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Gait and force analysis of provoked pig gait on clean and fouled rubber mat surfaces

机译:清洁和污染的橡胶垫表面上激发的猪步态的步态和力分析

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摘要

Materials that increase floor friction forces in absorption of foot pressure could reduce the risk of slipping, i.e. promote walking safety. The effects of fouled rubber mat floor conditions on the gait of 10 pigs walking in a curve, using kinematics and kinetics to record gait parameters and slip frequency are described and compared with clean conditions. Pigs adapted to fouled floor condition through reduced walking speed (10%), prolonged swing and stance time and a higher number of 3-limb support phases, but kept stride length and diagonality constant. This adaption produced a threefold reduction in lateral horizontal forces and kept braking and propulsion forces constant, resulting in a constant peak utilised coefficient of friction (UCOF) level in fore limbs but a 31% reduction in UCOF in hind limbs. The better traction for pigs walking on rubber matting compared with concrete is due to a more effective transmission of forces from the limb to the elastomer, dissipating the forces into energy within the material, and thus impeding the effect of centripetal force, with less displacement of body centre of gravity and less forward and backward slip. Pig forward slip frequency on fouled rubber matting was 65 and 51% lower for fore and hind limbs respectively compared with pigs walking a curve on fouled concrete. The soft flooring material improved gait adaption and could thus improve walking safety.
机译:在吸收脚压力时增加地板摩擦力的材料可以降低滑倒的风险,即,提高步行安全性。使用运动学和动力学记录步态参数和滑移频率,描述了污损的橡胶垫地板条件对曲线行走的10头猪步态的影响,并与清洁条件进行了比较。猪通过降低步行速度(10%),延长摇摆和站姿时间以及增加3肢支持阶段数而适应了肮脏的地面条件,但保持了步幅和对角线不变。这种适应使横向水平力降低了三倍,制动和推进力保持恒定,从而使前肢的峰值利用摩擦系数(UCOF)水平保持恒定,而后肢的UCOF降低了31%。与橡胶相比,在橡胶垫上行走的猪具有更好的牵引力,这是由于力从肢体到弹性体的传递更有效,从而将力耗散到了材料内的能量中,从而阻碍了向心力的作用,位移较小。身体重心少,前后滑移。与在肮脏的混凝土上行走的猪相比,在肮脏的橡胶垫上,猪的前肢和后肢的前滑频率分别降低了65%和51%。柔软的地板材料改善了步态适应性,因此可以提高步行安全性。

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