CN210138061U - Heat-conducting composite layer and pot applying same - Google Patents

Heat-conducting composite layer and pot applying same Download PDF

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Publication number
CN210138061U
CN210138061U CN201822114461.8U CN201822114461U CN210138061U CN 210138061 U CN210138061 U CN 210138061U CN 201822114461 U CN201822114461 U CN 201822114461U CN 210138061 U CN210138061 U CN 210138061U
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layer
supporting layer
heat
composite layer
pot
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CN201822114461.8U
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Chinese (zh)
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卢雄文
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Abstract

The utility model discloses a heat conduction composite bed and pot that has heat conduction composite bed, heat conduction composite bed include supporting layer and heat-conducting layer, and the heat conduction composite bed sets up in bottom of a boiler department, the supporting layer includes top supporting layer and bottom supporting layer, and top supporting layer and bottom supporting layer all have protruding and/or sunken, form between top supporting layer and bottom supporting layer and hold the cavity, the heat-conducting layer is filled hold in the cavity. The utility model has the beneficial technical effects that: the connection of bottom and the pot body is more reliable than prior art, and the pot body is heated evenly during the heating, prevents local high temperature or low temperature and the unbalanced phenomenon appearance that is heated, and pot body bottom composite bed is non-deformable after being heated, and overall structure intensity is big, the sexual valence relative altitude.

Description

Heat-conducting composite layer and pot applying same
Technical Field
The utility model relates to a composite bed and pot especially relate to a heat conduction composite bed and pot of using this heat conduction composite bed.
Background
The prior art pan body generally has a planar bottom, and a bottom plate for heating is installed in the interrogation, and the prior art heating bottom plate is generally a multi-layer composite structure and has a heat conduction layer made of magnetic conduction materials, so as to hopefully improve the heat conduction of the pan body and enable the whole bottom of the pan body to be heated uniformly, but the prior art pan body generally has the defects of weak connection, easy bottom falling and easy deformation of the heating bottom plate, and can not meet the requirements of people.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a heat conduction composite bed and pot of using this heat conduction composite bed solve the shortcoming regret that prior art exists.
The utility model discloses a following technical scheme realizes:
a heat-conducting composite layer is characterized by comprising a supporting layer and a heat-conducting layer, wherein the supporting layer comprises a top supporting layer and a bottom supporting layer, the top supporting layer and the bottom supporting layer are respectively provided with a protrusion and/or a recess, a containing cavity is formed between the top supporting layer and the bottom supporting layer, and the heat-conducting layer is filled in the containing cavity.
Further, the direction of the protrusion and the direction of the recess are the same.
Further, the directions of the protrusions and the depressions are opposite.
Further, the thermally conductive composite layer has a top reinforcing structure and/or a bottom reinforcing structure.
Further, the material of the top support layer and/or the bottom support layer is iron, stainless steel or stainless iron.
The pot with the heat conducting composite layer is characterized in that the pot is provided with the heat conducting composite layer, and the heat conducting composite layer is arranged at the bottom of the pot.
Further, the heat-conducting composite layer extends to the side wall of the pot.
The utility model has the beneficial technical effects that:
the connection of bottom and the pot body is more reliable than prior art, and the pot body is heated evenly during the heating, prevents local high temperature or low temperature and the unbalanced phenomenon appearance that is heated, and pot body bottom composite bed is non-deformable after being heated, and overall structure intensity is big, the sexual valence relative altitude.
Drawings
FIG. 1 is a cross-sectional view of a pan body.
Fig. 2 is a partially enlarged view of a portion a of fig. 1.
Fig. 3 is one of the structural diagrams of the thermally conductive composite layer.
FIG. 4 is a second schematic view of the structure of the thermally conductive composite layer.
Detailed Description
The following description of the embodiments will help the public to understand the present invention, but the specific embodiments given by the applicant should not be considered as limiting the technical solution of the present invention, and any changes in the definition of the components or technical features and/or in the form of the overall structure rather than substantial changes should be considered as the protection scope defined by the technical solution of the present invention.
Description of reference numerals: pot body 1, heat-conducting composite layer 2, bottom layer 3, bulge 4, top supporting layer 5, heat-conducting layer 6, bottom supporting layer 7, local amplification part A
As shown in fig. 1 to 4, the heat conductive composite layer includes a support layer and a heat conductive layer 6, the support layer includes a top support layer 5 and a bottom support layer 7, the top support layer 5 and the bottom support layer 7 each have protrusions and/or depressions, the heat conductive layer 6 is filled in the accommodation cavity, the protrusions and/or depressions are in the same direction or in opposite directions, and as shown in fig. 3 and 4, when the protrusions and/or depressions are in the same direction, the shape of the heat conductive composite layer is a shallow dish shape, and the opening direction is upward. When the protrusions and/or the depressions are in opposite directions, the heat-conducting composite layer is in a shape with two large ends, a middle small end and a small middle end, namely the top supporting layer 5 and the bottom supporting layer 7 of the heat-conducting composite layer at a certain position are simultaneously recessed towards the central axis method. The pot is provided with a heat conduction composite layer, the heat conduction composite layer is arranged at the bottom of the pot, and the whole or part of the heat conduction composite layer can extend to the side wall of the pot. As a further improvement, the heat-conducting composite layer has a top reinforcing structure and/or a bottom reinforcing structure to enhance the overall structural strength of the product, and the material of the top supporting layer and/or the bottom supporting layer is iron, stainless steel or stainless iron. Compared with the prior art, the connection of bottom and the pot body is more reliable than prior art, and the pot body is heated evenly during the heating, prevents local high temperature or low temperature and the unbalanced phenomenon of being heated to appear, and pot body bottom composite bed is non-deformable after being heated, and overall structure intensity is big, the sexual valence relative altitude.
Of course, the present invention can have other various embodiments, and those skilled in the art can make various corresponding changes and modifications according to the present invention without departing from the spirit and the essence of the present invention, and these corresponding changes and modifications should fall within the protection scope of the appended claims.

