首页> 外文会议>The Eighth International Conference on Fundamentals of Fracture(ICFF VIII)(第八届断裂基础国际会议)论文集 >Delaminating buckling model based on nonlocal Timoshenko beam theory for microwedge indentation of a film/substrate system
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Delaminating buckling model based on nonlocal Timoshenko beam theory for microwedge indentation of a film/substrate system

机译:基于非局部Timoshenko束理论的分层屈曲模型用于膜/基底系统的微楔形压痕

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摘要

A novel model built on the basis of nonlocal Timoshenko beam theory is presented for delaminating buckling in the microwedge indentation test of a thin film on an elastic substrate. Two size effects are accounted for in the proposed model. One is the delamination size effect, and the other is the film thickness effect. The influence of the elastic deformation in the substrate and the indentation-induced impression or notch on the buckling behaviors are taken into consideration by employing coupled line springs as the boundary conditions of the buckled film. The critical stress for buckling, the energy release rate and the phase angle of the interface delamination crack are calculated and compared with those by classical beam theories. Sensitivity of the two size effects is observed.
机译:在弹性基板上的薄膜的微井压痕试验中提出了基于非局部TIMOSHONKO光束理论建立的新型模型。在拟议的模型中占了两种尺寸的效果。一个是分层尺寸效应,另一个是膜厚度效果。通过采用耦合线弹簧作为弯曲膜的边界条件,考虑了引发基板中弹性变形和凹凸诱导的印模或缺口的影响。屈曲,能量释放率和界面分层裂纹的临界应力的临界应力与经典光束理论相比。观察到两种尺寸效应的敏感性。

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