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作 者:范积伟[1] 陈林[2] 张小立[1] 赵慧君[1] 王志新[1] 王晓杰[1]
机构地区:[1]中原工学院,材料与化工学院,郑州450007 [2]中国地质大学(武汉)材料与化工学院,武汉430074
出 处:《硅酸盐学报》2010年第8期1430-1433,共4页Journal of The Chinese Ceramic Society
基 金:河南省科技厅科技攻关(072102240036)资助项目
摘 要:采用柠檬酸凝胶法制备锰-镍-铁基前驱体,在300℃煅烧干燥的前驱体得到纳米粒度粉末,压制成圆片坯体后在1100~1300℃烧结得到负温度系数(negative temperature coefficient,NTC)热敏陶瓷样品。研究了粉体和烧结样品的相结构、微观形貌、电性能和热敏特性。结果表明:合成粉体的纳米颗粒为单相Mn1/3Ni2/3Fe2O4尖晶石,粉体具有高化学均匀性。烧结的Mn1/3Ni2/3Fe2O4陶瓷样品具有均匀的微观结构,陶瓷样品的烧结密度和材料敏感指数β随着烧结温度的增加而增加。测量温度为50~150℃范围时,1300℃烧结的Mn1/3Ni2/3Fe2O4样品,其β可高达4300K。Mn-Ni-Fe based precursor was prepared via a citrate gel route. The nano-crystalline powder was obtained by calcining dried precursor at 300 ℃ ,and then a negative temperature coefficient (NTC) thermistor ceramic was prepared after sintering the compacted disc samples at 1 100-1 300 ℃. The phase composition,morphology,electronic property and thermo-sensitivity of the ceramic were investigated. The results show that the nano-crystalline particles of the powder are single-phase Mn1/3Ni2/3Fe2O4 spinel,and it possesses highly chemical homogeneity. The sintered Mn1/3Ni2/3Fe2O4 ceramics have homogeneous microstructure,and the sintered density and NTC sensitivity index β of the ceramic samples increase with the increase of sintering temperature. The sensitivity index β of the Mn1/3Ni2/3Fe2O4 ceramic sample sintered at 1 300 ℃ can be as high as 4 300 K (measured in the temperature range of 50-150 ℃ ).
关 键 词:负温度系数热敏电阻 锰-镍-铁尖晶石 凝胶法 电性能
分 类 号:TM283[一般工业技术—材料科学与工程]
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