材料科学
拓扑优化
软质材料
机械工程
格子(音乐)
超材料
纳米技术
级配
材料设计
微观结构
计算机科学
工程制图
结构工程
复合材料
工程类
人工智能
有限元法
物理
声学
光电子学
作者
Abdulla Almesmari,Ali N. Alagha,Mohamed M. Naji,Jamal Sheikh-Ahmad,Firas Jarrar
标识
DOI:10.1002/adem.202201780
摘要
Metamaterials, also known as lattice‐structured materials, imitate the multifunctionality of natural architects as tailoring their physical properties is associated with manipulating their microstructure. As the recent evolution of additive manufacturing enables the creation of intricate geometries with minimal material wastage, improving the design to manufacturing cycle of lattice structured materials has become one of the trending research areas. Triply periodic minimal surface (TPMS) and plate lattice materials are renowned for their exceptional mechanical behavior in lightweight applications. Apparently, several types of design optimization strategies are explored to maximize their performance for better biocompatibility and mechanical loading resistance. Some of these strategies include functional gradation and multimorphology hybridization that are comprehensively described in this review. Their benefits and drawbacks are highlighted with a focus on TPMS and plate lattice materials. The review anticipates the utilization of automated design exploration methods (i.e., topology optimization and data‐driven methods) to further enhance the design optimization procedure of lattice structured materials.
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