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Measuring the Slip Resistance of Winter Footwear.

机译:测量冬季鞋的防滑性。

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摘要

Slip and fall accidents represent an enormous burden in terms of human suffering and economic costs. In winter conditions, outdoor falls increase as cold temperatures and precipitation create hazardous conditions underfoot. An effective method of reducing falls is the use of slip resistant footwear. However, the optimization of this footwear is hindered by the fact that slip resistance is not easily measured and the validity of existing measurement devices is questionable. The series of four studies presented here show the progression of work utilizing human-centred approaches to evaluating the performance of winter footwear on real winter surfaces and have led to the development of a new test method. To start, traditional measures of slip severity were used to evaluate the effectiveness of winter boots and cleated footwear devices while subjects walked in common winter conditions. Walking trials on level and uneven icy surfaces showed that while cleated footwear did reduce slip frequency, they did not prevent dangerous slips from occurring. Further testing showed that the current standard test conditions and parameters used for determining footwear slip resistance do not adequately simulate gait in winter conditions. As a result, a new usercentred protocol was developed for testing footwear. Subjects were asked to stand and walk across a wet, icy surface that was tilted progressively until they could no longer maintain balance, thereby establishing the maximum achievable incline angle for a variety of styles of footwear. This method proved to be reliable on wet ice so a refined protocol was applied to a larger sample of footwear which was then tested on dry ice as well as snow conditions. The results showed the importance of testing winter footwear in snow conditions, which had not been done before. These studies demonstrate the viability of testing footwear without removing the critically important human component.
机译:滑倒和坠落事故对人类的痛苦和经济损失而言是巨大的负担。在冬季,由于寒冷的温度和降水会在脚下造成危险,因此户外跌落会增加。减少跌倒的有效方法是使用防滑鞋。然而,由于不容易测量防滑性并且现有测量装置的有效性存在疑问,因此阻碍了该鞋类的优化。这里介绍的四项研究系列显示了以人为本的方法评估实际冬季表面上的冬季鞋类性能的工作进展,并导致了新测试方法的开发。首先,使用传统的防滑程度测量方法来评估受试者在常见的冬季条件下行走时冬靴和防滑鞋装置的有效性。在水平和不平坦的冰表面上进行的步行试验表明,尽管有鞋带的鞋子确实降低了滑倒的频率,但并不能防止危险的滑倒的发生。进一步的测试表明,用于确定鞋类防滑性的当前标准测试条件和参数不能充分模拟冬季条件下的步态。结果,开发了一种新的以用户为中心的协议来测试鞋类。要求受试者站立并走过逐渐倾斜的湿冰表面,直到无法保持平衡为止,从而为各种样式的鞋确定最大可达到的倾斜角度。该方法在湿冰上证明是可靠的,因此将改进的方案应用于较大的鞋类样本,然后在干冰和雪地条件下进行测试。结果显示了在雪地条件下测试冬季鞋类的重要性,这是以前从未做过的。这些研究证明了在不去除至关重要的人类成分的情况下测试鞋类的可行性。

著录项

  • 作者

    Hsu, Jennifer Anna.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Mechanical engineering.;Industrial engineering.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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