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Mechanics of competition walking.

机译:竞走机制。

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摘要

1. The work done at each step to lift and accelerate the centre of mass of the body has been measured in competition walkers during locomotion from 2 to 20 km/hr. 2. Three distinct phases characterize the mechanics of walking. From 2 to 6 km/hr the vertical displacement during each step, Sv, increases to a maximum (3.5 vs. 6 cm in normal walking) due to an increase in the amplitude of the rotation over the supporting leg. 3. The transfer, R, between potential energy of vertical displacement and kinetic energy of forward motion during this rotation, reaches a maximum at 4-5 km/hr (R = 65%). From 6 to 10 km/hr R decreases more steeply than in normal walking, indicating a smaller utilization of the pendulum-like mechanism characteristic of walking. 4. Above 10 km/hr potential and kinetic energies vary during each step because both are simultaneously taken up and released by the muscles with almost no transfer between them (R = 2-10%). Above 13-14 km/hr an aerial phase (25-60 msec) takes place during the step. 5. Speeds considerably greater than in normal walking are attained thanks to a greater efficiency of doing positive work. This is made possible by a mechanism of locomotion allowing an important storage and recovery of mechanical energy by the muscles.
机译:1.在比赛中,步行者以2至20 km / hr的速度运动时,已经测量了抬起并加速身体重心的每一步所做的工作。 2.三个不同的阶段表征了步行的机制。由于支撑腿上旋转幅度的增加,每步的垂直位移Sv从2至6 km / hr增加到最大值(正常行走时为3.5 vs. 6 cm)。 3.在此旋转过程中,垂直位移的势能与向前运动的动能之间的传递R达到最大值,为4-5 km / hr(R = 65%)。从6 km / hr到10 km / hr,R的下降比正常的步行更陡,表明对步行的摆状机制特性的利用较少。 4.高于10 km / hr时,势能和动能在每个步骤中都会发生变化,因为两者同时被肌肉吸收和释放,它们之间几乎没有转移(R = 2-10%)。在此步骤中,高于13-14 km / hr时会发生空中相位(25-60毫秒)。 5.由于做积极工作的效率更高,因此可以达到比正常行走大得多的速度。这是通过运动机制实现的,该机制允许肌肉大量存储和恢复机械能。

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