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Mechanical, Rheological, and Bioactivity Properties of Ultra High-Molecular-Weight Polyethylene Bioactive Composites Containing Polyethylene Glycol and Hydroxyapatite

机译:含有聚乙二醇和羟基磷灰石的超高分子量聚乙烯生物活性复合材料的机械,流变学和生物活性性能

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Ultrahigh-molecular-weight polyethylene/high-density polyethylene (UHMWPE/HDPE) blends prepared using polyethylene glycol PEG as the processing aid and hydroxyapatite (HA) as the reinforcing filler were found to be highly processable using conventional melt blending technique. It was demonstrated that PEG reduced the melt viscosity of UHMWPE/HDPE blend significantly, thus improving the extrudability. The mechanical and bioactive properties were improved with incorporation of HA. Inclusion of HA from 10 to 50 phr resulted in a progressive increase in flexural strength and modulus of the composites. The strength increment is due to the improvement on surface contact between the irregular shape of HA and polymer matrix by formation of mechanical interlock. The HA particles were homogenously distributed even at higher percentage showed improvement in wetting ability between the polymer matrix and HA. The inclusion of HA enhanced the bioactivity properties of the composite by the formation of calcium phosphate (Ca-P) precipitates on the composite surface as proven from SEM and XRD analysis.
机译:使用聚乙二醇PEG作为加工助剂和羟基磷灰石(HA)制备的超高分子量聚乙烯/高密度聚乙烯(UHMWPE / HDPE)共混物作为增强填料,使用常规熔融混合技术可高度加工。结果证明,PEG显着降低了UHMWPE / HDPE / HDPE混合物的熔体粘度,从而提高了耐药性。利用HA掺入,改善了机械和生物活性性质。将HA包含10至50 pHR导致复合材料的抗弯强度和模量的逐步增加。强度增量是由于通过机械互锁形成了HA和聚合物基质的不规则形状与HA和聚合物基质之间的表面接触的改善。均匀的HA颗粒均匀分布,均匀百分比显示出在聚合物基质和HA之间的润湿能力的提高。通过在SEM和XRD分析中被证明,通过形成磷酸钙(CA-P)沉淀物来增强复合材料的生物活性性能,从SEM和XRD分析中被证明。

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