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Large twist angle of a novel 3D lattice structure via a tailored buckling mode

Shuai Kang, Wenfeng Liu, Hongwei Song, Wu Yuan, Cheng Qiu, Te Ma, Zhe Wang, Jiangtao Wang

2023Mechanics of Advanced Materials and Structures11 citationsDOIOpen Access PDF

Abstract

A novel 3D centrosymmetric lattice that exhibits a large twist angle during compression is proposed by tailoring the twist buckling mode of a body-centered cubic lattice and a simple cubic truss to the first. The imperfections of offset and multimaterial systems are introduced to control the twist direction. Effects of geometrical parameters and material properties on twist behavior are studied. Results suggest that the buckling-driven lattice configuration can twist at an angle of 100° and an average angle per unit axial strain of 6.7°/%. The novel configurations can be used as force switches, safety devices, and temperature-controlled transmission devices.

Topics & Concepts

TwistBucklingTrussLattice (music)Offset (computer science)Materials scienceStructural engineeringGeometryPhysicsEngineeringComposite materialComputer scienceMathematicsAcousticsProgramming languageCellular and Composite StructuresAdvanced Materials and MechanicsStructural Analysis and Optimization