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Electrode structure of ceramic electric heating unit and its forming method

A ceramic resistance, electric heating technology, applied in ohmic resistance electrodes, heating elements, ohmic resistance heating parts and other directions, can solve problems such as loss of insulation

Inactive Publication Date: 2007-04-11
巫嘉雄
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  • Summary
  • Abstract
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  • Application Information

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Problems solved by technology

[0005] Furthermore, since the thermal deformation (coefficient) of the material is different between the ceramic resistance sheet 1, the conductive metal sheet 2, and the heat conduction box 3, different expansion displacements are produced due to thermal effects, and the combined There will be a mutual differential pulling action between the mechanical forces, especially if the thermal deformation between the conductive metal sheet 2 and the heat conduction box 3 is obviously different, the relative displacement is relatively unequal and the displacement will occur The drop value will form a split phenomenon, and the insulating film 4 that is clamped will be torn. After the insulating film 4 is torn, it will lose its insulating effect.

Method used

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  • Electrode structure of ceramic electric heating unit and its forming method
  • Electrode structure of ceramic electric heating unit and its forming method
  • Electrode structure of ceramic electric heating unit and its forming method

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Embodiment Construction

[0044] For a detailed description of the present invention, first please refer to Fig. 3. Fig. 3 is a three-dimensional schematic diagram of the first implementation of the present invention. Conductive coatings 11, 12, relative to the facing direction of conductive coatings 11, 12, two indirect plates 5 are attached to each other. The indirect plates 5 are made of insulating and heat-conducting materials. The dielectric layer 51, the dielectric layer 51 is extended to one end of the indirect plate 5 to connect the conductive terminals 21, 22, and after the combination of the opposite pressure bonding, the aforementioned dielectric layer 51 is in contact with the conductive coating 11, 12, and the aforementioned combination is defined The body is an electric heating unit 10. The conductive terminals 21 and 22 conduct electricity and flow through the resistor sheet 1, so that it undergoes electrothermal conversion to generate heat energy. The heat energy is basically generated b...

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Abstract

This invention relates to an electrode structure of a ceramic electric-heating unit and its shaping method, especially to an electrode structure used in the connection of resistance sheets with the positive temperature coefficient resistance sheets as the heating source and its structure method used in the electric conduction face of the ceramic resistance sheets, which combines with an insulation heat-conduction indirect plate with an equal thermal deformation volume to that of the ceramic resistance plate, the indirect plate has a dielectric layer with one end extending to connect with a conduction terminal to conduct the power, which passes through the resistance plate via the dielectric layer to make the plate to work with heat.

Description

【Technical field】 [0001] The invention relates to an electrode structure and its forming method of a ceramic electric heating unit, especially the electrode structure and its forming method applied to a positive temperature coefficient ceramic heating resistor to form an electrical connection. 【Background technique】 [0002] Regarding the thermal unit with positive temperature coefficient ceramic resistor as the heat source, due to the constant temperature effect of the ceramic chip and the non-open flame working state during thermal operation, it is suitable for safety requirements and is widely used as a thermal unit for heating. [0003] For the general design, please refer to Figure 1. The electric heating unit 10 used in the past is mainly composed of a positive temperature coefficient ceramic resistance sheet 1, and an electrical conduction surface 100 is formed on its surface, and the conduction surface 100 is opposite to each other by coating. Conductive coatings 11 ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H05B3/03H05B3/06
Inventor 巫嘉雄
Owner 巫嘉雄
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