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Tennis Racket Vibrations and Shock Transmission to the Wrist during Forehand Drive

机译:正手击打过程中网球拍振动和震动传递到手腕

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摘要

This study aimed to investigate the effects of two different racket models and two different forehand drive velocities on the three-dimensional vibration behavior of the racket and shock transmission to the player’s wrist under real playing conditions. Nine tennis players performed a series of crosscourt flat forehand drives at two velocities, using a lightly and a highly vibrant racket. Two accelerometers were fixed on the racket frame and the player’s wrist. The analysis of vibration signals in both time and frequency domains showed no interaction effect of velocity and racket conditions either on the racket vibration behavior or on shock transmission. An increase in playing velocity enlarged the amount of vibrations at the racket and wrist, but weakly altered their frequency content. As compared to a racket perceived as highly vibrating, a racket perceived as lightly vibrating damped longer in the out-of-plane axis of the racket and shorter on the other axis of the racket and on the wrist, and displayed a lower amount of energy in the high frequency of the vibration signal at the racket and wrist. These findings indicated that the playing velocity must be controlled when investigating the vibration loads due to the racket under real playing conditions. Similarly, a reduced perception of vibration by the tennis player would be linked to decreased amplitude of the racket vibration signal, which may concentrate the signal energy in the low frequencies.
机译:这项研究旨在调查两种不同的球拍模型和两种不同的正手驱动速度对在真实比赛条件下球拍的三维振动行为以及冲击传递到玩家手腕的影响。九名网球运动员使用轻巧而充满活力的球拍,以两种速度进行了一系列横场平正手击球动作。在球拍框架和球员的手腕上固定了两个加速度计。在时域和频域上对振动信号的分析表明,速度和球拍条件对球拍的振动行为或冲击传递都没有相互作用的影响。演奏速度的增加使球拍和手腕处的振动量增加,但其频率成分变化很小。与被感知为高度振动的球拍相比,被感知为轻微振动的球拍在球拍的面外轴上的阻尼时间更长,而在球拍的另一个轴上和手腕上的阻尼时间较短,并且能量消耗较低。球拍和手腕处的振动信号频率很高。这些发现表明,在研究真实比赛条件下球拍引起的振动载荷时,必须控制比赛速度。类似地,网球运动员对振动的减少的感知将与球拍振动信号的振幅减小有关,这可以将信号能量集中在低频中。

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