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首页> 外文期刊>Results in Physics >Fabrication of Alumino-Silicate-Fluoride based bioglass derived from waste clam shell and soda lime silica glasses
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Fabrication of Alumino-Silicate-Fluoride based bioglass derived from waste clam shell and soda lime silica glasses

机译:废蛤壳和苏打石灰硅玻璃衍生的基于铝-硅-氟的生物玻璃的制备

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摘要

Through the traditional approach of the melt-water quenching technique, it is seen that Alumino-Silicate-Fluoride (ASF) bioglass system is assembled. Through the very investigation of this paper, it is noted that preparation of ASF bioglass is composed of Clam Shells (CS), Soda Lime Silicate (SLS), CaF2, P2O5, and Al2O3with the empirical formula [xCS?(45???x)SLS?15CaF2?20P2O5?20Al2O3] where x=?5, 10, 15 and 20 (wt%). The waste materials used to produce ASF bioglass were CS and SLS. The physical and structural properties of bioglass are obtained through Energy X-ray (EDX), density (ρ), molar volume (Vm), X-ray diffraction (XRD), Fourier Transform Infrared (FTIR) and Field Emission Scanning Electron Microscopy (FESEM) spectroscopy. Such measured physical parameters like density and molar volume were found to vary linearly with increasing the CaO content in the bioglass composition. X-ray powder diffractrogram showed that the ASF bioglass samples with higher amount of CaO content are in amorphous phase, but a small and sharp peak crystal phase was observed and known as fluorapatite (Ca5(PO4)3F). Meanwhile, FTIR spectroscopy revealed various bonds such as SiOSi, POP, CO and OH, indicated to the formation of ASF bioglass before sintering occurred. FESEM analysis showed non-uniform particle distribution, irregular in shape and random grain size of the bioglass. Although this type of bioglass is well established for dental application, its effect on waste materials such as CS and SLS for used in dental field has not been extensively studied. Revealed various bonds, stretching and bending vibrations within the samples before sintering occurred.
机译:通过传统的熔融水淬火技术,可以看到铝硅铝氟生物玻璃系统已经组装完成。通过对本文的深入研究,我们注意到,ASF生物玻璃的制备由蛤壳(CS),碳酸钙碳酸钙(SLS),CaF2,P2O5和Al2O3组成,其经验公式为[xCS?(45 ??? x SLS 15 CaF 2 20 P 2 O 5 20 Al 2 O 3],其中x = 5、10、15和20(wt%)。用于生产ASF生物玻璃的废料是CS和SLS。生物玻璃的物理和结构性质是通过能量X射线(EDX),密度(ρ),摩尔体积(Vm),X射线衍射(XRD),傅立叶变换红外(FTIR)和场发射扫描电子显微镜获得的( FESEM)光谱。发现这种测量的物理参数,例如密度和摩尔体积,随着生物玻璃组合物中CaO含量的增加而线性变化。 X射线粉末衍射图显示,具有较高CaO含量的ASF生物玻璃样品处于非晶相,但观察到小的且尖锐的峰晶相,称为氟磷灰石(Ca5(PO4)3F)。同时,FTIR光谱显示了SiOSi,POP,CO和OH等各种键,表明在烧结发生之前ASF生物玻璃的形成。 FESEM分析显示生物玻璃的颗粒分布不均匀,形状不规则且晶粒大小随机。尽管这种生物玻璃已经很好地用于牙科应用,但是其对牙科领域中使用的诸如CS和SLS等废料的影响尚未得到广泛研究。在烧结发生之前,样品内的各种粘结,拉伸和弯曲振动都显露出来。

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