CN209966096U - Cooking utensil - Google Patents

Cooking utensil Download PDF

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Publication number
CN209966096U
CN209966096U CN201920610591.2U CN201920610591U CN209966096U CN 209966096 U CN209966096 U CN 209966096U CN 201920610591 U CN201920610591 U CN 201920610591U CN 209966096 U CN209966096 U CN 209966096U
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China
Prior art keywords
water
hole
pot body
storage box
water storage
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CN201920610591.2U
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Chinese (zh)
Inventor
陈鑫
王本新
张懿豪
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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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Priority to CN201920610591.2U priority Critical patent/CN209966096U/en
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Abstract

The utility model provides a cooking utensil. Cooking utensil includes upper cover subassembly and a kind of deep pot body subassembly, and the upper cover subassembly can open and shut ground pivot setting on a kind of deep pot body subassembly, and a kind of deep pot body subassembly includes: the water-passing sinking platform is arranged on the pivoting side of the upper surface of the cooker body, the bottom of the water-passing sinking platform is provided with a water-passing hole, and the outer side surface of the cooker body is provided with an accommodating concave part; the water storage box is arranged at the accommodating concave part and is positioned below the water through hole, and the accommodating concave part is provided with a water through hole communicated with the center of the cooker body; the power panel is arranged at the wire passing hole, and the wire passing hole and a drainage path from the water passing hole to the water storage box are staggered on a vertical plane. The utility model provides an among the prior art cooking utensil have the power strip line problem inconvenient, that the installation effectiveness is low.

Description

Cooking utensil
Technical Field
The utility model relates to a household electrical appliances technical field particularly, relates to a cooking utensil.
Background
During the cooking process of the electric pressure cooker, condensate water can be generated, and when the cover is opened, the condensate water adsorbed on the cover body can fall into the cooker body.
At present, the product can be provided with apron and water receiving box in the pin joint side of upper cover and a kind of deep pot body, still can set up the power strip subassembly in the inboard of the pin joint side of a kind of deep pot body simultaneously, in order to avoid the comdenstion water to influence the power strip subassembly, the shell in the power strip subassembly outside is the encapsulated situation, and the product line is inconvenient, and final assembly is inefficient. And the back cover plate and the water storage box are convexly arranged on the cooker body, so that the product is not beautiful, condensed water on the cooker body is not easy to flow into the water receiving box and is easy to be detained on the cooker body, and the condensed water detained on the cooker body is easy to generate bacterial breeding and send out unpleasant peculiar smell.
That is to say, cooking utensil has the power strip problem that the line is inconvenient, installation inefficiency among the prior art.
SUMMERY OF THE UTILITY MODEL
The utility model discloses a main aim at provides a cooking utensil to there is the not convenient problem of installing the inefficiency of power strip line in the cooking utensil among the solution prior art.
In order to achieve the above object, according to an aspect of the present invention, there is provided a cooking appliance including an upper cover assembly and a pot body assembly, the upper cover assembly being pivotally provided on the pot body assembly to be openable and closable, the pot body assembly including: the water-passing sinking platform is arranged on the pivoting side of the upper surface of the cooker body, the bottom of the water-passing sinking platform is provided with a water-passing hole, and the outer side surface of the cooker body is provided with an accommodating concave part; the water storage box is arranged at the accommodating concave part and is positioned below the water through hole, and the accommodating concave part is provided with a water through hole communicated with the center of the cooker body; the power panel is arranged at the wire passing hole, and the wire passing hole and a drainage path from the water passing hole to the water storage box are staggered on a vertical plane.
Through set up the line hole at the holding concave part department for the installation of power strip and line are more convenient. The drainage path from the water passing hole to the water storage box is staggered with the water passing hole in the horizontal direction, so that the influence on the power panel caused by the fact that condensed water flowing out of the drainage path flows into the water passing hole mistakenly is reduced. The setting of crossing the heavy platform of water can increase a kind of deep pot body subassembly and to the holding capacity of comdenstion water, avoids the comdenstion water too much to overflow power strip department to reduce the risk of cooking utensil water inlet short circuit.
