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contributor authorSeiler, Philipp E.
contributor authorLi, Kan
contributor authorDeshpande, Vikram S.
contributor authorFleck, Norman A.
date accessioned2022-02-05T22:29:43Z
date available2022-02-05T22:29:43Z
date copyright12/7/2020 12:00:00 AM
date issued2020
identifier issn0021-8936
identifier otherjam_88_3_031011.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4277631
description abstractRecent advances in additive manufacturing methods make it possible, for the first time, to manufacture complex micro-architectured solids that achieve desired stress versus strain responses. Here, we report experimental measurements and associated finite element (FE) calculations on the effect of strut shape upon the tensile response of two-dimensional (2D) lattices made from low-carbon steel sheets. Two lattice topologies are considered: (i) a stretching-dominated triangular lattice and (ii) a bending-dominated hexagonal lattice. It is found that strut waviness can enhance the ductility of each lattice, particularly for bending-dominated hexagonal lattices. Manufacturing imperfections such as undercuts have a small effect on the ductility of the lattices but can significantly reduce the ultimate tensile strength. FE simulations provide additional insight into these observations and are used to construct design maps to aid the design of lattices with specified strength and ductility.
publisherThe American Society of Mechanical Engineers (ASME)
titleThe Influence of Strut Waviness on the Tensile Response of Lattice Materials
typeJournal Paper
journal volume88
journal issue3
journal titleJournal of Applied Mechanics
identifier doi10.1115/1.4049140
journal fristpage031011-1
journal lastpage031011-11
page11
treeJournal of Applied Mechanics:;2020:;volume( 088 ):;issue: 003
contenttypeFulltext


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