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A practical thermodynamic method to calculate the best glass-forming composition for bulk metallic glasses

机译:一种实用的热力学方法,用于计算散装金属玻璃的最佳玻璃形成成分

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摘要

Bulk metallic glasses are regarded as a new class of engineering materials because of their extraordinary high strength, great elasticity, and high corrosion and wear resistance. The selection of good glass-forming composition is the most important issue in BMG development. In this paper, a thermodynamic method, which combines element substitution and mixing enthalpy calculation, has been successfully developed to predict the optimum glass-forming compositions in Cu-Zr-Ti, Cu-Hf-Ti, Cu-Zr-Hf-Ti and Pd-Ni-P alloy systems. Alloy compositions with the largest glass-forming ability are always accompanied with the smallest enthalpy value for the alloy systems. The prediction results have been confirmed by experiments. It is concluded that the thermodynamic method provides a practical and effective tool to find the optimum glass forming composition.
机译:大块金属玻璃由于其非凡的高强度,高弹性,高耐腐蚀和耐磨性而被视为一类新型工程材料。良好的玻璃形成成分的选择是BMG开发中最重要的问题。本文成功开发了一种结合了元素置换和混合焓计算的热力学方法,以预测Cu-Zr-Ti,Cu-Hf-Ti,Cu-Zr-Hf-Ti和Cu-Zr-Ti中最佳的玻璃形成成分。 Pd-Ni-P合金体系。具有最大玻璃形成能力的合金组合物总是伴随着合金系统的最小焓值。实验结果证实了预测结果。结论是,热力学方法为找到最佳的玻璃成型成分提供了一种实用而有效的工具。

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