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Effect of hot extrusion on microstructure and tribological behavior of Al_(2)O_(3p) reinforced 7075 aluminum-matrix composites 被引量:4
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作者 LEI Yu-shun YAN Hong +4 位作者 WEI Zhi-fan XIONG Jun-jie ZHANG Peng-xiang WAN Jian-ping WANG Zhi-lu 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第8期2269-2284,共16页
The effects of hot extrusion and addition of Al_(2)O_(3p) on both microstructure and tribological behavior of 7075 composites were investigated via optical microscopy(OM),scanning electron microscopy(SEM),energy dispe... The effects of hot extrusion and addition of Al_(2)O_(3p) on both microstructure and tribological behavior of 7075 composites were investigated via optical microscopy(OM),scanning electron microscopy(SEM),energy dispersive spectrometry(EDS),and transmission electron microscopy(TEM).The experimental consequences reveal that the optimal addition of Al_(2)O_(3p) was 2 wt%.After hot extrusion,the Mg(Zn,Cu,Al)2 phases partially dissolve into the matrix and generate many uniformly distributed aging precipitation particles,the Al_(7)Cu_(2)Fe phases are squeezed and broken,and the Al_(2)O_(3p) become uniform distribution.The microhardness of as-extruded 2 wt%Al_(2)O_(3p)/7075 composites reaches HV 170.34,increased by 41.5%than as-cast composites.The wear rate of as-extruded 2 wt%Al_(2)O_(3p)/7075 composites is further lower than that of as-cast composites under the same condition.SEM-EDS analyses reveal that the reinforced wear resistance of composites can put down to the protective effect of the Al_(2)O_(3p) reinforced transition layer.After hot extrusion,the transition layer becomes stable,which determines the reinforced wear resistance of the as-extruded composites. 展开更多
关键词 7075 alloy al2o3p compositeS hot extrusion MICRoSTRUCTURE tribological behavior
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A359-Zr(CO_3)_2体系反应合成复合材料的干滑动磨损性能 被引量:9
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作者 江润莲 赵玉涛 +4 位作者 戴起勋 程晓农 纪嘉明 朱延山 冯钦 《中国有色金属学报》 EI CAS CSCD 北大核心 2004年第9期1621-1626,共6页
研究了新型反应体系A359 Zr(CO3)2熔体反应法制备的(Al3Zr+Al2O3)p/A359复合材料干滑动磨损性能。结果表明:复合材料的磨损量随着载荷的增大和时间的延长均远小于基体磨损量,由于颗粒的支撑和减磨作用,使得同一条件下复合材料的磨损量... 研究了新型反应体系A359 Zr(CO3)2熔体反应法制备的(Al3Zr+Al2O3)p/A359复合材料干滑动磨损性能。结果表明:复合材料的磨损量随着载荷的增大和时间的延长均远小于基体磨损量,由于颗粒的支撑和减磨作用,使得同一条件下复合材料的磨损量随颗粒体积分数的增加而减少;当载荷为98N时,12%(Al3Zr+Al2O3)P/A359复合材料的磨损量为20.2mg,而基体材料的磨损量为54.5mg,复合材料比基体材料耐磨性提高了2.5倍;由磨损表面SEM观察表明,基体A359合金存在严重粘着和变形,表现为粘着磨损和剥层磨损,复合材料的磨损类型表现为磨粒磨损。 展开更多
关键词 (al3zr%pLUS%al2o3)p/a359复合材料 熔体反应法合成 耐磨性 磨损机制
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Al-Zr-O体系反应合成原位复合材料的微结构与磨损特性 被引量:2
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作者 江润莲 赵玉涛 +2 位作者 戴起勋 程晓农 陈刚 《中国有色金属学报》 EI CAS CSCD 北大核心 2005年第12期1986-1991,共6页
运用A359-Zr(CO3)2体系熔体反应法制备了(Al3Zr+Al2O3)p/A359复合材料,研究了增强颗粒的含量对(Al3Zr+Al2O3)p/A359复合材料干滑动磨损性能的影响。结果表明:Zr(CO3)2与A359熔体反应生成了Al2O3和Al3Zr颗粒;复合材料的磨损量随载荷的增... 运用A359-Zr(CO3)2体系熔体反应法制备了(Al3Zr+Al2O3)p/A359复合材料,研究了增强颗粒的含量对(Al3Zr+Al2O3)p/A359复合材料干滑动磨损性能的影响。结果表明:Zr(CO3)2与A359熔体反应生成了Al2O3和Al3Zr颗粒;复合材料的磨损量随载荷的增大和时间的延长均远小于基体的,同一条件下复合材料的磨损量随Al3Zr和Al2O3颗粒含量的增加而减少,当载荷为98 N时,12%(Al3Zr+Al2O3)p/A359复合材料(体积分数)的耐磨性比基体的提高了2.5倍。磨损表面及亚表面的SEM分析表明,基体A359磨损表面存在撕裂纹并与亚表面连接,表现为粘着磨损和剥层磨损;(Al3Zr+Al2O3)p/A359复合材料的磨损表面及亚表面平整光滑,主要表现为磨粒磨损。 展开更多
关键词 (al3zr%pLUS%al2o3)p/a359复合材料 增强颗粒 磨损 耐磨性
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