Furthermore, the orthographic projection of the water passing sinking platform on the cooker body is in a strip shape, and the bottom surface of the water passing sinking platform extends downwards in an inclined mode along the direction close to the water passing holes. The arrangement can make the condensed water in the water sinking platform quickly flow into the water through holes.
Furthermore, the water passing holes are one and are positioned on one side of the strip-shaped water passing sinking platform. The arrangement is convenient for the water outlet end and the wire passing hole to be staggered in the horizontal direction.
Furthermore, the water passing hole is provided with a drainage structure extending towards the water storage box, and the water outlet end of the drainage structure is used as the water outlet end of the drainage path. The water flowing into the water through hole is drained to the water storage box by the drainage structure
Furthermore, the drainage surface of the drainage structure is a V-shaped surface, and an intersection line between two surfaces of the V-shaped surface extends downwards along a direction close to the water storage box in an inclined manner, so that the condensed water flows into the water storage box. The comdenstion water can be followed the V-arrangement face and assembled downwards rapidly and then flowed into in the water storage box after entering into drainage structure.
Furthermore, a longitudinal water retaining rib is further arranged in the accommodating concave part, and the water outlet end of the water drainage path and the wire passing hole are respectively positioned on two sides of the longitudinal water retaining rib. The longitudinal water retaining rib can prevent water flowing out of the water outlet end from entering the wire passing hole, and further influence on the power panel is avoided.
Furthermore, the circumferential edge of the wire passing hole is also provided with a water retaining convex edge extending towards the center of the wire passing hole. The arrangement of the water retaining convex edge is to avoid that water flowing out from the water outlet end enters the wire passing hole, so that the influence on the power panel is avoided.
Further, the pot body assembly further comprises a cover plate, the cover plate is provided with a groove for containing the water storage box, the cover plate is buckled on the containing concave portion, so that the outer surface of the pot body assembly is continuous, the top of the groove is provided with a notch, and the notch is communicated with the water passing hole. The groove of the cover plate is arranged corresponding to the wire passing hole, so that the wire passing hole is covered by the cover plate after the upper cover assembly and the power panel are connected, and the condensate water is prevented from flowing into the wire passing hole to damage the power panel.
Furthermore, the cooker body assembly also comprises a pressing plate, the pressing plate is arranged in the accommodating concave part and positioned on the inner side of the cover plate, the pressing plate is pressed at the position corresponding to the water through hole, and the bottom edge of the pressing plate is higher than the water outlet end of the water drainage path so as to form an overflowing gap between the pressing plate and the water through hole. The pressing plate is attached to the surface of the water outlet end of the drainage structure, so that the water outlet of the drainage structure can be partially shielded, and condensed water is guaranteed to flow into the water storage box easily.
Further, the pressing plate comprises a plate body and a connecting lug, and the connecting lug extends upwards to be hung on the pot body. The body is used for sheltering from partial delivery port, guarantees that the comdenstion water flows into in the water storage box easily. The connecting lugs are arranged at the accommodating concave parts and are matched with the structures for installing the pivot shaft on the convex parts so as to prevent the pivot shaft from falling off.
Furthermore, the orthographic projection of the water passing sinking platform on the cooker body is in a strip shape, the bottom surface of the water passing sinking platform extends downwards in an inclined manner along the direction close to the water passing hole, the water passing hole is positioned on one side of the strip-shaped water passing sinking platform, the water passing hole is provided with a drainage structure extending towards the water storage box, the water outlet end of the drainage structure is used as the water outlet end of the drainage path, the drainage surface of the drainage structure is a V-shaped surface, the boundary line between the two surfaces of the V-shaped surface extends downwards in an inclined manner along the direction close to the water storage box so as to enable condensed water to flow into the water storage box, the accommodating concave part is also provided with a longitudinal water retaining rib, the water outlet end of the drainage path and the wire passing hole are respectively positioned on the two sides of the longitudinal water retaining rib, the circumferential edge of the wire passing hole is also provided with a water retaining convex edge extending towards the center of the, the cover plate is buckled in the accommodating concave part, so that the outer surface of the cooker body assembly is continuous, the top of the groove is provided with a notch which is communicated with the water passing hole, the cooker body assembly further comprises a pressing plate, the pressing plate is arranged in the accommodating concave part and located on the inner side of the cover plate, the pressing plate is pressed and arranged at the position corresponding to the water passing hole, the bottom edge of the pressing plate is higher than the water outlet end of the drainage path, so that an overflowing gap is formed between the bottom edge of the pressing plate and the water outlet end, the pressing plate comprises a plate body and a connecting lug, and the.
