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首页> 外文期刊>Journal of Electronic Materials >Experimental Approach to Determine Damage Curves for SnAgCu Solder Under Sequential Cyclic Loads
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Experimental Approach to Determine Damage Curves for SnAgCu Solder Under Sequential Cyclic Loads

机译:序贯循环载荷下脊柱焊料损伤曲线的实验方法

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摘要

Miner's rule assumes that damage in solder interconnects accumulates linearly under cyclic loading and is independent of the load sequence. Under these constraints, damage is equivalent to cycle ratio, defined as the ratio of the applied cycles to the cycles to failure for the specific cyclic loading condition. Due to these inherent assumptions, Miner's rule can inaccurately estimate solder interconnect life under sequential loading conditions. A nonlinear damage model with load-dependent damage exponents would take into account the effect of loading sequence under sequential loading conditions. In the nonlinear damage model, damage is related to cycle ratio using a power law relationship with a load-dependent damage exponent. This paper presents an experimental approach to determine the load-dependent exponents under three load levels. Load drop in the specimens, as a result of cyclic loading induced changes, is used as the criterion for the damage state. The tests consisted of a series of constant amplitude (standalone) and blocks of sequential variable amplitude cyclic shear tests in a thermo-mechanical micro-scale analyzer. The load-dependent damage exponents were developed for SAC305 (96.5%Sn + 3.0%Ag + 0.5Cu) solder. The result of the study can be used for SAC305 damage accumulation model formulation. Further, the experimental approach can be used to generate additional fatigue data under variable amplitude loads.
机译:矿工的规则假定在焊料互连损坏循环荷载下线性积累,并且独立于负载序列。在这些约束下,损坏相当于周期比率,其定义为所施加的周期到周期失败的比率为特定的循环加载条件。由于这些固有的假设,矿工的规则可以估算不准确顺序装载条件下焊接互连生活。与负荷有关的损害指数的非线性损伤模型将考虑到装载顺序的顺序装载条件下的效果。在非线性损伤模型,损伤是使用与负载有关的损害指数幂定律关系有关周期比率。本文提出了一种实验方法来确定下三个负载水平与负载相关的指数。在试样载荷下降,随着循环载荷引起的变化的结果,被用作标准的损害状态。这些测试包括一系列恒定幅度(独立)和振幅在热机械微尺度分析器循环剪切试验连续可变的块组成。依赖于负载的损害指数是为SAC305(96.5%的Sn + 3.0%的Ag + 0.5Cu的)焊料显影。该研究的结果可用于SAC305累积损伤模型的制剂。此外,实验方法可用于生成可变振幅载荷下附加疲劳数据。

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