制作
材料科学
拓扑优化
格子(音乐)
拓扑(电路)
纳米技术
工程制图
机械工程
结构工程
工程类
有限元法
组合数学
数学
物理
医学
替代医学
病理
声学
作者
LI Xu-dong,Mao Zibin,D. Mohan,Yizhou Wang,Qinghai Zhao
标识
DOI:10.1002/adem.202500685
摘要
Additive manufacturing drives the development of nested lattice structures, which support initial lattices to reduce instability from large sizes and voids. This paper proposes nine novel lattice structures nested by the plate and shell lattices based on triply periodic minimal surfaces (TPMS). Through the TPMS shell lattice structure, it is expanded into two types of shell lattices named TPMS‐like plate lattice (TLPL) and TPMS‐quadrilateral plate lattice (TQPL). The simple cubic (SC) lattice is analyzed and expanded into three types of plate structures named central combined plate lattice (CCPL), middle combined plate lattice (MCPL), and edge combined plate lattice (ECPL). Through numerical analysis of finite element simulation and testing of single‐axis compression experiments, it discusses optimized lattices and evaluates anisotropy by homogenization. The Type 4 lattice structure, nested by TPMS and CCPL, following the homogenization process, exhibits better Young's modulus and elastic modulus values of 17.3 and 7.09 MPa. Compared to single TPMS shells, elastic modulus of TPMS with CCPL, MCPL, and ECPL nested lattices increase by 260.75%, 238.9%, and 93.51%. Before densification, the TQPL with MCPL nested lattice absorbs 73.05% more energy per volume than with CCPL, and 16.76% more than with ECPL.
科研通智能强力驱动
Strongly Powered by AbleSci AI