Mechanical Cloak via Data-Driven Aperiodic Metamaterial Design

07/28/2021
by   Liwei Wang, et al.
0

Mechanical cloaks are materials engineered to manipulate the elastic response around objects to make them indistinguishable from their homogeneous surroundings. Typically, methods based on material-parameter transformations are used to design optical, thermal and electric cloaks. However, they are not applicable in designing mechanical cloaks, since continuum-mechanics equations are not form-invariant under general coordinate transformations. As a result, existing design methods for mechanical cloaks have so far been limited to a narrow selection of voids with simple shapes. To address this challenge, we present a systematic, data-driven design approach to create mechanical cloaks composed of aperiodic metamaterials using a large pre-computed unit cell database. Our method is flexible to allow the design of cloaks with various boundary conditions, multiple loadings, different shapes and numbers of voids, and different homogeneous surroundings. It enables a concurrent optimization of both topology and properties distribution of the cloak. Compared to conventional fixed-shape solutions, this results in an overall better cloaking performance, and offers unparalleled versatility. Experimental measurements on 3D-printed structures further confirm the validity of the proposed approach. Our research illustrates the benefits of data-driven approaches in quickly responding to new design scenarios and resolving the computational challenge associated with multiscale designs of functional structures. It could be generalized to accommodate other applications that require heterogeneous property distribution, such as soft robots and implants design.

READ FULL TEXT

page 3

page 8

page 11

page 14

page 28

page 30

page 31

page 32

research
03/15/2019

Model-Free Data-Driven Methods in Mechanics: Material Data Identification and Solvers

This paper presents an integrated model-free data-driven approach to sol...
research
09/21/2019

Level-set topology optimization considering nonlinear thermoelasticity

At elevated temperature environments, elastic structures experience a ch...
research
06/01/2020

METASET: Exploring Shape and Property Spaces for Data-Driven Metamaterials Design

Data-driven design of mechanical metamaterials is an increasingly popula...
research
07/23/2023

Unravelling the Mechanics of Knitted Fabrics Through Hierarchical Geometric Representation

Knitting interloops one-dimensional yarns into three-dimensional fabrics...
research
09/10/2023

A rapid and automated computational approach to the design of multistable soft actuators

We develop an automated computational modeling framework for rapid gradi...
research
09/18/2017

Sculpt, Deploy, Repeat: Fast Prototyping of Interactive Physical Objects

Building a deployable PhysiComp that merges form and function typically ...
research
12/01/2021

Remixing Functionally Graded Structures: Data-Driven Topology Optimization with Multiclass Shape Blending

To create heterogeneous, multiscale structures with unprecedented functi...

Please sign up or login with your details

Forgot password? Click here to reset