Phase separation and coarsening of NiAl(β′)intermetallic in quench-aged Fe-Ni-Al alloys  

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作  者:C.Ferreira-Palma J.A.Rosas-Barrios V.M.Lopez-Hirata D.I.Rivas-Lopez H.J.Dorantes-Rosales 

机构地区:[1]Faculty of Chemical Sciences,Universidad Veracruzana,Veracruz 94294,Mexico [2]ESIQIE,Instituto Politecnico Nacional.UPALM,Mexico City 07738,Mexico

出  处:《Journal of Iron and Steel Research International》2020年第11期1331-1338,共8页

基  金:The authors would like to thank Consejo Nacional de Ciencia y Tecnologfa(CONACYT)(Project CB-2013 No.222459);IPN-SIP-BEIFI for their financial support.

摘  要:The coarsening behavior of four quench-aged Fe-Ni-AI alloys with different Ni and Al con tents is studied.The alloys were solubilized at 1100℃for 24 h,water-quenched and aged at 850℃for periods ranging from 1 to 100 h to promote phase separation and coarsening.The two alloys with the highest combined Ni and Al contents(>35 at.%)showed signs of spinodal decomposition,while the alloys with lower Ni and Al contents followed a classical nucleation process.Higher Ni and Al contents promoted an increase in NiAl(β′)phase fraction in concordance with phase equilibrium diagrams.The alloy with the highest[3'fraction presented a completely interconnected structure.The coarsening ofβ′particles in the other three alloys followed the predictions of the Lifshitz-Slyozov-Wagner(LSW)theory.The general trend was an increase in the coarsening kinetics with higher Ni and Al contents.The highest hardness was found in the alloys with higher fraction albeit these compositions are less resistant to coarsening and have been reported to present a low room-temperature ductility.

关 键 词:Precipitation Spinodal decomposition COARSENING Aging Fe-Ni-Al alloy 

分 类 号:TG14[一般工业技术—材料科学与工程]

 

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