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The thermal stability and activation energy of crystallization Of (Cu61.8Zr38.2)(1-x)Al-x bulk metallic glasses

机译:(Cu61.8Zr38.2)(1-x)Al-x块状金属玻璃的热稳定性和结晶活化能

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The present paper reports on the thermal stability and activation energy of crystallization of bulk metallic glasses (BMGs) (CU61.8Zr38.2)(1-x)Al-x. The (CU61.8Zr38.2)(1-x)Al-x composition series, prepared by copper mould suction casting into bars with a diameter of 3 mm, form BMGs with an e/a range of 1.24-1.3. These BMGs manifest increased thermal stability with increased e/a ratios. The activation energies (Delta E) of crystallization as derived from thermal analysis at different heating rates follow a similar tendency to that of the thermal stability, indicating stronger short-range ordering with increasing e/a ratios. The optimum BMG CU58.1Zr35.9Al6 exhibits the highest thermal stability and the largest Delta E. (c) 2007 Elsevier B.V. All rights reserved.
机译:本文报道了块状金属玻璃(BMG)(CU61.8Zr38.2)(1-x)Al-x的热稳定性和结晶活化能。通过铜模吸铸成直径为3 mm的棒材制成的(CU61.8Zr38.2)(1-x)Al-x组成系列,形成e / a范围为1.24.1.3的BMG。这些BMG通过增加的e / a比表现出增加的热稳定性。由不同加热速率下的热分析得出的结晶活化能(Delta E)遵循与热稳定性相似的趋势,表明随着e / a比的增加,短程有序性更强。最佳BMG CU58.1Zr35.9Al6具有最高的热稳定性和最大的Delta E.(c)2007 Elsevier B.V.保留所有权利。

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