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Joint formation mechanism and strength in resistance microwelding of 316L stainless steel to Pt wire

机译:316L不锈钢与铂丝电阻微焊的接头形成机理和强度

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摘要

Resistance microwelding of 316L stainless steel to Pt wire has been performed. The interfacial metallurgical phenomena, joint breaking force and fracture mode were investigated using scanning electron microscopy, energy-dispersive X-ray spectroscopy and tensile-shear testing. The results showed that a solid-state bonding was achieved at the interface when the welding current was low and/or the weld time was short, whereas a bonding with fusion of materials was observed at high welding current. Melting of the stainless steel was more significant than that of the Pt wire. The amount of melted materials and bonded area increased with increasing welding current and/or weld time. At a low welding current, e.g., 500 A, all the joints fractured at the interface and the joint breaking force rapidly increased when weld time prolonged from 2 ms to 10 ms owing to increased bonded area. At a medium welding current, e.g., 750 A, the joints demonstrated different fracture mode, e.g., at the interface, a mixed failure at the interface and in the Pt wire as well as completely within the Pt wire, as the weld time increased. On the other hand, at a high welding current, e.g., 1,000 A, the stainless steel was greatly melted and softened into which the Pt wire penetrated and all the joints fractured in the Pt wire. The joint breaking force first increased with increasing weld time and subsequently decreased after reaching a peak value. The effects of materials properties on dissimilar materials resistance welding process were also discussed.
机译:已经对316L不锈钢与Pt线进行了电阻微焊。使用扫描电子显微镜,能量色散X射线光谱和拉伸剪切试验研究了界面冶金现象,接头断裂力和断裂模式。结果表明,当焊接电流低和/或焊接时间短时,在界面处实现了固态结合,而在高焊接电流下观察到了材料融合的结合。不锈钢的熔化比铂丝的熔化更为重要。随着焊接电流和/或焊接时间的增加,熔化材料的数量和结合面积也增加。在较低的焊接电流(例如500 A)下,由于焊接面积的增加,当焊接时间从2 ms延长到10 ms时,所有接头均在界面处断裂,接头断裂力迅速增加。在中等焊接电流(例如750 A)下,接头表现出不同的断裂模式,例如在界面处,随着焊接时间的增加,在界面处和Pt焊丝中以及在Pt焊丝中完全发生混合破坏。另一方面,在例如1,000A的高焊接电流下,不锈钢被极大地熔化和软化,Pt丝渗透到其中并且Pt丝中的所有接头断裂。接头断裂力首先随着焊接时间的增加而增加,然后在达到峰值后减小。还讨论了材料性能对异种材料电阻焊工艺的影响。

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  • 来源
    《Journal of Materials Science》 |2007年第14期|5756-5765|共10页
  • 作者

    Zheng Chen;

  • 作者单位

    Department of Materials Science and Engineering Jiangsu University of Science and Technology Zhenjiang 212003 P.R. China;

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  • 原文格式 PDF
  • 正文语种 eng
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