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Electromagnetic heating device manufacturing method and electromagnetic heating device manufactured by same

The technology of an electromagnetic heating device and manufacturing method is applied in the direction of electric heating device, electric/magnetic/electromagnetic heating, electrical components, etc., which can solve the problems of maintenance amount, large maintenance cost, large difference in vulcanization temperature, and uneven heating of the plate. Achieve the effects of reducing labor intensity, having little impact on ambient temperature, and enhancing competitiveness

Inactive Publication Date: 2012-12-19
王国东
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] At present, the vulcanizers and hot presses commonly used in the product industry are mostly heating plates in the form of electric heating tubes / heat transfer oil / steam. This heating method has the following problems: 1. The thermal efficiency is low. Since the electric heating tube is a resistance The heating method in the form of heat, its heating efficiency itself is low
In addition, due to the complex heat conduction process, the electric heating tube-plate-mold-mold rubber vulcanization, the heat loss is relatively large, the thermal efficiency is only 15-25%, and the energy waste is serious
2. Since the temperature measuring element is close to the heat source (electric heating tube), the temperature measured and controlled is quite different from the vulcanization temperature of the rubber. With the change of the ambient temperature, the temperature error is about 5-20 degrees, which seriously affects The vulcanization quality of the product is improved
3. The electric heating tube is a vulnerable component with a high damage rate
When one or several electric heating tubes are damaged, it is difficult to timely, resulting in uneven heating of the plate, which affects the scrapping of the product
Its maintenance volume and maintenance cost are also relatively large

Method used

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  • Electromagnetic heating device manufacturing method and electromagnetic heating device manufactured by same
  • Electromagnetic heating device manufacturing method and electromagnetic heating device manufactured by same
  • Electromagnetic heating device manufacturing method and electromagnetic heating device manufactured by same

Examples

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Embodiment

[0028] Example: see Figure 1 to Figure 9 , a manufacturing method of an electromagnetic heating device provided by an embodiment of the present invention, which includes the following steps: (1) making a heating body 1; (2) making an electromagnetic coil 2; (3) milling slots: milling out a A housing slot that matches the profile of the electromagnetic coil 2, and the electromagnetic coil 2 is placed in the housing slot; (4) Assembling: making a topological structure in which the power part is connected by copper strips, which can An electromagnetic heating control board for controlling the working state of the electromagnetic coil 2 is connected with the electromagnetic coil 2 to obtain an electromagnetic heating device.

[0029] The heating body 1 includes a metal substrate 11 that is bonded to two metal plates, and the accommodating groove 12 is arranged on the bonding surfaces of the two metal substrates 11; the electromagnetic coil 2 is made of a copper wire according to ...

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Abstract

The invention discloses an electromagnetic heating device manufacturing method and an electromagnetic heating device manufactured by the same. The electromagnetic heating device comprises a heating body, an electromagnetic coil and an electromagnetic heating control board. The electromagnetic heating device manufacturing method is simple in manufacturing procedures, easy to implement and low in cost. The electromagnetic heating device is high in heating efficiency and low in inductance, the coil can contact with the heating body without distance, and inductance can be flexibly adjusted by the aid of a coil adjuster. The electromagnetic heating device can be used for heating non-magnetic stainless steel in specifications 304, 316, 309, GH2132 and the like by matching with the IGBT (insulted gate bipolar transistor), can be widely applied in the fields of press vulcanizer heating plates, hot press heating plates, heating rollers, drying cylinders, 304 / 316 reactors, 304 / 316 reaction tanks, 304 / 316 stainless containers and the like having requirements for heating, and is particularly applicable to heating in heating plates of press vulcanizer heating plates and hot presses.

Description

technical field [0001] The invention relates to the technical field of electromagnetic heating, in particular to a method for manufacturing an electromagnetic heating device and a device thereof. Background technique [0002] The word "vulcanization" has its history. It was named after the initial natural rubber products were cross-linked with sulfur as a cross-linking agent. With the development of the rubber industry, it can now be cross-linked with a variety of non-sulfur cross-linking agents. Therefore, the more scientific meaning of vulcanization should be "cross-linking" or "bridging", that is, the process of forming a network of polymers through cross-linking of linear polymers. In terms of physical properties, it is the process of converting plastic rubber into elastic rubber or hard rubber. The meaning of "vulcanization" includes not only the actual crosslinking process, but also the method of producing the crosslinking. Vulcanization is the last process in rubber...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H05B6/00
Inventor 王国东苏斌
Owner 王国东
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