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A Simulation Study of E-Glass Reinforced Polyurethane Footbed and Investigation of Parameters Effecting Elastic Behaviour of Footbed Material

机译:电子玻璃纤维增​​强聚氨酯鞋底的仿真研究及影响鞋底材料弹性性能的参数研究

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摘要

In this study, we mainly focused on a simulation study regarding composite footbed in order to contribute to shoe industry. As a footbed, e-glass fiber reinforced polyurethane was determined since polyurethane based materials are already used for footbed in shoe manufacturing frequently. Flat, elliptical and rectangular grooved shoe soles were modeled and analyzed separately as TPU, 10% glass fiber reinforced, 30% glass fiber reinforced and 50% glass fiber reinforced materials according to their properties under three point bending and compression situations to determine the relationship between model, material type and mechanical behaviours of composite model. ANSYS 14.0 APDL mechanical structural module is utilized in all simulations and analyzed stress and strain distributions for different footbed models and materials. Furthermore, materials constants like young modulus, shear modulus, Poisson ratio and density of the composites were calculated theoretically by using composite mixture rule and interpreted for mechanical aspects.
机译:在这项研究中,我们主要关注于有关复合鞋床的仿真研究,以为制鞋业做出贡献。作为鞋床,确定了电子玻璃纤维增​​强的聚氨酯,因为聚氨酯基材料已经频繁地用于制鞋业中的鞋床。根据三点弯曲和压缩情况下的性能,分别对平板形,椭圆形和矩形凹槽的鞋底进行建模和分析,分别为TPU,10%玻璃纤维增​​强,30%玻璃纤维增​​强和50%玻璃纤维增​​强的材料。模型,材料类型和复合模型的力学行为。 ANSYS 14.0 APDL机械结构模块被用于所有仿真中,并分析了不同鞋垫模型和材料的应力和应变分布。此外,通过使用复合材料混合规则从理论上计算了复合材料的材料常数,如杨氏模量,剪切模量,泊松比和密度,并解释了机械方面。

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