Liu Chen, Lertthanasarn Jedsada, Pham Minh-Son
Engineering Alloys, Department of Materials, Imperial College London, London, UK.
Nat Commun. 2021 Jul 29;12(1):4600. doi: 10.1038/s41467-021-24886-z.
Crystal-inspired approach is found to be highly successful in designing extraordinarily damage-tolerant architected materials. i.e. meta-crystals, necessitating in-depth fundamental studies to reveal the underlying mechanisms responsible for the strengthening in meta-crystals. Such understanding will enable greater confidence to control not only strength, but also spatial local deformation. In this study, the mechanisms underlying shear band activities were investigated and discussed to provide a solid basis for predicting and controlling the local deformation behaviour in meta-crystals. The boundary strengthening in polycrystal-like meta-crystals was found to relate to the interaction between shear bands and polygrain-like boundaries. More importantly, the boundary type and coherency were found to be influential as they govern the transmission of shear bands across meta-grains boundaries. The obtained insights in this study provide crucial knowledge in developing high strength architected materials with great capacity in controlling and programming the mechanical strength and damage path.
人们发现,受晶体启发的方法在设计具有超强损伤耐受性的结构材料(即准晶体)方面非常成功,这就需要进行深入的基础研究,以揭示准晶体强化的潜在机制。这种理解将使人们不仅能够更有信心地控制强度,还能控制空间局部变形。在本研究中,对剪切带活动的潜在机制进行了研究和讨论,为预测和控制准晶体中的局部变形行为提供了坚实的基础。发现类多晶准晶体中的边界强化与剪切带和类多晶边界之间的相互作用有关。更重要的是,发现边界类型和相干性具有影响力,因为它们控制着剪切带跨亚晶粒边界的传输。本研究中获得的见解为开发具有高强度的结构材料提供了关键知识,这种材料在控制和规划机械强度及损伤路径方面具有很大能力。