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Vibration absorption in the tennis grip and the effects on racquet dynamics

机译:网球握把中的振动吸收和对球拍动态的影响

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摘要

The modern game of tennis has changed in recent years as a result of lightweight, stiffer racquets. The evolution of the tennis racquet, with respect to both design and materials, has increased the speed of the game but also the levels of stress placed on the player's bodies. Many believe that injuries such as lateral epicondylitis (tennis elbow) are caused and aggravated by the absorption of racquet energy by the player, in the form of shock and vibration. This thesis presents an experimental investigation into the absorption of racquet vibration to the player's hand and forearm. Quantification of the tennis grip has been achieved in this research using different experimental techniques to analyse different aspects of the tennis grip. Grip pressure distribution profiles during impact have been established using both pressure sensitive film and real-time data acquisition methods. Quantification of grip tightness during impact, together with gripping times, has also been quantified using a strain gauge cantilever system manufactured specifically for this research. The experimental data acquired in this research has provided the base for grip pressure distribution profiles to be established for three stroke types (e.g. Forehand, service and the problematic backhand). The profiles depict the distribution of pressure in the tennis grip in relation to the ball impact, in the time domain. Based on these grip profiles, the research hypothesises hand movements in an attempt to establish muscle contractions (and moreover locations of vibration absorption) specific to stroke types. The research investigates the absorption of racquet vibrations by the player's hand in the time domain. Filtering of accelerometer data allows for the isolation of specific frequencies of interest (i.e. below 200Hz). Logarithmic decrement of racquet vibration has been calculated and related to the grip pressure distributions in the time domain, and the relationship between grip pressure and vibration damping has been modelled. The correlation between grip pressure and the logarithmic decrement has been show to be significant (p less than 0.005) and non-linear. The relationship between the tennis grip and the damping of racquet vibrations has been found to be dependant on both grip pressure and the proximity of grip pressure application in proximity to the handle node. Grip pressure applied to the racquet close to the handle node has a greater damping effect than a similar pressure further away. In addition to these key research findings, the effectiveness of a piezoelectric racquet damping system is also investigated. A comprehensive modal analysis of two tennis racquets is given with further ball impact tests. The ball impact tests showed that the damping system has a 28% difference in racquet vibrations during freely suspended grip conditions. However, under hand-held grip conditions the inclusion of grip damping into the system provides a much greater damping entity (880% greater). Therefore, the effect of the piezoelectric system was deemed to be negligible.
机译:近年来,由于轻巧,坚固的球拍,现代网球运动发生了变化。网球拍在设计和材料方面的发展不仅提高了比赛的速度,而且还提高了球员身体承受的压力。许多人认为,诸如外侧上con炎(网球肘)之类的伤害是由运动员以冲击和振动的形式吸收球拍能量而引起并加重的。本文对球拍振动对运动员手部和前臂的吸收进行了实验研究。在这项研究中,已经使用不同的实验技术来分析网球握力的不同方面,从而实现了网球握力的量化。已经使用压敏胶片和实时数据采集方法建立了冲击过程中的握力分布图。还使用专门为此研究制造的应变仪悬臂系统对冲击过程中的抓地紧度和抓地时间进行了量化。这项研究中获得的实验数据为三种冲程类型(例如,正手,维修和有问题的反手)建立的抓地力分布曲线提供了基础。这些轮廓在时域中描述了网球握力中与球撞击有关的压力分布。基于这些握力曲线,研究假设了手的动作,试图建立特定于中风类型的肌肉收缩(以及振动吸收的位置)。该研究调查了在时域中玩家手部对球拍振动的吸收。过滤加速度计数据可以隔离特定的关注频率(即200Hz以下)。计算了球拍振动的对数递减,并与时域中的抓地力压力分布相关,并对抓地力与振动阻尼之间的关系进行了建模。握力和对数递减之间的相关性已显示为显着(p小于0.005)并且是非线性的。已经发现网球握力和球拍振动的阻尼之间的关系取决于握力和握柄压力在靠近手柄节点处的施加程度。施加在靠近手柄节点的球拍上的握力比远处的相似压力具有更大的阻尼效果。除了这些关键的研究发现之外,还研究了压电球拍阻尼系统的有效性。通过进一步的击球测试,对两个网球拍进行了全面的模态分析。球撞击测试表明,在自由悬挂的握把条件下,减震系统的球拍振动有28%的差异。但是,在手持式抓握条件下,系统中包含的抓握阻尼将提供更大的阻尼实体(大880%)。因此,压电系统的影响被认为是微不足道的。

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