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KCI 등재
축구화 스터드의 형태변화에 따른 회전마찰력
Rotational Friction of Different Soccer Stud
이중숙 ( Joong Sook Lee ) , 박상균 ( Sang Kyun Park )
UCI I410-ECN-0102-2009-690-001759935

J. S. LEE, S. K. Park. Rotational Friction of Different Soccer Stud. Korean journal of Sport Biomechanics, Vol. 14, No. 2, pp. 121-138, 2004. The design of soccer studs is important for providing friction on a variety of surfaces. We hypothesized that a certain type of soccer studs could improve performance due to high rotational friction. Thus, this study was conducted to determine the relationship between the frictional characteristics and different soccer stud design. Twelve recreational soccer players were recruited. Rotational friction data from the force plate was collected for all subjects during normal walking with 180 degree rotation. Walking speed was controlled at 1.2 m/s (±0.1 m/s) with timing lights on infilled artificial turf. Three different types of soccer studs and one running shoe were tested. Repeated measures ANOVA was used to determine significance. Significant differences were found in rotational friction with four different shoes. Trx and World studs tended to have greater maximum rotational friction than the running shoe (Nova) and traditional soccer shoe(Copa Mondial). The results were as follow : world(25.95Nm) ) trx(25.74Nm) ) copa(22.50Nm) ) nova(16.36Nm). The difference may be due to the number, location, size, and shape of studs. We concluded that stud design influences rotational friction between the shoe and surface during movement. Based on studs design and contact area, Trx with blade type studs are recommended since it showed high rotational friction for performance as well as enough contact area for stability. However, differences due to the mechanical properties of soccer studs are still being investigated.

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