材料科学
陶瓷
相(物质)
微观结构
X射线晶体学
立方氧化锆
矿物学
复合材料
衍射
化学
光学
物理
有机化学
作者
Jianning Lu,Juan Wang,Kaihong Zheng,Bo Feng
摘要
Abstract The study examines the effect and mechanism of 3Y–ZrO 2 addition on the phase composition, microstructure, and mechanical properties of Al 2 O 3 –ZrO 2 ceramics. The ceramics were sintered at 1580°C for 120 min, comprising varying proportions of 20, 40, 60, and 80 wt.% of 3Y–ZrO 2 . The study investigates the phase composition, phase content, microstructure, relative density, microhardness, fracture toughness, and wear rate of the ceramics. Notably, Al 2 O 3 –ZrO 2 ceramics demonstrated a dense surface with evenly distributed reinforcing particles in the matrix. The microhardness and wear rate of Al 2 O 3 –ZrO 2 ceramics declined with increased 3Y–ZrO 2 addition; in contrast, the bending strength, abrasion resistance, and fracture toughness increased with the addition of 3Y–ZrO 2 . Alumina grain refinement, crack propagation inhibition, and microcrack toughening induced by tetragonal‐to‐monoclinic phase transformation are the primary factors influencing these changes. Meanwhile, as the content of 3Y–ZrO 2 increases, the fracture mode of Al 2 O 3 shifted gradually from transgranular to intergranular, whereas ZrO 2 maintained predominantly transgranular fracture.
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