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激光粉末床熔融制备的金刚石晶格Ti-6Al-4V结构的力学性能:关于加载方向的影响

Mechanical properties of diamond lattice Ti-6Al-4V structures produced by laser powder bed fusion: On the effect of the load direction.

作者信息

Cutolo Antonio, Engelen Bert, Desmet Wim, Van Hooreweder Brecht

机构信息

KU Leuven Department of Mechanical Engineering, Celestijnenlaan 300, 3001, Leuven, Heverlee, Belgium.

3DSystems Leuven, Grauwmeer 14, B-3001, Leuven, Belgium.

出版信息

J Mech Behav Biomed Mater. 2020 Apr;104:103656. doi: 10.1016/j.jmbbm.2020.103656. Epub 2020 Feb 4.

Abstract

Laser powder bed fusion (L-PBF) techniques have been increasingly adopted for the production of highly personalized and customized lightweight structures and bio-medical implants. L-PBF can be used with a multiplicity of materials including several grades of titanium. Due to its biocompatibility, corrosion resistance and low density-to-strength ratio, Ti-6Al-4V is one of the most widely used titanium alloys to be processed via L-PBF for the production of orthopedic implants and lightweight structures. Mechanical properties of L-PBF Ti-6Al-4V lattice structures have mostly been studied in uniaxial compression and lately, also in tension. However, in real-life applications, orthopedic implants or lightweight structures in general are subjected to more complex stress conditions and the load directions can be different from the principal axes of the unit cell. In this research, the mechanical behavior of Ti-6Al-4V diamond based lattice structures produced by L-PBF is investigated exploring the energy absorption and failure modes of these metamaterials when the loading directions are different from the principal axis of the unit cell. Moreover, the impact of a heat treatment (i.e. hot isostatic pressing) on the mechanical properties of the aforementioned lattice structures has been evaluated. Results indicate that the mechanical response of the lattice structures is significantly influenced by the direction of the applied load with respect to the unit cell reference system revealing the anisotropic behavior of the diamond unit cell.

摘要

激光粉末床熔融(L-PBF)技术已越来越多地用于生产高度个性化定制的轻质结构和生物医学植入物。L-PBF可用于多种材料,包括几种等级的钛。由于其生物相容性、耐腐蚀性和低密度强度比,Ti-6Al-4V是通过L-PBF加工生产骨科植入物和轻质结构最广泛使用的钛合金之一。L-PBF Ti-6Al-4V晶格结构的力学性能大多在单轴压缩中进行了研究,最近也在拉伸中进行了研究。然而,在实际应用中,骨科植入物或一般的轻质结构通常会受到更复杂的应力条件,且载荷方向可能不同于晶胞的主轴。在本研究中,研究了L-PBF制备的Ti-6Al-4V金刚石基晶格结构的力学行为,探索了这些超材料在载荷方向不同于晶胞主轴时的能量吸收和失效模式。此外,还评估了热处理(即热等静压)对上述晶格结构力学性能的影响。结果表明,晶格结构的力学响应受相对于晶胞参考系的外加负载方向的显著影响,揭示了金刚石晶胞的各向异性行为。

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