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Bioactivity And Mechanical Properties Of Casio_3/high-density Polyethylene (hdpe) Composites Prepared By A New Surface Loading Method Of Casio_3 Powder

机译:一种新的Casio_3粉末表面负载方法制备的Casio_3 /高密度聚乙烯(HDPE)复合材料的生物活性和力学性能

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CaSiO_3/high-density polyethylene (HDPE) composites with flexibility and biocompatibility were prepared by a new surface loading method. CaSiO_3 powder was synthesized by coprecipitation method with heating at 1300 C for 2 h. The obtained α-CaSiO_3 powder was sieved to 45-75 μm (sample M)and 75-150 μm (sample C). Fine powder sample (sample F) was prepared by grinding the powder being the average particle size of 2.9 μm. These powders were sprinkled on the melted HDPE sheets heated at 160. 180 and 200 C. The amounts of sprinkled powder were only <0.1 vol.% but the ratios of surface coverage area were >50% in all the samples. Apatite formation in simulated body fluid (SBF) was observed by soaking for 5 days in sample F while within 1 day in samples M and C. The sample M retained flexible properties of HDPE together with excellent biocompatible properties.
机译:通过一种新的表面加载方法制备了具有柔性和生物相容性的CaSiO_3 /高密度聚乙烯(HDPE)复合材料。通过共沉淀法在1300℃下加热2h合成了CaSiO_3粉末。将获得的α-CaSiO_3粉末筛分至45-75μm(样品M)和75-150μm(样品C)。通过研磨平均粒径为2.9μm的粉末来制备细粉样品(样品F)。将这些粉末撒在加热至160、180和200℃的熔化的HDPE片上。在所有样品中,撒的粉末的量仅<0.1体积%,但表面覆盖率大于50%。通过在样品F中浸泡5天而在样品M和C中浸泡1天,观察到了模拟体液(SBF)中的磷灰石形成。样品M保留了HDPE的柔韧性和出色的生物相容性。

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