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A unified potential-based cohesive model of mixed-mode fracture

机译:基于统一势能的混合模式裂缝内聚模型

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A generalized potential-based constitutive model for mixed-mode cohesive fracture is presented in conjunction with physical parameters such as fracture energy, cohesive strength and shape of cohesive interactions. It characterizes different fracture energies in each fracture mode, and can be applied to various material failure behavior (e.g. quasi-brittle). The unified potential leads to both intrinsic (with initial slope indicators to control elastic behavior) and extrinsic cohesive zone models. Path dependence of work-of-separation is investigated with respect to proportional and non-proportional paths-this investigation demonstrates consistency of the cohesive constitutive model. The potential-based model is verified by simulating a mixed-mode bending test. The actual potential is named PPR (Park-Paulino-Roesler), after the first initials of the authors' last names.
机译:结合物理参数如断裂能,内聚强度和内聚相互作用的形状,提出了一种基于电位的广义本构模型。它在每种断裂模式下表征了不同的断裂能量,并且可以应用于各种材料破坏行为(例如准脆性)。统一的电势导致本征模型(具有用于控制弹性行为的初始坡度指示器)和非本征粘性区模型。相对于比例和非比例路径,研究了分离功的路径依赖性-该研究证明了内聚本构模型的一致性。通过模拟混合模式弯曲测试来验证基于电势的模型。在作者姓氏的首字母缩写之后,实际的潜力称为PPR(Park-Paulino-Roesler)。

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