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首页> 外文期刊>Physica, B. Condensed Matter >Two-stage transformation of aluminum-containing NiTi
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Two-stage transformation of aluminum-containing NiTi

机译:含铝NiTi的两阶段转化

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摘要

Measurements of electrical resistivity, ultrasonic velocity and attenuation for equiatomic NiTi and Ni50Ti49Al1 were performed in order to characterize the thermoelastic martensitic transformation during cooling. The NiTi shows a one-stage transformation, essentially, because a premartensitic phenomenon is negligibly faint. The ultrasonic anomalies in NiTi appear near the temperature at a faint resistivity-peak, which correspond to lattice softening at the start temperature of martensitic transformation from the high-temperature phase to the low-temperature phase. The resistivity of Ni50Ti49Al1 has a negative temperature coefficient over the wide temperature range from room temperature to 154 K, and indicates a large peak. Such an anomaly in resistivity corresponds to an enhanced premartensitic phenomenon, where ultrasonic anomalies caused by a two-stage transformation are observed which accompany a large change in electrical resistivity. However, a resistivity peak in the aluminum-containing NiTi is formed at lower temperature than those at ultrasonic anomalies by over 40 K, and the temperature at the resistivity peak is not one characterizing the transformation behavior. It proved helpful to measure the ultrasonic properties in comparison with the electrical resistivity in order to characterize successive transformations in the temperature range of a premartensitic phenomenon of NiTi enhanced by addition of aluminum. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 35]
机译:对等原子NiTi和Ni50Ti49Al1的电阻率,超声速度和衰减进行了测量,以表征冷却过程中的热弹性马氏体相变。 NiTi基本上表现为一个阶段的转变,因为前马氏体现象微不足道。 NiTi中的超声异常出现在电阻率峰值附近的温度附近,这对应于从高温相到低温相的马氏体转变开始温度时的晶格软化。 Ni50Ti49Al1的电阻率在从室温到154 K的较宽温度范围内具有负温度系数,并显示一个大的峰值。电阻率的这种异常对应于增强的马氏体现象,其中观察到由两阶段转变引起的超声异常,其伴随着电阻率的大变化。但是,含铝NiTi的电阻率峰值是在比超声异常时低40K以上的温度下形成的,电阻率峰值处的温度不是表征转变行为的一个。事实证明,与电阻率相比,测量超声性能有助于表征在温度范围内因添加铝而增强的NiTi马氏体现象的连续转变。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:35]

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