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Friction control of a resin foam/rubber laminated block material

机译:树脂泡沫/橡胶层压块材料的摩擦控制

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In this study, we investigate the frictional behavior of an ethylene vinyl acetate copolymer (EVA) foam/styrene butadiene rubber (SBR) laminated block using a dead-weight-type tribometer to identify the design guidelines for shoe tread patterns to provide variable friction control. The friction coefficient was highest when the ratio of the EVA foam thickness with respect to the total block thickness was high (i.e., 0.2-0.8) because of the increased contact area. Further, the friction coefficient of the laminated block specimen increased with the normalized parameter, which is the ratio of shear deformation and bending deformation in the bulk material. These results indicate that increasing the shear deformation component prevents the detachment of the specimen's trailing edge and maintains the contact area at the specimen-floor interface, resulting in increased friction coefficients. Our observations are expected to contribute to a detailed understanding of how to control the friction of the resin-foam/rubber-laminated block materials.
机译:在这项研究中,我们研究了使用死重式摩擦计来识别用于提供可变摩擦控制的鞋胎面图案的设计指南的乙烯乙烯基乙烯酯共聚物(EVA)泡沫/苯乙烯丁二烯橡胶(SBR)层压块的摩擦行为。当EVA泡沫厚度相对于总块厚度的比率高(即0.2-0.8),摩擦系数最高(即0.2-0.8),因为接触面积增加。此外,层压块样品的摩擦系数随归一化参数而增加,这是散装材料中的剪切变形和弯曲变形的比率。这些结果表明,增加剪切变形部件防止样品的后缘的分离并在样品地板界面处保持接触面积,导致摩擦系数增加。我们预计我们的观察将有助于详细了解如何控制树脂泡沫/橡胶层压块材料的摩擦。

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