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Measurement of young's modulus and hardness of Al-50 wt % Sn alloy phases using nanoindentation

机译:使用纳米压痕法测量Al-50 wt%Sn合金相的杨氏模量和硬度

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摘要

The nanoindentation method was used to measure the Young's modulus and hardness of the phases of the alloy Al-50 wt % Sn: α-aluminum and eutectic. Samples are obtained in different ways, i.e., traditionally via the transition of the melt into a homogeneous structural state by heating to a certain temperature, followed by cooling using the cooling rate greater by the order than that of the traditional method and via the addition of 0.06 wt % Ti and 1 wt % Zr to the binary alloy. It has been found that the most significant effect of the Al-50 wt % Sn phases on the Young's modulus is the transition of the melt into a homogeneous structural state and the introduction of Zr into the melt. As part of the mathematical theory of elasticity, a numerical evaluation of the interfacial pressure that arises due to the difference between Young's modulus of α aluminum and eutectic has been performed. The calculation has showed that the extra pressure is nine times less for the alloy formed through the transition of the melt into a homogeneous structural state than for the alloy produced via a traditional way. © 2013 Pleiades Publishing, Ltd.
机译:纳米压痕法用于测量Al-50wt%Sn:α-铝和低共熔合金的相的杨氏模量和硬度。样品以不同的方式获得,即,传统上是通过加热到一定温度,将熔体转变为均匀的结构状态,然后使用比传统方法大一个数量级的冷却速率进行冷却,并通过添加相对于二元合金0.06重量%的Ti和1重量%的Zr。已经发现,Al-50wt%Sn相对杨氏模量的最显着影响是熔体转变成均匀的结构状态以及将Zr引入熔体中。作为弹性数学理论的一部分,已经对由于α铝的杨氏模量和共晶之间的差异而产生的界面压力进行了数值评估。计算表明,与通过传统方式生产的合金相比,通过熔体转变为均匀结构态形成的合金的额外压力要低九倍。 ©2013 Pleiades Publishing,Ltd.

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