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致密羟基磷灰石-氧化锆复合材料的无压烧结

Pressureless sintering of dense hydroxyapatite-zirconia composites.

作者信息

Nayak Y, Rana R P, Pratihar S K, Bhattacharyya S

机构信息

Department of Ceramic Engineering, National institute of Technology, Rourkela, 769008, India.

出版信息

J Mater Sci Mater Med. 2008 Jun;19(6):2437-44. doi: 10.1007/s10856-008-3371-z. Epub 2008 Jan 25.

Abstract

Hydroxyapatite (HA)-TZP (2.5 mol% Y2O3) containing 2, 5, 7.5 and 10 wt% TZP were prepared using calcium nitrate, diammonium hydrogen orthophosphate, zirconium oxychloride and yttrium nitrate. The composite powder was prepared by a reverse strike precipitation method at a pH of 10.5. The precipitates after aging and washing were calcined at 850 degrees C to yield fine crystallites of HA and TZP. TEM study of the calcined powder revealed that while HA particles had both spherical and cuboidal morphology ( approximately 50-100 nm) the TZP particles were only of spherical nature ( approximately 50 nm). X-ray analysis showed that the calcined powder of all the four composition had only HA and t-ZrO2. Uniaxially compacted samples were sintered in air in the temperature range 1,150-1,250 degrees C. High sintered density (>95% of theoretical) was obtained for composites containing 2 and 5 wt% TZP, while it was 92% for 7.5 wt% and 90% for 10 wt% TZP compositions. X-ray analysis of sintered samples shows that with 2 wt% TZP, the retained phases were only HA and t-ZrO2. However, for 5, 7.5 and 10 wt% TZP addition both TCP and CaZrO3 were also observed along with HA and t-ZrO2. Bending strength was measured by three point bending as well by diametral compression test. While in three point bending, the highest strength was 72 MPa, it was 35.5 MPa for diametral compression. The strength shows a decreasing trend at higher ZrO2 content. SEM pictures show near uniform distribution of ZrO2 in HA matrix. The reduction in sintered density at higher ZrO2 content could be related to difference in the sintering behaviour of HA and ZrO2.

摘要

使用硝酸钙、磷酸氢二铵、氧氯化锆和硝酸钇制备了分别含有2 wt%、5 wt%、7.5 wt%和10 wt%四方相氧化锆(TZP,Y2O3含量为2.5 mol%)的羟基磷灰石(HA)-TZP复合材料。采用反向沉淀法在pH值为10.5的条件下制备复合粉末。老化和洗涤后的沉淀物在850℃下煅烧,得到HA和TZP的微晶。对煅烧后的粉末进行透射电子显微镜(TEM)研究表明,HA颗粒具有球形和立方体形貌(约50 - 100 nm),而TZP颗粒仅为球形(约50 nm)。X射线分析表明,所有四种成分的煅烧粉末中仅含有HA和四方相氧化锆(t-ZrO2)。将单轴压制的样品在1150 - 1250℃的空气中烧结。含2 wt%和5 wt% TZP的复合材料获得了较高的烧结密度(>理论密度的95%),而含7.5 wt% TZP的复合材料烧结密度为92%,含10 wt% TZP的复合材料烧结密度为90%。对烧结样品进行X射线分析表明,添加2 wt% TZP时,保留相仅为HA和t-ZrO2。然而,添加5 wt%、7.5 wt%和10 wt% TZP时,除了HA和t-ZrO2外,还观察到了磷酸三钙(TCP)和锆酸钙(CaZrO3)。通过三点弯曲试验和径向压缩试验测量弯曲强度。在三点弯曲试验中,最高强度为72 MPa,在径向压缩试验中为35.5 MPa。强度在较高ZrO2含量时呈下降趋势。扫描电子显微镜(SEM)图片显示ZrO2在HA基体中分布近乎均匀。较高ZrO2含量下烧结密度的降低可能与HA和ZrO2烧结行为的差异有关。

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