Claims (7)

1. A heat-conducting composite layer is characterized by comprising a supporting layer and a heat-conducting layer, wherein the supporting layer comprises a top supporting layer and a bottom supporting layer, the top supporting layer and the bottom supporting layer are respectively provided with a protrusion and/or a recess, a containing cavity is formed between the top supporting layer and the bottom supporting layer, and the heat-conducting layer is filled in the containing cavity.
2. The thermally conductive composite layer as claimed in claim 1, wherein the direction of the protrusions and depressions is the same direction.
3. The thermally conductive composite layer as claimed in claim 1, wherein the direction of the protrusions and depressions is opposite.
4. The thermally conductive composite layer of claim 1, wherein the thermally conductive composite layer has a top reinforcing structure and/or a bottom reinforcing structure.
5. The thermally conductive composite layer of claim 1, wherein the material of the top support layer and/or the bottom support layer is iron, stainless steel, or stainless iron.
6. A pan having a heat-conductive composite layer, characterized in that the pan has the heat-conductive composite layer as set forth in claim 1, the heat-conductive composite layer being provided at a pan bottom.
7. The pan of claim 6, wherein the thermally conductive composite layer extends to a sidewall of the pan.
CN201822114461.8U 2018-12-17 2018-12-17 Heat-conducting composite layer and pot applying same Active CN210138061U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201822114461.8U CN210138061U (en) 2018-12-17 2018-12-17 Heat-conducting composite layer and pot applying same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201822114461.8U CN210138061U (en) 2018-12-17 2018-12-17 Heat-conducting composite layer and pot applying same

Publications (1)

Publication Number Publication Date
CN210138061U true CN210138061U (en) 2020-03-13

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201822114461.8U Active CN210138061U (en) 2018-12-17 2018-12-17 Heat-conducting composite layer and pot applying same

Country Status (1)

Country Link
CN (1) CN210138061U (en)

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