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首页> 外文期刊>International Journal of Biomaterials >Experimental Investigations into the Mechanical, Tribological, and Corrosion Properties of Hybrid Polymer Matrix Composites Comprising Ceramic Reinforcement for Biomedical Applications
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Experimental Investigations into the Mechanical, Tribological, and Corrosion Properties of Hybrid Polymer Matrix Composites Comprising Ceramic Reinforcement for Biomedical Applications

机译:杂化聚合物基质复合材料的机械,摩擦学和腐蚀性能的实验研究,包括生物医学应用的陶瓷增强

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Hybrid polymer matrix composites (HPMC) are prominent material for the formation of biomaterial and offer various advantages such as low cost, high strength, and the fact that they are easy to manufacture. However, they are associated with low mechanical (low hardness) and tribological properties (high wear rate). The average hip joint load fluctuates between three to five times of the body weight during jumping and jogging and depends on various actions relating to body positions. Alternate bone and prosthesis material plays a critical role in attaining strength as it determines the method of load transferred to the system. The material property called modulus of elasticity is an important design variable during the selection of the geometry and design methodology. The present work is demonstrated on how to improve the properties of high-density polyethylene (HDPE) substantially by the addition of bioceramic fillers such as titanium oxide (TiO2) and alumina (Al2O3). The volume fractions of Al2O3 and TiO2 are limited to 20% and 10%, respectively. Samples were fabricated as per ASTM standards using an injection moulding machine and various properties such as mechanical (tensile, flexural, and impact), tribological (hardness, wear), and corrosion including SEM, density, and fractography analysis studied. Experimental results revealed that an injection moulding process is suitable for producing defect-free mould HPMC. HPMC comprising 70% HDPE/20% Al2O3/10% TiO2 has proved biocompatible and a substitute for biomaterial. A substantial increase in the mechanical and tribological properties and full resistance to corrosion makes HPMC suitable for use in orthopaedic applications such as human bone replacement, bone fixation plates, hip joint replacement, bone cement, and bone graft in bone surgery.
机译:杂化聚合物基质复合材料(HPMC)是用于形成生物材料的突出材料,提供各种优点,例如低成本,高强度,以及它们易于制造的事实。然而,它们与低机械(低硬度)和摩擦学性质(高磨损率)有关。在跳跃和慢跑期间,平均髋关节负载在体重的三到五次之间波动,并取决于与身体位置有关的各种动作。交替骨骼和假体材料在实现强度时起着关键作用,因为它决定了转移到系统的负载方法。称为弹性模量的材料性质是在几何和设计方法选择期间的重要设计变量。关于如何通过添加氧化钛(TiO 2)和氧化铝(Al 2 O 3),基本上证明了如何提高高密度聚乙烯(HDPE)的性质。 Al 2 O 3和TiO 2的体积分别限制为20%和10%。使用注塑机和各种性质如机械(拉伸,弯曲和冲击),摩擦学(硬度,磨损)和腐蚀等各种性能,包括SEM,密度和断裂分析等各种性能制造样品。实验结果表明,注塑工艺适用于生产无缺陷的模具HPMC。包含70%HDPE / 20%Al 2 O 3/10%TiO 2的HPMC已证明生物相容性和替代生物材料。机械和摩擦学性质的大幅增加和耐腐蚀性耐受性使得HPMC适用于骨骼替代,骨固定板,髋关节置换,骨水泥和骨手术中的骨质接枝和骨移植物等骨科应用。

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