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The fracture of a climbing rope: a phenomenological approach

机译:爬绳的骨折:一种现象学方法

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摘要

For the fracture process of a climbing rope, two mechanisms are responsible: plastic deformation and local damage of the contact zone between the rope and the anchor. These mechanisms are described by two analytical models represented by nonlinear difference equations. The plastic deformation equation can be linked to a catastrophe-theoretical model. From the equation describing local damage accumulation, the Palmgren-Miner rule can be derived. The used energy-based approach allows the combination of these models and thus the calculation of the number of falls to failure as a function of the ratio of fall energy/energy storage capacity. The behavior of climbing ropes tested by subsequent UIAA falls can be quantitatively explained by these models.
机译:对于爬绳的断裂过程,两个机制负责:绳索和锚杆之间的接触区的塑性变形和局部损伤。 这些机制由非线性差分方程表示的两个分析模型描述。 塑性变形方程可以与灾难性理论模型相关联。 从描述局部伤害累积的等式,可以导出palmgren-miner规则。 使用的基于能量的方法允许这些模型的组合,从而计算失效的落盘的数量作为堕落能量/能量存储容量的比率。 这些模型可以定量解释由随后的UIAA下降测试的攀爬绳索的行为。

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