Ceramic and Conductor Welding Process

A welding process and conductor technology, applied in the field of ceramic and conductor welding process, can solve the problems of insufficient welding strength and welding sealing performance, uneven heating of welding components, poor solder wetting, etc., to ensure mild curing and ensure welding. The effect of strength, improved quality

Inactive Publication Date: 2018-06-01
深圳市品川新能源技术有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] The above two welding processes are severely oxidized during the welding process, the heating process is too rapid, the welding components are heated unevenly, the solder infiltration is not good, the weld seam has more blisters, and the welding strength and welding sealing performance cannot meet the requirements.

Method used

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Embodiment Construction

[0014] The present invention will be further described below by specific examples.

[0015] The present invention relates to a ceramic and conductor welding process, comprising the following steps:

[0016] A. Put ceramics, solder, and conductors into the welding fixture and place them together with the welding machine in a closed welding box;

[0017] B. Pass inert gas into the welding box to keep the pressure in the welding box at 0.15-0.2MPa;

[0018] C. Turn on the welding machine to weld ceramics and conductors in an inert gas atmosphere, and at the same time control the temperature in the welding box to rise linearly to 1200°C, and the heating time is 2.5-3h;

[0019] D. After welding is completed, keep warm for 3.5-5.5 hours;

[0020] E. After the heat preservation is completed, the temperature in the control box drops linearly to room temperature, and the cooling time is 2.5-3 hours.

[0021] Compared with the existing technology, the present invention places the ce...

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PUM

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Abstract

The invention discloses a ceramic and conductor welding process. The ceramic and conductor welding process comprises the following steps of 1, putting ceramic, welding flux and a conductor into a welding clamp, and placing the welding clamp into a closed welding box body; 2, introducing inert gas into the welding box body, and maintaining the pressure inside the welding box body ranging from 0.15 MPa to 0.2 MPa; 3, starting a welding machine to weld the ceramic and the conductor under inert gas atmosphere, and meanwhile controlling the temperature of the welding box body to be linearly raised to 1200 DEG C, wherein the temperature raising time is 2.5-3 hours; 4, after the welding process is completed, preserving the temperature for 3.5-5.5 hours; and 5, after temperature preservation is completed, controlling the temperature inside the box body to be linearly lowered to the normal temperature, wherein the temperature lowering time is 2.5-3 hours. Compared with existing ceramic and conductor welding processes, the ceramic and conductor welding process is free of oxidation; welded components and the welding flux are heated uniformly in the welding process; it is guaranteed that the welding flux is infiltrated in a balanced and good manner; the temperature is lowered slowly, so that it is guaranteed that welding stress is slowly released; and welding quality is guaranteed, mild solidification is achieved, and thus welding quality is improved.

Description

technical field [0001] The invention relates to the field of welding technology, in particular to a ceramic and conductor welding technology. Background technique [0002] At present, the welding process of ceramics and conductors generally adopts high-frequency inverter welding process or infrared reflow welding process. The procedures of the above two welding processes are as follows: [0003] 1. The process of high-frequency inverter welding process is as follows: put ceramics, solder, and conductors into the welding fixture and then weld them with a high-frequency inverter welding machine. After welding, place the welded components in cold water to cool; [0004] 2. The process of the infrared reflow soldering process is as follows: put ceramics, solder, and conductors into the fixture and then weld them through an infrared reflow soldering machine. After the welding is completed, place the welded components at room temperature to cool. [0005] The above two welding pr...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B23K37/00B23K31/02
CPCB23K31/02B23K37/00B23K2103/52
Inventor 邹明
Owner 深圳市品川新能源技术有限公司
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