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Stability in Phase Transformation After Multiple Steps of Marforming in Ti-Rich Ni-Ti Shape Memory Alloy

机译:在富含Ti的Ni-Ti形状记忆合金中改变多个步骤后相变的稳定性

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Nickel-titanium (Ni-Ti) alloys are the most attractive among shape memory alloys (SMA) due to their good functionality properties coupled with high strength and ductility. The transformation temperatures in Ti-rich Ni-Ti SMA can be altered by subjecting them to suitable thermal and/or mechanical treatments to obtain martensitic transformation in one or more steps above 0 °C. The goal of the present work is to investigate the stability of phase transformation characteristics, such as, type of sequence (one, two, and multiple steps) and transformation temperatures in Ti-Rich Ni-Ti SMA (Ni-51 at.%Ti), after being subjected to an initial heat treatment at 500 °C for 30 min in air followed by multiple steps of marforming (cold rolling, 30% thickness reduction) intercalated with heat treatments at 500 °C for 30 min in air and a final heat treatment at four different temperatures (400, 450, 500, and 600 °C) for 30 min in air atmosphere. Differential scanning calorimetry (DSC) and electrical resistivity (ER) were used to identify the phase transformation sequences and the stability of transformation temperatures during initial 10 thermal cycles for each sample with distinct thermo-mechanical treatment
机译:镍 - 钛(Ni-Ti)合金是由于其具有高强度和延展性的良好功能性能而在形状记忆合金(SMA)中最具吸引力。通过对其进行合适的热和/或机械处理来改变Ti的Ni-Ti SMA中的转化温度,以在0℃以上的一种或多种步骤中获得马氏体转化。本作工作的目的是研究相变特性的稳定性,例如富含Ti的Ni-Ti SMA的序列(一,两种和多个步骤)和转化温度(Ni-51。%Ti ),在空气中在500℃下进行30分钟后进行初始热处理后,在空气中在500℃下在500℃下嵌入过热处理的多个步骤在四种不同温度(400,450,500和600℃)的热处理在空气气氛中30分钟。差分扫描量热法(DSC)和电阻率(ER)用于鉴定相变序列和在初始10个热循环期间的相变序列和转化温度的稳定性,每个样品具有不同的热机械处理

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