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Numerical Simulation of Fracture Saturation in Multilayer Materials in Symmetric Case

机译:对称情况下多层材料断裂饱和的数值模拟

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Using Realistic Failure Process Analysis Code RFPA~2D, a three layer materials model with a central layer and with the same thickness top and bottom layer, progressive formation of fracture saturation in multilayer materials is simulated in all case by numerical simulation. Our numerical simulation recurrence the phenomenon of fracture saturation in multilayer materials. numerical simulation shown that for the symmetric case the spacing of these fractures at fracture saturation are approximately the same and lineally related to thickness of the fractured layer. We investigate that the critical fracture spacing to layer thickness ratio is function of the thickness ratio of the top and bottom layers to central layer at fracture saturation. numerical simulation shown that for the symmetric case the critical spacing of fractures to layer thickness ratio decreases rapidly and tends to a constant value.
机译:使用现实故障处理分析码RFPA〜2D,具有中央层的三层材料模型和具有相同厚度的顶层和底层,在所有情况下都通过数值模拟模拟了多层材料中的裂缝饱和度的渐近形成。 我们的数值模拟复发复发多层材料裂缝饱和现象。 数值模拟表明,对于对称情况,这些裂缝在断裂饱和时的间距与裂缝层的厚度大致相同和线性。 我们调查到层厚度比的临界断裂间隔是顶层和底层与断裂饱和度的厚度比的函数。 数值模拟表明,对于对称情况,裂缝与层厚度比的临界间距快速降低并且趋于恒定值。

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