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Phase Composition, Crystallite Size and Physical Properties of B2O3-added Forsterite Nano-ceramics

机译:相组合物,微晶尺寸和B2O3加入的叉段纳米陶瓷的物理性质

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This study was aimed to know the effect of B2O3 addition on the phase composition, crystallite size and dielectric properties of forsterite (Mg2SiO4) nano-ceramics. It utilized a purified silica sand from Tanah Laut, South Kalimantan as the source of (amorphous) silica and a magnesium oxide (MgO) powder. They were thoroughly mixed and milled prior to calcination. The addition of 1, 2, 3, and 4 wt% B2O3 to the calcined powder was done before uniaxial pressing and then sintering at 950 °C for 4 h. The phase composition and forsterite crystallite size, the microstructure and the dielectric constant of the sintered samples were characterized using X-ray diffractometer (XRD), Scanning Electron Microscope (SEM) and Vector Network Analyzer (VNA), respectively. Results showed that all samples contained forsterite, periclase (MgO) and proto enstatite (MgSiO3) with different weight fractions and forsterite crystallite size. In general, the weight fraction and crystallite size of forsterite increased with increasing B2O3 addition. The weight fraction and crystallite size of forsterite in the 4%-added sample reached 99% wt and 164 nm. Furthermore, the SEM images showed that the average grain size became slightly larger and the ceramics also became slightly denser as more B2O3 was added. The results are in accordance with density measurements using the Archimedes method which showed that the 4% ceramic exhibited 1.845 g/cm3 apparent density, while the 1% ceramic 1.681 g/cm~3. We also found that the higher the density, the higher the average dielectric constant, i.e. it was 4.6 for the 1%-added sample and 6.4 for the 4%-added sample.
机译:本研究旨在了解B2O3加法对流体(Mg2SiO 4)纳米陶瓷的相结合,微晶尺寸和介电性能的影响。它利用来自Tanah Laut的纯化的二氧化硅砂,南卡里曼坦作为(非晶)二氧化硅和氧化镁(MgO)粉末来源。在煅烧之前,它们在彻底混合和研磨。在单轴压制之前,将1,2,3和4wt%B2O3加入到煅烧粉末,然后在950℃下烧结4小时。使用X射线衍射仪(XRD),扫描电子显微镜(SEM)和矢量网络分析仪(VNA)分别表征了烧结样品的微观结构和烧结样品的微观结构和介电常数。结果表明,所有样品含有外形,蠕变(MgO)和原富尔脱石(MgSIO3),具有不同的重量级分和叉脂矿石尺寸。一般来说,随着B2O3的增加,Forsterite的重量级分和微晶尺寸增加。 4%加载样品中的叉座的重量级分和微晶尺寸达到99%wt和164nm。此外,SEM图像显示平均晶粒尺寸稍微变大,并且随着添加更多B2O3,陶瓷也变得稍微致​​密。结果符合使用Archimedes方法的密度测量,表明4%陶瓷表现出1.845g / cm3表观密度,而1%陶瓷1.681g / cm〜3。我们还发现密度越高,平均介电常数越高,即1%加载样品的4.6,对于4%的样品为6.6。

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