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Preparation and characterization of nano-sized hydroxyapatite powders produced in a radio frequency (rf) thermal plasma

机译:射频(RF)热等离子体中制备的纳米羟基磷灰石粉末的制备与表征

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Nano-sized hydroxyapatite (HA) powders were successfully produced in radio frequency (rf) induction plasma. Fine spray dried (SD) HA powders (average size approx 15 mu m) were employed as feedstock. The microstructure, phase composition and thermal stability of SDHA feedstock and the nano-sized HA powders were investigated using scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffractometry (XRD), and differential scanning calorimetry (DSC). Decomposition of powders into other calcium phosphate phases occurred in the high temperature plasma flame. XRD results indicated that an increase in the working power level from 15 to 21 kW led to different trends for SDHA decomposition in the rf plasma flame. At 21 kW, the extreme rf plasma temperature was dominantly responsible for the decomposition of SDHA in the flame. The decomposition at the working plate power of 15 kW was attributed mainly to the relatively lower velocity of the plasma flame. The moderate decomposition of HA feedstock was obtained at a working power level of 20 kW due to mitigating conditions through combined influence of moderate flame temperature and flame velocity. DSC results indicated that amorphous phase content has a positive relation with the recrystallization enthalpy of phase transformation in the nano-sized powders.
机译:纳米羟基磷灰石(HA)粉末在射频(rf)感应等离子体中成功生产。使用细喷雾干燥的(SD)HA粉末(平均粒径约15微米)作为原料。使用扫描电子显微镜(SEM),透射电子显微镜(TEM),X射线衍射仪(XRD)和差示扫描量热法(DSC)研究了SDHA原料和纳米级HA粉的微观结构,相组成和热稳定性。 。在高温等离子体火焰中,粉末分解为其他磷酸钙相。 XRD结果表明,工作功率水平从15 kW增加到21 kW,导致RF等离子体火焰中SDHA分解的趋势不同。在21 kW时,极端的射频等离子体温度是火焰中SDHA分解的主要原因。工作板功率为15 kW时的分解主要归因于等离子火焰的速度相对较低。由于缓和条件,通过适度的火焰温度和火焰速度的综合影响,在20 kW的工作功率水平下获得了HA原料的适度分解。 DSC结果表明,无定形相含量与纳米粉末中相变的重结晶焓呈正相关。

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