The Academic Perspective Procedia publishes Academic Platform symposiums papers as three volumes in a year. DOI number is given to all of our papers.
Publisher : Academic Perspective
Journal DOI : 10.33793/acperpro
Journal eISSN : 2667-5862
[1] Wang JJ, Lin JJ, Chen SB, Hu JC. Adaptive control based on vision technology for aluminium alloy TIG welding. Trans-China Weld Inst 2003;24(4):17–20.
[2] Varshney D, Kumar K. Application and use of different aluminium alloys with respect to workability, strength and welding parameter optimization. Ain Shams Eng J 2021;12(1): 1143-1152.
[3] Tisza M, Czinege I. Comparative study of the application of steels and aluminium in lightweight production of automotive parts. Int J Lightweight Mater Manuf 2018;1(4):229-238.
[4] Miller WS, Zhuang L, Bottema J, Wittebrood A, De Smet P, Haszler A, et al. Recent development in aluminium alloys for the automotive industry. Mater Sci Eng, A 2000;280(1):37-49.
[5] Sekularac G, Milosev I. Corrosion of aluminium alloy AlSi7Mg0.3 in artificial sea water with added sodium sulphide. Corrosion Sci 2018;144:54-73.
[6] Jiang Y, Liu F. Effects of Sc or/and Ge addition on microstructure and mechanical properties of as-cast 6016 Al alloy. J Alloys Compd 2019;809:1518-29.
[7] Sauvage X, Bobruk E V, Murashkin M Y, Nasedkina Y, Enikeev N A, Valiev R Z. Optimization of electrical conductivity and strength combination by structure design at the nanoscale in Al-Mg-Si alloys. Acta Mater 2015;98:355-66.
[8] Yadav R, Sharma A, Vohra S, Dewangan S, Kr. Chowrasia M. Investigation into defects occurred in friction stir welded joint of 6061-T6 aluminium alloy. Materials Today: Proceedings 2021; 46:8910-8916.
[9] Wang G, Zhao C Q. Experimental and theoretical study on the bearing capacity of FGC joints for single-layer aluminum alloy lattice shell structures. Struct 2021;33:2445-58.
[10] Zhu P H, Zhang Q L, Luo X Q, Ouyang Y W, Yin J. Experimental and numerical studies on ductile-fracture-controlled ultimate resistance of bars in aluminum alloy gusset joints under monotonic tensile loading. Eng Struct 2020;204:109834.
[11] Xiong Z, Guo X N, Luo L F, Zhu S J, Liu YP. Experimental and numerical studies on single-layer reticulated shells with aluminium alloy gusset joints. Thin-Walled Struct 2017;118:124–36.
[12] Wang H, Li PC, Wang J. Shape optimization and buckling analysis of novel two-way aluminum alloy latticed shells. J Build Eng 2021;36:102100.
[13] Wu YP, Liu HB, Chen ZH, Liu Y. Study on low-cycle fatigue performance of aluminum alloy Temcor joints. Eng Struct 2020;24(1):195–207.
[14] Liu HB, Ding YZ, Chen ZH. Static stability behavior of aluminum alloy single-layer spherical latticed shell structure with Temcor joints. Thin-Walled Struct 2017;120: 355-65.
[15] Feng j, Zhang H, He P. The CMT short-circuiting metal transfer process and its use in thin aluminium sheet welding. Mater Des 2009;30:1850-2.
[16] Selvi S, Vishvaksenan A, Rajasekar E. Cold metal transfer (CMT) technology - an overview. Defence Technol 2018;14:28-44.
[17] Selvamani S T. Microstructure and stress corrosion behaviour of CMT welded AA6061 T-6 aluminium alloy joints. J Mater Res Technol 2021;15:315-326.