Drawings
The accompanying drawings, which form a part of the present application, are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and together with the description serve to explain the invention and not to limit the invention. In the drawings:
fig. 1 shows a schematic view of the overall structure of a cooking appliance according to an alternative embodiment of the present invention; and
FIG. 2 shows a schematic structural view of the pot body assembly of FIG. 1;
FIG. 3 is a schematic view showing the construction of the pot assembly of FIG. 1 without the cover and the water storage box;
FIG. 4 shows an enlarged view at P in FIG. 3;
FIG. 5 shows an angled view of the pot body assembly of FIG. 2;
FIG. 6 shows a view from the A-A direction of FIG. 5;
FIG. 7 shows a view along B-B of FIG. 5;
figure 8 shows an exploded view of the pot assembly of figure 1.
Wherein the figures include the following reference numerals:
10. an upper cover assembly; 20. a pot body assembly; 30. a pot body; 31. a pivoting side; 32. a water collection tank; 321. a diversion bevel; 322. a first step surface; 323. a second step surface; 324. a third step surface; 33. passing through a water sinking platform; 34. water passing holes; 341. a water outlet end; 35. a boss portion; 36. a diversion trench; 37. a drainage structure; 371. a drainage surface; 38. an accommodating recess; 381. a wire passing hole; 382. longitudinal water retaining ribs; 383. a water retaining convex edge; 384. a water retaining wall; 40. a water storage box; 41. a handle; 50. a power panel; 51. a socket; 60. a cover plate; 61. a groove; 611. a notch; 70. pressing a plate; 71. a plate body; 72. a connecting lug; 80. and (4) screws.
Detailed Description
It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict. The present invention will be described in detail below with reference to the accompanying drawings in conjunction with embodiments.
It is noted that, unless otherwise indicated, 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 application belongs.
In the present application, where the contrary is not intended, the use of directional words such as "upper, lower, top and bottom" is generally with respect to the orientation shown in the drawings, or with respect to the component itself in the vertical, perpendicular or gravitational direction; likewise, for ease of understanding and description, "inner and outer" refer to the inner and outer relative to the profile of the components themselves, but the above directional words are not intended to limit the invention.
In order to solve the problem that cooking utensil has power strip line inconvenient, installation effectiveness low among the prior art, the utility model provides a cooking utensil.
As shown in fig. 1 to 8, the cooking appliance includes an upper cover assembly 10 and a pot body assembly 20, the upper cover assembly 10 is pivotally disposed on the pot body assembly 20 in an openable and closable manner, the pot body assembly 20 includes a pot body 30, a water storage box 40 and a power supply board 50, a pivoting side 31 of an upper surface of the pot body 30 has a water passing platform 33, a water passing hole 34 is disposed at a bottom of the water passing platform 33, an outer side surface of the pot body 30 has a receiving recess 38, the water storage box 40 is disposed at the receiving recess 38 and is located below the water passing hole 34, the receiving recess 38 has a wire passing hole 381 communicated with a center of the pot body 30, the power supply board 50 is disposed at the wire passing hole 381, and the wire passing hole 381 is staggered from a drainage path from the water passing hole 34 to the water storage box 40 on a vertical plane.
By arranging the wire through hole 381 at the accommodating concave portion 38, the installation and wiring of the power supply board 50 are more convenient. The drainage path from the water through hole 34 to the water storage box 40 is staggered with the wire through hole 381 in the horizontal direction, so that the influence on the power supply board 50 caused by the fact that condensed water flowing out of the drainage path mistakenly flows into the wire through hole 381 is reduced, and through the staggered form, the flow path of the condensed water can be planned and is enabled to be away from the installation position of the power supply board 50, so that the risk of a water inlet short circuit of the cooking appliance is reduced, and the use safety of the cooking appliance is improved. The water sinking platform 33 can increase the accommodating capacity of the cooker body assembly 20 for the condensed water, and the excessive overflow of the condensed water to the power panel 50 is avoided, so that the risk of water inlet short circuit of the cooking appliance is reduced.
