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首页> 外文期刊>Journal of Electronic Materials >Reliability issues in plated-through-holes due to insertion-mount compliant-pin connectors
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Reliability issues in plated-through-holes due to insertion-mount compliant-pin connectors

机译:由于插入安装的顺应针连接器而导致的镀通孔的可靠性问题

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Stresses arising in plated through holes (PTHs) and surrounding printed wiring board (PWB) substrates due to pin forces of insertion-mount compliant-pin connectors are modeled analytically. The analytical model is based on separation of variabletechniques using Fourier series representation of the pin loads, and will be calibrated in the future using both experimental measurements as well as numerical finite element results. Linear and nonlinear results are presented in this paper, to predictdeformation and stresses in the assembly. Incremental load-stepping methods are used, to handle nonlinear material properties such as elastic-plastic behavior of copper and post-damage behavior of the PWB substrate. The nonlinearity of the materials ismodeled with a simplified bilinear stress-strain curve. The goal is to develop mechanistic predictive models for PTH behavior under insertion forces of compliant pins, to reduce the need for highly repetitive and costly failure analysis for damageevaluation, resulting in significant cost savings to the industry as a whole.
机译:分析性地模拟了由于插入式顺应针式连接器的针力而在镀通孔(PTH)和周围的印刷线路板(PWB)基板中产生的应力。该分析模型基于使用销钉载荷的傅立叶级数表示法对变量技术进行的分离,并将在将来使用实验测量值和数值有限元结果进行校准。本文给出了线性和非线性结果,以预测装配中的变形和应力。使用增量负载步进方法来处理非线性材料属性,例如铜的弹塑性行为和PWB基板的损坏后行为。用简化的双线性应力-应变曲线对材料的非线性进行建模。目标是针对顺应针插入力作用下的PTH行为开发机械的预测模型,以减少对损坏评估进行高度重复且成本高昂的故障分析的需要,从而为整个行业节省大量成本。

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