Department of Mechanical Engineering, Lafayette College , Easton, PA, USA.
J Sports Sci Med. 2014 Jan 20;13(1):180-91. eCollection 2014 Jan.
This paper quantifies and discusses the three-dimensional kinematic and kinetic characteristics of the female softball swing as performed by fourteen female collegiate amateur subjects. The analyses were performed using a three-dimensional computer model. The model was driven kinematically from subject swings data that were recorded with a multi-camera motion analysis system. Each subject used two distinct bats with significantly different inertial properties. Model output included bat trajectories, subject/bat interaction forces and torques, work, and power. These data formed the basis for a detailed analysis and description of fundamental swing kinematic and kinetic quantities. The analyses revealed that the softball swing is a highly coordinated and individual three-dimensional motion and subject-to-subject variations were significant in all kinematic and kinetic quantities. In addition, the potential effects of bat properties on swing mechanics are discussed. The paths of the hands and the centre-of-curvature of the bat relative to the horizontal plane appear to be important trajectory characteristics of the swing. Descriptions of the swing mechanics and practical implications are offered based upon these findings. Key PointsThe female softball swing is a highly coordinated and individual three-dimensional motion and subject-to-subject variations were significant in all kinematic and kinetic quantities.The paths of the grip point, bat centre-of-curvature, CG, and COP are complex yet reveal consistent patterns among subjects indicating that these patterns are fundamental components of the swing.The most important mechanical quantity relative to generating bat speed is the total work applied to the bat from the batter.Computer modeling of the softball swing is a viable means for study of the fundamental mechanics of the swing motion, the interactions between the batter and the bat, and the energy transfers between the two.
本文定量分析并讨论了 14 名女性大学业余运动员挥棒击打垒球时的三维运动学和动力学特征。分析过程使用了一个三维计算机模型。该模型通过多摄像机运动分析系统记录的受试者挥棒数据进行运动学驱动。每位受试者使用两支具有明显不同惯性特性的不同球棒。模型输出包括球棒轨迹、受试者与球棒的相互作用力和扭矩、功和功率。这些数据为深入分析和描述基本挥棒运动学和动力学参数奠定了基础。分析表明,垒球挥棒是一种高度协调和个体化的三维运动,所有运动学和动力学参数的个体间差异都很明显。此外,还讨论了球棒特性对挥棒力学的潜在影响。手的轨迹和球棒相对于水平面的曲率中心似乎是挥棒的重要轨迹特征。根据这些发现,提供了对挥棒力学的描述和实际意义。关键点女性垒球挥棒是一种高度协调和个体化的三维运动,所有运动学和动力学参数的个体间差异都很明显。握棒点、球棒曲率中心、质心和质心位置的轨迹复杂,但在受试者之间呈现出一致的模式,表明这些模式是挥棒的基本组成部分。相对于产生球棒速度而言,最重要的力学量是从击球手施加到球棒上的总功。垒球挥棒的计算机建模是研究挥棒运动基本力学、击球手与球棒之间相互作用以及两者之间能量传递的可行方法。