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首页> 外文期刊>Journal of Failure Analysis and Prevention >Tin Pest: Elusive Threat in Lead-Free Soldering?
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Tin Pest: Elusive Threat in Lead-Free Soldering?

机译:锡害虫:无铅焊接中难以捉摸的威胁?

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摘要

Tin pest is the result of an allotropic transformation of tin from its β phase to its α phase at temperatures below 13℃. This transformation is accompanied by a change in density from 7.31 to 5.77 g/cm~3. The resulting expansion usually results in degradation of the affected part, as the α phase material is mechanically weak and over time becomes little more than a gray powder. The tin pest effect is cumulative unless the sample in question is exposed to temperatures above 70℃ or so, where some reversion back to white tin has been observed. However, by this point a tin sample's physical integrity may have been destroyed by the partial β to α transformation. The transformation to α tin is inhibited strongly by soluble alloying elements such as bismuth and antimony at concentrations of about 0.5%, or lead at concentrations of about 5%. Hence, tin pest is generally observed only in quite pure tin. However, nearly pure tin alloys may become common. For example, the advent of the European Union's RoHS law, which essentially eliminates lead from solder, has spawned lead-free alloys that can be almost pure tin and may be at risk of tin pest. This risk has caused some concern over the long-term stability of emergent, lead-free solders during low temperature service. This overview article is written in light of this concern.
机译:锡害虫是锡在低于13℃的温度下从β相转变为α相的结果。这种转变伴随着密度从7.31变化到5.77 g / cm〜3。所产生的膨胀通常会导致受影响部位的降解,因为α相材料的机械强度较弱,并且随着时间的流逝仅比灰色粉末多一点。除非所涉及的样品暴露于70℃左右的温度下,否则锡害虫效应是累积性的,在该温度下已观察到一些还原为白锡的现象。但是,此时,锡样品的物理完整性可能已被部分β转化为α破坏。可溶性合金元素(例如浓度约0.5%的铋和锑或浓度约5%的铅)强烈抑制了向α锡的转化。因此,通常仅在纯锡中观察到锡害虫。但是,几乎纯锡合金可能会变得很普遍。例如,欧盟从根本上消除了焊料中铅的RoHS法的出现,催生了几乎是纯锡的无铅合金,并可能有锡害的风险。这种风险引起了人们对低温使用期间出现的无铅焊料的长期稳定性的担忧。鉴于此问题,写这篇概述文章。

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