CN211093483U - Draining structure and cooking device - Google Patents

Draining structure and cooking device Download PDF

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Publication number
CN211093483U
CN211093483U CN201921682869.3U CN201921682869U CN211093483U CN 211093483 U CN211093483 U CN 211093483U CN 201921682869 U CN201921682869 U CN 201921682869U CN 211093483 U CN211093483 U CN 211093483U
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China
Prior art keywords
draining
pushing
mounting
piece
hole
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Active
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CN201921682869.3U
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Chinese (zh)
Inventor
陈亮
卢正邦
王俊
康津
邓志宏
吴学鹏
曾国辉
陶结
高塬贵
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Gree Electric Appliances Inc of Zhuhai
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Gree Electric Appliances Inc of Zhuhai
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Priority to CN201921682869.3U priority Critical patent/CN211093483U/en
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Abstract

The utility model relates to a waterlogging caused by excessive rainfall structure and culinary art device, the waterlogging caused by excessive rainfall structure includes: the inner pot is provided with draining holes which penetrate through the inner side and the outer side of the inner pot; the plugging piece is movably arranged on the inner pot and is controlled to open and close the draining hole; the pushing assembly comprises a pushing piece with a pushing part and a driving piece in driving connection with the pushing piece; wherein, the top pushing part is positioned at the outer side of the inner pot and is in contact fit with the plugging piece, the driving piece is controlled to drive the top pushing part to rotate to be in contact with the plugging piece, and the top pushing part pushes the plugging piece to open the draining hole. The cooking device comprises the draining structure. In the draining structure and the cooking device, the pushing part is directly driven to rotate by the driving part, and then the plugging part is pushed by the pushing part so as to open the draining hole, so that the structure is simple and reliable.

Description

Draining structure and cooking device
Technical Field
The utility model relates to a cooking device technical field especially relates to a waterlogging caused by excessive rainfall structure and cooking device.
Background
At present, an electric cooker is available on the market, which can discharge water for soaking and boiling rice from an inner pot through a draining structure, so that the separation of the rice and the water is realized, and the sugar content in the rice is reduced. However, in some draining structures of electric rice cookers, the opening and closing of the draining hole of the inner pot are controlled by adopting components such as an electromagnetic valve, a lever, a push rod and the like, and the structure is complex.
SUMMERY OF THE UTILITY MODEL
Accordingly, there is a need for a draining structure and a cooking device with simple structure.
The technical scheme is as follows:
a draining structure comprising: the inner pot is provided with draining holes which penetrate through the inner side and the outer side of the inner pot; the plugging piece is movably arranged on the inner pot and is controlled to open and close the draining hole; the pushing assembly comprises a pushing piece with a pushing part and a driving piece in driving connection with the pushing piece; the pushing part is positioned on the outer side of the inner pot and is in contact fit with the plugging piece, and the driving piece is controlled to drive the pushing part to rotate to be in contact with the plugging piece and push the plugging piece to open the draining hole.
Among the foretell waterlogging caused by excessive rainfall structure, the driving piece can drive the portion of pushing away and rotate to make the portion of pushing away and shutoff piece contact or separation, when the driving piece drive portion of pushing away rotate to with the shutoff piece contact, the portion of pushing away can push away the shutoff piece, makes the shutoff piece move on interior pot, thereby makes the waterlogging caused by excessive rainfall hole opened, and at this moment, the water in the interior pot can flow out from the waterlogging caused by excessive rainfall hole. In the draining structure, the pushing part is directly driven to rotate by the driving part, and then the plugging part is pushed by the pushing part to open the draining hole, so that the structure is simple and reliable.
The technical solution is further explained below:
in one embodiment, the pushing part further comprises a first connecting part connected with the pushing part, and the driving part is in driving connection with the first connecting part and is controlled to drive the pushing part to rotate around a rotation center line to be in contact with or separated from the plugging part;
or the pushing piece further comprises a first connecting part connected with the pushing part, the driving piece is in driving connection with the first connecting part and is used for driving the first connecting part to rotate, the pushing part and the first connecting part are arranged at intervals along a direction perpendicular to a rotating center line of the first connecting part, and the driving piece is controlled to drive the pushing part to rotate around the rotating center line of the first connecting part to be in contact with or separated from the plugging piece.
