首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P: Journal of Sports Engineering and Technology >The effects of various infills, fibre structures, and shoe designs on generating rotational traction on an artificial surface
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The effects of various infills, fibre structures, and shoe designs on generating rotational traction on an artificial surface

机译:各种填充物,纤维结构和鞋的设计对在人造表面上产生旋转牵引力的影响

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The purpose of this study was to investigate the role of infill material and fibre structure on the rotational traction associated with American football shoes on infill-based artificial surfaces. A mobile testing apparatus with a compliant ankle was used to apply rotations and measure the torque produced at the football shoe–surface interface. The mechanical surrogate was used to compare three infill materials in combination with three fibre structures, creating a total of nine unique surfaces. Infill material, fibre structure, and shoe design were all found to significantly affect rotational traction. The cryogenically processed styrene–butadiene rubber (SBR) infill yielded significantly higher peak torques than the ambient ground SBR and extruded thermoplastic elastomer (TPE) infills. An artificial surface with a nylon root zone yielded significantly lower peak torques than similar fibre surfaces without a nylon root zone. The size of infill particles and the presence of a nylon root zone may influence the compactness of the infill layer. These features may act to alter the amount of cleat contact with the infill, thereby influencing rotational traction. The amount of cleat contact with the surface may also be determined by the shoe design.
机译:这项研究的目的是调查填充材料和纤维结构在基于橄榄球的人造表面上与美式橄榄球鞋相关的旋转牵引力中的作用。使用具有顺应性脚踝的移动测试设备进行旋转并测量足球鞋-表面界面处产生的扭矩。机械替代物用于比较三种填充材料和三种纤维结构,总共创建了九个独特的表面。发现填充材料,纤维结构和鞋的设计都会显着影响旋转牵引力。低温加工的丁苯橡胶(SBR)填充物产生的峰值扭矩明显高于周围的地面SBR和挤出热塑性弹性体(TPE)填充物。与没有尼龙根部区域的类似纤维表面相比,带有尼龙根部区域的人工表面产生的峰值扭矩要低得多。填充颗粒的大小和尼龙根部区域的存在可能会影响填充层的致密性。这些特征可以用来改变防滑钉与填充物的接触量,从而影响旋转牵引力。防滑钉与表面的接触量也可以通过鞋的设计来确定。

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