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Compression behavior of three-dimensional printed polymer lattice structures

机译:三维印刷聚合物晶格结构的压缩行为

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This paper focuses on the compression behavior of additively manufactured or three-dimensional printed polymer lattice structures of different configurations. The body-centered cubic lattice unit cell, which has been extensively investigated for energy absorption applications, is the starting point for this research. In this study, the lattice structure based on the body-centered cubic unit cell was modified by adding vertical struts in different arrangements to create three additional configurations. Four lattice structure designs were selected for comparison: the basic unit cell (body centered cubic), body centered cubic with vertical struts added to all nodes in the lattice, body centered cubic with vertical struts added to alternate nodes in the lattice, and body centered cubic with gradient in the number of vertical bars in the lattice. Samples of all four designs were prepared using acrylonitrile-butadiene-styrene polymer by three-dimensional printing. The stiffness, failure loads, and energy absorption behaviors of all four configurations were determined under quasi-static compression loading. Specific properties were calculated by normalizing the test properties by the sample mass. It is observed from experimental data that selective placement of vertical support struts in the unit cell influences both the absolute and specific mechanical properties of lattice structures.
机译:本文重点介绍了不同构造的瘾地制造或三维印刷聚合物晶格结构的压缩行为。已经广泛研究了用于能量吸收应用的身体中心立方格单元电池是该研究的起点。在该研究中,通过在不同的布置中添加垂直支柱来修改基于身体为中心的立方单元单元的格子结构以产生三种附加配置。选择四个格子结构设计进行比较:基本单元电池(身体居级立方体),身体以垂直支柱为中心的立方体添加到晶格中的所有节点,身体以垂直支柱为中心的立方体添加到晶格中的交替节点,身体居中立方体与梯度在格子中的垂直条的数量中。通过三维印刷使用丙烯腈 - 丁二烯 - 苯乙烯聚合物制备所有四种设计的样品。在准静态压缩负载下确定所有四种配置的刚度,故障载荷和能量吸收行为。通过样品质量正常化测试性能来计算具体性质。从实验数据观察到在单元电池中选择性地放置垂直支撑支柱,影响晶格结构的绝对和特定机械性能。

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