In one embodiment, the draining structure further comprises a mounting frame, the mounting frame is arranged on the outer side of the inner pot, the mounting frame is provided with a first assembling hole, and the first connecting part is rotatably arranged in the first assembling hole in a penetrating way and is connected with the driving part.
In one embodiment, the pushing member further includes a second connecting portion, the second connecting portion and the first connecting portion are connected to two opposite ends of the pushing portion, the mounting frame is provided with a second assembling hole, and the second connecting portion is rotatably disposed in the second assembling hole in a penetrating manner.
In one embodiment, the mounting frame is provided with a first elastic mounting protrusion, the first assembling hole is formed in the first mounting protrusion, and the first mounting protrusion is further provided with a crimping notch communicated with the first assembling hole.
In one embodiment, the draining structure further comprises a shielding cover, and the shielding cover is arranged on the driving piece.
In one embodiment, the draining structure further comprises a mounting frame, the mounting frame is arranged on the outer side of the inner pot, the driving piece is arranged on the mounting frame, the mounting frame is provided with a mounting hole, and the shielding cover is provided with a buckle connected with the mounting hole in a clamping mode.
In one embodiment, the wall of the draining hole is provided with a mounting platform, the plugging piece is slidably arranged in the draining hole and is controlled to open and close the draining hole, and the plugging piece is lapped on the mounting platform when plugging the draining hole.
In one embodiment, the draining structure further comprises a sealing member, wherein the sealing member is arranged on the blocking member and is in sealing fit with the mounting platform when the blocking member blocks the draining hole.
In one of them embodiment, be equipped with the ring on the lateral wall of shutoff piece the mounting groove that shutoff piece set up, the sealing member including set up in installation department in the mounting groove and with the sealing part that the installation department is connected, the sealing part is in the shutoff of shutoff piece during the waterlogging caused by excessive rainfall hole with the sealed cooperation of mount table.
In one embodiment, one side of the plugging piece close to the pushing piece is of an arc-shaped structure, and the arc-shaped structure is used for being matched with the pushing part in a guiding mode.
In one embodiment, the draining structure further comprises a water guiding element, the water guiding element is provided with a draining channel, the draining channel is located on the outer side of the inner pot and is communicated with the draining hole, and the driving element is arranged outside the draining channel.
In one embodiment, the water guide member is arranged on the outer side of the inner pot, one end of the water guide member, which is close to the inner pot, is an elastic end, and the elastic end is abutted against the outer side wall of the inner pot so that the water guide member is in sealing fit with the inner pot and forms a water leakage prevention structure.
In one embodiment, the draining structure further comprises an installation disc, the installation disc is arranged on the outer side of the inner pot and provided with a first clamping portion, and the outer wall of the water guide piece is provided with a second clamping portion clamped with the first clamping portion.
In one embodiment, the first clamping portion is a buckle, the second clamping portion is a clamping groove, and the buckle is clamped in the clamping groove.
In one embodiment, the drive member is an electric motor.
The technical scheme also provides a cooking device which comprises the draining structure.
Foretell cooking device has used foretell waterlogging caused by excessive rainfall structure, and the driving piece can drive the portion of pushing away and rotate to make the portion of pushing away and shutoff piece contact or separation, when driving piece drive portion of pushing away rotated to with the shutoff piece contact, the portion of pushing away can push away the shutoff piece, makes the shutoff piece move on interior pot, thereby makes the waterlogging caused by excessive rainfall hole opened, and at this moment, the water in the interior pot can flow from the waterlogging caused by excessive rainfall hole. In the draining structure, the pushing part is directly driven to rotate by the driving part, and then the plugging part is pushed by the pushing part to open the draining hole, so that the structure is simple and reliable.
