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A Critical Analysis of the Relationship Between Shoe-Heel Wear and Pedestrian/Walkway Slip Resistance

机译:鞋跟磨损与行人/走道滑动阻力关系的关键分析

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This study seeks to clarify issues in pedestrian/walkway slip safety by exploring in detail the relationship between shoe-heel wear and slip resistance. Importantly, this paper addresses the fact that slip resistance changes as a result of wear-generated changes in the shoe-bottom and, to a lesser extent, the test surface. Insights from this paper may provide a better way of characterizing slip resistance than the commonly used averaged coefficient-of-friction (COF) value that would be compared against single-value pedestrian-friction safety thresholds. Specifically, we have derived an alternative, systematic slip resistance measurement methodology by observing the variation of COF with changes in the friction force as a function of interface wear between a shoe heel and floor surface under dry test conditions. Surface changes of both bodies were quantified using two extreme roughness parameters: R_(pm) and R_(pm). It was found that massive wear occurred on the shoe-heel surface from very early stages of sliding and continued until the surface layer was heavily worn out. Heel contact conditions, such as initial strike time and position, changed significantly with wear evolution and, importantly, were directly related to the displacement of the friction force. Our results clearly showed that COF is not constant with respect to shoe-heel wear and, thus, friction is a function of a given set of materials as well as environmental and wear conditions.
机译:本研究旨在通过详细探索鞋跟磨损和防滑性之间的关系,阐明行人/人行道滑动安全性的问题。重要的是,本文提出了由于鞋底磨损变化而导致的泄放电阻变化的事实,并且在较小程度上进行测试表面。本文的见解可以提供比常用平均系数(COF)值与单值行人摩擦安全阈值进行比较的常用平均系数(COF)值来提供更好的方法。具体地,我们通过在干燥试验条件下观察COF的变化与摩擦力和地板表面之间的界面磨损的函数来观察COF的变化来衍生替代的系统滑动电阻测量方法。使用两个极端粗糙度参数来量化两种体的表面变化:R_(PM)和R_(PM)。结果发现,从滑动的早期阶段的鞋跟表面发生巨大磨损,并继续直到表面层磨损。鞋跟接触条件,如初始打击时间和位置,随着磨损演化而显着变化,重要的是与摩擦力的位移直接相关。我们的结果清楚地表明,COF对于鞋跟磨损而不是恒定的,因此,摩擦是给定的一套材料以及环境和磨损条件的函数。

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