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Phase transition in the Zr_(60)Al_(15)Ni_(25) bulk metallic glass subjected to rolling at room temperature

机译:Zr_(60)Al_(15)Ni_(25)块状金属玻璃在室温下轧制时的相变

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The microstructure evolution of the Zr_(60)Al_(15)Ni_(25) metallic glass during rolling at room temperature is investigated by X-ray diffraction (XRD), differential scanning calo-rimetry (DSC) and high-resolution transmission electron microscopy (HREM). The results show that the values of full width at half maximum (FWHM) of the XRD patterns and exothermic enthalpy ΔH of DSC plots do not monotonically change with the variation of deformation degrees ε. As ε is not larger than 20%, the values of FWHM and ΔH are lower than that of the as-cast state. When £ reaches 30%, the values of FWHM and ΔH become larger than that of the as-cast state, while their values begin to decrease again as ε reaches about 85%. These results indicate that the reversible transitions between ordered and disordered atomic configurations occur during rolling, which is further verified by the HREM images. The reversible phase transition can be explained by the competition between the diffusion controlled reordering and shear-induced disordering during rolling.
机译:通过X射线衍射(XRD),差示扫描量热法(DSC)和高分辨率透射电子显微镜研究了Zr_(60)Al_(15)Ni_(25)金属玻璃在室温下轧制过程中的显微组织演变。 (HREM)。结果表明,XRD图的半峰全宽(FWHM)值和DSC图的放热焓ΔH不会随变形度ε的变化而单调变化。当ε不大于20%时,FWHM和ΔH的值低于铸态的值。当£达到30%时,FWHM和ΔH的值变得大于铸态的值,而当ε达到约85%时,它们的值又开始下降。这些结果表明,在轧制过程中发生了有序和无序原子构型之间的可逆转变,这由HREM图像进一步证实。可逆相变可以通过轧制过程中扩散控制的重排与剪切诱导的无序之间的竞争来解释。

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