首页> 外文OA文献 >Experimental determination of a time–temperature-transformation diagram of the undercooled Zr41.2Ti13.8Cu12.5Ni10.0Be22.5 alloy using the containerless electrostatic levitation processing technique
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Experimental determination of a time–temperature-transformation diagram of the undercooled Zr41.2Ti13.8Cu12.5Ni10.0Be22.5 alloy using the containerless electrostatic levitation processing technique

机译:使用无容器静电悬浮处理技术实验确定过冷Zr41.2Ti13.8Cu12.5Ni10.0Be22.5合金的时间-温度转变图

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摘要

High temperature high vacuum electrostatic levitation was used to determine the complete time–temperature–transformation (TTT) diagram of the Zr41.2Ti13.8Cu12.5Ni10.0Be22.5 bulk metallic glass forming alloy in the undercooled liquid state. This is the first report of experimental data on the crystallization kinetics of a metallic system covering the entire temperature range of the undercooled melt down to the glass transition temperature. The measured TTT diagram exhibits the expected "C" shape. Existing models that assume polymorphic crystallization cannot satisfactorily explain the experimentally obtained TTT diagram. This originates from the complex crystallization mechanisms that occur in this bulk glass-forming system, involving large composition fluctuations prior to crystallization as well as phase separation in the undercooled liquid state below 800 K.
机译:利用高温高真空静电悬浮法确定了过冷液态Zr41.2Ti13.8Cu12.5Ni10.0Be22.5块状金属玻璃成形合金的完整时间-温度-转变(TTT)图。这是关于金属系统结晶动力学的实验数据的第一份报告,该系统涵盖了过冷熔体的整个温度范围直至玻璃化转变温度。测得的TTT图显示出预期的“ C”形。假定多晶型结晶的现有模型不能令人满意地解释实验获得的TTT图。这源于在这种大块玻璃形成系统中发生的复杂结晶机制,涉及结晶之前的大成分波动以及低于800 K的过冷液体状态下的相分离。

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