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Influence of inelastic phenomena on the actuation characteristics of high temperature shape memory alloys.

机译:非弹性现象对高温形状记忆合金致动特性的影响。

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摘要

Most efforts on High Temperature Shape Memory Alloys (HTSMAs), have focused on improving their work characteristics by thermomechanical treatment methods. However, the influence of transformation induced plasticity (TRIP) and viscoplasticity during actuation has not been studied. The objective of this dissertation work was to study the influence of plasticity and viscoplasticity on the transformation characteristics that occur during two common actuation-loading paths in TiPdNi HTSMAs. Thermomechanical tests were conducted along different loading paths. The changes in the transformation temperature, actuation strain and irrecoverable strain during the tests were monitored. Transmission Electron Microscopy (TEM) studies were also conducted on select test specimens to understand the underlying microstructural changes.;The study revealed that plasticity, which occurs during certain actuation load paths, alters the transformation temperatures and/or the actuation strain depending on the loading path chosen. The increase in the transformation temperature and the irrecoverable strain at the end of the loading path indicated that the rate independent irrecoverable strain results in the generation of localized internal stresses. The increased transformation temperatures were mapped with an equivalent stress (which corresponds to an internal stress) using the as-received material's transformation phase diagram. A trend for the equivalent internal stress as a function of the applied stress and accumulated plastic strain was established. Such a function can be implemented into thermomechanical models to more accurately capture the behavior of HTSMAs during cyclic actuation.;On the contrary, although the viscoplastic strain generated during the course of constant stress thermal actuation could significantly reduce actuation strain depending on the heating/cooling rate. Additional thermomechanical and microstructural tests revealed no significant change in the transformation behavior after creep tests on HTSMAs. Comparing the thermomechanical test results and TEM micrographs from different cases, it was concluded that creep does not alter the transformation behavior in the HTSMAs, and any change in the transformation behavior can be attributed to the retained martensite which together with TRIP contributes to the rate independent irrecoverable strain. As a consequence, a decrease in the volume fraction of the martensite contributing towards the transformation must be considered in the modeling.
机译:高温形状记忆合金(HTSMAs)的大多数努力都集中在通过热机械处理方法改善其工作特性上。然而,尚未研究致动过程中相变诱导可塑性(TRIP)和粘塑性的影响。本文的目的是研究可塑性和粘塑性对TiPdNi HTSMAs两种常见驱动加载路径中发生的转变特性的影响。沿不同的加载路径进行了热力学测试。监测测试期间转变温度,致动应变和不可恢复应变的变化。还对选定的试样进行了透射电子显微镜(TEM)研究,以了解潜在的微观结构变化;该研究表明,在某些驱动载荷路径期间发生的可塑性会根据载荷改变转变温度和/或驱动应变。选择的路径。加载路径末端的转变温度和不可恢复应变的增加表明速率无关的不可恢复应变导致局部内应力的产生。使用接收到的材料的相变相图,以相等的应力(对应于内部应力)映射增加的相变温度。建立了等效内应力随外加应力和累积塑性应变变化的趋势。可以在热机械模型中实现此功能,以更精确地捕获循环驱动过程中HTSMA的行为。相反,尽管在恒定应力热驱动过程中产生的粘塑性应变可以根据加热/冷却显着降低驱动应变。率。额外的热力学和微观结构测试显示,在HTSMAs进行蠕变测试后,转变行为没有明显变化。比较不同情况下的热力学测试结果和TEM显微照片,可以得出结论,蠕变不会改变HTSMAs的转变行为,转变行为的任何变化都可以归因于残余马氏体,而TRIP则与速率无关。不可恢复的应变。结果,在建模中必须考虑马氏体有助于相变的体积分数的减少。

著录项

  • 作者

    Kumar, Parikshith K.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Aerospace.;Engineering Materials Science.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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