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纳米Al2O3–ZrO2涂层的制备与微观结构
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作者 于方丽 白宇 +1 位作者 lee soowohn 杨建锋 《硅酸盐学报》 EI CAS CSCD 北大核心 2011年第8期1373-1378,共6页
用Al(NO3)3.9H2O、ZrOCl2.8H2O及NH4OH作为原料,采用溶胶–凝胶工艺制备出Al2O3–40%(质量分数)ZrO2纳米复合粉体。并以此粉体为原料,用等离子喷涂工艺在不锈钢基体上制备了Al2O3–40%ZrO2纳米涂层。采用X射线衍射、扫描电子显微镜及高... 用Al(NO3)3.9H2O、ZrOCl2.8H2O及NH4OH作为原料,采用溶胶–凝胶工艺制备出Al2O3–40%(质量分数)ZrO2纳米复合粉体。并以此粉体为原料,用等离子喷涂工艺在不锈钢基体上制备了Al2O3–40%ZrO2纳米涂层。采用X射线衍射、扫描电子显微镜及高分辨透射电子显微镜分析粉体及涂层的物相及微观结构。结果表明:当煅烧温度从900℃升高至1 200℃过程中,复合粉体中的θ-Al2O3逐渐向α-Al2O3转变,当煅烧温度达到1 200℃时,粉体中仅存在α-Al2O3。此外,单斜相二氧化锆(m-ZrO2)与四方相二氧化锆(t-ZrO2)共存于粉体中,并且m-ZrO2含量随煅烧温度及保温时间的增加而增加。喷涂后的Al2O3–40%ZrO2纳米涂层是由尺寸约为50 nm的晶粒及一些非晶相组成,晶粒的物相为α-Al2O3、γ-Al2O3及t-ZrO2。 展开更多
关键词 氧化铝 氧化锆 溶胶-凝胶法 等离子喷涂 涂层
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Microstructural evolution and mechanism of grain growth in magnesia ceramics prepared by high pressure and temperature with ultra-high heating rate 被引量:3
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作者 LIU JiangHao FU ZhengYi +5 位作者 WANG WeiMin ZHANG JinYong WANG Hao WANG YuCheng lee soowohn NIIHARA Koichi 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第6期1085-1092,共8页
The fast densification method of combustion reaction plus quick pressing was adopted to prepare nanocrystalline ceramics.The densification process of magnesia compact with a particle size of 100 nm was investigated,un... The fast densification method of combustion reaction plus quick pressing was adopted to prepare nanocrystalline ceramics.The densification process of magnesia compact with a particle size of 100 nm was investigated,under the applied pressure of up to 170 MPa,and the temperature range of 1740–2080 K with ultra-high heating rate(above 1700 K/min).High-purity magnesia ceramics with a relative density of 98.8%and an average grain size of 120 nm was obtained at 1740 K,and the grain growth during the densification process was effectively restrained.The characteristic morphology of evaporation-condensation was observed in the compact prepared at 2080 K,which revealed the actual process of mass transfer by gas diffusion.Moreover,the investigation on the microstructure evolution and mechanism of grain growth was carried out,on the basis of as-preserved nanocrystalline ceramics.The result indicated that the grain growth of the nanocrystalline MgO was controlled by the mechanism of evaporation-condensation rather than surface diffusion.Furthermore,the pressure had an influence of restraining the grain growth based on solid diffusion and strengthening the effect of gas diffusion with the increasing temperature.Under the particular conditions,there existed an appropriate temperature for the densification of nanocrystalline magnesia,while the excessive temperature would exaggerate grain growth and impede densification. 展开更多
关键词 grain growth DENSIFICATION heating rate evaporation-condensation surface diffusion nanocrystalline ceramics
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