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Pseudoelasticity and shape memory effect in single crystal iron aluminide.

机译:单晶铝化铁中的伪弹性和形状记忆效应。

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摘要

Fe3Al is an intermetallic compound which has shown some excellent engineering properties and has been widely studied for this reason. It also shows interesting mechanical phenomenon like yield stress anomaly and pseudoelasticity. Mechanical behavior and diffraction studies on the pseudoelastic aspect of Fe3Al have been presented in this work.; Single crystalline, D03 ordered Fe3 Al is known to show pseudoelastic behavior at room temperature. Pseudoelastic behavior was seen in both tension and compression with a distinct tension-compression asymmetry. No strain hardening occurred under tension even at high applied strains as opposed to compression, where the alloy strain hardened continuously. In-situ observations on the surface revealed reversible features indicating activity on the (211) planes.; The tensile stress-strain curve shows notable changes with varying temperature. At very low temperatures (∼100 K) shape memory effect is seen for small amounts (∼3% in compression) of applied strain. At high temperatures (∼393 K) pseudoelasticity is lost and plasticity commences. Between these two extremes, the reverse stress (stress during strain recovery) follows the Clausius-Clayperon type relationship with temperature but the forward stress remains unchanged.; In-situ Neutron Diffraction experiments in both tension and compression show large reversible changes in the diffraction pattern upon loading. Intensities and position of various peaks changed reversibly by large amounts during the load-unload cycle. All changes in the diffraction pattern revert back close to the original pattern upon unloading. These changes are closely correlated to the load-unload stress-strain curve. These large changes in the diffraction pattern point towards major structural changes inside the crystal and cannot be explained by elastic effects alone.; Closer inspection revealed the appearance of new peaks and satellite reflections on loading, which disappeared upon unloading. Diffraction experiments point towards a phase transformation which might be responsible for the pseudoelastic behavior in Fe3Al.
机译:Fe3Al是一种金属间化合物,已显示出出色的工程性能,因此已被广泛研究。它还显示出有趣的机械现象,例如屈服应力异常和拟弹性。在这项工作中已经提出了关于Fe3Al的准弹性方面的力学行为和衍射研究。已知D03有序的Fe3 Al单晶在室温下表现出拟弹性行为。在拉伸和压缩中都可以看到伪弹性行为,具有明显的拉伸-压缩不对称性。与压缩相反,即使在较高的施加应变下,合金应变也持续硬化,即使在高施加应变下,也不会发生应变硬化。表面上的原位观察表明,可逆特征表明在(211)平面上的活动。拉伸应力-应变曲线显示出随温度变化的显着变化。在非常低的温度(约100 K)下,对于少量(约3%压缩)所施加的应变,可以看到形状记忆效应。在高温(约393 K)下,失去了假弹性,开始出现可塑性。在这两个极端之间,反向应力(应变恢复过程中的应力)遵循温度与克劳修斯-克莱珀隆类型的关系,但正向应力保持不变。在拉伸和压缩状态下的原位中子衍射实验均显示,加载后衍射图谱具有可逆的大变化。在装卸过程中,各个峰的强度和位置发生可逆的大量变化。卸载后,衍射图样的所有变化都恢复为接近原始图样。这些变化与加载-卸载应力-应变曲线密切相关。衍射图样的这些大变化指向晶体内部的主要结构变化,不能仅通过弹性效应来解释。仔细检查发现,在装载时出现了新的峰值和卫星反射,这些现象在卸载时消失了。衍射实验指向可能导致Fe3Al中伪弹性行为的相变。

著录项

  • 作者

    Kabra, Saurabh.;

  • 作者单位

    The University of Tennessee.;

  • 授予单位 The University of Tennessee.;
  • 学科 Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 120 p.
  • 总页数 120
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 工程材料学;
  • 关键词

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