理解蠕变腐蚀场失效

Phillip Isaacs, Jing Zhang, T. Munson
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摘要

枝晶、电化学迁移(ECM)和寄生泄漏通常是由工艺污染引起的。例如,过量的助焊剂,处理不当,多余的焊料,纤维,仅举几例。人们通常不会把这些失败与环境原因联系起来。然而,蠕变腐蚀是电子产品在应用中失败的一种机制,主要与空气中存在的硫污染有关硫与暴露的银发生反应,并在较小程度上与暴露的铜发生反应。本文将探讨蠕变腐蚀化学反应的各个方面:驱动蠕变腐蚀反应的因素是什么?2.为什么干燥产品是在试验中获得蠕变腐蚀的必要前提?2 3 3。硫花、FoS和富硫粘土的试验方法。4.蠕变腐蚀相关领域失效的讨论。5.蠕变腐蚀何时成为ECM ?6.含硫污染源。7.避免蠕变腐蚀的措施。在含硫污染场所,蠕变腐蚀是影响可靠性的一个因素。蠕变腐蚀需要理解和处理。
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Understanding Creep Corrosion Field Fails
Dendrites, Electrochemical Migration (ECM) and parasitic leakage, are usually caused by process related contamination. For example, excess flux, poor handling, extraneous solder, fibers, to name a few. One does not normally relate these fails with environmental causes. However, creep corrosion is a mechanism by which electronic products fail in application, primarily related to sulfur pollution present in the air.1 The sulfur reacts with exposed silver, and to a lesser extent, exposed copper. This paper will explore various aspects of the creep corrosion chemical reaction: 1.What is driving the creep corrosion reaction? 2.Why is drying the product a necessary precursor to obtaining creep corrosion in tests?2, 3 3.Test methods with Flowers of Sulfur, FoS, and sulfur rich clay. 4.Discussion of creep corrosion related field fails. 5.When does creep corrosion become ECM. 6.Sources of sulfur containing pollution. 7.Methods to take to avoid creep corrosion. While there are places with sulfur containing pollution, creep corrosion will be a factor which will impact reliability. Creep corrosion will need to be understood and handled.
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