首页> 外文会议>ASME/STLE international joint tribology conference >USING A 3-DIMENSIONAL VISCOELASTIC FINITE ELEMENT MODEL TO ANALYZE THE EFFECTS OF FLOOR ROUGHNESS, SLIDING SPEED AND MATERIAL PROPERTIES ON SHOE-FLOOR FRICTION
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USING A 3-DIMENSIONAL VISCOELASTIC FINITE ELEMENT MODEL TO ANALYZE THE EFFECTS OF FLOOR ROUGHNESS, SLIDING SPEED AND MATERIAL PROPERTIES ON SHOE-FLOOR FRICTION

机译:采用三维粘弹性有限元模型分析鞋地摩擦上楼层粗糙度,滑动速度和材料特性的影响

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Slip and fall accidents are a major occupational health concern. Important factors affecting shoe-floor friction is critical to identifying and resolving unsafe surfaces and designing. Experimental studies have indicated that several factors including floor roughness, sliding speed and shoe materials affect shoe-floor friction although the precise nature of the mechanism behind this phenomenon is not well understood. In addition, recent studies have suggested that boundary lubrication is highly relevant to slipping and that adhesion and hysteresis are the main contributing factors to boundary lubrication. The purpose of this study is to perform the numerical simulations to analyze the effects of floor roughness (asperity height), sliding speed and material properties on ratio of real area of contact and normal force (relevant to adhesion friction) and hysteresis friction for a viscoelastic shoe material interacting with a hard floor surface. A 3D shoe model and 3D vinyl floor model was simulated with speed 0.01 m/s, 0.5 m/s, 0.75 m/s and 1 m/s in three different floor surfaces. The material property was also varied in the numerical simulations. The study showed that roughness affects both the hysteresis and adhesion friction whereas sliding speed and material property affects the adhesion friction only. The dependence of adhesion and hysteresis friction on roughness, sliding speed and material property is useful in understanding the shoe-floor friction phenomenon and development of slip resistant sports and work shoes.
机译:滑动和堕落事故是一个主要的职业健康问题。影响鞋底摩擦的重要因素对于识别和解决不安全的表面和设计至关重要。实验研究表明,几种因素包括地板粗糙度,滑动速度和鞋材料影响鞋地摩擦,尽管这种现象背后的机制的确切性质并不顺利。此外,最近的研究表明,边界润滑与滑动高,粘附和滞后是边界润滑的主要因素。本研究的目的是执行数值模拟,以分析地板粗糙度(粗糙度),滑动速度和材料特性,与粘弹性的真实面积(与粘附摩擦)和滞后摩擦的比率相比鞋材料与硬地板表面相互作用。用速度0.01 m / s,0.5米/秒,0.75米/秒和1米/秒模拟3D鞋模型和3D乙烯基地板模型。在数值模拟中也有所不同。该研究表明,粗糙度影响滞后和粘附摩擦,而滑动速度和材料特性仅影响粘附摩擦摩擦。粘附和滞后摩擦对粗糙度,滑动速度和材料特性的依赖性可用于了解鞋底摩擦现象和防滑运动和工作鞋的发育。

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