Hsu Jennifer, Li Yue, Dutta Tilak, Fernie Geoff
Toronto Rehabilitation Institute, University Health Network, 550 University Avenue, Toronto, ON M5G 2A2, Canada; University of Toronto, Department of Mechanical and Industrial Engineering, 5 King's College Road, Toronto ON M5S 3G8, Canada.
Toronto Rehabilitation Institute, University Health Network, 550 University Avenue, Toronto, ON M5G 2A2, Canada.
Appl Ergon. 2015 Sep;50:218-25. doi: 10.1016/j.apergo.2015.03.016. Epub 2015 Apr 13.
More informative tests of winter footwear performance are required in order to identify footwear that will prevent injurious slips and falls on icy conditions. In this study, eight participants tested four styles of winter boots on smooth wet ice. The surface was progressively tilted to create increasing longitudinal and cross-slopes until participants could no longer continue standing or walking. Maximum achievable incline angles provided consistent measures of footwear slip resistance and demonstrated better resolution than mechanical tests. One footwear outsole material and tread combination outperformed the others on wet ice allowing participants to successfully walk on steep longitudinal slopes of 17.5° ± 1.9° (mean ± SD). By further exploiting the methodology to include additional surfaces and contaminants, such tests could be used to optimize tread designs and materials that are ideal for reducing the risk of slips and falls.
为了确定能防止在结冰条件下发生有害滑倒和跌倒的鞋类,需要对冬季鞋类性能进行更具信息性的测试。在本研究中,八名参与者在光滑的湿冰面上测试了四种款式的冬季靴子。表面逐渐倾斜以产生不断增加的纵向和横向坡度,直到参与者无法继续站立或行走。最大可达到的倾斜角度提供了一致的鞋类防滑性测量方法,并且比机械测试具有更好的分辨率。一种鞋类外底材料和胎面组合在湿冰面上的表现优于其他组合,使参与者能够在17.5°±1.9°(平均值±标准差)的陡峭纵向坡度上成功行走。通过进一步利用该方法纳入更多表面和污染物,此类测试可用于优化胎面设计和材料,以降低滑倒和跌倒风险。