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High Temperature Deformation of a Mg-Cu-Gd Bulk Metallic Glass: Impact of Partial Crystallization

机译:Mg-Cu-Gd块状金属玻璃的高温变形:部分结晶的影响

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A Mg65Cu25Gd10 alloy is produced under the form of 6 mm diameter amorphous rod and its ability to be formed at high temperature is studied. In the supercooled liquid region, the usual transition between Newtonian and non-Newtonian behaviors is detected as a function of temperature and strain rate. A particular attention is also given to the effect of partial crystallization on the high temperature deformation of the alloy: large viscoplastic deformation ability is maintained up to relatively high crystal fraction. The main effect of crystallization on mechanical behavior is a reinforcement effect, which can vary with experimental conditions. Finally, crystal volume fractions are roughly estimated by a simple model used to predict reinforcement due to the dispersion of particles in a viscous matrix.
机译:Mg 65 Cu 25 Gd 10 合金以直径为6 mm的非晶棒的形式产生,其在高温下的形成能力为研究。在过冷液体区域,检测到牛顿和非牛顿行为之间的通常转变是温度和应变率的函数。还特别注意了部分结晶对合金高温变形的影响:在相对较高的晶体分数下仍可保持较大的粘塑性变形能力。结晶作用对机械性能的主要影响是增强作用,该作用会随实验条件而变化。最后,晶体体积分数由一个简单的模型粗略估算,该模型用于预测由于颗粒在粘性基质中的分散而引起的增强。

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