Drawings
Fig. 1 is an exploded view of a draining structure according to an embodiment of the present invention;
fig. 2 is a schematic view of a partial cross-sectional structure of a draining hole in a draining structure in an embodiment of the present invention in a blocking state;
fig. 3 is a schematic view of a partial cross-sectional structure of a draining hole in a draining structure in an embodiment of the present invention in a blocking state;
fig. 4 is a schematic view of a partial cross-sectional structure of a draining structure according to an embodiment of the present invention, in which a draining hole is opened;
fig. 5 is a schematic view of a partial cross-sectional structure of a draining structure according to an embodiment of the present invention, in which a draining hole is opened;
fig. 6 is a schematic view of a part assembly structure of a draining structure in an embodiment of the present invention;
fig. 7 is a schematic structural diagram of a mounting frame according to an embodiment of the present invention;
fig. 8 is a schematic structural diagram of a shielding case according to an embodiment of the present invention.
Description of reference numerals:
100. inner pan, 101, waterlogging caused by excessive rainfall hole, 110, the mount table, 200, water guide spare, 201, waterlogging caused by excessive rainfall passageway, 210, the elasticity end, 220, second joint portion, 300, push up the subassembly, 310, push up the piece, 311, push up the portion, 312, first connecting portion, 313, the second connecting portion, 320, the driving piece, 400, the shutoff piece, 500, the mounting disc, 510, first joint portion, 600, the mounting bracket, 610, first installation arch, 611, first pilot hole, 612, the crimping breach, 620, second installation arch, 621, the second pilot hole, 630, the mounting hole, 640, the through-hole, 700, the shield cover, 710, the buckle, 800, sealing member, 810, the installation department, 820, the sealing part.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention will be further described in detail with reference to the accompanying drawings and the following detailed description. It should be understood that the detailed description and specific examples, while indicating the scope of the invention, are intended for purposes of illustration only and are not intended to limit the scope of the invention.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only and do not represent the only embodiments.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
In the present invention, the terms "first" and "second" do not denote any particular quantity or order, but are merely used to distinguish names.
As shown in fig. 1, an embodiment relates to a draining structure, including: inner pot 100, closure member 400 and pushing assembly 300.
As shown in fig. 2-4, specifically, the inner pot 100 is provided with draining holes 101 penetrating through the inner and outer sides of the inner pot 100; the blocking piece 400 is movably arranged on the inner pot 100 and is controlled to open and close the draining hole 101; the pushing assembly 300 comprises a pushing member 310 having a pushing portion 311, and a driving member 320 drivingly connected to the pushing member 310, wherein the pushing portion 311 is located outside the inner pot 100 and is in contact with the sealing member 400, and the driving member 320 is controlled to drive the pushing member 310 to rotate, so that the pushing portion 311 can contact with the sealing member 400 and push the sealing member 400, so that the draining hole 101 is opened.
In the draining structure, the driving member 320 can drive the pushing portion 311 to rotate, and the pushing portion 311 is in contact with or separated from the plugging piece 400, when the driving member 320 drives the pushing portion 311 to rotate to be in contact with the plugging piece 400, the pushing portion 311 can push the plugging piece 400, so that the plugging piece 400 moves on the inner pot 100, the draining hole 101 is opened, and at the moment, water in the inner pot 100 can flow out from the draining hole 101. In the draining structure, the driving member 320 directly drives the pushing part 311 to rotate, and then the pushing part 311 pushes the plugging member 400 to open the draining hole 101, so that the structure is simple and reliable.
As shown in fig. 2 and 4, in one embodiment, the draining hole 101 is opened at the bottom of the inner pot 100 and penetrates through the inner side and the outer side of the inner pot 100, the mounting table 110 is arranged on the hole wall of the draining hole 101, the blocking piece 400 is slidably arranged in the draining hole 101 and is controlled to open and close the draining hole 101, the blocking piece 400 is overlapped on the mounting table 110 when blocking the draining hole 101, and the blocking piece 400 is in sliding fit with the hole wall of the draining hole 101, when the blocking piece 400 slides along the hole wall of the draining hole 101 towards the side far away from the mounting table 110, the blocking piece 400 is gradually separated from the hole wall of the draining hole 101, so that the draining hole 101 is opened.
Further, the draining structure further comprises a sealing member 800, wherein the sealing member 800 is disposed on the plugging member 400 and is in sealing engagement with the mounting platform 110 when the plugging member 400 plugs the draining hole 101. Thus, the sealing performance of the plugging piece 400 in plugging the draining hole 101 can be ensured, and water is prevented from leaking out from the gap between the plugging piece 400 and the mounting platform 110.
