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首页> 外文期刊>Materials Science and Engineering >Load-biased martensitic transformation strain of Ti_(50)-Ni_(47)-Co_3 strip obtained by a twin-roll casting technique
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Load-biased martensitic transformation strain of Ti_(50)-Ni_(47)-Co_3 strip obtained by a twin-roll casting technique

机译:双辊铸造技术获得的Ti_(50)-Ni_(47)-Co_3带材的偏向马氏体相变应变

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摘要

Mechanical properties of the Ti_(50)-Ni_(47)-Co_3 (at%) strips produced by twin-roll casting are analyzed, focusing on the maximum recoverable strain obtained by inducing the martensitic transformation under constant tensile load. The recoverable strain achieves a value close to 5.5% for a load of ~120 MPa. The microstructure shows a typical cellular solidification structure, where the austenite grains tend to a columnar array morphology with strong {100)_(B2) fiber texture aligned with ND (perpendicular to the strip surface). On the basis of the measured texture, the maximum B2→B19' transformation strain was estimated at 5.6%, using a Sachs-type upper bound model, which averages the most favorable martensite variants in each grain, disregarding interactions between them. The agreement between the measured maximum recoverable strain and the model's outcome is ascribed to special properties of Ti-Ni alloys, which allow them to overcome incompatibilities in shape changes of transforming grains in this particular polycrystalline environment.
机译:分析了双辊铸造生产的Ti_(50)-Ni_(47)-Co_3(at%)带材的力学性能,重点研究了在恒定拉伸载荷下通过诱导马氏体相变获得的最大可恢复应变。对于约120 MPa的负载,可恢复应变达到接近5.5%的值。显微组织显示出典型的细胞凝固结构,其中奥氏体晶粒趋于具有与ND(垂直于带材表面)对齐的强{100} _(B2)纤维织构的柱状阵列形态。根据测得的织构,使用萨克斯(Sachs)型上限模型,将最大的B2→B19'相变应变估计为5.6%,该模型将每个晶粒中最有利的马氏体变体取平均值,而忽略了它们之间的相互作用。测得的最大可恢复应变与模型结果之间的一致性归因于Ti-Ni合金的特殊性能,这使它们能够克服在这种特定的多晶环境中相变晶粒的形状变化的不兼容性。

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  • 来源
    《Materials Science and Engineering》 |2014年第12期|245-252|共8页
  • 作者单位

    Instituto de Fisica Rosario (CONICET-Universidad National de Rosario), Bvrd. 27 de Febrero 210 Bis, S2000EZP Rosario, Argentina;

    Instituto de Fisica Rosario (CONICET-Universidad National de Rosario), Bvrd. 27 de Febrero 210 Bis, S2000EZP Rosario, Argentina;

    Instituto de Fisica Rosario (CONICET-Universidad National de Rosario), Bvrd. 27 de Febrero 210 Bis, S2000EZP Rosario, Argentina;

    Laboratoire de Metallurgie Structurale, Ecole Nationale Superieure de Chimie de Paris, 11 rue Pierre et Marie Curie, 75237 Paris Cedex 5, France;

    Laboratoire de Metallurgie Structurale, Ecole Nationale Superieure de Chimie de Paris, 11 rue Pierre et Marie Curie, 75237 Paris Cedex 5, France;

    Institut de Chimie et des Materiaux Paris-Est, UMR CNRS 7182, 94320 Thiais, France;

    Instituto de Fisica Rosario (CONICET-Universidad National de Rosario), Bvrd. 27 de Febrero 210 Bis, S2000EZP Rosario, Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ti-Ni alloys; Twin-roll casting; Mechanical properties; Texture; Shape memory alloys;

    机译:钛镍合金;双辊铸造;机械性能质地;形状记忆合金;

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