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Structural-Scale Levels of Development of Inelastic Martensitic Deformation during Isothermal Loading of Submicrocrystalline Titanium Nickelide in Premartensitic Condition

机译:在最裂化条件下亚晶钛镍含量的等温载量期间无弹性马氏体变形的结构规模水平

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The results are presented of an experimental investigation into the regularities and mechanisms of the development of thermoelastic martensitic transformation in submicrocrystalline alloy Ti_(49.4)Ni_(50.6) with different ways of thermo-power actions using the methods of optical microscopy in situ and X-ray diffraction. The peculiarities of localization of martensite transformation at the meso- and macroscale levels in this alloy with submicrocrystalline structure are considered. Experimental data on the relay mechanism of propagation of the martensitic transformation are presented. The interrelation between the localization of the martensitic transformation on the meso-and macroscale levels and deformation behavior under isothermal loading alloy Ti_(49.4)Ni_(50.6) in submicrocrystalline condition are shown and discussed.
机译:结果介绍了在亚微粒合金Ti_(49.4)Ni_(50.6)中发育热弹性马氏体转化的规律和机制的实验调查,采用光学显微镜方法的不同方式使用光学显微镜和X-射线衍射。考虑了这种具有亚晶体晶体结构的中间和宏观级水平的马氏体转化定位的特性。提出了关于马氏体转化繁殖的继电器机制的实验数据。示出并讨论了亚微晶条件下的等温载合金Ti_(49.4)Ni_(50.6)下的Meso-actocale水平和变形行为之间的相互关系。

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