As shown in fig. 3, specifically, the sidewall of the plugging member 400 is provided with a mounting groove for surrounding the plugging member 400, the sealing member 800 includes a mounting portion 810 disposed in the mounting groove and a sealing portion 820 connected to the mounting portion 810, and the sealing portion 820 is in sealing engagement with the mounting platform 110 when the plugging member 400 plugs the drainage hole 101. The mounting portion 810 is disposed in the mounting groove for mounting the sealing member 800, and the sealing portion 820 is used for sealing a gap between the mounting table 110 and the sealing member 400.
More specifically, the sealing member 800 is annular, the sealing member 800 is an elastic member made of elastic rubber, the mounting base 110 is also annular, the mounting portion 810 of the sealing member 800 is in interference fit with the mounting groove, and the sealing portion 820 of the sealing member 800 is disposed on a side of the block piece 400 close to the mounting base 110 and abuts against the mounting base 110 when the block piece 400 blocks the drainage hole 101.
As shown in fig. 2 and 4, in one embodiment, the pushing member 310 further includes a first connecting portion 312 connected to the pushing portion 311, the driving member 320 is drivingly connected to the first connecting portion 312, and the driving member 320 is configured to drive the first connecting portion 312 to rotate and rotate the pushing portion 311 around a rotation center line, so as to contact or separate the pushing portion 311 with or from the plugging member 400.
Specifically, the first connection portion 312 and the pushing portion 311 are disposed at an interval in a direction perpendicular to a rotation center line of the first connection portion 312, and the driving member 320 is configured to drive the first connection portion 312 to rotate and rotate the pushing portion 311 around the rotation center line of the first connection portion 312 so as to contact or separate the pushing portion 311 from the plugging member 400. The driving member 320 can directly drive the first connection portion 312 to perform self-transmission, and since the pushing portion 311 and the first connection portion 312 are disposed at an interval along a direction perpendicular to the rotation center line of the first connection portion 312, the first connection portion 312 can drive the pushing portion 311 to rotate around the rotation center line of the first connection portion 312 when rotating. When the pushing part 311 rotates towards the plugging piece 400, the pushing part 311 gradually pushes the plugging piece 400, so that the plugging piece 400 slides towards the direction departing from the mounting table 110, the plugging piece 400 is separated from the hole wall of the draining hole 101, and the draining hole 101 is opened.
More specifically, the first connection portion 312 and the pushing portion 311 are both in a shaft shape, the driving element 320 is used for driving the first connection portion 312 to rotate along the axial direction thereof, and the arrangement of the first connection portion 312 and the pushing portion 311 at intervals along a direction perpendicular to the rotation center line of the first connection portion 312 means that the first connection portion 312 and the pushing portion 311 are arranged at intervals along the radial direction of the first connection portion 312.
Alternatively, the driver 320 may be a rotary driver 320 such as a motor or a rotary cylinder.
It should be noted that the first connection portion 312 and the pushing portion 311 may be disposed opposite to each other, or may be offset from each other, and it is only necessary that the first connection portion 312 and the pushing portion 311 are arranged at intervals along a direction perpendicular to the rotation center line of the first connection portion 312.
Specifically, in the present embodiment, the pushing portion 311 is located on a side of the first connection portion 312 close to the plugging member 400, so that the driving member 320 only needs to rotate within a range of 180 ° when the first connection portion 312 is driven to rotate, and the first connection portion 312 does not need to rotate for a complete 360 ° rotation, thereby saving the energy consumption of the driving member 320.
It should be noted that, after the draining structure is applied to a cooking device such as an electric cooker, an electromagnetic oven, an electric chafing dish, an electric pressure cooker, etc., the plugging member 400 is located above the pushing member 310 along the gravity direction, and when the pushing portion 311 rotates to a position separated from the plugging member 400, the plugging member 400 automatically resets under the action of gravity to plug the draining hole 101.
As shown in fig. 3-4, further, a side of the blocking member 400 close to the pushing member 310 has an arc-shaped structure, and the arc-shaped structure is used for guiding and matching with the pushing portion 311. Thus, when the pushing portion 311 pushes the plugging member 400, the plugging member 400 can be gradually pushed along the radian of the plugging member 400, so as to prevent the plugging member 400 from being stuck to the pushing portion 311, and the pushing member 310 cannot rotate any more and cannot push the plugging member 400 from the bottom of the plugging member 400.
