Silane coupling agent KH560 was used to modify the surface of nano-α-Al<sub>2</sub>O<sub>3</sub> in ethanol-aqueous solution with different proportions. The particle size of nano-α-Al<sub&...Silane coupling agent KH560 was used to modify the surface of nano-α-Al<sub>2</sub>O<sub>3</sub> in ethanol-aqueous solution with different proportions. The particle size of nano-α-Al<sub>2</sub>O<sub>3</sub> was determined by nano-particle size analyzer, and the effects of nano-α-Al<sub>2</sub>O<sub>3</sub> content, ethanol-aqueous solution ratio and KH560 dosage on the dispersion and particle size of nano-α-Al<sub>2</sub>O<sub>3</sub> were investigated. The material structure before and after modification was determined by Fourier transform infrared spectroscopy (FTIR). Aqueous polyurethane resin and inorganic components are combined with modified nano-α-Al<sub>2</sub>O<sub>3</sub> dispersion to form chromium-free passivation solution. The solution is coated on the galvanized sheet, the adhesion and surface hardness are tested, the bonding strength of the coating and the surface hardness of the substrate are discussed. The corrosion resistance and surface morphology of the matrix were investigated by electrochemical test, neutral salt spray test and scanning electron microscope test. The chromium-free passivation film formed after the modification of nano-α-Al<sub>2</sub>O<sub>3</sub> increases the surface hardness of galvanized sheet by about 85%. The corrosion resistance of the film is better than that of a single polyurethane film. The results show that the surface hardness and corrosion resistance of polyurethane resin composite passivation film are significantly improved by the introduction of nano-α-Al<sub>2</sub>O<sub>3</sub>.展开更多
采用静态坩埚法进行了Sialon增强Al2O3 SiC C铁沟浇注料的抗渣实验。结果表明,该种铁沟料具有比传统铁沟料更优异的抗渣性能。通过X 射线衍射和SEM分析可知,其抗渣机理为:添加的Si3N4,Si与Al2O3发生原位反应生成Sialon,使材料内部结合...采用静态坩埚法进行了Sialon增强Al2O3 SiC C铁沟浇注料的抗渣实验。结果表明,该种铁沟料具有比传统铁沟料更优异的抗渣性能。通过X 射线衍射和SEM分析可知,其抗渣机理为:添加的Si3N4,Si与Al2O3发生原位反应生成Sialon,使材料内部结合更加紧密,并且生成的Sialon活性较高,氧化放出气体,阻止熔渣的渗入;其次,Sialon向熔渣中溶解,使熔渣成为含N的高硅玻璃,粘度增大;此外,Al2O3与熔渣的MgO反应生成MgAl2O4,形成一阻挡层,这也是Sialon增强Al2O3 SiC C浇注料具有优异的抗渣渗透及侵蚀性能的重要原因。展开更多
文摘Silane coupling agent KH560 was used to modify the surface of nano-α-Al<sub>2</sub>O<sub>3</sub> in ethanol-aqueous solution with different proportions. The particle size of nano-α-Al<sub>2</sub>O<sub>3</sub> was determined by nano-particle size analyzer, and the effects of nano-α-Al<sub>2</sub>O<sub>3</sub> content, ethanol-aqueous solution ratio and KH560 dosage on the dispersion and particle size of nano-α-Al<sub>2</sub>O<sub>3</sub> were investigated. The material structure before and after modification was determined by Fourier transform infrared spectroscopy (FTIR). Aqueous polyurethane resin and inorganic components are combined with modified nano-α-Al<sub>2</sub>O<sub>3</sub> dispersion to form chromium-free passivation solution. The solution is coated on the galvanized sheet, the adhesion and surface hardness are tested, the bonding strength of the coating and the surface hardness of the substrate are discussed. The corrosion resistance and surface morphology of the matrix were investigated by electrochemical test, neutral salt spray test and scanning electron microscope test. The chromium-free passivation film formed after the modification of nano-α-Al<sub>2</sub>O<sub>3</sub> increases the surface hardness of galvanized sheet by about 85%. The corrosion resistance of the film is better than that of a single polyurethane film. The results show that the surface hardness and corrosion resistance of polyurethane resin composite passivation film are significantly improved by the introduction of nano-α-Al<sub>2</sub>O<sub>3</sub>.
文摘采用静态坩埚法进行了Sialon增强Al2O3 SiC C铁沟浇注料的抗渣实验。结果表明,该种铁沟料具有比传统铁沟料更优异的抗渣性能。通过X 射线衍射和SEM分析可知,其抗渣机理为:添加的Si3N4,Si与Al2O3发生原位反应生成Sialon,使材料内部结合更加紧密,并且生成的Sialon活性较高,氧化放出气体,阻止熔渣的渗入;其次,Sialon向熔渣中溶解,使熔渣成为含N的高硅玻璃,粘度增大;此外,Al2O3与熔渣的MgO反应生成MgAl2O4,形成一阻挡层,这也是Sialon增强Al2O3 SiC C浇注料具有优异的抗渣渗透及侵蚀性能的重要原因。