Optimization of a lattice spring model with elastoplastic conducting springs: A case study
Abstract
We consider a simple lattice spring model in which every spring is elastoplastic and is capable to conduct current. The elasticity bounds of spring are taken as and the resistance of spring is taken as , which allows us to compute the resistance of the system. The model is further subjected to a gradual stretching and, due to plasticity, the response force increases until a certain terminal value. We demonstrate that the recently developed sweeping process theory can be used to optimize the interplay between the terminal response force and the resistance on a physical domain of parameters The proposed methodology can be used by practitioners for the design of multi-functional materials as an alternative to topological optimization.
Keywords
Cite
@article{arxiv.2410.21655,
title = {Optimization of a lattice spring model with elastoplastic conducting springs: A case study},
author = {Sakshi Malhotra and Yang Jiao and Oleg Makarenkov},
journal= {arXiv preprint arXiv:2410.21655},
year = {2024}
}
Comments
21 pages, 11 figures