首页> 外文期刊>Journal of Laser Applications >Investigation of weld cracking in Nd:yttrium-aluminum-garnet keyhole spot welding of materials used in optoelectronic packaging
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Investigation of weld cracking in Nd:yttrium-aluminum-garnet keyhole spot welding of materials used in optoelectronic packaging

机译:Nd:钇铝石榴石钥匙孔点焊光电封装材料中焊缝开裂的研究

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摘要

The welding of a problematic optical device weld joint between dissimilar materials is investigated in depth. The original material combination of cold rolled steel 1010 with 6 μm of gold coating and 304 L produced consistent weld cracking. The CRS1010 material was fixed, however the other component was open to material selection. The materials tested were 304 L stainless steel, kovar, invar, and Carpenter high permeability 49 alloy. The effect of these different materials, laser pulse parameters, level of weld constraint, and thickness of gold plating on the CRS component are investigated to determine the key crack initiator. The results indicated that gold thickness is the key factor in the cracking mechanism, however weld volume and the level of weld constraint are also significant, with material selection a secondary factor. The use of pulse shaping had no effect on alleviating or reducing the extent of cracking.
机译:深入研究了异种材料之间有问题的光学设备焊接接头的焊接。冷轧钢1010的原始材料组合具有6μm的金涂层和304 L产生一致的焊接裂纹。 CRS1010材料是固定的,但是其他组件可以选择材料。测试的材料为304 L不锈钢,可伐合金,殷钢和Carpenter高渗透性49合金。研究了这些不同材料,激光脉冲参数,焊接约束水平和镀金厚度对CRS组件的影响,以确定关键的裂纹引发剂。结果表明,金的厚度是开裂机理的关键因素,但是焊缝数量和焊缝约束水平也很重要,而材料选择是次要因素。脉冲整形的使用对减轻或减小裂纹的程度没有影响。

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