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首页> 外文期刊>Journal of Materials Science >Kinetics of thermal decomposition of hydroxyapatite bioceramics
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Kinetics of thermal decomposition of hydroxyapatite bioceramics

机译:羟基磷灰石生物陶瓷热分解动力学

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Thermal decomposition of hydroxyapatite taking place during the sintering of HA ceramics or during application of HA coatings affects the physical, mechanical, chemical as well as biological properties. The mechanism and kinetics of thermal decomposition of injection moulded hydroxyapatite ceramics were studied over the temperature range of 1473-1758K. At temperatures <1473K the sintering and transformation of hydroxyapatite to hydroxyoxyapatite proceeded to a conversion degree of 0.4-0.5. At temperatures between 1473-1758K the hydroxyapatite was decomposed to alpha -TCP, H sub 2 O and CAO. The decomposition of HOA started on the surface of the HOA ceramics. The rate of increase in the thickness of the reaction products ( alpha -TCP) was described by the parabolic law. The kinetic analysis of the time dependence of HOA conversion to TCP by means of the J-M-A-J-K equation also showed that the thermal decomposition of HOA ceramics was controlled by diffusion of water from the reaction zone to the surface of the ceramic sample. The activation energy of the thermal decomposition of HOA ceramics amounted to 283.5 kJ/mol.
机译:羟基磷灰石的热分解在HA陶瓷的烧结过程中或在HA涂层的应用过程中发生,会影响物理,机械,化学和生物学特性。研究了在1473-1758K温度范围内注塑羟基磷灰石陶瓷热分解的机理和动力学。在<1473K的温度下,羟磷灰石的烧结和转化为羟氧基磷灰石进行至0.4-0.5的转化度。在1473-1758K之间的温度下,羟基磷灰石被分解为α-TCP,H sub 2 O和CAO。 HOA的分解开始于HOA陶瓷的表面。反应产物(α-TCP)的厚度的增加速率由抛物线定律描述。通过J-M-A-J-K方程对HOA转化为TCP的时间依赖性进行动力学分析,结果还表明,HOA陶瓷的热分解是通过水从反应区向陶瓷样品表面的扩散来控制的。 HOA陶瓷热分解的活化能为283.5 kJ / mol。

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