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Optimization of directional energy transfer in Adidas bounce tubes

机译:adidas反弹管定向能量转移的优化

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Directional energy transfer quantifies the ratio of energy put into a system as a force acting in one direction to the energy returned as force acting in another direction. Directional energy transfer in sports shoes maximises conservative (recycled) energy and thus increases athletic performance in terms of running speed. The Adidas Bounce~(TM) Concept uses tubes with a 8-shaped cross section incorporated into the shoe sole. Directional energy transfer can be improved if the Bounce Tubes of Adidas shoes are rotated. The degree of rotation depends on the ratio of compressive to shear stiffness. The aim of this project was to analyse the structural properties (compressive and shear stiffness as a function of linear deflection) of Adidas Bounce Tubes and to optimise the degree of rotation. Maximal energy transfer from vertical to horizontal direction results from a Bounce Tube rotation of 18 degrees (counter clockwise, right view, running direction to the right) and with a tube length of 114mm. The energy transfer with these conditions was 34%.
机译:定向能量传递量化作为在一个方向上作用的力作为作用在另一个方向的力的力的力来定向。运动鞋中的定向能量转移最大限度地提高了保守的(再生)能源,从而提高了跑步速度的运动性能。 Adidas Bounce〜(TM)概念使用带有8形横截面的管,该横截面涂在鞋底。如果Adidas鞋的反弹管旋转,则可以改善定向能量转移。旋转程度取决于压缩与剪切刚度的比率。该项目的目的是分析阿迪达斯反弹管的结构特性(压缩和剪切刚度),并优化旋转程度。最大能量从垂直于水平方向转移到水平方向,从跳动管旋转为18度(逆时针,右侧,右侧,右侧运行方向),管长度为114mm。这些条件的能量转移为34%。

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