The arrangement of the accommodating concave part 38 enables the water storage box 40 to be flush with the outer surface of the pot body 30 after being installed in place, so that the outer surface of the pot body 30 is smoother, no redundant structure is provided, the whole miniaturization of the cooking appliance is facilitated, the appearance is higher, and the whole attractiveness of the cooking appliance is also improved.
Note that the outer surface of the water storage box 40 is flush with the outer side wall of the pot body 30 means that the outer surface of the water storage box 40 and the outer side wall of the pot body 30 are on the same arc surface, and the outer surface of the water storage box 40 and the outer side wall of the pot body 30 are in smooth transition. Or, the outer surface of the water storage box 40 does not protrude from the outer sidewall of the pot body 30, and does not recess into the outer sidewall of the pot body 30. Flush here does not mean flush on a plane.
Of course, flush as described above means substantially flush in appearance. When the handle 41 is provided on the outer surface of the water storage box 40, the handle 41 may be hidden in the outer surface of the water storage box 40 or may be protruded from the outer side wall of the pot body 30, which is convenient for taking and loading the water storage box 40. In the structure shown in fig. 8, the handle 41 protrudes from the outer surface of the water storage box 40, so that the region of the outer surface of the water storage box 40 other than the handle 41 is flush with the outer side wall of the pot body 30.
As shown in fig. 3 and 8, the wire through hole 381 facilitates installation of the power supply board 50, while the socket 51 is exposed at the wire through hole 381, so that connection between the upper cover assembly 10 and the power supply board 50 is facilitated. As shown in fig. 3, when the power supply board 50 and the water storage box 40 are installed in the cooker body 30 at the same time, the power supply board 50 is closer to the inner side of the cooker body 30 than the water storage box 40, so that the power supply board 50 is not affected by taking and placing the water storage box 40, and an isolation structure (a part of the structure of the cover plate 60 is used as an isolation structure) is also conveniently made so that the water storage box 40 is separated from the power supply board 50 to prevent the short circuit of the cooking appliance when encountering water.
As shown in fig. 5, the orthographic projection of the water passing platform 33 on the pot body 30 is in a strip shape, and the bottom surface of the water passing platform 33 extends obliquely downward in a direction close to the water passing hole 34. This arrangement makes it possible to quickly flow the condensed water in the water sink 33 into the water passing holes 34.
Alternatively, there is one water through hole 34, and the water through hole 34 is located at one side of the elongated water immersion table 33. This arrangement facilitates the displacement of the outlet end 341 of the drainage path from the threading hole 381 in the horizontal direction, which is the case in fig. 5.
Of course, there may be two water passing holes 34, two water passing holes 34 are located on two sides of the submerged table 33, the bottom surface of the submerged table 33 extends from the center to two sides in an inclined manner, the two water passing holes 34 may form two drainage paths, and the water outlet ends 341 of the two drainage paths are horizontally staggered with the line passing hole 381. Thus, two independent water paths are respectively separated from the water through holes 34, and electrical parts such as the power board 50 are relatively easy to avoid.
As shown in fig. 4, 6 and 7, the water through hole 34 has a drainage structure 37 extending toward the water storage box 40, and a water outlet end of the drainage structure 37 serves as a water outlet end 341 of the drainage path. The drainage structure 37 drains the water flowing into the water through hole 34 into the water storage box 40.
As shown in fig. 4, 6 and 7, the drainage surface 371 of the drainage structure 37 is a V-shaped surface, and an intersection line between two surfaces of the V-shaped surface extends obliquely downward in a direction approaching the water storage box 40, so that the condensed water flows into the water storage box 40. The drainage surface 371 is a V-shaped surface, the boundary line between the two surfaces of the V-shaped surface extends downwards along the direction close to the water storage box 40 in an inclined manner, the point of the V-shaped surface faces the side where the water storage box 40 is located, and after the condensed water flows into the drainage structure 37, the condensed water can rapidly converge downwards along the V-shaped surface and then flows into the water storage box 40.
