New insights into microstructural changes during transient liquid phase bonding of GTD-111 superalloy
GTD-111高温合金瞬时液相连接过程中显微组织的变化作者机构:Materials and Metallurgical Engineering DepartmentFaculty of EngineeringFerdowsi University of MashhadMashhadIran Department of Materials and Metallurgical EngineeringAmirkabir University of Technology(Tehran Polytechnic)TehranIran
出 版 物:《Transactions of Nonferrous Metals Society of China》 (中国有色金属学报(英文版))
年 卷 期:2021年第31卷第9期
页 面:2703-2715页
核心收录:
学科分类:080704[工学-流体机械及工程] 08[工学] 0807[工学-动力工程及工程热物理] 080502[工学-材料学] 0805[工学-材料科学与工程(可授工学、理学学位)]
基 金:support from Ferdowsi University of Mashhad (FUM) Iran under the research scheme
主 题:TLP bonding joint GTD-111 superalloy isothermal solidification microstructure homogenization
摘 要:The effects of joining temperature(TJ)and time(tJ)on microstructure of the transient liquid phase(TLP)bonding of GTD-111 superalloy were *** bonding process was applied using BNi-3 filler at temperatures of 1080,1120,and 1160℃ for isothermal solidification time of 195,135,and 90 min,*** heat treatment was also applied to all of the *** results show that intermetallic and eutectic compounds such as Ni-rich borides,Ni−B−Si ternary compound and eutectic-γcontinuously are formed in the joint region during *** increasing tJ,intermetallic phases are firstly reduced and eventually eliminated and isothermal solidification is completed as *** the increase of the holding time at all of the three bonding temperatures,the thickness of the athermally solidified zone(ASZ)and the volume fraction of precipitates in the bonding area decrease and the width of the diffusion affected zone(DAZ)*** results are also obtained by increasing TJ from 1080 to 1160℃ at tJ=90 ***,increasing the TJ from 1080 to 1160℃ leads to the faster elimination of intermetallic phases from the ***,these phases are again observed in the joint region at 1180℃.It is observed that by increasing the bonding temperature,the bonding width and the rate of dissolution of the base metal *** on these results,increasing the homogenization time from 180 to 300 min leads to the elimination of boride precipitates in the DAZ and a high uniformity of the concentration of alloying elements in the joint region and the base metal.