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首页> 外文期刊>Advances in Applied Ceramics >Microwave sintering and fusion of low-fusing titanium body porcelain derived from sol-gel synthesis
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Microwave sintering and fusion of low-fusing titanium body porcelain derived from sol-gel synthesis

机译:微波烧结和低熔注钛体瓷器的融合来自溶胶 - 凝胶合成

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The titanium body porcelain was synthesised through sol-gel using borate-silicate system. The porcelain was characterised by X-ray diffraction (XRD), scanning electron microscope and three-point flexure tests. The XRD and selected area electron diffraction (SAED) results showed that the porcelain was mainly amorphous. The SEM and TEM microphotographs showed that the shape of the porcelain particles was irregular and their sizes range from 5 to 25 mu m, while there were no obvious pores on the porcelain surface. The flexure strength significantly increased from 18.9 to 70.6 MPa when the sintering temperature of the porcelain increased from 600 to 675 degrees C and then slowly decreased to 49.1 MPa when the sintering temperature elevated to 700 degrees C. The improvement of the strength was mainly due to the decrease of pores and increase of density. A closely bonded dense coating was fused on the Ti surface by microwave.
机译:使用硼酸盐 - 硅酸盐系统通过溶胶 - 凝胶合成钛体陶瓷。 瓷器的特征在于X射线衍射(XRD),扫描电子显微镜和三点挠曲测试。 XRD和所选区域电子衍射(SAED)结果表明,瓷器主要是无定形的。 SEM和TEM显微照片表明,瓷颗粒的形状不规则,其尺寸范围为5至25亩,而瓷表面上没有明显的毛孔。 当瓷器的烧结温度从600升至675℃增加时,弯曲强度显着增加到70.6MPa,然后在烧结温度升高到700℃时,缓慢降至49.1MPa。强度的提高主要是由于 毛孔减少和密度的增加。 通过微波在Ti表面上融合密切键合的致密涂层。

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