首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part P. Journal of Sports Engineering and Technology >Optimization of the biomechanical design of plate-loaded strength training machines: The free-weight lifting experience
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Optimization of the biomechanical design of plate-loaded strength training machines: The free-weight lifting experience

机译:优化板载强度训练机的生物力学设计:自由举重体验

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摘要

We established a set of analytical equations that constitute the biomechanical framework for the optimal design of plate-loaded strength training machines. Specifically, we assessed the effect on the exercise kinetics of a change in the distance d(P) between the site P of the resistance lever where the weight plates are loaded and the axis of rotation of the lever. To this end, the distance d(P) was increased, while keeping the value of the resistance torque (R) unchanged by a simultaneous decrease in the mass m(P) of plates loaded on the lever (d(P)m(P)=const). A progressive increase in d(P) (under the condition d(P)m(P)=const) yielded a sharp decrease, followed by a steady increase, in the moment of inertia of the loaded resistance lever (relative to its axis of rotation). The impact of this change on the kinetic effects related to the inertia of the moving equipment masses (inertial effects) has been discussed for maximal and explosive exercises, and for sub-maximal exercises executed at controlled cadence. We also detected a specific value of d(P) for which the torque related to the inertial effects, expressed as a percentage of (R), turns out to be independent of the selected level of external resistance. This condition precisely reflects the linear-dynamic condition that occurs when lifting free weights.
机译:我们建立了一组分析方程,构成了用于最优设计的板载强度训练机的生物力学框架。具体地,我们评估对电阻杆的部位P之间的距离D(P)之间的变化的运动动力学的影响,其中重量板装载和杠杆的旋转轴线。为此,增加距离d(p),同时通过在杠杆上装载在杠杆上的板块的质量m(p)的同时降低保持阻力扭矩(R)的值(d(p)m(p )= const)。 D(P)的渐进式增加(在条件d(p)m(p)= const)下,急剧下降,然后稳步增加,在负载电阻杆的惯性时刻(相对于其轴线回转)。已经讨论了最大和爆炸性锻炼的对移动设备群体(惯性效应)相关的动力学效应的影响,并且在受控节奏处执行的子最大练习。我们还检测到与惯性效应相关的扭矩表示为(R)的百分比的扭矩,结果是独立于外部电阻的百分比。这种情况精确反映了解除自由重量时发生的线性动态条件。

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