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Evidence for Strain Glass in the Ferroelastic-Martensitic System Ti_(50-x)Ni_(50+x)

机译:铁弹性-马氏体体系Ti_(50-x)Ni_(50 + x)中应变玻璃的证据

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摘要

We report here "strain glass," a new glassy phenomenon in ferroelastic-martensitic system of Ni-rich intermetallic Ti_(50-x)Ni_(50+x) (x > 1), where local strain is frozen in disordered configuration below a critical temperature T_g. The ac elastic modulus shows a minimum at T_g, which exhibits logarithmic frequency dependence following Vogel-Fulcher relationship, and the corresponding internal friction shows a frequency-dependent peak located at a lower temperature. In situ high-resolution transmission electron microscopy observations reveal uncorrelated nanoclusters of martensiticlike phase, randomly frozen in the otherwise untransformed parentlike matrix. Being parallel to spin glass and relaxor, strain glass may shed new light on the fundamental physics of glass and lead to the discovery of novel properties.
机译:我们在这里报告“应变玻璃”,这是富镍金属间金属Ti_(50-x)Ni_(50 + x)(x> 1)的铁弹性-马氏体系统中的一种新玻璃态现象,其中局部应变被冻结在低于a的无序结构中临界温度T_g。交流弹性模量在T_g处显示最小值,这表现出遵循Vogel-Fulcher关系的对数频率依赖性,而相应的内摩擦则显示出在较低温度下的频率相关峰。原位高分辨率透射电镜观察发现不相关的马氏体相纳米团簇,其随机冻结在其他未转化的母体样基质中。与旋转玻璃和弛豫器平行,应变玻璃可能会为玻璃的基本物理学提供新的思路,并导致发现新特性。

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