As shown in fig. 4 and 8, a longitudinal water blocking rib 382 is further disposed in the accommodating recess 38, and the water outlet end 341 and the line passing hole 381 of the drainage path are respectively located at two sides of the longitudinal water blocking rib 382. In fact, the longitudinal water blocking rib 382 is arranged to separate the flow path of the condensed water from the power board 50, so that one side of the longitudinal water blocking rib 382 is a water path, and the other side is a circuit, which can well block the water flowing out from the water outlet end 341 from entering the interior of the wire through hole 381, thereby avoiding damage to the power board 50.
Specifically, the accommodating recess 38 further has a water blocking wall 384, and the water blocking wall 384 is located at a left side (as shown in fig. 4) of the water blocking ledge 383 and below the water outlet end 341 of the water drainage path, so as to prevent the condensed water from entering the inside of the cooking utensil and also prevent the condensed water from accumulating in a region below the water outlet end 341 of the water drainage path.
As shown in fig. 4 and 8, the circumferential edge of the wire through hole 381 further has a water blocking ledge 383 protruding toward the center of the wire through hole 381. The water retaining ledge 383 acts like the longitudinal water retaining rib 382, primarily to provide a separation function. That is, the water retaining ledge 383 is provided to prevent water flowing out of the water outlet end 341 from entering the wire passing hole 381, and further prevent the influence on the power board 50.
As shown in fig. 4, the bottom edge of the wire passing hole 381 has a water retaining ledge 383 extending upward, and if water in the water storage box 40 overflows carelessly and flows into the outside of the wire passing hole 381, the water is accumulated at the bottom of the outside of the wire passing hole 381 due to gravity, and at this time, the water retaining ledge 383 at the bottom plays a good role in intercepting accumulated water, so as to prevent the accumulated water from entering the wire passing hole 381 over the water retaining ledge 383 to corrode the power supply board 50.
Similarly, the water blocking ledge 383 extending from the two side edges or the upper edge of the wire passing hole 381 can also protect the power board 50 to some extent.
As shown in fig. 3 and 4, the pot body assembly 20 further includes a pressing plate 70, the pressing plate 70 is disposed in the accommodating recess 38 and located inside the cover plate 60, and the pressing plate 70 is pressed at a position corresponding to the water through hole 34, and the bottom edge of the pressing plate 70 is higher than the water outlet end 341 of the water discharge path to form a flow through gap therebetween. Because the water outlet of the water outlet end of the drainage structure 37 is large when the cooker body 30 is molded, condensed water is easy to splash when flowing out quickly and flows into the area outside the water storage box 40, and the pressing plate 70 is attached to the surface of the water outlet end of the drainage structure 37, so that the water outlet of the drainage structure 37 can be partially shielded to ensure that the condensed water flows into the water storage box 40 easily.
As shown in fig. 8, the pressing plate 70 includes a plate body 71 and a connecting lug 72, and the connecting lug 72 is projected upward to be hung on the pot body 30. The plate body 71 is used for shielding part of the water outlet, so that the condensed water is easy to flow into the water storage box 40. The plate body 71 is mounted to the receiving recess 38 by means of a connecting lug 72, and the connecting lug 72 cooperates with the structure of the boss 35 for mounting the pivot shaft to prevent the pivot shaft from being removed.
As shown in fig. 4 and 8, the pot body assembly 20 further includes a cover plate 60, the cover plate 60 has a groove 61 for receiving the water storage box 40, the cover plate 60 is fastened at the receiving recess 38 so that the outer surface of the pot body assembly 20 is continuous, the top of the groove 61 has a notch 611 for passing condensed water, and the notch 611 is communicated with the water through hole 34 through the drainage structure 37 of the pot body 30. The groove 61 of the cover plate 60 is disposed corresponding to the wire passing hole 381, so that the wire passing hole 381 is covered by the structure at the position of the groove 61 of the cover plate 60 connected between the upper cover assembly 10 and the power board 50, and the damage to the power board 50 caused by the inflow of condensed water into the wire passing hole 381 is avoided. The water storage box 40 is installed in the groove 61, the water outlet end of the drainage structure 37 is located above the notch 611, and the condensed water in the drainage structure 37 flows into the water storage box 40 through the notch 611.
