Abstract
Plate-based cellular materials exhibit greater stiffness and strength than conventional cellular materials formed by struts. In this study, we designed and fabricated a plate-based auxetic cylinder metamaterial using high-resolution projection micro-stereolithography three-dimensional printing technique. Experiment and modeling results validated the auxetic behavior of the plate-based cylinder. The normalized Young’s modulus and yield strength of a four-layer auxetic cylinder are increased by 141% and 32%, respectively, compared with the conventional auxetic honeycomb. This study presents a universal strategy for fabricating plate-based auxetic metamaterials with appropriate mechanical performance for various structural applications.
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Li, X., Xiao, R., Chen, J. Z., Li, J. Q., Fan, R., Song, J., & Lu, Y. (2023). Plate-based cylinder metamaterial with negative Poisson’s ratio and outstanding mechanical performance. Science China Technological Sciences, 66(3), 793–806. https://doi.org/10.1007/s11431-022-2212-5
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