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“Slippery” work surfaces: Towards a performance definition and quantitative coefficient of friction criteria

机译:“滑动”工作表面:朝向性能定义和定量摩擦标准系数

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摘要

There have been 50 years of research in walking/working surface slipperiness and coefficient of friction (COF) measurements. Nevertheless, numerous standards address slip/fall accidents only in terms of requiring surfaces to be qualitatively "nonslippery." The literature useful for establishing quantitative criteria for "slippery" vs. "slip-resistant" have been summarized here. A performance definition for "slippery work surfaces" is proposed. Recommendations applicable to standards-making organizations are made, including changing terms such as "non-slip" to "slip-resistant" and defining "slippery" in terms of quantitative COF values. For persons walking unloaded on level surfaces, a COF standard of 0.5 would be reasonable. Research is recommended to determine if "slip-resistance" requirements and accident prevention could be achieved more easily be controlling the type of shoe, type of task, or amount of surface contaminant rather than controlling only the COF of the basic surface and its coating.
机译:在步行/工作表面滑移和摩擦系数(COF)测量方面有50年的研究。尽管如此,众多标准似乎只在需要表面上的“非普利夫”的表面上的曲线/堕落事故。这里已经总结了用于建立“滑动”与“防滑”的定量标准的文献。提出了“湿滑工作表面”的性能定义。制定适用于标准组织的建议,包括改变“防滑”,如“防滑”,并在定量COF值方面定义“滑移”。对于在水平表面上卸载的人来说,COF标准为0.5将是合理的。建议更容易地控制“防滑性”要求和事故预防,以更容易地控制鞋类,任务类型或表面污染量的类型,而不是仅控制基本表面的COF及其涂层。

著录项

  • 作者

    James M. Miller;

  • 作者单位
  • 年度 1983
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_us
  • 中图分类

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