Effect of Heat Treatment on the Intermetallic Compounds and Mechanical Properties of Explosive Weld Interface of three Al 5083, Al 1050 and St 1515 Layers
Subject Areas : Journal of Environmental Friendly MaterialsBakhtiari H 1 , Mokhtariniya F 2 , Khanzadeh M. R 3 , Farvizi M 4
1 - Institute of Materials and Energy, Meshkin Dasht, Iran
2 - Faculty of Materials Engineering, Bandarabbas Branch, Islamic Azad University, Bandarabbas, Iran
3 - Center for Advanced Engineering Research, Majlesi Branch, Islamic Azad University, Isfahan, Iran
4 - Institute of Materials and Energy, Meshkin Dasht, Iran
Keywords: Heat treatment, Microhardness, intermetallic compounds, Explosive Welding, Stand-off Distance,
Abstract :
[1] S. Saravanan and K. Raghukandan, Mater. Manuf. Process., 28 (2013), 589.
[2] A. Durgutlu, H. Okuyucu and B. Gulenc, Mater. Des., 29, (2008), 1480.
[3] A. Patterson, Fundamentals of Explosion Welding, ASM Handbook, Vol 6 Welding, Brazing, and Soldering, ASM International, USA, (1993) 160-164.
[4] B. S. Zlobin, Combustion, Explosion, and Shock Waves., 38 (2002), 374.
[5] R. Kacar and M. Acarer, Mater. Process. Technol., 153 (2009), 91.
[6] A. Nobili: Explosion bonding process, Risvsaltes plant, France.
[7] L. Tricarico, R. Spina, D. Sorgente and M. Brandizzi , Mater. Des., 30 (2009), 2693.
[8] G. Temizel and M. Ozenbas, Turkish J. Eng. Env., (2007), 71.
[9] S. Phengsakul and A. Rodchanarowan, Energy Procedia., 34 (2013), 782.
[10] G. Tem Izel, Turkish J. Eng. Env. Sci., 31 (2007), 71.
[11] B. S. Zlobin, Mater. Des., 24 (2003), 617.
[12] S. A. A. Akbari Mousavi and P. Farhadi Sartangi , Mater. Sci. Eng., A., 494 (2008), 329.
[13] F. Findik, R. Yilmaz, and T. Somyurek, Sci. Res. Essays. 8 September., 19 (2001), 4141.
[14] J. Lokaj and M. Benak, Metal., 5, (2010), 18.
[15] J. Banker, Draft of Paper for presentation TMS 131st Annual Meeting., (2002).
[16] M. R. Khanzadeh Gharah Shiran1, H. Bakhtiari, M. J. Ghadami and H. Nazemi, J. Energetic Mater., 12, (2017), 207.
[17] Standard test method for tension shear. ASTM D 3165-95, Philadelphia, (2012).
[18] s. Jun, T. Jie and G. Zhong, Trans. Nonferrous Met. Soc. China., (2011), 2175.
[19] Standard Test Method forVickers Hardness of Mater. ASTM E384-11, Philadelphia, (2012).
[20] N. Kahraman and B. Gulence, J Mater. Process. Tech. , 169 (2005) , 67.
[21] I. Samardzic, B. Matesa and I. Kladaric, Metabk. , 50 (2011) , 159.
[22] M. Benak, M. Turna, M. Ozvold, P. Nesvadba, J. Lokaj, L. Caplovic, F. Kovac and V. Stoyka , Roznov pod Radhostem Czech Republic 18 , (2010).
[23] M. Potesser and T. Schoeberl, The Minerals. Metals Mater. Society., (2006).
[24] Z. Blazynski, forming and compaction, Appl. Sci. 1Publishers, (1983).
[25] M. Acarer, B. Gulenc and F. Findik, Mater. Des. , 24 (2003) , 659.
[26] L. Tricarico and R. Spina , Arch. Mater. Sci. Eng., 37 (2009) , 85.
[27] H. Danesh Manesh and A. Karimi Taheri, Mater. Des., 24 (2003) , 617.
[28] N. Kengkla and N. Tareelap , 1st Mae Fah Luang University Int. Conf., (2012).