of providing a restoring elastic force are also possible.
Further, two sides of the second driving member 232 are provided with limiting lugs 2321, and the limiting lugs 2321 are provided with resetting member mounting columns 2322 facing the inner end. The cap 20 has a first limiting wall 29 inside the driving opening 2101 and a second limiting wall 28 inside the first limiting wall 29. The limiting lug 2321 and the resetting member mounting post 2322 are disposed between the first limiting wall 29 and the second limiting wall 28, the first elastic resetting member 24 is sleeved on the resetting member mounting post 2322 and abuts against the second limiting wall 28, and the limiting lug 2321 can abut against the first limiting wall 29. It should be noted that the first elastic return element may also be installed in other manners, and the present application is not limited thereto.
In some embodiments, the first driver 231 includes a driving portion 2311 and a mounting portion 2312 located below the driving portion 2311. The cap 20 is provided with a mounting groove 26, and the lower end of the mounting portion 2312 can move to the mounting groove 26.
In some embodiments, the first driver 231 includes a driving portion 2311 and a mounting portion 2312 located below the driving portion 2311. The mounting portion 2312 is provided with a sliding groove 2313 extending up and down, the cup cover 20 is correspondingly provided with a mounting standing wall 27, the sliding groove 2313 is sleeved on the outer side of the mounting standing wall 27, and the mounting portion 2312 can move up and down along the mounting standing wall 27.
In some embodiments, the cap 20 is provided with a second elastic restoring member 25, and the second elastic restoring member 25 is sleeved on the first driving member 231 and can provide a downward restoring elastic force to the first driving member 231. The second elastic restoring member 25 may be a restoring spring. Other elastic members capable of providing a restoring elastic force are also possible.
In some embodiments, as shown in fig. 4(a) and 4(b), when the switch plunger 102 is located at the off initial position, the distance between the upper end of the switch plunger 102 and the host switch 101 is greater than or equal to 0.5 mm. The switch ejector rod is prevented from easily triggering the switch of the main machine to be conducted, and the use safety of the food processor is improved.
The above description is only exemplary of the present application and should not be taken as limiting the present application, as any modification, equivalent replacement, or improvement made within the spirit and principle of the present application should be included in the scope of protection of the present application.

Claims (14)

