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Fractality of Simulated Fracture

机译:模拟骨折的断裂性

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The paper is focussed on numerical simulations of the fracture of a quasi-brittle specimen due to its impact onto a fixed rigid elastic plate. The failure of the specimen after the impact is modelled in two ways based on the physical discretization of continuum: via physical discrete elements and pseudo-particles. Advantages and drawbacks of both used methods are discussed. The size distribution of the fragments of the broken specimen resulting from physical discrete element model simulation follows a power law, which indicates the ability of the numerical model to identify the fractal nature of the fracture. The pseudo-particle model, on the other side, can successfully predict the kinematics of the fragments of the specimen under impact failure.
机译:本文侧重于由于其对固定刚性弹性板的撞击而对准脆性标本断裂的数值模拟。在撞击后,样品的失败是以两种方式建模的,基于连续体的物理离散化:通过物理离散元件和伪粒子。讨论了两种使用方法的优点和缺点。由物理离散元件模型模拟产生的破损标本的碎片的尺寸分布遵循电力法,这表明了数值模型识别骨折分形性质的能力。另一方面,伪粒子模型可以成功地预测受冲击破坏下标本的片段的运动学。

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