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机构地区:[1]吉林化工学院材料科学与工程学院,吉林吉林132022 [2]中国电器科学研究院有限公司威凯检测家电事业部压缩机工程部,广东广州510663 [3]哈尔滨工业大学理学院,黑龙江哈尔滨150001
出 处:《陶瓷学报》2016年第2期147-151,共5页Journal of Ceramics
基 金:吉林省科技发展计划项目(20130102005JC)
摘 要:为了研究SiC颗粒对β-SiAlON/SiC纳米复相陶瓷的作用及影响,以β-Si_3N_4,Al_2O_3及AlN作为形成β-SiAlON相的主要原料,以SiC颗粒为第二相,加入Y_2O_3作为烧结助剂,采用冷等静压成型及无压烧结工艺制备了β-SiAlON/SiC纳米复相陶瓷。利用XRD分析试样相组成,用SEM观察试样显微组织形貌,用EDS分析试样的元素组成。结果表明:SiC_P含量为5wt.%时,试样具有较高的密度及较低的失重率。随着SiC_P含量的增加,试样的径向收缩率和轴向收缩率均呈逐渐下降趋势;β-SiAlON相的z值从1变化至4,且逐步提高;β-SiAlON柱状晶的直径逐渐下降。In order to study the roles and effects of SiC particles on β-SiAlON/SiC nanocomposite ceramic.β-SiAlON/SiC nanocomposite ceramic was fabricated by cold isolated pressing and pressureless sintering,using β-Si_3N_4,Al_2O_3 and Al N as matrix powder,doping SiC particles as second phase,adding Y_2O_3 as sintering aid.Phase composition was studied by XRD,microstructure was detected by SEM,and element composition was analyzed by EDS.The results show that:samples have high density and low weight loss rate when the SiC_P content is 5wt.%.With the increase of SiC_P content,the radial and axial shrinkage of samples trends to decrease gradually;the z value change of β-Si AlON phase ranges from 1 to 4,which increases gradually;the elongated grain diameter decreases gradually.
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