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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >On the behavior of slackline webbings under dynamic loads and the simulation of leash falls
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On the behavior of slackline webbings under dynamic loads and the simulation of leash falls

机译:动态负荷下懒散瓦片的行为及皮带跌落模拟

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摘要

Slackline is a new and rapidly expanding sport, which has had minimal research published on it in terms of sport physics and engineering. Slackline dynamics strongly depend upon the elastic response of used webbing, typically made of polyester or nylon. Depending on the stress and strain rates applied, polymers are known to exhibit a visco-elastic behavior characterized by hysteresis effects. Through a series of carefully executed experiments, this study examined the behavior of slackline webbing under dynamic loads to determine the departures from the respective static response (stress–strain curves). Such knowledge is fundamental for the accurate simulation of slackline dynamics, so as to predict peak forces and aid safe rigging. The results demonstrate that the effective modulus during leash falls was significantly higher than the slope of the respective stress–strain curve, indicating a stiffer response. Also, the effective modulus increased with the applied pretension. Using the moduli determined experimentally for the rigged slacklines with different types of webbing, the respective leash falls were simulated numerically with high accuracy. A standardized test is proposed, to be adopted by the International Slackline Association and slackline webbing manufacturers, is proposed in order to provide key information on the response of each webbing available in the market under typical dynamic loads, similar to the “impact force” test designed for dynamic ropes by the International Climbing and Mountaineering Federation.
机译:Slackline是一种新的和迅速扩展的运动,就体育物理和工程而言,它具有最小的研究。 Slackline Dynamics强烈取决于所用织带的弹性响应,通常由聚酯或尼龙制成。取决于所施加的应力和应变率,已知聚合物表现出具有滞后效应的粘弹性行为。通过一系列仔细执行的实验,本研究检测了动态载荷下松弛织带的行为,以确定来自各个静态响应的偏差(应力 - 应变曲线)。这些知识是精确模拟Slackline Dynamics的基础,从而预测峰值力和辅助安全索引。结果表明,皮带下降期间的有效模量显着高于各个应力 - 应变曲线的斜率,表明逆变反应。此外,有效模量随着所施加的预耐受而增加。使用通过实验确定的用于具有不同类型的织带的装配的滑坡确定的模数,在数值上以高精度模拟相应的皮带下降。提出了一种标准化的测试,以通过国际懒散协会和Slackline织带制造商采用,旨在提供有关在典型的动态载荷下市场上可用的每个织带的响应的关键信息,类似于“冲击力”测试专为国际攀岩和登山联盟而设计的动态绳索。

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