Litcius/Paper detail

Inverse design of mechanical springs with tailored nonlinear elastic response utilizing internal contact

Gore Lukas Bluhm, Ole Sigmund, Konstantinos Poulios

2023International Journal of Non-Linear Mechanics22 citationsDOIOpen Access PDF

Abstract

This work employs a contact-aware topology optimization approach for the design of nonlinear springs with a broad range of prescribed load–displacement responses in both tension and compression. By leveraging the third medium contact approach to model internal contact, this method enables the utilization of collision between parts to achieve the desired load–displacement response while minimizing material consumption. The effectiveness of the proposed computational design approach is demonstrated using axially loaded springs as a benchmark, but the proposed method is also applicable to more general cases, including the design of periodic nonlinear material microstructures and metamaterials.

Topics & Concepts

Nonlinear systemDisplacement (psychology)Topology optimizationInverseStructural engineeringComputer scienceMechanical engineeringControl theory (sociology)Materials scienceEngineeringPhysicsMathematicsFinite element methodPsychotherapistArtificial intelligenceQuantum mechanicsControl (management)PsychologyGeometryTopology Optimization in EngineeringComposite Structure Analysis and OptimizationStructural Analysis and Optimization