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A fiber-bridged crack with rate-dependent bridging forces

机译:速率依赖的桥接力的纤维桥接裂纹

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A rate-dependent model is used to represent the bridging forces acting across a fiber-bridged slit crack in a homogeneous anisotropic elastic material, with the potential to characterize the inelastic behavior of bridged cracks in composites. The basic equilibrium equations are presented and solved, using a series of Chebychev polynomials and a suitable approximation numerical scheme. An example of a bridged crack in an isotropic homogeneous material is examined in detail. Results show that, under a constant external load, the stress intensity factors and the energy release rate increase with time until a critical time is reached, after which all these quantities approach the corresponding values for an unbridged crack.
机译:速率依赖模型用于表示在均质各向异性弹性材料中作用于纤维桥连裂缝上的桥接力,具有表征复合材料中桥连缝的非弹性行为的潜力。使用一系列Chebychev多项式和合适的近似数值格式,提出并求解了基本的平衡方程。将详细研究各向同性均质材料中桥接裂纹的示例。结果表明,在恒定的外部载荷下,应力强度因子和能量释放速率会随着时间的增加而增加,直到达到临界时间为止,此后所有这些量都接近未桥接裂纹的相应值。

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