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Efficacy of PU foam materials for scientific investigation in footwear research

机译:聚氨酯泡沫材料在鞋类研究中的科学研究功效

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摘要

People across the world are primarily concerned with the importance of inserts in footwear in terms of their effectiveness to accomplish therapeutic benefits. Body weight has been implicated as a factor in plantar heel pain, and foot orthoses are commonly used in its conservative treatment and are helpful in reducing symptoms of strain in the fascia during standing and ambulation. It is necessary to investigate the effectiveness of footwear inserts and their impact especially for people with high body mass index (BMI). Hence, research on polyurethane (PU) foams is warranted to identify an ideal material that provides comfort for high-BMI individuals. This article presents details on the physical characteristics of PU foam and its efficacy on functional performances as footwear inserts. PU foam materials have been assessed on various physical characteristics such as density, hardness, compression set followed by resilience, and cushioning behaviors. Of the four densities evaluated, D120 has the highest resilience on static and dynamic conditions. The cushion energy behaviors with respect to walking/running on static and dynamic condition were superior, as they possess better cushioning performance on footwear applications. Hence, the D120 PU foam material is concluded to be the best material for footwear insert for alleviating foot and ankle pain-related problems and for providing therapeutic benefits to high-BMI individuals.
机译:就实现治疗益处的有效性而言,世界各地的人们主要关注鞋内衬的重要性。体重被认为是足跟痛的一个因素,足部矫形器通常用于其保守治疗,并有助于减轻站立和行走过程中筋膜的劳损症状。有必要研究鞋垫的有效性及其影响,尤其是对于体重指数较高的人群。因此,对聚氨酯(PU)泡沫的研究有必要确定一种理想的材料,该材料可为高BMI个人提供舒适感。本文详细介绍了PU泡沫的物理特性及其对鞋垫功能性能的功效。已对PU泡沫材料进行了各种物理特性评估,例如密度,硬度,压缩永久变形后的回弹力和缓冲性能。在评估的四种密度中,D120在静态和动态条件下的弹性最高。关于在静态和动态条件下行走/跑步的缓冲能量性能优异,因为它们在鞋类应用中具有更好的缓冲性能。因此,D120 PU泡沫材料被认为是减轻鞋底和脚踝疼痛相关问题并为高BMI个体提供治疗益处的最佳鞋履插入材料。

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