Fracture of Soft Materials with Irregular Shape Hard Inclusions

Yulin Cui, Yan Shi, C. Gao
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Abstract

The development of flexible electronics has aroused great interest in the fracture of soft materials. In general, fracture of brittle materials is mainly attributed to cracks, while hard inclusions in soft materials should be considered as dangerous factor, accordingly. However, most researches on soft materials are based on the theory of linear elastic fracture. In this paper, soft materials structures with different shapes of hard inclusions are fabricated by 3D printing method and subjected to tensile testing. The applicability of the theoretical model based on linear assumption is investigated via finite element and experimental analyses.
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含不规则形状硬夹杂物的软材料断裂
柔性电子的发展引起了人们对软材料断裂的极大兴趣。一般来说,脆性材料的断裂主要是由裂纹引起的,而软质材料中的硬夹杂物也应被视为危险因素。然而,对软质材料的研究大多基于线弹性断裂理论。本文采用3D打印方法制备了具有不同形状硬夹杂物的软质材料结构,并进行了拉伸试验。通过有限元分析和实验分析,探讨了基于线性假设的理论模型的适用性。
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