首页> 外文期刊>Sports biomechanics >The mechanics of American football cleats on natural grass and infill-type artificial playing surfaces with loads relevant to elite athletes
【24h】

The mechanics of American football cleats on natural grass and infill-type artificial playing surfaces with loads relevant to elite athletes

机译:美式足球在天然草皮和填充型人工比赛表面上的防滑钉的作用与负重运动员有关

获取原文
获取原文并翻译 | 示例
           

摘要

This study quantified the mechanical interactions of 19 American football cleats with a natural grass and an infill-type artificial surface under loading conditions designed to represent play-relevant manoeuvres of elite athletes. Variation in peak forces and torques was observed across cleats when tested on natural grass (2.8-4.2kN in translation, 120-174Nm in rotation). A significant (p<0.05) relationship was found between the peak force and torque on natural grass. Almost all of the cleats caused shear failure of the natural surface, which generated a divot following a test. This is a force-limiting cleat release mode. In contrast, all but one of the cleat types held fast in the artificial turf, resulting in force and torque limited by the prescribed input load from the test device (nom. 4.8kN and 200Nm). Only one cleat pattern, consisting of small deformable nubs, released on the artificial surface and generated force (3.9kN) comparable to the range observed with natural grass. These findings (1) should inform the design of cleats intended for use on natural and artificial surfaces and (2) suggest a mechanical explanation for a higher lower-limb injury rate in elite athletes playing on artificial surfaces.
机译:这项研究量化了19种美式足球钉鞋与天然草皮和填充型人造表面在负载条件下的机械相互作用,这些负载条件旨在代表与优秀运动员比赛相关的动作。在天然草地上进行测试时,观察到整个鞋钉的峰值力和扭矩都发生了变化(平移为2.8-4.2kN,旋转为120-174Nm)。在自然草地上的峰值力和扭矩之间发现了显着的(p <0.05)关系。几乎所有的防滑钉都会导致自然表面的剪切破坏,并在测试后产生裂缝。这是一个限力夹板释放模式。相反,除了其中一种防滑钉,其他所有防滑钉都牢牢地固定在人造草皮中,从而导致力和扭矩受到来自测试设备的规定输入负载(标称值为4.8kN和200Nm)的限制。只有一种楔形图案(由小的可变形结节组成)在人造表面上释放,并且产生的力(3.9kN)与天然草观察到的范围相当。这些发现(1)应该为自然和人造表面上使用的防滑钉的设计提供依据,并且(2)为在人造表面上运动的精英运动员提供更高的下肢损伤率的机械解释。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号