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Improvement of the thermal stability of Gd-Dy-Al-Co bulk metallic glass by the addition of high bulk modulus elements

机译:通过添加高体积模量元素改善Gd-Dy-Al-Co大块金属玻璃的热稳定性

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A series of new heavy rare-earth based bulk metallic glasses with high thermal stability have been obtained by a copper mold casting method. Compared with the light rare-earth based bulk metallic glasses, these alloys have much higher glass transition temperature, crystallization temperature, and larger effective activation energy for glass transition and crystallization. It was found that the addition of high bulk modulus element Ge can further enhance the thermal stability of these alloys. These results confirm that the thermal stability is closely correlated with the bulk modulus of rare-earth based bulk metallic glasses, which is useful for guiding the composition design of the BMG alloys with high thermal stability.
机译:通过铜铸模法获得了一系列具有高热稳定性的新型重稀土基块状金属玻璃。与轻稀土基块状金属玻璃相比,这些合金具有更高的玻璃化转变温度,结晶温度以及更大的玻璃化转变和结晶有效活化能。发现添加高体积模量元素Ge可以进一步增强这些合金的热稳定性。这些结果证实了热稳定性与基于稀土的块状金属玻璃的体积模量密切相关,这对于指导具有高热稳定性的BMG合金的成分设计是有用的。

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