Zhao Y F, Feng X B, Zhang J Y, Lu Y, Wu S H, Wang Y Q, Wu K, Liu G, Sun J
State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China.
Nanoscale. 2020 Jul 14;12(26):14135-14149. doi: 10.1039/d0nr02483j. Epub 2020 Jun 29.
Metastable high entropy alloys (HEAs) have attracted extensive attention due to their excellent combination of high strength and great plasticity. In this work, we utilize constraining effects to tailor phase transformation strengthening and plasticity of nanostructured HEA ([double bond, length as m-dash]FeCoCrNi) thin films prepared by the magnetron sputtering technique via HEA/Cu and HEA/Ni nanotwinned nanolaminates (NTNLs). It is uncovered that the HEA/Cu NTNLs without phase transformation exhibit the fashion of "smaller is stronger" and HEA layers become more favorable to detwin at a smaller layer thickness (h). By contrast, the HEA/Ni NTNLs manifest an ultra-high peak hardness plateau accompanied by the FCC-to-HCP phase transformation in HEA layers at large h≥ 25 nm, whereas they manifest size-dependent hardness when detwinning occurs at smaller h. This unusual plastic deformation behavior of HEA/X (X = Cu, Ni) NTNLs was rationalized by partial-based mechanisms. These findings open a new avenue to achieve superior mechanical properties of HEAs particularly at the nanoscale.
亚稳高熵合金(HEAs)因其高强度和良好塑性的优异结合而受到广泛关注。在本工作中,我们利用约束效应来调控通过磁控溅射技术制备的纳米结构高熵合金([双键,长度为m破折号]FeCoCrNi)薄膜的相变强化和塑性,该薄膜通过高熵合金/铜和高熵合金/镍纳米孪晶纳米层(NTNLs)制备。结果发现,无相变的高熵合金/铜纳米孪晶纳米层呈现出“越小越强”的趋势,且高熵合金层在较小的层厚(h)下更有利于去孪晶。相比之下,高熵合金/镍纳米孪晶纳米层在较大的h≥25 nm时,在高熵合金层中表现出伴随面心立方到密排六方相变的超高硬度峰值平台,而在较小的h下发生去孪晶时则表现出尺寸依赖的硬度。高熵合金/X(X = Cu,Ni)纳米孪晶纳米层这种不寻常的塑性变形行为通过基于局部的机制得到了合理解释。这些发现为实现高熵合金特别是在纳米尺度下的优异力学性能开辟了一条新途径。