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Internal Friction Measurements During Stress Induced Martensitic Transformation of Cu Zn Al Shape Memory Single Crystal

机译:应力诱导Cu Zn Al形记忆单晶的应力诱导马氏体变换的内部摩擦测量

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摘要

The shape memory alloys present, in the high temperature phase, a super-elastic behaviour : during a super-elastic test, the martensitic transformation is induced by the stress, and a large reversible deformation is observed. With a single crystal, the maximum superelastic deformation reaches 8 to 10%. During the tensile test on a single crystal, only one variant of martensite is induced in the shape of many parallel needles. Using a specific tensile machine, we have measured the friction due to the movement of the interfaces between the austenite and the martensitic phases. These measurements have been realised during a tensile test on single crystals of CuZnAl. The movement of the interfaces is obtained by a low sinusoidal stress that is superimposed to the tensile stress. Results show that the interfaces are progressively pinned when the super-elastic strain is maintained constant. This pinning disappears when the strain is slightly increased.
机译:存在于高温相位的形状记忆合金,超弹性行为:在超弹性测试期间,由应力诱导马氏体转变,并且观察到大的可逆变形。具有单晶,最大过弹性变形达到8至10%。在单晶的拉伸试验期间,只有许多平行针的形状诱导马氏体的一个变体。使用特定的拉伸机,我们由于奥氏体与马氏体相之间的界面的运动而测量了摩擦。在Cuznal的单晶体上的拉伸试验期间已经实现了这些测量。接口的移动是通过叠加到拉伸应力的低正弦应力而获得的。结果表明,当超弹性应变保持恒定时,界面逐渐钉住。当应变略有增加时,这种固定消失。

著录项

  • 作者

    M. Perez; M. Morin;

  • 作者单位
  • 年度 1996
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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