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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 >Landing impact analysis of sport surfaces using three-dimensional finite element model
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Landing impact analysis of sport surfaces using three-dimensional finite element model

机译:使用三维有限元模型的运动表面着陆冲击分析

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摘要

Shock absorbance, or force reduction, is the most significant parameter in sport surfaces which has been used as an injury prevention criterion. Many sport federations like the International Association of Athletics Federations, the International Federation of Association Football and the International Hockey Federation have arranged force reduction tests for sport surfaces which are performed by an apparatus called the Artificial Athlete Berlin. As this apparatus has been designed for simulating a normal subject at usual conditions, some major details are neglected. In this article, a finite element model, which included the human lower limb and a standard sport surface, was developed and is capable of extracting force reduction parameters in various sport conditions. The viscoelastic behavior of the sport surface was extracted by compression stress-relaxation tests with various strain rates to import into the finite element model. To calculate the shock absorbance of the sport surface, the contact pressure versus time curves were plotted for the top and bottom layers of the sport surface. The difference between peak values of curves was extracted as the sport surface shock absorbance ability. To validate the proposed model, a finite element model which included the Artificial Athlete Berlin apparatus was simulated. The results present an excellent correlation between the proposed and the Artificial Athlete Berlin apparatus models. Also, the shock absorption value obtained by the proposed model was close to the average value reported by the ASTM F2772 standard which the sport surface meets.
机译:减震或减力是运动表面上最重要的参数,已被用作预防伤害的标准。许多体育联合会,例如国际田径联合会,国际足联联合会和国际曲棍球联合会,都对运动表面进行了减力测试,这些测试是通过称为柏林人工运动员的设备进行的。由于该设备被设计用于在通常条件下模拟正常对象,因此忽略了一些主要细节。在本文中,开发了包括人类下肢和标准运动表面的有限元模型,该模型能够提取各种运动条件下的力降低参数。运动表面的粘弹性行为通过具有各种应变率的压缩应力松弛试验提取,并输入到有限元模型中。为了计算运动表面的减震能力,绘制了运动表面的顶层和底层的接触压力与时间的关系曲线。提取曲线的峰值之间的差作为运动表面冲击吸收能力。为了验证所提出的模型,模拟了包含柏林柏林人工器械的有限元模型。结果表明,在拟议的柏林运动员模型和人工柏林设备模型之间存在极好的相关性。而且,通过提出的模型获得的减震值接近运动表面满足的ASTM F2772标准报告的平均值。

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