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首页> 外文期刊>Journal of Tribology >Analysis of Shoe Friction During Sliding Against Floor Material: Role of Fluid Contaminant
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Analysis of Shoe Friction During Sliding Against Floor Material: Role of Fluid Contaminant

机译:鞋在与地板材料滑动过程中的摩擦分析:流体污染物的作用

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摘要

Understanding the tribological interactions between shoe and floor materials is important in order to enhance shoe and floor design and to prevent slip and fall accidents during walking. In the present investigation, experiments were conducted using a custom developed pin-on-disk type tribometer to understand the influence of boundary and hydrodynamic properties on the shoe-floor materials' coefficient of friction. Specifically, polyurethane shoe material was slid against vinyl floor material in the presence of varying lubricants (i.e., water, detergent, three diluted glycerol concentrations, and canola oil). The experiments were conducted for a range of biologically relevant sliding velocities from 0.05 m sec~(-1) to 1.0 m sec~(-1) at a contact pressure of 266.1 kPa under ambient conditions. The fluid chemical composition appeared to affect the boundary friction coefficient with longer-chain molecules resulting in a decreased coefficient of friction. As fluid viscosity increased, the rate of coefficient of friction decay increased with respect to increasing fluid entrainment velocity, suggesting less material contact and increased film thickness. The nondimensional film thickness under all conditions was calculated and the nondimensional film thickness consistently increased with increased viscosity and speed. Additionally, the effect of functionally achievable variations in polyurethane shoe roughness on the coefficient of friction was examined and found to have no statistically significant effect on boundary or hydrodynamic contributions to the coefficient of friction.
机译:了解鞋子和地板材料之间的摩擦学相互作用对于提高鞋子和地板的设计并防止行走过程中滑倒和摔倒事故很重要。在本研究中,使用定制开发的销钉盘式摩擦计进行了实验,以了解边界和流体动力学特性对鞋底材料的摩擦系数的影响。具体地,在各种润滑剂(即水,洗涤剂,三种稀释的甘油浓度和低芥酸菜子油)的存在下,将聚氨酯鞋材料在乙烯基地板材料上滑动。在环境条件下,在266.1 kPa的接触压力下,进行了从0.05 m sec〜(-1)到1.0 m sec〜(-1)的一系列生物学相关的滑动速度实验。流体化学成分似乎会影响长链分子的边界摩擦系数,从而导致摩擦系数降低。随着流体粘度的增加,摩擦系数的衰减率相对于流体夹带速度的增加而增加,这表明较少的材料接触和增加的膜厚度。计算在所有条件下的无因次膜厚度,并且随着粘度和速度的增加,无因次膜厚度持续增加。另外,检查了聚氨酯鞋的粗糙度在功能上可达到的变化对摩擦系数的影响,发现对边界或流体动力学对摩擦系数的贡献没有统计学上的显着影响。

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