Optionally, the side wall of the groove 61 is further provided with a plurality of clamping positions, and the water storage box 40 is provided with a buckle for clamping the clamping positions, so that the water storage box 40 is clamped with the cover plate 60.
As shown in fig. 8, the notch 611 of the cover 60 is not visible. A portion indicated by 61 in fig. 8 is a groove wall surface of the recess, which is disposed closer to the center of the pot body 30 with respect to the surface of the cover plate 60 which is flush with the pot body 30, and which is used for plugging the thread through hole 381 to isolate the water storage box 40 from the power supply board 50. Two lateral walls and a bottom wall at the bottom of the walls enclose a recess 61. That is, in the groove 61, the top of the groove 61 is an open structure.
As shown in fig. 8, the upper surface of the pot body 30 has a water collecting groove 32 on the pivoting side 31, the water collecting groove 32 has a water passing sink table 33, a water passing hole 34 is formed at the bottom of the water passing sink table 33, and the surface of the water collecting groove 32 extends obliquely downward in the direction close to the water passing sink table 33, the condensed water can be guided once by arranging the water collecting groove 32 on the upper surface of the pot body 30, so that the condensed water is easily gathered together, the water passing sink table 33 is further arranged, and the water passing sink table 33 is located in the water collecting groove 32, so that the gathered condensed water is further gathered and guided. That is, the condensed water on the pot body 30 can rapidly flow into the water storage box 40 by the structure of sinking for many times, the time for the condensed water to stay on the pot body 30 is reduced, and the dirt on the upper surface of the pot body 30 can be reduced. In addition, the inclined surface of the water collecting groove 32 can make the condensed water entering into the water collecting groove 32 flow into the water sinking platform 33 quickly, flow into the water storage box 40 through the water through hole 34 and discharge the condensed water on the pot body 30 quickly. When the water level in the water storage box 40 reaches a certain height, the water storage box 40 can be taken off from the pot body 30, and the water in the water storage box 40 is poured out, so that the water in the water storage box 40 is prevented from overflowing to the inside of the pot body 30 too much.
Note that the pivot side 31 is a side for connecting with the lid assembly 10.
As shown in fig. 2 to 8, the pivot side 31 has a protrusion 35 protruding toward one side of the upper cover assembly 10, the protrusion 35 is located in an area where the water collection groove 32 is located, and the surface of the water collection groove 32 has a flow guiding inclined surface 321 in areas on both sides of the protrusion 35, and the flow guiding inclined surface 321 extends obliquely downward in a direction close to the protrusion 35. A pivoting structure is provided on the boss 35 so that the upper cover assembly 10 and the pot body assembly 20 are pivotally connected. In addition, the water sinking platform 33 is located at one side of the protruding portion 35 close to the center of the pot body 30, and the protruding portion 35 can effectively block the condensed water, so that the condensed water is better gathered into the water sinking platform 33. Due to the arrangement of the flow guide inclined plane 321, the condensed water can quickly flow into the water collecting tank 32, meanwhile, splashing of the condensed water caused by the height difference is reduced, and splashing of the condensed water into the cooking utensil can be effectively reduced. Because the sink 33 is located inside the protruding portion 35, the sink 33 is strip-shaped, which can reduce the area occupied by the sink 33 and is also beneficial for the condensed water in the sink 33 to flow into the water through holes 34.
As shown in fig. 5 and 7, the surface of the water collection tank 32 is a stepped surface, and the water passing sill 33 is located at the lowest point of the stepped surface. The stepped surface can increase the flow rate of the condensed water, so that the condensed water can be quickly discharged from the water collecting tank 32, the condensed water is prevented from being accumulated on the upper surface of the cooker body 30, and the deposition of stains on the upper surface of the cooker body 30 is reduced.
