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Large Deformation and Energy Absorption Behaviour of Perforated Hollow Sphere Structures under Quasi-Static Compression

机译:近静压压缩下穿孔空心球体结构的大变形和能量吸收行为

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摘要

Hollow sphere structures with perforations (PHSSs) in three different arrangements (simple cubic (SC), body-centred cubic (BCC), and face-centred cubic (FCC)) were fabricated through three-dimensional (3D) printing, and the mechanical behaviours of these PHSSs under quasi-static compression were investigated experimentally and numerically. The results indicated that under uniaxial compression, the PHSSs mainly undergo three stages, i.e., a linear elastic stage, a large deformation or plateau stage, and a densification stage. During the stage of large deformation, the SC and BCC PHSSs experience a preliminary compaction sub-stage after layer-by-layer buckling, while for the FCC PHSS, layer-by-layer collapse and compaction are the dominant deformation behaviours. A numerical simulation was employed to study the mechanical properties of PHSSs with different geometric parameters under quasi-static compression and to explore the effect of the wall thickness, hole diameter, and sphere arrangement on the first peak stress, plateau stress, and specific energy absorption (SEA) of the PHSSs. The results reveal that the geometric parameters have a significant impact on the large deformation behaviour and energy absorption capacity of PHSSs. The presented PHSS is also proven to be much lighter than traditional metallic hollow sphere structure (MHSS) and has higher specific strength and SEA.
机译:通过三维(3D)印刷制造具有三种不同布置(简单的立方(SC),身体中心的立方(BCC)和面向中心的立方(FCC)的穿孔(PHSS)的空心球结构是由三维(3D)印刷和机械制成的通过实验和数值在准静态压缩下进行这些PHSS的行为。结果表明,在单轴压缩下,PHSS主要经历三个阶段,即线性弹性级,大变形或高原阶段和致密化阶段。在大变形的阶段,SC和BCC PHSS在逐层屈曲后经历初步压实子级,而对于FCC PHS,层逐层塌陷和压实是主要的变形行为。采用数值模拟来研究准静态压缩下不同几何参数的PHSS的机械性能,并探讨壁厚,孔径和球形布置对第一峰值应力,高原应力和特定能量吸收的影响(海)的phsss。结果表明,几何参数对大小的变形行为和PHSS的能量吸收能力产生显着影响。所呈现的PHS也被证明比传统金属空心球结构(MHS)更轻,并且具有更高的特定强度和大海。

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