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Disturbed state concept based constitutive modeling for reliability analysis of lead free solders in electronic packaging and for prediction of glacial motion.

机译:基于扰动状态概念的本构模型,用于电子包装中无铅焊料的可靠性分析以及冰川运动的预测。

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摘要

The disturbed state concept (DSC) based constitutive model is the focus of this research. It is applied for characterizing two problems; thermomechanical reliability analysis of electronic packages, and prediction of glacial motion. A new procedure for construction of static yield surface for materials is proposed. Further, a modified DSC model to include effect of rate of loading on material behavior is proposed.;The DSC is applied to characterize the behavior of Sn-3.9Ag-0.6Cu (SAC) lead free solder alloy used in electronic packages. Proposed procedure of construction of static curve and rate dependent DSC model is applied for prediction of creep and rate dependent behavior of the SAC alloy. Laboratory test data is adopted from the literature and material parameters are determined. The DSC model is validated using the derived material parameters. A finite element analysis of the BGA 225 package is performed under cyclic thermomechanical loading. Analysis results are compared with available test data. A failure criterion for prediction of number of cycles to failure for BGA 225 is then derived.;The second application of DSC discussed in this work is prediction of glacial motion. Mechanical behavior of glacial till and its contribution to overall ice movement is characterized using DSC. Two regionally significant tills are chosen and samples are collected from field. A series of laboratory tests are conducted on samples. Tests results are used for model calibration and validation. A numerical simulation of an idealized ice - till system under gravity loading is performed. Two such analyses are performed with DSC and Mohr Coulomb models and the results are compared.;The DSC predicts failure when a significant portion of the material reaches a critical disturbance whereas the Mohr Coulomb model predicts failure based on peak stress. DSC predicts a gradual progression to failure whereas the Mohr Coulomb model predicts early catastrophic failure. According to DSC, the material undergoes considerable plastic strains before it reaches failure whereas the Mohr Coulomb predicts failure at very low elastic strains. In general the DSC is considered to provide a more realistic and general constitutive model for glacial tills.
机译:基于扰动状态概念(DSC)的本构模型是本研究的重点。它用于表征两个问题。电子包装的热机械可靠性分析以及冰川运动的预测。提出了一种构造材料静态屈服面的新方法。此外,提出了一种改进的DSC模型,该模型包括了加载速率对材料行为的影响。; DSC用于表征电子封装中使用的Sn-3.9Ag-0.6Cu(SAC)无铅焊料合金的行为。将拟定的静态曲线和速率相关的DSC模型的构建过程用于预测SAC合金的蠕变和速率相关的行为。从文献中采用实验室测试数据并确定材料参数。使用导出的材料参数验证DSC模型。 BGA 225封装的有限元分析是在循环热机械载荷下进行的。将分析结果与可用的测试数据进行比较。然后,推导了用于预测BGA 225失效循环数的失效准则。该工作中讨论的DSC的第二个应用是冰川运动的预测。使用DSC可以表征冰川耕层的机械行为及其对整体冰运动的贡献。选择两个区域性重要耕作,并从田间收集样品。对样品进行了一系列的实验室测试。测试结果用于模型校准和验证。对重力作用下理想化的冰柜系统进行了数值模拟。使用DSC和Mohr Coulomb模型进行了两次这样的分析,并将结果进行了比较。当材料的很大一部分达到临界扰动时,DSC预测失败,而Mohr Coulomb模型则根据峰值应力预测失败。 DSC预测将逐步发展为失败,而Mohr Coulomb模型则预测为早期灾难性失败。根据DSC,材料在达到破坏之前会经历相当大的塑性应变,而Mohr Coulomb则预测在非常低的弹性应变下会发生破坏。总的来说,DSC被认为为冰川耕作提供了更现实,更通用的本构模型。

著录项

  • 作者

    Sane, Shantanu Madhavrao.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Engineering Civil.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 175 p.
  • 总页数 175
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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