TB3 96053450云母钛复合材料的制备与光学性能的研究=Studyon preparation and optical properties of titania-mica composites[刊,中]/李金声,谭俊茹,张金玲,孙艺环,陈秀增(天津大学化学系,天津(300072))∥硅酸盐学报.—1995,23(1).
O628.2 96010652云母钛复合材料的制备与光学性能的研究=Studyon preparation and optical properties of titani-a—mica composites[刊,中]/李金声,谭俊茹,张金玲,孙艺环,陈秀增(天津大学化学系)∥硅酸盐学报。—1995,23(1)。
Hybrid metal matrix composites are important class of engineering materials used in automotive, aerospace and other applications because of their lower density, higher specific strength, and better physical and mechan...Hybrid metal matrix composites are important class of engineering materials used in automotive, aerospace and other applications because of their lower density, higher specific strength, and better physical and mechanical properties compared to pure aluminium. The mechanical and wear properties of hybrid aluminium metal matrix composites were investigated. Mica and SiC ceramic particles were incorporated into A1 356 alloy by stir-casting route. Microstructures of the samples were studied using scanning electron microscope (SEM). The chemical composition was investigated through energy dispersive X-ray (EDX) detector. The results indicate that the better strength and hardness are achieved with A1/10SiC-3mica composites. The increase in mass fraction of mica improves the wear loss of the composites.展开更多
文摘TB3 96053450云母钛复合材料的制备与光学性能的研究=Studyon preparation and optical properties of titania-mica composites[刊,中]/李金声,谭俊茹,张金玲,孙艺环,陈秀增(天津大学化学系,天津(300072))∥硅酸盐学报.—1995,23(1).
文摘O628.2 96010652云母钛复合材料的制备与光学性能的研究=Studyon preparation and optical properties of titani-a—mica composites[刊,中]/李金声,谭俊茹,张金玲,孙艺环,陈秀增(天津大学化学系)∥硅酸盐学报。—1995,23(1)。
文摘Hybrid metal matrix composites are important class of engineering materials used in automotive, aerospace and other applications because of their lower density, higher specific strength, and better physical and mechanical properties compared to pure aluminium. The mechanical and wear properties of hybrid aluminium metal matrix composites were investigated. Mica and SiC ceramic particles were incorporated into A1 356 alloy by stir-casting route. Microstructures of the samples were studied using scanning electron microscope (SEM). The chemical composition was investigated through energy dispersive X-ray (EDX) detector. The results indicate that the better strength and hardness are achieved with A1/10SiC-3mica composites. The increase in mass fraction of mica improves the wear loss of the composites.