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Infrared heating device and electric heating appliance

A technology of infrared heating and infrared heating film, which is applied in the field of infrared heating devices and electric heating appliances, can solve the problems of uneven heating and heating carriers that cannot meet the conditions of use, and achieve consistent heating power, equal resistivity, and consistent resistivity Effect

Inactive Publication Date: 2016-10-05
FOSHAN SHUNDE MIDEA ELECTRICAL HEATING APPLIANCES MFG CO LTD +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, in actual use, the square heating carrier sometimes cannot meet the requirements of the use conditions, so an infrared heating plate with an irregular square plane (such as: special shape) is required to meet the use conditions
However, taking a disc-shaped heating plate as an example, the resistivity between the center of the circle and the outer side is inconsistent, which will cause the current to pass through the shortest path close to the center of the circle, so that the temperature of the center of the heating plate will be much higher than the temperature of the edge of the plate, resulting in uneven heating , and other problems arise

Method used

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  • Infrared heating device and electric heating appliance
  • Infrared heating device and electric heating appliance
  • Infrared heating device and electric heating appliance

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0049] Such as Figure 2a and Figure 2b As shown, the surface of the infrared heating film layer 3 is a slope.

[0050] The surface of the infrared heating film layer is inclined, and the thickness of the infrared heating film layer increases from the center of the insulating carrier to the edge of the insulating carrier successively. This method increases the thickness of the infrared heating film layer near the edge of the insulating carrier. The cross-sectional area of ​​the longitudinal section keeps the ratio of the length of the infrared heating film to the cross-sectional area equal at the center of the insulating carrier and the edge of the insulating carrier, thereby ensuring that the ratio of the length of the infrared heating film to the cross-sectional area is constant everywhere Keep equal, so that the resistivity of the infrared heating film is basically unchanged. This design ensures that the resistivity of the infrared heating film between the two electrodes ...

Embodiment 2

[0052] Such as Figure 3a and Figure 3b As shown, the surface of the infrared heating film layer 3 is a stepped surface.

[0053] The surface of the infrared heating film layer is a stepped surface, and the thickness of the infrared heating film layer increases sequentially from the center of the insulating carrier to the edge of the insulating carrier. In this way, the infrared heating film layer near the edge of the insulating carrier is enlarged. The cross-sectional area is also conducive to ensuring that the heating power of the infrared heating device is consistent everywhere. Moreover, compared with processing the surface of the infrared heating film layer into an inclined plane, using the stepped surface instead of the inclined plane can reduce the difficulty of the process.

[0054] In one embodiment of the present invention, as figure 1 As shown, the insulating carrier 1 is circular, the cross-section of the infrared heating film layer 3 is ring-shaped, and the in...

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Abstract

The invention provides an infrared heating device and an electric heating appliance. The infrared heating device comprises an insulating carrier, two electrodes and an infrared heating film, wherein the two electrodes are both arranged in a radial direction of the insulating carrier; and the infrared heating film is attached to the insulating carrier and arranged along a circumferential direction of the insulating carrier, and the infrared heating film is contacted with the two electrodes. The thickness of the part, which approaches to the center of the insulating carrier, of the infrared heating film is less than the thickness of the part, which approaches to the edge, of the infrared heating film, so that for the per unit length, the ratio of the sectional area of the longitudinal section of the infrared heating film to the length of the infrared heating film of the unit length is kept unchanged along the radial direction of the insulating carrier. According to the technical scheme provided by the invention, the resistivity of the infrared heating film between the two electrodes is ensured to be consistent, and thus the heating power of each part of the infrared heating device is ensured to be consistent.

Description

technical field [0001] The invention relates to the field of household appliances, and more specifically, to an infrared heating device and an electric heating appliance. Background technique [0002] The current well-known spraying technology is to make parallel electrodes on a regular square heating carrier plane, so as to ensure that the resistivity of the conductive area between the parallel electrodes is consistent, and then the heating power is consistent. However, in actual use, the square heating carrier sometimes cannot meet the requirements of the use conditions, so an infrared heating plate with an irregular square plane (such as: irregular shape) is required to meet the use conditions. However, taking a disc-shaped heating plate as an example, the resistivity between the center of the circle and the outer side is inconsistent, which will cause the current to pass through the shortest path close to the center of the circle, so that the temperature of the center of...

Claims

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Application Information

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IPC IPC(8): H05B3/20H05B3/10H05B3/02
Inventor 房振尹善章张建亮王新元张贵林
Owner FOSHAN SHUNDE MIDEA ELECTRICAL HEATING APPLIANCES MFG CO LTD
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