首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >HDPE-Al2O3-HAp composites for biomedical applications: processing and characterizations.
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HDPE-Al2O3-HAp composites for biomedical applications: processing and characterizations.

机译:用于生物医学应用的HDPE-Al2O3-HAp复合材料:加工和表征。

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The objective of this work is to demonstrate how the stiffness, hardness, as well as the biocompatibility property, of bioinert high-density polyethylene (HDPE) can be significantly improved by the combined addition of both bioinert and bioactive ceramic fillers. For this purpose, different volume fractions of hydroxyapatite and alumina, limited to a total of 40 vol %, have been incorporated in HDPE matrix. All the hybrid composites and monolithic HDPE were developed under optimized hot pressing condition (130 degrees C, 0.5 h, 92 MPa pressure). The results of the mechanical property characterization reveal that higher elastic modulus (6.2 GPa) and improved hardness (226.5 MPa) could be obtained in the developed HDPE-20 vol %-HAp-20 vol % Al(2)O(3) composite. Under the selected fretting conditions against various counterbody materials (steel, Al(2)O(3), and ZrO(2)), an extremely low COF of (0.07-0.11) and higher wear resistance (order of 10(-6) mm(3)/Nm) are obtained with the HDPE/20 vol % HAp/20 vol %Al(2)O(3) composite in both air and simulated body fluid environment. Importantly, in-vitro cell culture study using L929 fibroblast cells confirms favorable cell adhesion properties in the developed hybrid composite.
机译:这项工作的目的是证明如何通过同时添加生物惰性和生物活性陶瓷填料来显着改善生物惰性高密度聚乙烯(HDPE)的刚度,硬度以及生物相容性。为此目的,已将不同体积分数的羟基磷灰石和氧化铝限制在总体积的40%(体积)内。在优化的热压条件下(130摄氏度,0.5小时,92兆帕压力)开发了所有杂化复合材料和整体式HDPE。力学性能表征的结果表明,在开发的HDPE-20 vol%-HAp-20 vol%Al(2)O(3)复合材料中可以获得更高的弹性模量(6.2 GPa)和改善的硬度(226.5 MPa)。在针对各种配体材料(钢,Al(2)O(3)和ZrO(2))的选定微动条件下,COF极低(0.07-0.11),而耐磨性更高(10(-6)量级)在空气和模拟体液环境中,使用HDPE / 20体积%HAp / 20体积%Al(2)O(3)复合材料可获得mm(3)/ Nm)。重要的是,使用L929成纤维细胞进行的体外细胞培养研究证实了已开发的杂化复合材料具有良好的细胞粘附特性。

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