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以工业ZrO2为主要原料,CeO2,MgO及α-Al2O3作为复合稳定剂及颗粒添加剂,采用机械球磨混合法制备粉料,进而在较低的固溶烧结温度(≤1550℃)下,经1100℃适当时间热处理,制备出具有较好力学性能的细晶PSZ陶瓷材料,其室温强度约655MPa,断裂韧性在15MPa·m1/2左右;所制备细晶PSZ材料的临界热震温差△Tc在750℃左右,其中微裂纹增韧机制的存在对材料的抗热震性有积极作用;在(180℃,1MPa)水热条件下,采用CeO2作为复合稳定剂的PSZ陶瓷材料具有较好的抗水化性能。

Powders were prepared by mechanical milling-mixing process, inwhich industrial zirconia was used as the main starting material and CeO2,MgO as co-stabiliz ing agents and α-Al2O3 as particle additions. Fine-grained PSZ ceramics si ntered at low solid solution temperature (≤1550℃)and annealed at 1100℃ had good mechanical properties :the flexural strength and fracture toughness at room temperature were about 655MPa and 15MPa·m1/2, respectively. The critica l temperature of thermal-shock resistance was about 750℃, which attribute to mi crocrack toughening mechanism. After hydrothermal treatment (180℃,1MPa, in di s tilled water) up to 20h, (Ce,Mg)-PSZ/MgAl2O4 ceramics exhibited much better hydrothermal stability.

参考文献

[1] Heuer A H .Transformation toughening in ZrO2-containing cer amics[J].Journal of the American Ceramic Society,1987,70(10):689-698.
[2] Marmach M;Swain M V.Suitability of Mg-PSZ for adiabatic an d conventional diesel engine applications[J].Japan,1983:650-654.
[3] 马亚鲁;王树强;谈家琪 等.化学共沉淀法制备微晶PSZ陶瓷的显微结构与力学性能[J].硅酸盐学报,1995,23(05):495-500.
[4] 马亚鲁;张国亮;王树强 等.湿化学法制备微晶(Y,Mg)-PSZ/MgAl2O4陶瓷的研究[J].硅酸盐学报,1996,24(01):38-44.
[5] Bateman C A;Notis M R .Coarsening kinetics in Mg(Ca,Ti,Y)-pa rtially-stabilized zirconias[J].Journal of the American Ceramic Society,1992,75(06):1566-1569.
[6] Hirano M;Inada H .Hydrothermal stability of yttria-and ceri a-doped tetragonal zirconia-alumina composites[J].Journal of Materials Science,1991,26(18):5047-5052.
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