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Anomalies in Physical Properties Related to the Stability of the B2-Phase in Ti-Ni-Co Shape Memory Alloys

机译:与Ti-Ni-Co形状记忆合金中B2相的稳定性相关的物理性质中的异常

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Martensitic transformation behavior of a series of Ti-(50-x)Ni-xCo at percent alloys (x = 4, 8, 12, 16, 20) has been examined by electrical resistivity, magnetic susceptibility and specific heat measurements, in order to know the phase stability of the B2-type structure. The 4Co and 8Co alloys exhibit a typical first order B2-R-B19' transformation. The 12Co alloy probably transforms to the R-phase, but its microstructure is composed of small domains with about 10 nm in diameter, being quite different from the microstructure of a typical R-phase formed by nucleation and growth. The 16Co and the 20Co alloys do not show any martensitic transformation but anomalies of the electrical resistivity and magnetic susceptibility being similar to those of the 12Co alloy appear in these alloys. The diffuse scattering of 1/3<110> is also observed in the 16Co alloy. The Debye temperature decreases and electronic specific heat coefficient increases with increasing Co content.
机译:通过电阻率,磁化率和特定热测量来检查一系列Ti-(50-X)Ni-XCO的马氏体转化行为(50-x)Ni-XCO的百分比(x = 4,8,12,12,6,20),以便 了解B2型结构的相位稳定性。 4CO和8CO合金表现出典型的第一阶B2-R-B19'转化。 12CO合金可能转化为R相,但其微观结构由直径约10nm的小结构域组成,与通过成核和生长形成的典型R相的微观结构不同。 16CO和20CO合金不显示任何马氏体转化,但电阻率的异常和磁易感性类似于12CO合金的电阻率和磁性敏感性在这些合金中出现。 在16CO合金中也观察到1/3111>的漫射散射。 随着CO含量的增加,德比温度降低和电子特定的热系数增加。

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