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作 者:刘晓妍 李婷[1] 罗旭东 李可琢 Liu Xiaoyan;Li Ting;Luo Xudong;Li Kezhuo(School of Materials and Metallurgy,University of Science and Technology Liaoning,Anshan 114051,Liaoning,China;不详)
机构地区:[1]辽宁科技大学材料与冶金学院,辽宁鞍山114051
出 处:《耐火材料》2022年第1期34-37,共4页Refractories
基 金:国家自然科学基金面上项目(51772139)。
摘 要:以高纯氧化镁粉体为主要原料,分别掺杂0、2%、4%、6%以及8%(w)的La_(2)O_(3)粉体,选用聚乙烯醇为结合剂,研究单轴压成型、等静压成型及不同煅烧温度(1400、1500以及1600℃)对La_(2)O_(3)掺杂氧化镁陶瓷烧结性能、显微结构及抗热震性能的影响。结果表明:采用等静压成型,氧化镁粉体受到来自各方向大小一致的成型压力,并均匀地传递至各个方向,从而得到了更为致密的坯体,显著提高了氧化镁陶瓷的烧结性能。提高烧成温度,更有利于掺杂物La_(2)O_(3)与MgO形成置换型固溶体或发生晶格畸变,促进烧结,达到致密化。煅烧温度为1600℃,La_(2)O_(3)掺杂量为4%(w)时,经等静压成型坯体最为致密,热震后裂纹细小。这是由于方镁石晶相间交界处的La_(2)O_(3)晶体改变了裂纹走向,阻挡和分散了部分能量和应力,减缓了裂纹的线性延伸。Magnesia ceramic specimens were prepared using high purity magnesia powder as the main starting material and polyvinyl alcohol as the binder,doping different amounts of La_(2)O_(3) powder(0,2%,4%,6%,and 8%,by mass).The effects of uniaxial pressing,isostatic pressing and different calcination temperatures(1400,1500 and 1600℃)on the sintering performance,the microstructure and the thermal shock resistance of La_(2)O_(3) doped MgO ceramics were investigated.The results show that the magnesia powder is subjected to the same forming pressure from all directions and then the pressure is uniformly transferred to all directions by isostatic pressing,so as to obtain a more compact green body and significantly improve the sintering performance of magnesia ceramic.The increase of the sintering temperature is more conducive to the formation of substitution solid solution or lattice distortion when the doped La_(2)O_(3) reacts with MgO,which promotes sintering and achieves densification.When the calcination temperature is 1600℃and the doping amount of La_(2)O_(3) is 4%,the green body formed by isostatic pressing is the densest,and the cracks are small after thermal shock.The La_(2)O_(3) crystals at the interface of the periclase crystal phase change the crack direction,then block and disperse part of the energy and stress,which slows down the linear extension of the cracks.
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