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作 者:李伟[1] 景山[1] 沈保罗[1] 高升吉[1] 涂旌铭[1] 吴桢干[2] 王鸿华[2] 张荻[2] 吴人洁[2]
机构地区:[1]四川大学金属材料工程系,成都610065 [2]上海交通大学金属基复合材料国家重点实验室,上海200030
出 处:《中国有色金属学报》2001年第6期1051-1054,共4页The Chinese Journal of Nonferrous Metals
基 金:国家自然科学基金资助项目 ( 5 96 310 80 );上海交通大学金属基复合材料国家重点实验室资助项目
摘 要:采用挤压铸造方法制备mullite/Al 4.0Cu 1.85Mg铝基复合材料 ,用硬度测试 (HB)、差示扫描量热仪(DSC)和分析透射电镜 (ATEM)等手段 ,研究了复合材料及其基体合金的时效硬化特性、时效相的析出序列、析出相和位错的微观形貌特征以及界面结构。结果表明 :mullite纤维的引入抑制了GPB区的形成 ,提高了基体合金的时效硬度 ,但纤维加速复合材料时效硬化的作用不明显。这是由于Mg元素在纤维 /基体界面处发生了界面反应 ,生成镁铝尖晶石 (MgAl2 O4 ) ,使复合材料中非纤维区内实际Mg含量降低所致。Short mullite fibre reinforced Al 4.0Cu 1.85Mg composite and unreinforced monolithic alloy were fabricated through squeeze casting route. The age hardening behaviour, precipitation procedure, microstructure of dislocation and precipitates and the interfacial structure have been studied by means of hardness measurement(HB), differential scanning calorimetry (DSC) and analytical transmission electron microscope(ATEM), respectively. It is found that short mullite fibre in the composite induces high dislocation density in the near vicinity of the interface after solutionized and ice water quenched, suppresses or delays the formation of GPB zones. The aged hardness of the composite is always higher than that of the monolithic alloy,but there appears little difference between the times needed in the composite and in the monolith to reach the peak hardness, which means that the acceleration effect of mullite fibre on the precipitation of Al Cu Mg alloy is not great enough. It is also found that Mg reacts with Al and SiO 2, resulting in the formation of spinel(MgAl 2O 4), hence depleting Mg in the matrix and finally hindering the ageing acceleration in the testing composite.
关 键 词:mullite纤维 时效 位错 界面反应 铝基复合材料
分 类 号:TB333[一般工业技术—材料科学与工程]
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