An Investigation into the Effect of Adding Carbon and Glass Fibres to UHMWPE Fibres on the Mechanical Characteristics of a Sports Prosthetic Foot

H. Talla, A. F. Hassan, J. K. Oleiwi
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引用次数: 1

Abstract

Due to their qualities and advantages, such as light weight, high rigidity, and high performance, composite materials have been used in a wide variety of industries and sectors. For example, carbon fibres are used in the construction of aircraft, while ultrahigh-molecular-weight polyethylene (UHMWPE) is used in the fabrication of medical artificial joints. In this study, the blade dimensions were estimated using side profiles from a European patent specification and the mechanical properties of numerous layers of composite materials (UHMWPE, carbon, glass fibre, and Perlon) utilized in the fabrication of sports prosthesis were investigated experimentally, theoretically, and numerically, and the results were compared, as well as the theory of failure calculated. The influence of data entered into the ANSYS programme was also investigated in the case of isotropic or orthotropic materials. The findings indicate that longitudinal young modules are experimentally and theoretically equivalent. While the material ISO or Ortho is considered and its information is entered into the ANSYS programme for the same lamina, similar results are obtained under the same boundary condition, as was demonstrated when computing the theory of failure. Additionally, it was demonstrated in this research that layering woven carbon fibre on top of layers of UHMWPE woven fabrics had a greater effect than layering woven glass fibre when fabricating the sports prosthetic foot.
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超高分子量聚乙烯纤维中添加碳、玻璃纤维对运动假肢足力学特性影响的研究
复合材料由于其重量轻、刚度高、性能高等优点,已被广泛应用于各种行业和部门。例如,碳纤维用于制造飞机,而超高分子量聚乙烯(UHMWPE)用于制造医用人工关节。在这项研究中,使用欧洲专利说明书中的侧面轮廓来估计刀片尺寸,并对用于制造运动假肢的多层复合材料(UHMWPE、碳、玻璃纤维和Perlon)的机械性能进行了实验、理论和数值研究,并对结果进行了比较,以及失效理论的计算。在各向同性或正交异性材料的情况下,还研究了输入ANSYS程序的数据的影响。研究结果表明,纵向年轻模块在实验和理论上是等效的。当考虑材料ISO或Ortho,并将其信息输入到同一薄板的ANSYS程序中时,在相同的边界条件下获得了类似的结果,正如在计算失效理论时所证明的那样。此外,本研究表明,在制造运动假肢脚时,在UHMWPE编织织物层的顶部层叠编织碳纤维比层叠编织玻璃纤维具有更大的效果。
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来源期刊
CiteScore
1.90
自引率
25.00%
发文量
32
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