As shown in fig. 5 and 7, the surface of the water collecting channel 32 includes a first step surface 322, a first flow guiding inclined surface 321, a second step surface 323, a second flow guiding inclined surface 321, and a third step surface 324, which are connected in sequence, the height of the second step surface 323 is smaller than that of the first step surface 322 and the third step surface 324, the submergence platform 33 is located at the second step surface 323, and the first step surface 322 and the third step surface 324 are respectively located at two sides of the protrusion 35. The condensed water on the first step plane 322 and the third step plane 324 flows into the second step plane 323 through the diversion inclined plane 321, so that the condensed water flows into the water storage box 40 through the water sink 33. The multi-step structure is more beneficial to the condensed water on the pot body 30 to rapidly flow into the water storage box 40, and the generation of the condition that the condensed water is accumulated on the pot body 30 is reduced. In addition, the multi-step structure can also contain more condensed water, and the condensed water can be prevented from overflowing into the cooking utensil when the condensed water is excessive.
In this embodiment, the first step surface 322 and the third step surface 324 are at the same height, and the distances from the first step surface 322 and the third step surface 324 to the convex portion 35 are equal, that is, the first step surface 322 and the third step surface 324 are symmetrically arranged relative to the center of the pot body 30, which is more beneficial for the condensed water on the pot body 30 to rapidly flow into the water storage box 40. Of course, the relationship between the first step plane 322 and the third step plane 324 may be set according to the actual use requirement of the cooking appliance. For example, a height difference is provided between the first step surface 322 and the third step surface 324 to achieve rapid discharge of the condensed water. The first step surface 322 and the third step surface 324 may not be symmetrically arranged with respect to the center of the pot body 30.
As shown in fig. 2 to 6, the upper surface of the pot body 30 is further provided with a guide groove 36, and a groove surface of the guide groove 36 extends obliquely downward in a direction close to the water collection groove 32. The condensation on the pot body 30 flows into the water collecting groove 32 through the guiding gutter 36, and the groove surface of the guiding gutter 36 extends obliquely downwards in the direction close to the water collecting groove 32, so that the condensed water can quickly flow into the water collecting groove 32, and the phenomenon that the condensed water is accumulated in the guiding gutter 36 is reduced.
Specifically, the pot body assembly 20 further includes screws 80, and the cover plate 60 and the pressure plate 70 are mounted to the receiving recess 38 by the screws.
Optionally, the cooking appliance is an electric pressure cooker. Of course, the cooking appliance may also be other electric products for cooking food materials, such as an electric cooker and the like.
It is obvious that the above described embodiments are only some of the embodiments of the present invention, and not all of them. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts shall belong to the protection scope of the present invention.
It is noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of example embodiments according to the present application. As used herein, the singular is intended to include the plural unless the context clearly dictates otherwise, and it should be further understood that the terms "comprises" and/or "comprising," when used in this specification, specify the presence of features, steps, operations, devices, components, and/or combinations thereof.
It should be noted that the terms "first," "second," and the like in the description and claims of this application and in the drawings described above are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the data so used is interchangeable under appropriate circumstances such that the embodiments of the application described herein are capable of operation in sequences other than those illustrated or described herein.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (11)

1. A cooking appliance comprising an upper cover assembly (10) and a pot body assembly (20), the upper cover assembly (10) being pivotally provided on the pot body assembly (20) in an openable and closable manner, the pot body assembly (20) comprising:
the pot body (30), the pivoting side (31) of the upper surface of the pot body (30) is provided with a water passing sinking platform (33), the bottom of the water passing sinking platform (33) is provided with a water passing hole (34), and the outer side surface of the pot body (30) is provided with an accommodating concave part (38);
the water storage box (40) is arranged at the accommodating concave part (38) and is positioned below the water passing hole (34), and the accommodating concave part (38) is provided with a line passing hole (381) communicated with the center of the pot body (30);
the power panel (50) is arranged at the wire passing hole (381), and the wire passing hole (381) and a drainage path from the water passing hole (34) to the water storage box (40) are staggered on a vertical plane.
2. The cooking appliance according to claim 1, wherein an orthographic projection of the water passing platform (33) on the pot body (30) is elongated, and a bottom surface of the water passing platform (33) extends obliquely downward in a direction approaching the water passing hole (34).
3. The cooking appliance according to claim 2, wherein the water through hole (34) is one, and the water through hole (34) is located at one side of the elongated water passing platform (33).
