To explore the approaches of combined toughening and strengthening of the Al_3Ti-based L1_2 intermetallic alloys, multiphase Al_3Ti alloys formed by combining with reinforcement or by second phase precipitation are be...To explore the approaches of combined toughening and strengthening of the Al_3Ti-based L1_2 intermetallic alloys, multiphase Al_3Ti alloys formed by combining with reinforcement or by second phase precipitation are being studied. The interface reactions between Al_(66)Fe_9Ti_(25)matrix and SiC reinforcement were investigated. It is determined that SiC is chemically incompatible with the Al_(66)Fe_9Ti_(25)matrix, Al_2O_3 barrier coating on SiC by sol-gel process was developed to minimize the interfacial reactions. On the other hand, a new type of Al_3Ti-based alloy having a L1_2 matrix with second phase precipitation has been developed. The quaternary alloys based on Al_(66)Fe_9Ti_(25)and modified with Nb additions, consist of a L1_2 matrix and D0_(22) second phase in the annealed state ,but the second phase can be dissolved by solution treatment and precipitated during high temperature aging.展开更多
对利用原位反应与高剪切液态搅拌复合专利技术制备的Al3Ti TiB2SiC/Al13%Si复合材料的增强相的形成热力学进行了理论计算和分析,并采用差热分析法(DTA)进行了试验验证。研究表明:(1)Al Ti B体系加入到Al13%Si熔体中可发生原位反应,形成...对利用原位反应与高剪切液态搅拌复合专利技术制备的Al3Ti TiB2SiC/Al13%Si复合材料的增强相的形成热力学进行了理论计算和分析,并采用差热分析法(DTA)进行了试验验证。研究表明:(1)Al Ti B体系加入到Al13%Si熔体中可发生原位反应,形成增强相,原位反应的开始温度为905.3℃,结束温度为1061.23℃;(2)Al Ti B体系加入到Al13%Si熔体中,制备颗粒增强Al13%Si复合材料的增强相为TiB2和Al3Ti,但TiB2形成能力最强。展开更多
文摘To explore the approaches of combined toughening and strengthening of the Al_3Ti-based L1_2 intermetallic alloys, multiphase Al_3Ti alloys formed by combining with reinforcement or by second phase precipitation are being studied. The interface reactions between Al_(66)Fe_9Ti_(25)matrix and SiC reinforcement were investigated. It is determined that SiC is chemically incompatible with the Al_(66)Fe_9Ti_(25)matrix, Al_2O_3 barrier coating on SiC by sol-gel process was developed to minimize the interfacial reactions. On the other hand, a new type of Al_3Ti-based alloy having a L1_2 matrix with second phase precipitation has been developed. The quaternary alloys based on Al_(66)Fe_9Ti_(25)and modified with Nb additions, consist of a L1_2 matrix and D0_(22) second phase in the annealed state ,but the second phase can be dissolved by solution treatment and precipitated during high temperature aging.
文摘对利用原位反应与高剪切液态搅拌复合专利技术制备的Al3Ti TiB2SiC/Al13%Si复合材料的增强相的形成热力学进行了理论计算和分析,并采用差热分析法(DTA)进行了试验验证。研究表明:(1)Al Ti B体系加入到Al13%Si熔体中可发生原位反应,形成增强相,原位反应的开始温度为905.3℃,结束温度为1061.23℃;(2)Al Ti B体系加入到Al13%Si熔体中,制备颗粒增强Al13%Si复合材料的增强相为TiB2和Al3Ti,但TiB2形成能力最强。