摘要
基于化学共沉淀法和机械混合法2种引入Y2O3的不同方式,通过等静压成型和常压高温烧结制备了2种Al2O3增强Y-TZP陶瓷材料(Y-TZP/Al2O3);用X射衍射仪分析了2种材料的物相组成;对比考察了2种陶瓷材料试样的磨料磨损性能,并用扫描电子显微镜观察分析了2种材料试样的磨损表面形貌.结果表明:基于化学共沉淀法引入Y2O3制备的陶瓷材料的结构均匀、晶粒细小,且耐磨性较好;当2种Y-TZP/Al2O3陶瓷材料的HV和KIC相近时,其磨料磨损性能明显同其晶粒尺寸和微结构相关;2种材料的磨料磨损机理亦存在明显差异,基于化学共沉淀法引入Y2O3而制备的Y-TZP/Al2O3陶瓷材料主要呈现微裂纹和微犁削特征,基于机械混合法引入Y2O3而制备的Y-TZP/Al2O3陶瓷材料主要呈脆性断裂特征.
Two kinds of yttriadoped tetragonal zirconia polycrystal ceramics reinforced with alumina (abridged as YTZP/Al2O3) were prepared by means of isostatic pressing and sintering at ambient pressure and high temperature, using chemically coprecipitated (The corresponding ceramic specimen was coded as CYZA) and mechanically mixed Y2O3 (The corresponding ceramic specimen was coded as MYZA) as the stabilizing ingredient. The microstructures and phase compositions of the resulting YTZP/Al2O3 specimens were analyzed by means of scanning electron microscopy and Xray diffraction. The abrasive wearresistance of the ceramic specimens sliding against a rubber counterpart in the presence of aqueous NaOH solution containing SiO2 as the abrasive medium was examined in a blockondisc configuration. The worn surface morphologies of the ceramic specimens were observed with a scanning electron microscope. The results indicated that the CYZA specimen had uniform structure and fine grain size, which accounted for its better abrasive wearresistance than the MYZA specimen with nonuniform structure and largely different grain sizes. The CYZA specimen was characterized by microcracking and microploughing, while the MYZA dominated by brittle fracturing. Such differences in the worn surface morphologies of the two kinds of YTZP/Al2O3 specimens were also attributed to their different microstructures and grain sizes.
出处
《摩擦学学报》
EI
CAS
CSCD
北大核心
2003年第4期296-300,共5页
Tribology
基金
国家863计划资助项目(2002A33082).