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Fatigue life estimation of SAC solder based on inelastic strain analysis using stepped ramp wave loading

机译:基于阶跃斜波加载的非弹性应变分析估算SAC焊料的疲劳寿命

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The fatigue life of solder alloys for the slow-fast cyclic loading condition is much shorter than that for the fast-slow cyclic loading condition, despite the two loading conditions having almost the same inelastic strain amplitudes. This means that the inelastic strain amplitude is not the best parameter used for estimating the fatigue life which shows the strain rate dependency. Then, the authors have previously proposed a fatigue life estimation method for Sn-3.0Ag-0.5Cu (SAC) solder using the creep strain amplitude obtained from the inelastic strain analysis using the stepped ramp wave (SW) loading. In this study, the fatigue tests for SAC solder under 16 loading conditions at RT and the SEM observations for the fatigue failure surfaces were conducted to give experimental supports to both the strain analysis method and the life estimation method. The inelastic strain analyses for all the tests showed that the analysis results were well correlated with the aspects of the fracture surfaces, and that the creep strain amplitudes obtained from the inelastic strain analysis were highly correlated with the strain-rate-dependent fatigue lives of SAC solder at RT. Also it was found that the relational expression between the creep strain amplitude and the fatigue life formulated at RT could be used for estimating the fatigue lives at 398 K.
机译:尽管两种加载条件具有几乎相同的非弹性应变幅度,但慢速-快速循环加载条件下的焊料合金的疲劳寿命比快-慢循环加载条件下的疲劳寿命短得多。这意味着非弹性应变幅度不是用于估计疲劳寿命的最佳参数,该参数显示出应变率的依赖性。然后,作者先前已经提出了一种Sn-3.0Ag-0.5Cu(SAC)焊料的疲劳寿命估计方法,该方法使用从使用阶梯式斜波(SW)载荷进行的非弹性应变分析获得的蠕变应变幅度。在这项研究中,在室温下16种载荷条件下SAC焊料的疲劳测试以及疲劳破坏表面的SEM观察都为应变分析方法和寿命估算方法提供了实验依据。所有测试的非弹性应变分析表明,分析结果与断裂表面的相关性很好,并且从非弹性应变分析获得的蠕变应变幅度与SAC的应变率相关疲劳寿命高度相关。在室温下焊接。还发现,蠕变应变幅值与在RT下制定的疲劳寿命之间的关系表达式可用于估算398 K下的疲劳寿命。

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