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Compressive Properties of Al-Si Alloy Lattice Structures with Three Different Unit Cells Fabricated via Laser Powder Bed Fusion

机译:Al-Si合金晶格结构的抗压性能通过激光粉床融合制造的三种不同单元电池

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摘要

In the present study, in order to elucidate geometrical features dominating deformation behaviors and their associated compressive properties of lattice structures, AlSi10Mg lattice structures with three different unit cells were fabricated by laser powder bed fusion. Compressive properties were examined by compression and indentation tests, micro X-ray computed tomography (CT), together with finite element analysis. The truncated octahedron- unit cell (TO) lattice structures exhibited highest stiffness and plateau stress among the studied lattice structures. The body centered cubic-unit cell (BCC) and TO lattice structures experienced the formation of shear bands with stress drops, while the hexagon-unit cell (Hexa) lattice structure behaved in a continuous deformation and flat plateau region. The Hexa lattice structure densified at a smaller strain than the BCC and TO lattice structures, due to high density of the struts in the compressive direction. Static and high-speed indentation tests revealed that the TO and Hexa exhibited slight strain rate dependence of the compressive strength, whereas the BCC lattice structure showed a large strain rate dependence. Among the lattice structures in the present study, the TO lattice exhibited the highest energy absorption capacity comparable to previously reported titanium alloy lattice structures.
机译:在本研究中,为了阐明几何特征,通过激光粉床融合制造具有三种不同单元电池的铝合金的变形行为及其相关的压缩性能。通过压缩和压痕测试检查压缩性能,微X射线计算机断层扫描(CT)以及有限元分析。截断的八面体单元电池(至)晶格结构在研究的晶格结构中表现出最高的刚度和高原应力。体为中心的立方单元电池(BCC)和晶格结构经历了具有应力下降的剪切带的形成,而六边形单元电池(六藻)晶格结构在连续变形和平坦的平台区域中表现。由于压缩方向上的支柱的高密度,在较小的菌株和晶格结构下致密于较小的应变晶格结构。静态和高速压痕试验显示To和Hexa表现出抗压强度的轻微应变速率依赖性,而BCC晶格结构显示出大的应变率依赖性。在本研究中的晶格结构中,晶格表现出与先前报道的钛合金晶格结构相当的最高能量吸收能力。

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