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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The influence of imposed strain on the development of microstructure and transformation characteristics of Ni-Ti shape memory alloys
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The influence of imposed strain on the development of microstructure and transformation characteristics of Ni-Ti shape memory alloys

机译:外加应变对Ni-Ti形状记忆合金组织发展和相变特性的影响

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Presented paper describes the influence of imposed strain on the development of microstructure (substructure) in Ni-Ti materials during the application of ECAE (equal channel angular extrusion). The interrelationship between imposed strain and resulting transformation characteristics is in the main point of interest while the chemical composition, namely the occurrence of secondary phases such as TiC and Ti_4Ni_2O resulting from the technology used for the sample alloy preparation is also investigated. The alloy Ni50.6-Ti (at.%) was prepared by melting in the HF vacuum induction furnace using a graphite crucible. The deformation was carried out via ECAE combined with prior rotary forging/swaging. ECAE was carried out at 280 °C. The imposed strain had the value ~2. The alloy was processed by deformation route Be. It was established the high dislocation density generated by the imposed strain stabilized the B2 and R phases and shifted the transformation R),_B19' towards the lower temperature region. Direct effect of the deformation stress was demonstrated in samples after the second pass when the occurrence of the deformation induced transformation B2 -> B19' was confirmed. Deformation induced transformation also represents contribution to the overall deformation of the samples during the process.
机译:本文介绍了在ECAE(等通道角挤压)应用过程中,施加应变对Ni-Ti材料微结构(亚结构)发展的影响。施加应变与所得相变特征之间的相互关系是主要关注点,同时还研究了化学成分,即由样品合金制备技术所产生的诸如TiC和Ti_4Ni_2O的第二相的出现。通过使用石墨坩埚在HF真空感应炉中熔化制备Ni50.6-Ti合金(原子%)。变形通过ECAE与先前的旋转锻造/锻造相结合进行。 ECAE在280℃下进行。施加的应变值为〜2。通过变形路线Be对合金进行处理。已经确定,由施加的应变产生的高位错密度稳定了B2和R相,并使相变R),_ B19'向着较低的温度区域移动。在第二次通过之后,当证实了变形引起的转变B2-> B19'的发生时,在样品中证明了变形应力的直接作用。变形引起的转变也代表了在该过程中对样品整体变形的贡献。

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