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首页> 外文期刊>Journal of Materials Science >Hydroxylapatite-zirconia composites: Thermal stability of phases and sinterability as related to the CaO-ZrO(2)phase diagram
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Hydroxylapatite-zirconia composites: Thermal stability of phases and sinterability as related to the CaO-ZrO(2)phase diagram

机译:羟基磷灰石-氧化锆复合材料:相的热稳定性和与CaO-ZrO(2)相图有关的可烧结性

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摘要

Composites of hydroxylapatite ( HA) with pure zirconia, and 3 and 8% Y2O3 in zirconia, were pressure-less sintered at temperatures from 900 to 1300 degrees C, and hot-pressed at 1200 degrees C in argon gas atmosphere for 1 h. The reactions and transformations of phases were monitored with X-ray diffraction and thermal analysis. At sintering temperatures higher than 1000 degrees C, calcium from HA diffused into the zirconia phase, and the HA phase decomposed to tri-calcium phosphate (TCP). Above about 1200 degrees C, CaZrO3 was formed. These reactions and transformations were interpreted in terms of the ZrO2-CaO phase diagram. On the other hand, zirconia and hydroxylapatite phases in hot pressed composite remained mainly stable suggesting that air in the sintering environment increased the reactivity between the phases. The highest densification was found in a composite initially containing 10% monoclinic ZrO2 sintered at 1300 degrees C. The densification of the composites decreased at lower sintering temperatures and higher zirconia contents upon air-sintering. (C) 2005 Springer Science + Business Media, Inc.
机译:将羟基磷灰石(HA)与纯氧化锆以及氧化锆中的3和8%Y2O3的复合材料在900至1300摄氏度的温度下进行无压烧结,并在1200摄氏度的氩气气氛中热压1小时。用X射线衍射和热分析监测相的反应和相变。在高于1000℃的烧结温度下,来自HA的钙扩散到氧化锆相中,并且HA相分解为磷酸三钙(TCP)。在约1200℃以上,形成CaZrO 3。这些反应和转化是根据ZrO2-CaO相图解释的。另一方面,热压复合材料中的氧化锆和羟基磷灰石相主要保持稳定,这表明烧结环境中的空气增加了相之间的反应性。在最初包含在1300摄氏度下烧结的10%单斜晶ZrO2的复合材料中发现了最高的致密化。在较低的烧结温度和较高的氧化锆含量(在空气烧结下)时,复合材料的致密性降低。 (C)2005年Springer Science + Business Media,Inc.

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