3D architected isotropic materials with tunable stiffness and buckling strength

12/02/2020
by   Fengwen Wang, et al.
0

This paper presents a class of 3D single-scale isotropic materials with tunable stiffness and buckling strength obtained via topology optimization and subsequent shape optimization. Compared to stiffness-optimal closed-cell plate material, the material class reduces the Young's modulus to a range from 79 58 Based on small deformation theory, material stiffness is evaluated using the homogenization method. Buckling strength under a given macroscopic stress state is estimated using linear buckling analysis with Block-Floquet boundary conditions to capture both short and long wavelength buckling modes. The 3D isotropic single-scale materials with tunable properties are designed using topology optimization, and are then further simplified using shape optimization. Both topology and shape optimized results demonstrate that material buckling strength can be significantly enhanced by hybrids between truss and variable thickness plate structures.

READ FULL TEXT

page 6

page 10

page 12

page 13

page 15

page 16

page 18

research
08/27/2018

Topology optimization of micro-structured materials featured with the specific mechanical properties

Micro-structured materials consisting of an array of microstructures are...
research
09/29/2022

Architecting materials for extremal stiffness, yield and buckling strength

This paper proposes a methodology for architecting microstructures with ...
research
05/08/2019

Design and Optimization of Conforming Lattice Structures

Inspired by natural cellular materials such as trabecular bone, lattice ...
research
12/13/2022

A Comprehensive Dataset of Grains for Granular Jamming in Soft Robotics: Grip Strength and Shock Absorption

We test grip strength and shock absorption properties of various granula...
research
03/14/2023

Topology optimization of flexoelectric metamaterials with apparent piezoelectricity

The flexoelectric effect, coupling polarization and strain gradient as w...
research
11/13/2014

Mesh2Fab: Reforming Shapes for Material-specific Fabrication

As humans, we regularly associate shape of an object with its built mate...
research
04/28/2019

Structurally optimized shells

Shells, i.e., objects made of a thin layer of material following a surfa...

Please sign up or login with your details

Forgot password? Click here to reset