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Effect of hydroxyapatite reinforced high density polyethylene composites on mechanical and bioactivity properties

机译:羟基磷灰石增强高密度聚乙烯复合材料对力学性能和生物活性的影响

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摘要

The biomaterial composites consisting of a polymer with a matrix addition of particulate bioactive phase that analogous to the bone microstructure had been extensively studied as a substitute for human's hard and soft tissues. In this work, HA reinforced HDPE composite (HDPE/HA) was made, with HA contents being up to 50 phr using single screw extruder nanomixer for the compounding process, and later followed by the injection moulding. These characteristics of the HDPE/HA composites were examined using various techniques including differential scanning calorimetry (DSC), scanning electron microscopy (SEM), tensile testing. Mechanical and thermal properties of the composite are differed when the amount of HA incorporated into the composite were varied. It is shown that HA particles were well dispersed and homogeneously distributed within the HDPE matrix. The elastic modulus and tensile strength were increased when the HA volume percentage increased from 10 phr to 50 phr with corresponding decreases in elongation at break. However no significant influence on thermal stability was found with increasing HA loadings. The enhancement of bioactivity has been proved while incorporation of HA into HDPE composite. SEM-EDX image showed the bulk formation of apatite layers on the composite surface with 30 wt% HA after 7 days immersed in simulated body fluid (SBF) solution. These results suggest the great potential of the composites for a range of temporary application in which bone bonding ability is a desired property.
机译:已经广泛研究了由聚合物组成的生物材料复合材料,该聚合物具有与骨骼微结构类似的颗粒生物活性相的基质添加物,可以替代人的硬组织和软组织。在这项工作中,制备了HA增强的HDPE复合材料(HDPE / HA),使用单螺杆挤出机纳米混合器混合的HA含量高达50 phr,随后进行注射成型。使用各种技术(包括差示扫描量热法(DSC),扫描电子显微镜(SEM)和拉伸测试)检查了HDPE / HA复合材料的这些特性。当改变掺入到复合物中的HA的量时,复合物的机械和热性能是不同的。结果表明,HA颗粒在HDPE基质中分布良好,并均匀分布。当HA体积百分比从10phr增加到50phr时,弹性模量和拉伸强度增加,并且断裂伸长率相应降低。但是,随着HA含量的增加,对热稳定性没有明显影响。当将HA掺入HDPE复合材料时,已经证明了生物活性的增强。 SEM-EDX图像显示,将7%的HA浸入模拟体液(SBF)溶液中后,复合材料表面具有30 wt%HA的磷灰石层大量形成。这些结果表明,该复合材料在一系列临时应用中具有很大的潜力,在这些应用中,骨粘结能力是所需的性能。

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