论文标题

添加性制造的Ti6Al4v元结晶的机械行为,其中包含多尺度分层晶格结构

Mechanical behaviour of additively manufactured Ti6Al4V meta-crystals containing multi-scale hierarchical lattice structures

论文作者

Lertthanasarn, Jedsada, Liu, Chen, Pham, Minh-Son

论文摘要

中尺度上的晶体微观结构的模仿产生了一种新的构造材料,称为元晶层,并提供了有效的方法来显着改善韧性并消除架构材料的后产物后倒塌。这项研究研究了通过激光粉末床融合用Ti6Al4V制造的多元格兰样元结晶的机械行为。 TI6AL4V元结晶的机械行为受长度尺度的晶格结构的控制:晶体微结构,构建的晶体样介质结构和晶格支柱的质量。由于复杂的结构,在印刷的元结晶中看到了明显的加工缺陷,特别是由于支撑杆的自由表面缺乏融合而导致的缺陷缺陷。这种缺陷会升高应力浓度并减少支撑杆的承重面积,从而显着削弱了晶格支撑。另外,由于存在αα的马氏体,由于存在量身定期的条件。缺陷和急剧的勃贴会导致支柱的过早断裂,并损害了晶体启发的介质结构的益处。该研究随后采取了多种措施来解决此问题:增加支撑直径以减少过程缺陷的影响,并退火以减轻内部应力并恢复延展性。撑杆直径增加和退火的结合成功地使类似晶体的构造介质结构有效地改善了元晶体的韧性。

The mimicry of crystalline microstructure at meso-scale creates a new class of architected materials, termed meta-crystals, and offers effective ways to significantly improve the toughness and eliminate the post-yield collapse of architected materials. This study investigated the mechanical behaviour of polygrain-like meta-crystals fabricated from Ti6Al4V by laser powder bed fusion. The mechanical behaviour of Ti6Al4V meta-crystals is governed by lattice structures across length-scales: the crystalline microstructure, architected crystal-like mesostructures and the quality of lattice struts. Due to the intricate architecture, significant processing defects were seen in the printed meta-crystals, in particular notch-like defects due to lack of fusion at the free surface of struts. Such defects raised stress concentration and reduced the load-bearing area of struts, hence significantly weakening the lattice struts. In addition, the as-printed condition was brittle due to the presence of acicular alpha' martensites. The defects and the as-printed brittleness led to the premature fracture of struts and compromised the benefits of the crystal-inspired mesostructures. The study subsequently conducted multiple measures to resolve this issue: increasing the strut diameter to reduce the influence of the process defects, and annealing to relieve internal stresses and regain ductility. The combination of the increase in strut diameter and annealing successfully enabled the crystal-like architected mesostructure to effectively improve the toughness of the meta-crystals.

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