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Process Parameters in Resistance Projection Welding for Optical Transmission Device Package

机译:光传输设备封装电阻投影焊接工艺参数

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The effects of main process parameters and electrode materials on joint quality (charging voltage and operating force) were investigated using detailed metallurgical examination and the helium leak test. The electrode materials used for resistance projection welding were brass and Cr-Cu alloy. The TO-Can components (cap and header) were nickel-coated SPCC steel. The results indicated that when the operating pressure increased, the electrode displacement increased, causing expulsion and distortion of the welds. The nugget area increased with the increase of charging voltage; however, it decreased with the increase of operating pressure. Results from the optical microscopy analysis showed that a larger acceptable welding range was achieved by using Cr-Cu electrodes. TO-Can in the acceptable and expulsion range successfully passed the helium leak rate of less than 5 × 10−8 mbar L/s. For commercial purposes, where dimensions have to be exact and without deformation, the TO-Can components produced in the expulsion zone cannot be used.
机译:使用详细的冶金学检查和氦气泄漏测试,研究了主要工艺参数和电极材料对接头质量(充电电压和操作力)的影响。用于电阻凸焊的电极材料是黄铜和Cr-Cu合金。 TO-Can组件(盖和集管)是镀镍SPCC钢。结果表明,当工作压力增加时,电极位移增加,从而导致焊缝开裂和变形。熔核面积随着充电电压的增加而增加;但是,随着工作压力的增加,压力下降了。光学显微镜分析的结果表明,使用Cr-Cu电极可获得较大的可接受的焊接范围。在可接受和排出范围内的TO-Can成功通过了小于5×10 -8 mbar L / s的氦气泄漏速率。出于商业目的,在尺寸必须精确且无变形的情况下,不能使用在排放区中生产的TO-Can组件。

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