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Nucleation-Controlled Plasticity of Metallic Nanowires and Nanoparticles

机译:金属纳米线和纳米粒子的成核控制可塑性

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Nanowires and nanoparticles are envisioned as important elements of future technology and devices, owing to their unique mechanical properties. Metallic nanowires and nanoparticles demonstrate outstanding size-dependent strength since their deformation is dislocation nucleation-controlled. In this context, the recent experimental and computational studies of nucleation-controlled plasticity are reviewed. The underlying microstructural mechanisms that govern the strength of nanowires and the origin of their stochastic nature are also discussed. Nanoparticles, in which the stress state under compression is nonuniform, exhibit a shape-dependent strength. Perspectives on improved methods to study nucleation-controlled plasticity are discussed, as well the insights gained for microstructural-based design of mechanical properties at the nanoscale.
机译:由于纳米线和纳米粒子的独特机械性能,它们被认为是未来技术和设备的重要元素。金属纳米线和纳米粒子具有出色的尺寸依赖性强度,因为它们的变形是位错成核控制的。在这种情况下,综述了成核控制可塑性的最新实验和计算研究。还讨论了控制纳米线强度及其随机性起源的潜在微观结构机制。压缩下的应力状态不均匀的纳米颗粒表现出形状依赖性的强度。讨论了研究成核控制可塑性的改进方法的观点,以及对基于微观结构的纳米力学性能设计的见解。

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