利用双杠张力增强体操动作

A. Chandana, Lv Wangang, Yi Mingnong, Wei Xubo
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引用次数: 1

摘要

体操运动员在特定的长摆动作中采用特定的动作模式,以获得双杠的最佳弹性能量,从而艺术地完成长摆动作。因此,研究人体动力学和运动器材的动力学特性是减少运动误差的必要条件。本文对中国体操运动员(质量50.4 kg)在双杠下的长摆动作进行了评价。使用10台高速摄像机(100 Hz)测量木条中点和所有接缝角度的时程。采用ViconT40数字化软件对附加在双杠体操系统上的反射标记(14mm)的所有坐标进行定位。在此基础上,采用四阻尼弹簧-质量模型(Kx = 28601 N.m-1, KY = 10830, KZ = 19101 N.m-1)建立了具有线性位移-力特性的双杠装置三维数学模型。一名体操运动员(50.4公斤)在双杠上用最大水平力(Fx=584牛)在上臂支撑的情况下完成了“长摆双曲起跳”。此时,与x轴的特定垂直力(Fz)和臂角(a)分别为488 N和730 '。这个三维模型可以演示双杠与任何体操运动员的长摆动作相互作用的动态特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of Gymnastic Movements with Utilizing Strain of Parallel Bars
Gymnasts use a special movement pattern for particular long swing movements to gain optimum elastic energy of parallel bars to complete long swing movements artistically. Therefore it is essential to study body dynamics as well as the dynamic properties of exercise apparatus to minimize the execution errors. In the present study, performance of long swing movement under the parallel bars by national level gymnast of China (mass 50.4 kg) were evaluated. The time history of middle points of wooden bars and all joint angles were measured using a system of ten high speed cameras (100 Hz). The ViconT40 digitizing software was used to find all coordinates of reflective markers (14 mm) which were attached on parallel bar-gymnast system. Based on the overall readings, a 3D mathematical model for the parallel bars apparatus was developed using four damped spring-mass model (Kx = 28601 N.m-1, KY = 10830 and KZ = 19101 N.m-1) with linear displacement-force characteristics. A gymnast (50.4 kg) applied maximum horizontal force (Fx=584 N) to perform `long swing double tucked saltos' to upper arm support on the parallel bars. In this time, the particular vertical force (Fz) and arm angle (a) with X-axis are 488 N and 730 3' respectively. This 3D model can demonstrate dynamic properties of the parallel bars interacting with any long swing movement for any gymnast.
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