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The influence of gravimetric moisture content on studded shoe–surface interactions in soccer

机译:重力含水量对足球鞋钉表面相互作用的影响

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摘要

It is desirable for the studs of a soccer shoe to penetrate the sport surface and provide the player with sufficient traction when accelerating. Mechanical tests are often used to measure the traction of shoe–surface combinations. Mechanical testing offers a repeatable measure of shoe–surface traction, eliminating the inherent uncertainties that exist when human participant testing is employed, and are hence used to directly compare the performance of shoe–surface combinations. However, the influence specific surface characteristics has on traction is often overlooked. Examining the influence of surface characteristics on mechanical test results improves the understanding of the traction mechanisms at the shoe–surface interface. This allows footwear developers to make informed decisions on the design of studded outsoles. The aim of this paper is to understand the effect gravimetric moisture content has on the tribological mechanisms at play during stud–surface interaction. This study investigates the relationships between: the gravimetric moisture content of a natural sand-based soccer surface; surface stiffness measured via a bespoke impact test device; and surface traction measured via a bespoke mechanical test device. Regression analysis revealed that surface stiffness decreases linearly with increased gravimetric moisture content (p = 0.04). Traction was found to initially increase and then decrease with gravimetric moisture content. It was observed that: a surface of low moisture content provides low stud penetration and therefore reduced traction; a surface of high moisture content provides high stud penetration but also reduced traction due to a lubricating effect; and surfaces with moisture content in between the two extremes provide increased traction. In this study a standard commercially available stud was used and other studs may provide slightly different results. The results provide insight into the traction mechanisms at the stud–surface interface which are described in the paper. The variation between traction measurements shows the influence gravimetric moisture content will have on player performance. This highlights the requirement to understand surface conditions prior to making comparative shoe–surface traction studies and the importance of using a studded outsole that is appropriate to the surface condition during play.
机译:期望足球鞋的鞋钉穿透运动表面并在加速时为运动员提供足够的牵引力。机械测试通常用于测量鞋面组合的牵引力。机械测试提供了鞋表面附着力的可重复性度量,消除了采用人工参与测试时存在的内在不确定性,因此可以用来直接比较鞋表面组合的性能。但是,通常忽略特定表面特性对牵引力的影响。研究表面特性对机械测试结果的影响,可以提高对鞋-表面界面处的牵引机制的了解。这使鞋类开发人员可以对镶嵌外底的设计做出明智的决策。本文的目的是了解重量水分对螺柱与地表相互作用过程中摩擦学机理的影响。这项研究调查了以下之间的关系:天然沙子足球表面的重量水分含量;通过定制冲击测试设备测量的表面硬度;通过定制的机械测试设备测量表面张力。回归分析表明,表面刚度随重量水分含量的增加而线性降低(p = 0.04)。发现牵引力最初随着重量水分的增加而增加,然后减少。观察到:低水分含量的表面提供了较低的螺柱穿透力,因此降低了牵引力;高水分含量的表面可提供较高的螺柱穿透力,但由于润滑作用,也可降低牵引力;水分含量介于两个极端之间的表面可提供更大的牵引力。在这项研究中,使用了标准的市售螺柱,其他螺柱可能会提供略有不同的结果。结果提供了本文描述的螺柱-表面界面处的牵引机制的见解。牵引力测量值之间的差异表明,重量含水量会对运动员的表现产生影响。这突显了在进行比较鞋-表面牵引力研究之前必须了解表面状况的要求,以及使用适合比赛期间表面状况的带钉外底的重要性。

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    Clarke J.; Carre M.J.;

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  • 年度 2016
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