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VERTICAL GROUND REACTION FORCES DURING UNEXPECTED HUMAN SLIPS

机译:垂直地面反作用力在意外的人类滑块期间

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Falls due to slippery conditions are among the primary causes of disabling workplace injuries. Despite the extensive amount of human slip studies in the literature, only a handful of studies have reported ground reaction forces at the instant of slip initiation. The purpose of this study was to quantify the vertical ground reaction forces (VGRF) at slip initiation during unexpected human slips across different footwear-contaminant conditions. Forty-seven healthy subjects were unexpectedly exposed to a liquid–contaminant, while the vertical force was measured at the moment that the foot began to start slipping. The average VGRF were between 100 and 300 N and varied significantly across the footwear. These forces were significantly less than the typical forces (400-700 N) applied during slip-resistance measurements. This finding may suggest that available coefficient of friction (ACOF) measurements should use lower force levels in order to achieve higher relevance to the onset of slipping.
机译:由于湿滑的条件是致残工作场所伤害的主要原因。尽管文献中的人类滑移研究具有广泛的人类滑移研究,但仅少数研究报告了在滑动开始的瞬间接地反应力。本研究的目的是在不同鞋类污染条件下量化意外的人类滑石期间的垂直接地反作用力(VGRF)。意外地暴露于液体污染物的四十七个健康受试者,同时在脚开始开始滑动的那一刻测量垂直力。平均VGRF在100至300 n之间,鞋类穿过100至300 n之间。这些力显着小于滑动测量期间施加的典型力(400-700n)。该发现可能表明,可用系数摩擦系数(ACOF)测量应使用较低的力水平以实现与滑动开始的更高相关性。

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