Alternatively, the blocking member 400 is a member such as a weight block or a plug capable of blocking the drainage holes 101.
As shown in fig. 1-2 and 6-7, in one embodiment, the draining structure further comprises a mounting bracket 600, the mounting bracket 600 is disposed at the outer side of the inner pan 100, the mounting bracket 600 is provided with a first assembling hole 611, and the first connecting portion 312 is rotatably disposed through the first assembling hole 611. The first connecting portion 312 is disposed through the first assembling hole 611 for limiting the first connecting portion 312.
As shown in fig. 2 and 6-7, specifically, the mounting bracket 600 is a magnetic strip support on the cooking device, the mounting bracket 600 is disposed opposite to the bottom of the inner pan 100 at an interval, a first mounting protrusion 610 is disposed on one side of the mounting bracket 600 away from the inner pan 100, a first mounting hole 611 is disposed on the first mounting protrusion 610, the driving member 320 is disposed on one side of the mounting bracket 600 away from the inner pan 100, the first connecting portion 312 is connected to the driving member 320 and rotatably disposed in the first mounting hole 611, and the pushing portion 311 is disposed opposite to the blocking member 400 through the through hole 640 on the mounting bracket 600.
Further, the pushing member 310 further includes a second connecting portion 313 connected to the pushing portion 311, the second connecting portion 313 and the first connecting portion 312 are connected to two opposite ends of the pushing portion 311, the mounting frame 600 is provided with a second assembling hole 621, and the second connecting portion 313 is rotatably disposed in the second assembling hole 621 in a penetrating manner. The second connecting portion 313 is rotatably disposed in the second assembling hole 621 in a penetrating manner, so that the second connecting portion 313 is limited, and thus the first connecting portion 312 and the second connecting portion 313 of the pushing member 310 are respectively rotatably disposed in the first assembling hole 611 and the second assembling hole 621 in a penetrating manner, which is beneficial to improving the mounting stability of the pushing member 310 and ensuring the reliability of torque transmission.
Specifically, in the present embodiment, the pushing member 310 is shaped like a Chinese character 'ji', in the pushing member 310 shaped like a Chinese character 'ji', the top of the pushing member 310 is a pushing portion 311, two sides of the pushing member 310 are respectively a first connecting portion 312 and a second connecting portion 313, and the pushing portion 311, the first connecting portion 312 and the second connecting portion 313 can be shaped like a shaft or a strip.
As shown in fig. 6 to 7, in one embodiment, the mounting bracket 600 is provided with a first mounting protrusion 610 having elasticity, a first mounting hole 611 is formed on the first mounting protrusion 610, and the first mounting protrusion 610 is further provided with a crimping notch 612 communicating with the first mounting hole 611. In the installation process, the driving member 320 is pre-installed on the installation frame 600, the second connection portion 313 is inserted into the second assembling hole 621, the first connection portion 312 is pressed into the first assembling hole 611 through the first pressing notch 612, and the first connection portion 312 and the driving member 320 are assembled, so that the installation is convenient.
Specifically, the first mounting protrusion 610 is made of elastic plastic, elastic steel or elastic alloy, and the pressing notch 612 is opened at a side of the first mounting protrusion 610 away from the inner pan 100, so that the first connecting portion 312 can be conveniently pressed into the first assembling hole 611. Of course, the pressure contact notch 612 may be opened at other positions of the first mounting protrusion 610, as long as the first connection portion 312 can be pressed into the first mounting hole 611 through the pressure contact notch 612.
As shown in fig. 6, in one embodiment, the draining structure further comprises a shielding case 700, and the shielding case 700 is covered on the driving member 320. The shield 700 prevents the driving member 320 from being heated due to heat radiation from the cooking appliance during heating, thereby improving reliability of the driving member 320.
Wherein the shield case 700 is made of a heat insulating material.
As shown in fig. 7 to 8, further, the mounting bracket 600 is provided with a mounting hole 630, and the shield 700 is provided with a buckle 710 which is clamped with the mounting hole 630. Therefore, the shielding cover 700 can be fixed, and the mode of fixing the shielding cover 700 through the buckle 710 is simple in structure and convenient to assemble and disassemble.