4. The cooking appliance according to claim 1, wherein the water through hole (34) has a drainage structure (37) extending toward the water storage box (40), and a water outlet end of the drainage structure (37) serves as a water outlet end (341) of the drainage path.
5. The cooking appliance according to claim 4, wherein the drainage surface (371) of the drainage structure (37) is a V-shaped surface, and an intersection line between two surfaces of the V-shaped surface extends obliquely downward in a direction approaching the water storage box (40) to allow condensed water to flow into the water storage box (40).
6. The cooking appliance according to claim 1, wherein a longitudinal water retaining rib (382) is further disposed in the accommodating recess (38), and the water outlet end (341) of the drainage path and the wire passing hole (381) are respectively located at two sides of the longitudinal water retaining rib (382).
7. The cooking appliance according to claim 1, wherein the circumferential edge of the wire passing hole (381) further has a water blocking ledge (383) protruding toward the center of the wire passing hole (381).
8. The cooking appliance according to any one of claims 1 to 7, wherein the pot body assembly (20) further comprises a cover plate (60), the cover plate (60) has a groove (61) for accommodating the water storage box (40), the cover plate (60) is snapped in the accommodating recess (38) to make the outer surface of the pot body assembly (20) continuous, the top of the groove (61) has a notch (611), and the notch (611) is communicated with the water through hole (34).
9. The cooking appliance according to claim 8, wherein the pot body assembly (20) further comprises a pressing plate (70), the pressing plate (70) is arranged in the accommodating concave portion (38) and located at the inner side of the cover plate (60), the pressing plate (70) is pressed at a position corresponding to the water through hole (34), and the bottom edge of the pressing plate (70) is higher than the water outlet end (341) of the drainage path to form a flow passing gap therebetween.
10. The cooking appliance according to claim 9, wherein the pressure plate (70) comprises a plate body (71) and a connecting lug (72), the connecting lug (72) projecting upward to hang on the pot body (30).
11. The cooking appliance according to claim 1, wherein an orthographic projection of the rinsing sink table (33) on the pot body (30) is in a shape of a long strip, and a bottom surface of the rinsing sink table (33) extends obliquely downward in a direction close to the water through hole (34), the water through hole (34) is one, and the water through hole (34) is located at one side of the long strip of the rinsing sink table (33), the water through hole (34) has a drainage structure (37) extending toward the water storage box (40), a water outlet end of the drainage structure (37) is used as a water outlet end (341) of the drainage path, a drainage surface (371) of the drainage structure (37) is a V-shaped surface, and a boundary line between two surfaces of the V-shaped surface extends obliquely downward in a direction close to the water storage box (40) so as to make condensed water flow into the water storage box (40), the pot body assembly (20) further comprises a cover plate (60), the cover plate (60) is provided with a groove (61) for accommodating the water storage box (40), the cover plate (60) is buckled on the accommodating concave part (38) so that the outer surface of the pot body assembly (20) is continuous, the top of the groove (61) is provided with a notch (611), the notch (611) is communicated with the water through hole (34), the pot body assembly (20) further comprises a pressing plate (70), and the pressing plate (70) is arranged in the accommodating concave part (38) and is positioned on the inner side of the cover plate (60), the pressing plate (70) is pressed at a position corresponding to the water through hole (34), the bottom edge of the pressing plate (70) is higher than the water outlet end (341) of the water drainage path to form a flow through gap between the water through hole and the water outlet end, the pressing plate (70) comprises a plate body (71) and a connecting lug (72), and the connecting lug (72) extends upwards to be hung on the cooker body (30).
CN201920610591.2U 2019-04-29 2019-04-29 Cooking utensil Active CN209966096U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920610591.2U CN209966096U (en) 2019-04-29 2019-04-29 Cooking utensil

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920610591.2U CN209966096U (en) 2019-04-29 2019-04-29 Cooking utensil

Publications (1)

Publication Number Publication Date
CN209966096U true CN209966096U (en) 2020-01-21

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920610591.2U Active CN209966096U (en) 2019-04-29 2019-04-29 Cooking utensil

Country Status (1)

Country Link
CN (1) CN209966096U (en)

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