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首页> 外文期刊>Engineering Fracture Mechanics >Three-dimensional finite element modeling of subsurface median crack in trilayer sandwiches due to contact loading
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Three-dimensional finite element modeling of subsurface median crack in trilayer sandwiches due to contact loading

机译:接触载荷作用下三层夹层地下正中裂纹的三维有限元建模

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摘要

A type of crack system, subsurface median cracks, observed in spherical contacts of brittle coating-bond-substrate sandwich structures, is investigated using finite element method. This crack system emanates from the low surface of the brittle layer and extends transversely towards the top contact surface, resulting in ultimate failures of the structures. In a step-by-step simulation, the crack front is constructed based on a set of points along the front using a cubic spline approximation; therefore, complex crack shape can be represented with sufficient accuracy. A simple power law of fatigue crack growth is invoked at each step to determine the relative increments of these points. Followed by the descriptions of some technical details, this numerical method is implemented through modeling a typical sandwich structure with various modeling parameters, and simulation results are confirmed with experimental observations qualitatively.
机译:使用有限元方法研究了一种在脆性涂层-粘结-基底夹层结构的球形接触中观察到的裂缝系统,即地下正中裂缝。该裂纹系统从脆性层的下表面散发出来,并朝着顶部接触表面横向延伸,导致结构的最终破坏。在分步模拟中,使用三次样条近似法根据沿裂纹的一组点构造裂纹前沿;因此,可以以足够的精度表示复杂的裂纹形状。在每个步骤都调用疲劳裂纹扩展的简单幂律,以确定这些点的相对增量。通过一些技术细节的描述,通过对具有各种建模参数的典型夹层结构进行建模来实现该数值方法,并通过实验观察定性地证实了仿真结果。

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