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添加Li_2CO_3和BaCO_3对合成堇青石性能的影响 被引量:2

Influences of Li_2CO_3 and BaCO_3 on property of synthesized cordierite
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摘要 采用煤系高岭土、滑石和镁砂为主要原料,在化学组成(w)为MgO13.23%,Al2O3 33.78%,SiO2 51.16%的研究配方(试样A)的基础上,分别添加1.0%、1.5%、2.0%的Li2CO3(对应试样编号为L1、L2、L3)或1.0%、2.0%、3.0%的BaCO3(对应试样编号为B1、B2、B3),以100MPa压制成636mm×50mm的圆柱状试样,在110℃干燥4h后,以3~5℃·min^-1的升温速度升至1340℃保温3h烧成,然后检测试样的烧后体积收缩率及体积密度、显气孔率和热膨胀系数,并采用XRD分析矿物成分,K值法测量烧后试样的堇青石相含量,以探讨添加Li2CO3和BaCO3对合成堇青石性能的影响。结果表明:随着Li2CO3添加量的增加,烧后试样的体积收缩率和体积密度逐渐增大,显气孔率逐渐减小,而添加BaCO3对堇青石合成过程中的烧结性影响不大;烧后试样A和B2中除分别含有为90%和95%的堇青石外未检测到其他晶相,但L1中还存在一定量的LiAlSi2O6相;添加剂Li2CO3或BaCO3均能降低合成堇青石的热膨胀系数。 Coal series kaolinite,talc and magnesia were used as the starting materials. Based on the formula of the specimen A ( MgO 1 3.23 %, Al2O3 33.78 %, SiO2 51.16% ), the specimens L1, L2,L3, B1, B2, B3 were prepared by adding 1.0% Li2CO3,1.5% Li2CO3,2.0% Li2CO3, 1.0% BaCO3,2.0% BaCO3,3.0% BaCO3 respectively,pressing into the cylinders with size of φ36 mm ×50 mm at 100 MPa,drying at 110 ℃ for 4 h,firing at 1 340 ℃ for 3 h with rising rate of 3 ~5 ℃ · min^-1. The volume shrinkage,bulk density,apparent porosity and the thermal expansion coefficient of fired specimens were measured,the phase composition was analyzed by XRD and the content of cordierite was calculated by K value method to research the influence of Li2CO3 and BaCO3 on property of synthesized cordierite. The results show that: ( 1 ) With increasing of Li2CO3 addition,the bulk density and volume shrinkage increase and apparent porosity decreases gradually. The addition of BaCO3 has a little effect on synthesis process of cordierite. (2)The fired specimens A and B2 contain 90% and 95% cordierite phase respectively, and have not other crystal phase, but specimen L1 has a certain amount of LiAlSi2O6 apart from the cordierite phase. (3)Li2CO3 and BaCO3 are both able to decrease the thermal expansion coefficient of synthesized cordierite.
出处 《耐火材料》 EI CAS 北大核心 2007年第6期421-423,共3页 Refractories
关键词 合成堇青石 碳酸锂 碳酸钡 热膨胀系数 Synthesized cordierite, Lithium carbonate, Barium carbonate,Thermal expansion coefficient
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