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高尔夫鞋设计的比较研究表明,较短的铁杆会产生更大的地面反作用力。

A comparison of golf shoe designs highlights greater ground reaction forces with shorter irons.

机构信息

University of Chichester , Chichester, West Sussex, UK.

出版信息

J Sports Sci Med. 2007 Dec 1;6(4):484-9. eCollection 2007.

Abstract

In an effort to reduce golf turf damage the traditional metal spike golf shoe has been redesigned, but shoe-ground biomechanical evaluations have utilised artificial grass surfaces. Twenty-four golfers wore three different golf shoe traction designs (traditional metal spikes, alternative spikes, and a flat-soled shoe with no additional traction) when performing shots with a driver, 3 iron and 7 iron. Ground action forces were measured beneath the feet by two natural grass covered force platforms. The maximum vertical force recorded at the back foot with the 3 iron and 7 iron was 0.82 BW (body weight) and at the front foot 1.1 BW approximately in both the metal spike and alternative spike golf shoe designs. When using the driver these maximal vertical values were 0.49 BW at the back foot and 0.84 BW at the front foot. Furthermore, as performance of the backswing and then downswing necessitates a change in movement direction the range of force generated during the complete swing was calculated. In the metal spike shoe the vertical force generated at the back foot with both irons was 0.67 BW and at the front foot 0.96 BW with the 3 iron and 0.92 BW with the 7 iron. The back foot vertical force generated with the driver was 0.33 BW and at the front foot 0.83 BW wearing the metal spike shoe. Results indicated the greater force generation with the irons. When using the driver the more horizontal swing plane associated with the longer club reduced vertical forces at the back and front foot. However, the mediolateral force generated across each foot in the metal and alternative spike shoes when using the driver was greater than when the irons were used. The coefficient of friction was 0. 62 at the back and front foot whichever shoe was worn or club used. Key pointsDuring the golf swing ground reaction forces at the golf shoe to natural grass turf interface were greater with irons than with the longer driver.In the golf swing maximal vertical forces were greater at the front (left) foot in the than at the back foot for a right handed golfer.Similar maximum vertical ground reaction forces were recorded with each club when a 8 mm metal spike golf shoe or an alternative spike golf shoe were worn.Force generation and coefficients of friction were similar for the alternative spike design and traditional metal seven spike golf shoe on natural grass turf.Data collection possible due to application of technical developments to golf from work on other natural turf based sports.

摘要

为了减少高尔夫草坪的损伤,传统的金属钉高尔夫鞋已经被重新设计,但鞋地生物力学评估一直使用人造草皮表面。24 名高尔夫球手分别穿着三种不同的高尔夫鞋牵引设计(传统金属钉、替代钉和无额外牵引的平底鞋),用球杆、3 号铁杆和 7 号铁杆击球。双脚下的地面作用力由两个天然草皮覆盖的力平台测量。使用 3 号铁杆和 7 号铁杆时,后脚记录的最大垂直力为 0.82BW(体重),前脚约为 1.1BW,在金属钉和替代钉高尔夫鞋设计中均为如此。使用球杆时,后脚的最大垂直值为 0.49BW,前脚为 0.84BW。此外,由于挥杆和下挥杆的表现需要改变运动方向,因此计算了整个挥杆过程中产生的力的范围。在金属钉鞋中,用铁杆击球时,后脚的垂直力分别为 0.67BW 和前脚的 0.96BW,用 3 号铁杆击球时为 0.92BW,用 7 号铁杆击球时为 0.92BW。用金属钉鞋击球时,前脚的垂直力为 0.33BW,用球杆击球时为 0.83BW。结果表明,铁杆产生的力更大。使用球杆时,更长的球杆与更水平的挥杆平面相结合,减少了后脚和前脚的垂直力。然而,在使用球杆和金属钉或替代钉鞋时,每只脚产生的横向力都大于使用铁杆时。后跟和前脚的摩擦系数均为 0.62,无论穿哪种鞋或使用哪种球杆。要点在高尔夫挥杆过程中,高尔夫鞋与天然草皮草皮的地面反作用力在铁杆上比在较长的球杆上更大。在高尔夫挥杆中,对于右手高尔夫球手,前脚(左脚)的最大垂直力大于后脚。当穿着 8 毫米金属钉高尔夫鞋或替代钉高尔夫鞋时,每根球杆记录到的最大垂直地面反作用力相似。在天然草皮上,替代钉设计和传统的 7 毫米金属钉高尔夫鞋的力产生和摩擦系数相似。由于将其他天然草皮运动的技术发展应用于高尔夫球,因此可以进行数据收集。

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