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A Simple Model to Describe the Average Propagation Energy of a Brittle Crack Running Along a Porous Interface

机译:描述沿多孔界面延伸的脆性裂纹的平均传播能量的简单模型

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摘要

A simple 'Cavity Affected Zone' model is proposed to describe the influence of the interfacial pore fraction on the average interfacial crack propagation energy in a brittle porous interface. It is based on the assumption that each cavity is surrounded by a perturbed interface zone along which the fracture energy is locally different from its reference value in a perfect plain and planar interface. Consequently, when the interface pore fraction is increased, a two-step sequence of regimes is predicted for the measurable overall interfacial fracture energy. This simple but flexible description is found to be consistent with two different recent examples of experimental adhesion measurements. It is expected to be helpful in analysing detailed mechanisms of crack growth and practical adhesion in porous or patterned brittle solid/solid interfaces.
机译:提出了一个简单的“空腔影响区”模型来描述界面孔隙分数对脆性多孔界面中平均界面裂纹扩展能量的影响。它基于这样的假设:每个空腔都被一个扰动的界面区域围绕,在理想的平面和平面界面中,沿着该区域的断裂能局部不同于其参考值。因此,当界面孔隙率增加时,可测量总体界面断裂能的过程分为两步。发现该简单但灵活的描述与最近两个实验性粘附力测量的不同实例是一致的。预期将有助于分析多孔或有图案的脆性固体/固体界面中裂纹扩展和实际粘附的详细机制。

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