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首页> 外文期刊>Journal of Advanced Ceramics >Preparation of hydroxyapatite ceramic through centrifugal casting process using ultra-fine spherical particles as precursor and its decomposition at high temperatures
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Preparation of hydroxyapatite ceramic through centrifugal casting process using ultra-fine spherical particles as precursor and its decomposition at high temperatures

机译:以超细球形颗粒为前驱体离心铸造法制备羟基磷灰石陶瓷及其高温分解

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Ultra-fine hydroxyapatite (HAp) powder with a diameter of about 10 nm was used as precursor for preparation of HAp ceramic. The precursor hydroxyapatite was single phase and highly crystallized without any additional thermal treatment. Highly densified HAp ceramic was fabricated through centrifugal infiltration casting (CIC), followed by pressureless sintering. The relative densities of compacts prepared at 1100°C and 1200°C were 77.8% and 94.1%, respectively. SEM micrographs of HAp ceramic sintered at 1100°C showed a porous microstructure with a grain size of 1 μm. HAp ceramic fabricated at 1200°C revealed a dense microstructure with nano-sized spherical α-TCP distributed at grain boundaries and triple points. The mechanism of decomposition from HAp to α-TCP at 1200°C was discussed on the basis of SEM, XRD and FTIR results.
机译:使用直径约10 nm的超细羟基磷灰石(HAp)粉末作为制备HAp陶瓷的前体。前体羟基磷灰石为单相且高度结晶,无需任何其他热处理。高密度HAp陶瓷通过离心浸铸(CIC)进行制造,然后进行无压烧结。在1100℃和1200℃下制备的压块的相对密度分别为77.8%和94.1%。在1100°C下烧结的HAp陶瓷的SEM显微照片显示出具有1μm晶粒尺寸的多孔微结构。在1200°C下制造的HAp陶瓷显示出致密的微观结构,纳米晶粒的球形α-TCP分布在晶界和三点上。根据SEM,XRD和FTIR结果,探讨了HAp在1200℃分解为α-TCP的机理。

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