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Impact of Lead Contamination on Reliability of Lead Free Alloys

机译:铅污染对无铅合金可靠性的影响

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Meeting the RoHS directive will require the transition from the historical tin-lead based system of materials to one that does not contain lead. This is of course is not straight forward as it is impossible to control 100% component material compositions. It is therefore entirely possible that components with lead finishes will find their way into Lead Free processes. The concern is that lead contamination occurring in this way results in 1 to 10% level of lead, and that this lead is not uniformly distributed, but segregates to the grain boundaries and joint interfaces. But what is the effect of this on thermal fatigue. The work reported here will describe experiments where the lead level in solder joints was controlled by altering the plating on component terminations and using controlled solder compositions. Microstructural examination verifies the segregation of lead. The built assemblies were then thermally cycled between -55 and 125℃ for 2000 cycles to assess this effect on reliability. Hot peel tests were also run to simulate problems that may occur is secondary wave operations where the fillet strength collapses and components can detach with little force at temperatures above 180℃. The use of indicator test kits to detect lead were also evaluated on this set of reference samples. This paper will discuss these results and the likely impact on the industry and the necessary precautions.
机译:要满足RoHS指令,就需要从基于锡铅的历史材料系统过渡到不含铅的材料。当然这不是直截了当的,因为不可能控制100%成分的材料成分。因此,完全有可能使用含铅涂层的组件进入无铅工艺。令人担心的是,以这种方式发生的铅污染导致铅含量达到1%到10%,并且铅的分布不均匀,但偏析到晶粒边界和接头界面。但是,这对热疲劳有什么影响。这里报道的工作将描述实验,其中焊点中的铅含量是通过改变组件端子上的镀层并使用受控的焊料成分来控制的。显微组织检查可验证铅的偏析。然后将组装好的组件在-55至125℃之间进行热循环2000次循环,以评估这种对可靠性的影响。还进行了热剥离测试,以模拟可能在二次波操作中出现的问题,在二次波操作中,在180℃以上的温度下,圆角强度会下降,并且部件在很小的力作用下便会分离。在这套参考样品上还评估了使用指示剂检测试剂盒检测铅的方法。本文将讨论这些结果以及对行业的可能影响和必要的预防措施。

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