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运动鞋与草皮表面界面的摩擦力和扭转阻力差异。

Differences in friction and torsional resistance in athletic shoe-turf surface interfaces.

作者信息

Heidt R S, Dormer S G, Cawley P W, Scranton P E, Losse G, Howard M

机构信息

Wellington Orthopaedic & Sports Medicine, Cincinnati, Ohio, USA.

出版信息

Am J Sports Med. 1996 Nov-Dec;24(6):834-42. doi: 10.1177/036354659602400621.

Abstract

This study evaluated the shoe-surface interaction of 15 football shoes made by 3 manufacturers in both anterior translation and rotation using a specially designed pneumatic testing system. The shoes included traditional cleated football shoes, "court" shoes (basketball-style shoes), molded-cleat shoes, and turf shoes. Under an 11.35-kg (25-pound) axial load, all shoes were tested on synthetic turf under wet and dry conditions and on natural stadium grass. Test-retest reliability, as calculated using the Pearson Product-Moment Correlation test, was 0.85 for force of translation and 0.55 for the moment of rotation. The wet versus dry surface values on translation were significantly different for rotation about the tibial axis. Spatting, which is protective taping of the ankle and heel applied on the outside of the shoe, resulted in a reduction of forces generated in both translation and rotation. No overall difference between shoes on grass versus AstroTurf was noted. However, there were significant differences for cleated and turf shoes. Shoes tested in conditions for which they were not designed exhibited reproducible excessive or extreme minimal friction characteristics that may have safety implications. On the basis of this study, we urge shoe manufacturers to display suggested indications and playing surface conditions for which their shoes are recommended.

摘要

本研究使用专门设计的气动测试系统,评估了3家制造商生产的15款足球鞋在向前平移和旋转时与鞋表面的相互作用。这些鞋子包括传统带钉足球鞋、“场地”鞋(篮球风格鞋子)、模压钉鞋和人造草地鞋。在11.35千克(25磅)轴向载荷下,所有鞋子在潮湿和干燥条件下的人造草皮以及天然体育场草地上进行测试。使用皮尔逊积差相关检验计算得出,平移力的重测信度为0.85,旋转力矩的重测信度为0.55。围绕胫骨轴旋转时,潮湿与干燥表面的平移值存在显著差异。鞋外侧对脚踝和脚跟进行保护性包扎的“spatting”,可减少平移和旋转时产生的力。未发现鞋子在天然草皮与人造草皮上的总体差异。然而,带钉鞋和人造草地鞋存在显著差异。在非设计条件下测试的鞋子表现出可重复的过度或极端最小摩擦特性,这可能具有安全隐患。基于本研究,我们敦促鞋类制造商展示其鞋子推荐的适用场地条件及使用说明。

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