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On the analysis of cut resistance in polymer-based climbing ropes: New testing methodology and resulting modes of failure

机译:基于聚合物的攀岩绳切割性分析:新的测试方法与造成的失效模式

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摘要

Rock climbing ropes tend to suffer catastrophic failure when dynamically loaded over a sharp edge. Seeking to gain a better understanding of this phenomenon, a testing methodology based on a pendulum tear tester has been developed to quantify the cut resistance of polymer-based core-sheath climbing ropes in a reliable and reproducible manner. Experimental measurements indicate that the specific energy required to cut a rope is directly proportional to the linear density of the sheath component in the rope, where a high coefficient of determination between the two parameters is observed. Field tests under actual rock climbing conditions involving a granite sharp edge confirm the practical relevance of the developed laboratory methodology. An analysis of failure modes by means of scanning electron microscopy indicates that cut resistance is inversely proportional to the amount of frictional heating introduced at the point of contact between rope and sharp edge. (C) 2017 Elsevier Ltd. All rights reserved.
机译:攀岩绳索在动态装载在锋利的边缘时往往会遭受灾难性的故障。寻求更好地理解这种现象,已经开发了一种基于摆撕裂测试仪的测试方法,以通过可靠且可重复的方式量化聚合物基芯鞘爬绳的切割电阻。实验测量表明,切割绳索所需的特定能量与绳索中的鞘部件的线性密度成比例,其中观察到两个参数之间的高度的确定系数。涉及花岗岩锋利边缘的实际岩石攀岩条件下的现场测试证实了开发实验室方法的实际相关性。通过扫描电子显微镜进行故障模式的分析表明,切割电阻与绳索和尖锐边缘之间的接触点引入的摩擦加热量成反比。 (c)2017 Elsevier Ltd.保留所有权利。

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