首页> 外文会议>International Symposium on Nitrides; 20060403-05; Eskisehir(TK) >Carbothermal Reduction and Nitridation of Canakkale Origin Kaolin for SiAlON Powder Production
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Carbothermal Reduction and Nitridation of Canakkale Origin Kaolin for SiAlON Powder Production

机译:用于SiAlON粉末生产的Canakkale起源高岭土的碳热还原和氮化

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SiAlON ceramics were successfully produced in the form of powders from high purity kaolin, a hydrated aluminium silicate, Al_2Si_2O_5(OH)_4 type of clay mineral (comprises 83.85% kaolinite, 13.59% quartz, 0.88% feldspar, 1.37% others) of Canakkale-Can origin. Factors affecting SiAlON powder production were temperature, holding time, gas-flow rate and preparation methods. System optimisation was achieved following the results succeeded from numerous testing and characterisation (with XRD, SEM, EDS, BET, etc.) of each test. Changing in gas flow rate, temperature and holding time at plateau temperature had influences on the final powder yield, their morphologies and phase formation. The best conversion of kaolin clay mineral to SiAION ceramic powder was the test run at 1475℃ for 4 hour under 1 lt/min N_2-flow. Product after the process was mainly of β'- Si_3Al_3O_3N_5 (z=3) powder along with small amounts of Al_2O_3, muilite and AlN phases. Some powder product exhibits furry type of wiskers morphology, which may be useful for using as a reinforcing material in paniculate composite bodies.
机译:从高纯高岭土,水合硅酸铝,Al_2Si_2O_5(OH)_4型粘土矿物(包括83.85%高岭石,13.59%石英,0.88%长石,1.37%其他)的粉末形式成功生产了SiAlON陶瓷。可以原产。影响SiAlON粉末生产的因素是温度,保温时间,气体流速和制备方法。在通过每次测试的大量测试和表征(使用XRD,SEM,EDS,BET等)获得成功之后,实现了系统优化。气体流速,温度和在高原温度下的保持时间的变化对最终粉末产量,其形态和相形成有影响。高岭土矿物向SiAION陶瓷粉末的最佳转化是在1lt / min N_2流下于1475℃下进行4小时的测试。处理后的产物主要是β'-Si_3Al_3O_3N_5(z = 3)粉末,以及少量的Al_2O_3,蒙脱石和AlN相。一些粉末产品表现出毛茸茸的晶须形态,这可用作颗粒状复合体中的增强材料。

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