首页> 外文期刊>International Journal of Engineering and Technology >Effect of Hydroxyapatite on the Properties of Wollastonite Bioceramics
【24h】

Effect of Hydroxyapatite on the Properties of Wollastonite Bioceramics

机译:羟基磷灰石对硅灰石生物陶瓷性能的影响

获取原文
           

摘要

Replacement for worn or injured body parts is the area wherein biomaterials are predominantly used. In the research, we have developed compact of hydroxyapatite-wollastonite for bone implant applications. The effect of crystalline hydroxyapatite amount on the mechanical, physical, and biological properties for the prepared biocomposite material was evaluated. The wollastonite matrix was synthesized by solid state reaction method from its constituent e.g. CaO, which prepared from natural source belong to oyster shells by calcinations at 900?C for 1 hour, and high purity silica foam. The silica foam and calcium oxide powders were mixed in 1:1 molar ratio then sintered at 1300 ?C for 2 hours. The prepared wollastonite was mixed with different weight percent's of hydroxyapatite (10, 20, 30, 40, and 50 %). Hydroxyapatite-wollastonite samples were prepared by cold pressing at (200MPa). The compacts prepared from powders of (hydroxyapatite-wollastonite), sintered at1100?C and 1200?C for 3 hours. The microstructures for the prepared samples are investigated employing XRD and SEM technique. The biological properties of the ceramics samples were examined by immersion of the prepared samples in the stimulated body fluid solution. The interaction of these materials with an SBF produces bonelike apatite layer on their surfaces, which is thicker when the hydroxyapatite is in a higher proportion. The variations in ionic concentrations of Ca and Si demonstrate that the dissolution of the material surfaces with a simultaneous took place during the soaking tests, being slightly faster on 100W, 20H–80W, and 50H–50W, respectively. This could be due to the fact that the dissolution rate of the wollastonite phase was higher than that of the hydroxyapatite phase in SBF solution. The best results are obtained at 1100 °C and 1200°C for samples contained 30%HAP, due to good biological, mechanical, and physical properties compared with the pure HAP, and the prepared wollastonite .The physical properties of prepared samples (porosity, firing shrinkage) were tested. The results showed enhancement in the physical properties of hydroxyapatite/wollastonite sample.
机译:磨损或受伤的身体部位的更换是主要使用生物材料的领域。在研究中,我们开发了用于骨植入物的羟基磷灰石-硅灰石压块。评估了结晶羟基磷灰石用量对制备的生物复合材料的机械,物理和生物学性能的影响。硅灰石基体通过固相反应法由其组成例如硅藻土合成。由天然来源制备的CaO通过在900°C下煅烧1小时而属于牡蛎壳,并具有高纯度的二氧化硅泡沫。将二氧化硅泡沫和氧化钙粉末以1:1的摩尔比混合,然后在1300℃下烧结2小时。将制备的硅灰石与不同重量百分比的羟基磷灰石(10%,20%,30%,40%和50%)混合。通过在(200MPa)下冷压制备羟基磷灰石-硅灰石样品。由(羟基磷灰石-硅灰石)粉末制备的压块,在1100℃和1200℃下烧结3小时。利用XRD和SEM技术研究了所制备样品的微观结构。通过将制备的样品浸入受激体液中来检查陶瓷样品的生物学特性。这些材料与SBF的相互作用在其表面上产生骨状磷灰石层,当羟基磷灰石比例较高时,该层会更厚。 Ca和Si离子浓度的变化表明,材料表面的溶解在浸泡测试中同时发生,分别在100W,20H-80W和50H-50W上稍快一些。这可能是由于硅灰石相在SBF溶液中的溶解速率高于羟基磷灰石相的溶解速率。相对于纯HAP和制备的硅灰石,由于其良好的生物学,机械和物理性能,所以在1100°C和1200°C时,含30%HAP的样品获得了最佳结果。烧成收缩率)进行了测试。结果表明,羟基磷灰石/硅灰石样品的物理性能增强。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号