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Predicting the Positive Effects of Combined Metallurgical and Thermo-Mechanical Impacts on the Reliability of Solder Joint Interconnections

机译:预测冶金和热机械影响组合对焊接关节互连可靠性的积极影响

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Generally speaking, solder joints fail due to both fatigue and creep. Therefore both mechanisms are strongly considered by designers and manufacturers as an important design criteria. However, since most designers take parameters individually, their designs are considered as an over design. The parameters considered in this study, which have a direct influence on fatigue life and creep individually, are grain direction, grain size, temperature, and yield strength. Obviously, most of these parameters have opposite dual effects on both the fatigue and creep mechanism. In other words, each parameter might have a positive effect on fatigue but also a negative effect on creep and vice versa. For this purpose, this study uses the metallurgical assumptions, and stress analysis theories, on the data present in literatures in order to characterise and determine the significance degree of each parameter, and also determine the overall effect on the solder life. This study recommends focusing on the combinability of the parameters that have significant effects on solder joints reliability in electronic interconnection, recognising the positive effects, and using them on the overall solder life. Such potential approach may assist in reducing the size and cost.
机译:一般而言,由于疲劳和蠕变,焊点失效。因此,设计师和制造商都认为这两个机制都是重要的设计标准。但是,由于大多数设计人员单独使用参数,因此它们的设计被视为过度设计。本研究中考虑的参数,其对疲劳寿命和单独蠕变的直接影响,是晶粒方向,粒度,温度和屈服强度。显然,这些参数中的大部分对疲劳和蠕变机构的双重作用相反。换句话说,每个参数可能对疲劳产生积极影响,也可能对蠕变产生负面影响,反之亦然。为此目的,本研究使用冶金假设和应力分析理论,并在文献中存在的数据,以便表征和确定每个参数的显着性程度,并且还确定对焊料寿命的整体影响。本研究建议重点关注对电子互连的焊点可靠性具有显着影响的参数的可组织性,识别积极影响,并在整体焊接寿命上使用它们。这种潜在方法可以帮助降低尺寸和成本。

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