As shown in fig. 2, in one embodiment, the draining structure further comprises a water guiding member 200, the water guiding member 200 is provided with a draining passage 201, the draining passage 201 is located outside the inner pot 100 and is communicated with the draining hole 101, and a driving member 320 is arranged outside the draining passage 201. The driving member 320 is disposed outside the draining channel 201, so that water in the draining channel 201 cannot flow to the driving member 320, and the driving member 320 is prevented from being damaged after encountering water.
Specifically, the waterlogging caused by excessive rainfall structure still includes mounting disc 500, and mounting disc 500 sets up in the outside of interior pot 100, and mounting disc 500 is equipped with first joint portion 510, and the outer wall of water guide 200 is equipped with the second joint portion 220 with first joint portion 510 joint. So, can realize the installation of water guide 200, and because first joint portion 510 sets up in the outer wall of water guide 200, consequently, can guarantee the space usage of the waterlogging caused by excessive rainfall passageway 201 of water guide 200 to guarantee the speed that water passes through from waterlogging caused by excessive rainfall passageway 201. In addition, the first clamping portion 510 is disposed on the outer wall of the water guide 200, so as to facilitate cleaning of the water guide 200.
As shown in fig. 1 and 2, more specifically, the mounting plate 500 is a wire spool on the cooking device, the mounting plate 500 is disposed between the mounting frame 600 and the inner pan 100, the first clamping portion 510 is a buckle disposed on the wire spool, the second clamping portion 220 is a clamping groove disposed on the outer side of the water guide 200, and the buckle is clamped in the clamping groove. The installation of the installation disc 500 and the water guide member 200 is realized by the water guide member 200 through the clamping groove, the structure is simple, and the assembly and disassembly are convenient.
Further, the water guide member 200 is disposed at the outer side of the inner pot 100, one end of the water guide member 200 close to the inner pot 100 is an elastic end 210, and the elastic end 210 abuts against the outer side wall of the inner pot 100, so that the water guide member 200 is in sealing fit with the inner pot 100 and forms a water leakage prevention structure. Thus, water is prevented from leaking out from the gap between the water guide 200 and the inner pot 100, and affecting the use of the cooking device.
Specifically, the water inlet of the draining channel 201 is opened at the elastic end 210 of the water guiding member 200, the water inlet of the draining channel 201 is opposite to the draining hole 101, and the elastic end 210 abuts around the draining hole 101, so as to seal the water guiding member 200 and the inner pot 100.
Alternatively, the entire water guide 200 may be made of an elastic material such as elastic rubber, or only one end of the water guide 200 close to the inner pot 100 may be made of an elastic material such as elastic rubber, as long as the water guide 200 is sealed with the inner pot 100.
An embodiment also relates to a cooking device comprising the draining structure as described above.
The cooking device can be an electric cooker, an induction cooker, an electric chafing dish, an electric pressure cooker and the like.
In the cooking device, the driving member 320 can drive the pushing portion 311 to rotate, and the pushing portion 311 is in contact with or separated from the blocking piece 400, when the driving member 320 drives the pushing portion 311 to rotate to be in contact with the blocking piece 400, the pushing piece 310 can push the blocking piece 400, so that the blocking piece 400 moves on the inner pot 100, the draining hole 101 is opened, and at the moment, water in the inner pot 100 can flow out from the draining hole 101. In the draining structure, the driving member 320 directly drives the pushing part 311 to rotate, and then the pushing part 311 pushes the plugging member 400 to open the draining hole 101, so that the structure is simple and reliable.
The technical features of the embodiments described above may be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the embodiments described above are not described, but should be considered as being within the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (17)

1. A draining structure, comprising:
the inner pot is provided with draining holes which penetrate through the inner side and the outer side of the inner pot;
the plugging piece is movably arranged on the inner pot and is controlled to open and close the draining hole; and
the pushing assembly comprises a pushing piece with a pushing part and a driving piece in driving connection with the pushing piece;
the pushing part is positioned on the outer side of the inner pot and is in contact fit with the plugging piece, and the driving piece is controlled to drive the pushing part to rotate to be in contact with the plugging piece and push the plugging piece to open the draining hole.
