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Non-isothermal Devitrification Study of Wollastonite-Tricalcium Phosphate Bioeutectic~R Glass

机译:硅灰石 - 磷酸盐生物 - 玻璃硅酸钙的非等温缺铁研究

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This document describes and discusses the non-isothermal devitrification process of the wollastonite-tricalcium phosphate (W-TCP) eutectic glass. This eutectic glass has been studied in situ, from room temperature up to 1375 °C, by Neutron Diffractometry (ND) in vacuum. The data obtained were complemented and compared with those performed on ambient atmosphere by Differential Thermal Analysis (DTA) and with those of samples fired in air, at selected temperatures, and then cooled down and subsequently studied by laboratory X-ray Powder Diffraction (LXRD) and Field Emission Scanning Electron Microscopy (FE-SEM) fitted with Energy X-Ray Dispersive Spectroscopy (EDS). Selected samples have been investigated by quantitative full-phase analysis (including the amorphous content) using the Rietveld method. The experimental evidence indicates that the devitrification of W-TCP eutectic glass, begins at ~870°C, with the crystallization of a Ca-deficient apatite phase (Ca_(9.92)(P_(5.85)O_(23.54))(OH)_(2.03) (H_2O)_(2.194)) followed by wollastonite-2M (á-CaSiO_3) crystallization at ~1006°C. At 1375°C the bio glass-ceramic is comprised of quasi-rounded colonies formed by a homogeneous mixture of pseudowollastonite (?-CaSiO_3) and cc-tricalcium phosphate (á-Ca_3(PO_4)_2). This microstructure corresponds to irregular eutectic structures and is similar to that of Bioeutectic W-TCP material obtained previously, via controlled slow solidification of the eutectic composition, by some of the present authors. It has also been found that from the eutectic composition of the wollastonite - tricalcium phosphate binary system is possible to obtain a wide range of bio glass-ceramics through appropriate design of thermal treatments.
机译:本文件描述并讨论了硅灰石 - 磷酸钙(W-TCP)共晶玻璃的非等温缺铁过程。通过真空中的中子衍射法(Nd)原位研究了该共晶玻璃,从室温到高达1375℃。得到的数据互补,并与通过差动热分析(DTA)在环境大气中进行的数据进行比较,并且在空气中在所选温度下燃烧的样品,然后通过实验室X射线粉末衍射(LXRD)进行冷却并随后研究。和场发射扫描电子显微镜(Fe-SEM)配有能量X射线分散光谱(EDS)。通过使用RIETVELD方法通过定量全相分析(包括无定形含量)来研究所选样品。实验证据表明,W-TCP共晶玻璃的缺失在〜870℃开始,具有Ca缺陷磷灰石相的结晶(Ca_(9.92)(P_(5.85)O_(23.54))(OH)_ (2.03)(H_2O)_(2.194)),其次是硅灰石-2M(Á-CasiO_3)结晶在〜1006℃下。在1375℃下,生物玻璃 - 陶瓷由由均匀的假旋属(α-CaSiO_3)和CC-磷酸钙(α-Ca_3(PO_4)_2)形成的均匀混合物形成的准圆形菌落。该微观结构对应于不规则的共晶结构,并且类似于先前通过对共晶组合物的缓慢凝固而获得的生物思想型W-TCP材料的基础植物的共晶结构类似。还发现,从硅灰石 - 磷酸钙二元体系的共晶组成,通过适当的热处理设计,可以获得各种生物玻璃陶瓷。

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