1. A food processor, its characterized in that, it includes:
the stirring main machine component (10) is provided with a main machine switch (101) and a trigger piece, and the trigger piece is movably arranged in the stirring main machine component (10);
the cooking cup comprises a cup body (30) and a cup cover (20) covering the cup body (30), and the stirring host machine component (10) is assembled on the cup cover (20); bowl cover (20) are equipped with the driving piece, the driving piece is in bowl cover (20) lid fits when cup (30) under the effect of cup (30), can drive the trigger piece triggers host computer switch (101) switches on.
2. The food processor of claim 1, wherein the trigger comprises a switch push rod (102) close to the main machine switch (101), the switch push rod (102) can move in the stirring main machine assembly (10); when the cup cover (20) is covered on the cup body (30), the driving piece can drive the switch mandril (102) to move under the action of the cup body (30) so as to trigger the conduction of the host switch (101).
3. The food processor as claimed in claim 2, wherein the driving member comprises a first driving member (231) capable of moving up and down on the lid (20), and when the lid (20) is covered on the cup body (30), under the action of the cup body (30), the first driving member (231) can move up to drive the switch push rod (102) to move up to trigger the conduction of the host switch (101).
4. The food processor of claim 3, wherein the driving member comprises a second driving member (232) capable of driving the first driving member (231) to move upward; the cup cover (20) is covered on the cup body (30), and the second driving piece (232) drives the first driving piece (231) to move upwards under the action of the cup body (30) so as to drive the switch push rod (102) to trigger the conduction of the host switch (101).
5. The food processor of claim 4, wherein the first driving member (231) is disposed inside the second driving member (232), and the second driving member (232) can move laterally inward or outward in the lid (20); first driving piece (231) are equipped with first glide plane (20a) that inclines downwards, the inner of second driving piece (232) including the slope upwards and can with first glide plane (20a) sliding fit's second glide plane (20b), the outer end of second driving piece (232) be equipped with the slope downwards and can with cup (30) complex third glide plane (20c), bowl cover (20) lid fits cup (30), second driving piece (232) are in third glide plane (20c) with cup (30) complex in-process is inside to be removed, first driving piece (231) are in first glide plane (20a) with second glide plane (20b) cooperation in-process is rebound.
6. The food processor of claim 5, wherein the cup cover (20) comprises a cover body (21) and a cover upper cover (22), the cover upper cover (22) and the cover body (21) form a cover chamber (200), the driving member is disposed in the cover chamber (200), the cover upper cover (22) is provided with a first through hole (2221), the upper end of the first driving member (231) leaks from the first through hole (2221), the outer peripheral side of the cup cover (20) is provided with a driving opening (2101), and the outer end of the second driving member (232) extends out of the driving opening (2101).
7. The food processor as claimed in claim 6, wherein the cup cover (20) is provided with a first elastic reset member (24), the first elastic reset member (24) is connected with the second driving member (232) and can provide an outward reset elastic force for the second driving member (232), so that the outer end of the second driving member (232) is located outside the driving opening (2101).
8. The food processor of claim 7, wherein the second driving member (232) is provided with a limiting lug (2321) at both sides, and the limiting lug (2321) is provided with a resetting member mounting column (2322) facing the inner end; the cup cover (20) is provided with a first limiting wall (29) positioned on the inner side of the driving opening (2101) and a second limiting wall (28) positioned in the first limiting wall (29); the limiting lug (2321) and the resetting piece mounting column (2322) are arranged between the first limiting wall (29) and the second limiting wall (28), the resetting piece mounting column (2322) is sleeved with the first elastic resetting piece (24) and abuts against the second limiting wall (28), and the limiting lug (2321) can abut against the first limiting wall (29).
9. The food processor of claim 6, wherein the cover (22) comprises a first cover portion (221) and a second cover portion (222) spliced with the first cover portion (221), and the second cover portion (222) is detachably covered above the driving member.
10. The food processor as claimed in claim 3, wherein the first driving member (231) comprises a driving portion (2311) and a mounting portion (2312) located below the driving portion (2311); the cup cover (20) is provided with a mounting groove (26), and the lower end of the mounting part (2312) can move to the mounting groove (26); or the like, or, alternatively,
the first driving piece (231) comprises a driving part (2311) and a mounting part (2312) positioned below the driving part (2311); the installation portion (2312) is provided with a sliding groove (2313) extending up and down, the cup cover (20) is correspondingly provided with an installation vertical wall (27), the sliding groove (2313) is sleeved on the outer side of the installation vertical wall (27), and the installation portion (2312) can move up and down along the installation vertical wall (27).
11. The food processor as claimed in claim 3, wherein the cup cover (20) is provided with a second elastic reset member (25), and the second elastic reset member (25) is sleeved on the first driving member (231) and can provide a downward reset elastic force to the first driving member (231).
12. The food processor of claim 2, wherein when the switch push rod (102) is located at the initial off position, the distance between the upper end of the switch push rod (102) and the host switch (101) is greater than or equal to 0.5 mm.
13. The food processor as set forth in claim 1, wherein the food processor is a meat grinder, the stirring main machine component (10) is provided with a driving component, a stirring component (40) is arranged at the lower end of the driving component, the driving component is in driving connection with the stirring component (40) to drive the stirring component (40) to stir, and the driving rotating speed of the driving component for driving the stirring component to stir is 1500r/min-5000 r/min.
14. The food processor of claim 13, wherein the stirring main body component (10) is provided with a shift switch, the driving component is electrically connected with the main body switch (101) and the shift switch, and when the main body switch (101) and the shift switch are both turned on, the driving component drives the stirring component (40) to stir.
CN202022586225.3U 2020-11-09 2020-11-09 Food processor Active CN214804257U (en)

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