Control of Mechanical and Fracture Properties in Two-phase Materials Reinforced by Continuous, Irregular Networks

Fuente: arXiv
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Main Authors: Magrini, Tommaso, Fox, Chelsea, Wihardja, Adeline, Kolli, Athena, Daraio, Chiara
Format: Preprint
Published: 2023
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author Magrini, Tommaso
Fox, Chelsea
Wihardja, Adeline
Kolli, Athena
Daraio, Chiara
author_facet Magrini, Tommaso
Fox, Chelsea
Wihardja, Adeline
Kolli, Athena
Daraio, Chiara
contents Composites with high strength and high fracture resistance are desirable for structural and protective applications. Most composites, however, suffer from poor damage tolerance and are prone to unpredictable fractures. Understanding the behavior of materials with an irregular reinforcement phase offers fundamental guidelines for tailoring their performance. Here, we study the fracture nucleation and propagation in two phase composites, as a function of the topology of their irregular microstructures. We use a stochastic algorithm to design the polymeric reinforcing network, achieving independent control of topology and geometry of the microstructure. By tuning the local connectivity of isodense tiles and their assembly into larger structures, we tailor the mechanical and fracture properties of the architected composites, at the local and global scale. Finally, combining different reinforcing networks into a spatially determined meso-scale assembly, we demonstrate how the spatial propagation of fractures in architected composite materials can be designed and controlled a priori.
format Preprint
id arxiv_https___arxiv_org_abs_2309_01888
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Control of Mechanical and Fracture Properties in Two-phase Materials Reinforced by Continuous, Irregular Networks
Magrini, Tommaso
Fox, Chelsea
Wihardja, Adeline
Kolli, Athena
Daraio, Chiara
Materials Science
Composites with high strength and high fracture resistance are desirable for structural and protective applications. Most composites, however, suffer from poor damage tolerance and are prone to unpredictable fractures. Understanding the behavior of materials with an irregular reinforcement phase offers fundamental guidelines for tailoring their performance. Here, we study the fracture nucleation and propagation in two phase composites, as a function of the topology of their irregular microstructures. We use a stochastic algorithm to design the polymeric reinforcing network, achieving independent control of topology and geometry of the microstructure. By tuning the local connectivity of isodense tiles and their assembly into larger structures, we tailor the mechanical and fracture properties of the architected composites, at the local and global scale. Finally, combining different reinforcing networks into a spatially determined meso-scale assembly, we demonstrate how the spatial propagation of fractures in architected composite materials can be designed and controlled a priori.
title Control of Mechanical and Fracture Properties in Two-phase Materials Reinforced by Continuous, Irregular Networks
topic Materials Science
url https://arxiv.org/abs/2309.01888