首页> 外文期刊>International Journal of Materials Research >Glass-forming ability and thermal stability of gas-atomized Zr_(50)Cu_(40)Al_(10) metallic glass powders
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Glass-forming ability and thermal stability of gas-atomized Zr_(50)Cu_(40)Al_(10) metallic glass powders

机译:Glass-forming能力和热稳定性gas-atomized Zr_ (50) Cu_ (40) Al_(10)金属玻璃粉末

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摘要

A Zr_(50)Cu_(40)Al_(10) (at.%) alloy was atomized by high pressure Ar gas, and the oxygen content, morphology, microstructure, phase composition, glass-forming ability and thermal stability of the as-atomized powders were investigated. Most of the powders are spherical in shape, but the surface morphologies are different for powders of different sizes. Powders with a size below 38 μm show an amorphous characteristic. The presence of oxygen in the metallic glass powders leads to heterogeneous nucleation of crystalline phases, and the smallest powders have the highest cooling rate, so even with oxygen contamination, it is possible to prevent the crystallization process. Oxygen decreases the thermal stability and the glass-forming ability of the metallic glass powders compared with the Zr_(50)Cu_(40)Al_(10) bulk metallic glass. The metallic glass powders also show a high thermal stability indicated by T_(rg), γ, and δ parameters.
机译:Zr_ (50) Cu_ (40) Al_(10)(。%)合金雾化由高压Ar气体和氧含量,形态,微观结构,相组成,glass-forming能力和热稳定性as-atomized粉末进行了调查。粉末是球形的形状,但是粉末的表面形态是不同的不同的大小。显示一个非晶特征。金属玻璃粉末中的氧气会导致异相成核结晶阶段,和最小的粉末有最高的冷却率,所以即使氧污染,它是可以防止结晶的过程。热稳定性和氧气减少glass-forming金属玻璃的能力粉末与Zr_ (50) Cu_ (40) Al_ (10)大块金属玻璃。也显示较高的热稳定性表示T_ (rg)识别、γ和δ参数。

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