Effects of the unit-cell size and arrangement on the compressive behaviors of lattice structures in powder bed fusion additive manufacturing

Kwang-Min Park , Young-Sook Roh , Bong-Chun Lee
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Abstract

Lattice structures demonstrate a unique compressive behavior wherein the compressive strength increases and converges to a specific value as the number of unit-cell arrangements and overall dimensions of the lattice structure increase. In this study, the effects of the unit-cell size and cell arrangement on the compressive behavior of lattice structures were investigated to determine the convergence of compression characteristics at specific unit-cell configurations. Simple cubic lattice structures were designed and manufactured using powder bed fusion techniques. The lattice structures were characterized using universal testing machines. Experimental results revealed that the convergence of compressive strength was influenced by the size of the unit cell: the number of arrangements at which a specific compressive strength was reached increased as the unit-cell sizes decreased. Furthermore, specific convergence points were determined for different unit-cell sizes, providing valuable insights into the compressive strength behavior of lattice structures. This study emphasizes the significance of considering both unit-cell arrangements and overall dimensions when designing standard specimens for compression testing. Additionally, the methodology developed in this study can be applied to obtain an optimal configuration for desired strength characteristics.

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单元尺寸和排列对粉末床熔融增材制造中晶格结构抗压行为的影响
晶格结构具有独特的抗压性能,随着晶格结构单元单元排列数量和整体尺寸的增加,抗压强度也会增加并趋近于一个特定值。本研究调查了单元格尺寸和单元格排列对晶格结构抗压行为的影响,以确定特定单元格配置下的抗压特性收敛情况。采用粉末床熔融技术设计并制造了简单的立方晶格结构。使用万能试验机对晶格结构进行了表征。实验结果表明,抗压强度的收敛性受单元格尺寸的影响:随着单元格尺寸的减小,达到特定抗压强度的排列次数增加。此外,还确定了不同单元尺寸的特定收敛点,为了解晶格结构的抗压强度行为提供了宝贵的见解。这项研究强调了在设计用于压缩测试的标准试样时同时考虑单元格排列和整体尺寸的重要性。此外,本研究中开发的方法可用于获得所需的强度特性的最佳配置。
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