基于多元晶粒生长抑制效应,利用热压烧结方法制备了细晶高致密的Al2O3-TiC复相陶瓷.研究发现,仅利用第二相TiC的晶界钉扎效应,即使其含量高达30wt%,也不能有效地抑制Al2O3基体的晶粒生长.在TiC作为第二相的基础上,引入微量MgO和Y2O3,通过TiC晶界钉扎、MgO溶质滞阻和Y2O3晶界偏析等多元晶粒生长抑制作用,Al2O3基体晶粒尺寸从5.12 μm显著减小到1.82 μm,Al2O3-TiC复相陶瓷的断裂韧性从3.99±0.18 MPa·m1/2提高到5.24±0.22 MPa·m1/2.研究结果表明:利用多元晶粒生长抑制效应的协同作用,可显著细化Al2O3基复相陶瓷的显微结构,改善其力学性能.
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