Study the Effect of Reinforcing Kevlar Fibers with Carbon Fibers and Glass Fibers on the Performance of the Athletic Prosthetic Foot

H. Talla, Abdul Kareem Hassan, J. Oleiwi
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引用次数: 2

Abstract

In this research, the mechanical properties were studied from the experimental, theoretical, and numerical aspects of the sports prosthetic foot for the purpose of providing a sporty prosthetic limb with high performance, easy to use and an appropriate financial cost to use by amputees who have lost their lower limbs (amputation below the knee) in practicing their sports activities and overcoming physical disability. The dimensions of the blades were calculated based on side profiles from European patent specifications. The chosen fibers have high strength, are light in weight, and can be purchased for a lower price than the materials that are used in the production of the sports prosthetic feet that are already on the market and are produced by specialized companies such as Ottobock and Ossur. Six laminates of the composite material consisting of matrix orthocryl lamination 80:20 pro reinforced with different fibers (Kevlar fibers, carbon fibers, glass fibers, and perlon fibers) were fabricated in the form of rectangles using the vacuum system and then cut to the required dimensions using a CNC machine. The density and volume fraction of the samples and the use of the rule of mixtures to calculate the mechanical properties of the laminates were calculated and entered into the ANSYS program. Then the boundary conditions were applied to the athlete's prosthetic foot and the total deformation, and the total strain energy was calculated to find out the best laminates in the athlete's foot industry. It was noticed that the laminates reinforced with carbon fibers were better than the laminates reinforced with glass fibers in terms of Young’s Modulus, as well as deformation. The best laminate obtained is (12 K + 4 C).
研究碳纤维和玻璃纤维增强凯夫拉纤维对运动假足性能的影响
本研究从实验、理论和数值方面对运动假肢足的力学性能进行了研究,旨在为失去下肢(膝盖以下截肢)的截肢者在练习体育活动和克服身体残疾时提供一种高性能、易于使用且经济成本合适的运动假肢。叶片的尺寸是根据欧洲专利规格的侧面轮廓计算的。所选择的纤维强度高,重量轻,并且可以以低于市场上由Ottobock和Ossur等专业公司生产的用于生产运动假肢脚的材料的价格购买。该复合材料由基质正丙基层压80:20 pro组成,用不同的纤维(凯夫拉纤维、碳纤维、玻璃纤维和perlon纤维)增强,使用真空系统以矩形的形式制造,然后使用数控机床切割到所需的尺寸。计算了试样的密度和体积分数,利用混合规律计算了层合板的力学性能,并将其输入到ANSYS程序中。然后将边界条件应用于运动员假肢足和总变形,并计算总应变能,以找出运动员足行业的最佳层合材料。结果表明,碳纤维增强层合板在杨氏模量和变形方面均优于玻璃纤维增强层合板。得到的最佳层压板是(12k + 4c)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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