2. The draining structure according to claim 1, wherein the pushing member further comprises a first connecting portion connected with the pushing portion, and the driving member is in driving connection with the first connecting portion and is controlled to drive the pushing portion to rotate around a rotation center line to contact with or separate from the plugging member;
or the pushing piece further comprises a first connecting part connected with the pushing part, the driving piece is in driving connection with the first connecting part and is used for driving the first connecting part to rotate, the pushing part and the first connecting part are arranged at intervals along a direction perpendicular to a rotating center line of the first connecting part, and the driving piece is controlled to drive the pushing part to rotate around the rotating center line of the first connecting part to be in contact with or separated from the plugging piece.
3. The draining structure of claim 2, further comprising a mounting frame, wherein the mounting frame is disposed at the outer side of the inner pan, the mounting frame is provided with a first assembling hole, and the first connecting portion is rotatably disposed through the first assembling hole and connected to the driving member.
4. The draining structure according to claim 3, wherein the pushing member further comprises a second connecting portion connected to opposite ends of the pushing portion, and the mounting frame is provided with a second assembling hole, and the second connecting portion is rotatably inserted into the second assembling hole.
5. The draining structure according to claim 3, wherein the mounting frame is provided with a first elastic mounting protrusion, the first mounting hole is opened on the first mounting protrusion, and the first mounting protrusion is further provided with a crimping notch communicated with the first mounting hole.
6. The dewatering structure of claim 1, further comprising a shield disposed over the drive member.
7. The draining structure according to claim 6, further comprising a mounting frame, wherein the mounting frame is arranged on the outer side of the inner pan, the driving member is arranged on the mounting frame, the mounting frame is provided with mounting holes, and the shielding cover is provided with buckles connected with the mounting holes in a clamping manner.
8. The draining structure according to claim 1, wherein the wall of the draining hole is provided with a mounting platform, the plugging member is slidably disposed in the draining hole and controlled to open and close the draining hole, and the plugging member is connected to the mounting platform when plugging the draining hole.
9. The drainage structure of claim 8, further comprising a sealing member disposed on the blocking member and in sealing engagement with the mounting deck when the blocking member blocks the drainage hole.
10. The draining structure according to claim 9, wherein the side wall of the plugging member is provided with a mounting groove for installing the plugging member, the sealing member comprises an installation part arranged in the mounting groove and a sealing part connected with the installation part, and the sealing part is in sealing fit with the mounting platform when the plugging member plugs the draining hole.
11. The draining structure according to claim 1, wherein the side of said plugging member close to said pushing member is an arc-shaped structure, and said arc-shaped structure is used for guiding and matching with said pushing portion.
12. The draining structure according to claim 1, further comprising a water guiding member provided with a draining passage located outside the inner pot and communicating with the draining hole, the driving member being disposed outside the draining passage.
13. The draining structure according to claim 12, wherein the water guiding member is disposed outside the inner pot, one end of the water guiding member close to the inner pot is an elastic end having elasticity, and the elastic end abuts against the outer side wall of the inner pot so that the water guiding member is in sealing fit with the inner pot and forms a water leakage preventing structure.
14. The draining structure according to claim 12, further comprising a mounting plate, wherein the mounting plate is disposed on the outer side of the inner pan, the mounting plate is provided with a first clamping portion, and the outer wall of the water guide member is provided with a second clamping portion clamped with the first clamping portion.
15. The draining structure according to claim 14, wherein said first fastening portion is a buckle, and said second fastening portion is a slot, and said buckle is fastened in said slot.
16. The dewatering structure of any one of claims 1-15, wherein the drive member is an electric motor.
17. A cooking device comprising a draining structure according to any one of the preceding claims 1-16.
CN201921682869.3U 2019-10-08 2019-10-08 Draining structure and cooking device Active CN211093483U (en)

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Publication number Priority date Publication date Assignee Title
WO2021068662A1 (en) * 2019-10-08 2021-04-15 珠海格力电器股份有限公司 Water draining structure and cooking device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021068662A1 (en) * 2019-10-08 2021-04-15 珠海格力电器股份有限公司 Water draining structure and cooking device

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