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Simplified analysis of the influence of strain localization and asymmetric damage distribution on static damaged polyester rope behavior

机译:应变局部化和不对称损伤分布对静态损伤聚酯绳行为的影响的简化分析

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摘要

In this paper, two factors that govern the response of damaged ropes are numerically examined independently: strain localization and asymmetric damage distribution. These two mechanisms are studied by using two nonlinear mechanical models that account for the strain localization around the failure site due to frictional effects (SLM) and the presence of unbalanced radial contact forces within a rope cross-section due to the asymmetry in damage distribution (ADDM). These models are applied to an available set of static tension tests on asymmetrically damaged, large-scale polyester ropes. The initial damage level of the rope cross-sections and rope diameters varied from 5% to 15% and from 32 mm to 166 mm, respectively. A semi-analytical proof is given to show that SLM and ADDM provide upper and lower bounds, respectively, to the damaged response of the ropes analyzed. Results indicate that, relative to the intact rope, the SLM predicted a reduction in rope capacity similar to the damage level and a maximum reduction in rope deformation capacity equal to 16% for an effective damage level equal to 25%. Conversely, the ADDM predicted a reduction in rope residual strength slightly greater than the damage level and a maximum reduction in deformation capacity equal to 3%.
机译:在本文中,独立地数值控制了影响受损绳索响应的两个因素:应变局部化和不对称破坏分布。通过使用两个非线性力学模型来研究这两种机制,该模型解释了由于摩擦效应(SLM)导致的失效部位附近的应变局部化以及由于损伤分布不对称而导致的钢丝绳横截面中存在不平衡的径向接触力( ADDM)。这些模型适用于一组不对称损坏的大型聚酯绳的静态拉力测试。钢丝绳横截面和钢丝绳直径的初始损坏程度分别为5%至15%和32 mm至166 mm。给出了半分析证据,表明SLM和ADDM分别为所分析的绳索的损坏响应提供了上限和下限。结果表明,相对于完整的绳索,SLM预测绳索的承载能力会下降,与损坏程度相似,而对于有效破坏程度等于25%,绳索变形能力的最大下降幅度将等于16%。相反,ADDM预测绳索残余强度的降低略大于损坏程度,而变形能力的最大降低等于3%。

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