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首页> 外文期刊>Materials science forum >Temperature and Loading Rate Effect on the Load-Displacement Response of Metal-Metallic Glass (Al-Cu_(50)Zr_(50)) Layered Structure during Nano-lndentation
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Temperature and Loading Rate Effect on the Load-Displacement Response of Metal-Metallic Glass (Al-Cu_(50)Zr_(50)) Layered Structure during Nano-lndentation

机译:对纳米LNDentation期间金属金属玻璃(Al-Cu_(50)Zr_(50))分层结构的负载 - 位移响应的温度和装载速率影响

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摘要

Molecular dynamics (MD) simulations of nano-indentation on metal-metallic glass (Al-CusoZrso) multilayer is carried out to investigate the load-displacement response, mechanical properties and deformation mechanisms. The indentation study is carried out at temperatures in the range of cryogenic to room temperature (10 K-300K). The indenter speeds are varied between 0.5-5 A/ps to study the effect of loading rate. The interaction between atoms Al, Cu, and Zr are defined by EAM (Embedded Atom Method) potential. A sample size of 200 Å (x) × 200 Å (y) × 200 Å (z) comprising of 538538 atoms is used for nano-indentation. NVT ensemble and P P S boundary conditions are used along x, y and z directions. We observed a peak load of 117 nN, at a temperature of 10 K with a loading rate of 5 Å/ps. We found that with an increase in loading rate, the peak load increases. As anticipated, the increase in temperature decreases the strength of the multilayer. The atomic displacement vector plots reveal that MG act as obstacles to the movement of dislocations nucleated at the interface.
机译:进行金属金属玻璃(Al-Cusozrso)多层纳米压痕的分子动力学(MD)模拟,以研究负载位移响应,机械性能和变形机制。压痕研究在低温至室温(10k-300k)的温度下进行。压紧速度在0.5-5A / pE之间变化,以研究加载速率的效果。原子Al,Cu和Zr之间的相互作用由EAM(嵌入原子法)电位限定。包含538538个原子的200埃(x)×200埃(y)×200埃(z)的样品尺寸用于纳米凹口。 NVT集合和P P S边界条件沿X,Y和Z方向使用。我们观察到117 nn的峰值负荷,在10 k的温度下,装载速率为5埃/磅。我们发现随着装载速率的增加,峰值负荷增加。如预期的那样,温度的增加会降低多层的强度。原子位移载体图揭示了MG作为在界面处成核的脱位运动的障碍。

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