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The role of damage-softened material behavior in the fracture of composites and adhesives

机译:破坏软化材料行为在复合材料和粘合剂断裂中的作用

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摘要

Failure mechanisms of materials under very high strains experienced at and ahead of the crack tip such as formation, growth, and interaction of microvoids in ductile materials, microcracks in brittle solids or crazes in polymers and adhesives are represented by one-dimensional, nonlinear stress-strain relations possessing different ways by which the material loses capacity to carry load up to fracture or total separation. A double cantilever beam (DCB) type specimen is considered. The nonlinear material is confined to a thin strip between the two elastic beams loaded by a wedge. The problem is first modeled as a beam on a nonlinear foundation. The pertinent equation is solved numerically as a two-point boundary value problem for both the stationary and the quasi-stationay propagating crack. A finite element model is then used to model the problem in more detail in order to assess the adequacy of the beam model for the reduction of experimental data to determine in-situ properties of the thin interlayer.
机译:在裂纹尖端及裂纹尖端之前经历的非常高应变下的材料的失效机制,例如一维非线性应力,代表了韧性材料中微孔的形成,生长和相互作用,脆性固体中的微裂纹或聚合物和粘合剂中的裂纹。应变关系具有不同的方式,使材料失去承受载荷直至断裂或完全分离的能力。考虑双悬臂梁(DCB)型试样。非线性材料被限制在楔形加载的两个弹性梁之间的一条薄带上。首先将问题建模为非线性基础上的梁。对于固定和准平稳的传播裂纹,相关方程均被数值求解为两点边值问题。然后,使用有限元模型对问题进行更详细的建模,以评估梁模型是否适合减少实验数据以确定薄中间层的原位特性。

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