286
M. F. Makhtar et al.
References
1. Motalleb-nejad, P., Saeid, T., Heidarzadeh, A., Darzi, K., Ashjari, M.: Effect of tool pin profile
on microstructure and mechanical properties of friction stir welded AZ31B magnesium alloy.
J. Mater. 59, 221–226 (2014)
2. Malik, V., Sanjeev, N.K., Hebbar, H.S., Kailas, S.V.: Investigations on the effect of various
tool pin profiles in Friction Stir Welding using finite element simulations. Procedia Eng. 97,
1060–1068 (2014)
3. Midling, O., Morley, E., Sandvik, A.: Friction Stir Welding, US Pat. 5,813,592, 1–13 (1998)
4. Azhar, A. F., Hamid, D. A., Ismail, A., Rojan, M. A., Jasmin, M., Baharudin, B. A., Malik, A.,
Ali, M.: The effect of rotational speed on weld strength of friction stir welded butt joint, Int’l
Conference on Production, Automobiles and Mechanical Engineering (PAME’2015), 73–78
(2015)
5. Deivanai, S., Wattal, R., Rani, S., Verma, S.L.: Green technology Friction Stir Welding of
aluminium alloy 1100. Int. Rev. Appl. Eng. Res. 4(2), 93–98 (2014)
6. Godiganur, V. S., Biradar, S.: Comparison of friction stirs welding technique with conventional
welding methods. IJRET 3(03), 572–576 (2014)
7. Doos, Q.M., Wahab, B.A.: Experimental study of Friction Stir Welding of 6061-t6 aluminum
pipe. Int. J. Mech. Eng. & Rob. Res. 1(3), 143–156 (2012)
8. Suri, A.: An improved FSW tool for joining commercial aluminum plates. Procedia Mater Sci.
6, 1857–1864 (2014)
9. Siddiqui, M.A.: Friction Stir Welding as a joining process through modified conventional
milling machine : a review 3(7), 149–153 (2014)
10. Tra, T.H.: Effect of weld parameters on mechanical properties of the Friction Stir Welding
AA6063-T5. ASEAN Engineering Journal, Part A 1(4), 73–81 (2011)
11. Fratini, L., Buffa, G., Filice, L., Gagliardi, F.: Friction stir welding of AA6082-T6 T-joints:
process engineering and performance measurement. Proc. IMechE Part B: J. Engineering
Manufactu 220, 669–676 (2015)
12. Rao, M.S.S., Ravi, B.V.R., Hussain, M.M.: Experimental study of weld characteristics during
Friction Stir Welding (FSW) of aluminum alloy (AA6061-T6). Int. J. Res. Eng. Technol. 1(3),
469–473 (2012)
13. Costa, M.I., Verdera, D., Costa, J.D., Leitao, C., Rodrigues, D.M.: Influence of pin geometry
and process parameters on friction stir lap welding of AA5754-H22 thin sheets. J. Mater.
Process. Tech. 225, 385–392 (2015)
14. Elangovan, K., Balasubramanian, V.: Influences of tool pin profile and tool shoulder diameter
on the formation of friction stir processing zone in AA6061 aluminium alloy. Mater. Des. 29,
362–373 (2008)
15. Cao, X., Jahazi, M.: Effect of tool rotational speed and probe length on lap joint quality of a
Friction Stir Welded magnesium alloy. Mater. Des. 32(1), 1–11 (2011)
16. Kaur, M., Singh, T., Singh, K.: Comparison between Friction Stir Welding & fusion welding
of aluminium alloys based on mechanical properties & microstructure: a review. IJRAET 4(2),
2–5 (2016)
17. Isern, N., Perez, C., Gonzalez, P., Laborde, L., Patino, D.: Analysis of structure and mechanical
properties of AA5083 aluminum alloy. Rev Adv Mater Sci. 10, 473–478 (2005)
18. Alloy, A., Sheet, D.: Aluminium alloy data sheet aluminium alloy data sheet, 1–3
19. Titilayo, A.E., Makundwaneyi, M.D., Akinwale, A.S.: Reconfiguration of a milling machine
to achieve Friction Stir Welds. Appl. Mech. Mater. 232, 86–91 (2012)
20. Sohn, K.Y., Allison, S.A., Johns, J.W.: Manganese containing inclusions in LPDC AM50
Alloys. Magnes. Technol. 815, 50–52 (2000)
M. F. Makhtar et al.
References
1. Motalleb-nejad, P., Saeid, T., Heidarzadeh, A., Darzi, K., Ashjari, M.: Effect of tool pin profile
on microstructure and mechanical properties of friction stir welded AZ31B magnesium alloy.
J. Mater. 59, 221–226 (2014)
2. Malik, V., Sanjeev, N.K., Hebbar, H.S., Kailas, S.V.: Investigations on the effect of various
tool pin profiles in Friction Stir Welding using finite element simulations. Procedia Eng. 97,
1060–1068 (2014)
3. Midling, O., Morley, E., Sandvik, A.: Friction Stir Welding, US Pat. 5,813,592, 1–13 (1998)
4. Azhar, A. F., Hamid, D. A., Ismail, A., Rojan, M. A., Jasmin, M., Baharudin, B. A., Malik, A.,
Ali, M.: The effect of rotational speed on weld strength of friction stir welded butt joint, Int’l
Conference on Production, Automobiles and Mechanical Engineering (PAME’2015), 73–78
(2015)
5. Deivanai, S., Wattal, R., Rani, S., Verma, S.L.: Green technology Friction Stir Welding of
aluminium alloy 1100. Int. Rev. Appl. Eng. Res. 4(2), 93–98 (2014)
6. Godiganur, V. S., Biradar, S.: Comparison of friction stirs welding technique with conventional
welding methods. IJRET 3(03), 572–576 (2014)
7. Doos, Q.M., Wahab, B.A.: Experimental study of Friction Stir Welding of 6061-t6 aluminum
pipe. Int. J. Mech. Eng. & Rob. Res. 1(3), 143–156 (2012)
8. Suri, A.: An improved FSW tool for joining commercial aluminum plates. Procedia Mater Sci.
6, 1857–1864 (2014)
9. Siddiqui, M.A.: Friction Stir Welding as a joining process through modified conventional
milling machine : a review 3(7), 149–153 (2014)
10. Tra, T.H.: Effect of weld parameters on mechanical properties of the Friction Stir Welding
AA6063-T5. ASEAN Engineering Journal, Part A 1(4), 73–81 (2011)
11. Fratini, L., Buffa, G., Filice, L., Gagliardi, F.: Friction stir welding of AA6082-T6 T-joints:
process engineering and performance measurement. Proc. IMechE Part B: J. Engineering
Manufactu 220, 669–676 (2015)
12. Rao, M.S.S., Ravi, B.V.R., Hussain, M.M.: Experimental study of weld characteristics during
Friction Stir Welding (FSW) of aluminum alloy (AA6061-T6). Int. J. Res. Eng. Technol. 1(3),
469–473 (2012)
13. Costa, M.I., Verdera, D., Costa, J.D., Leitao, C., Rodrigues, D.M.: Influence of pin geometry
and process parameters on friction stir lap welding of AA5754-H22 thin sheets. J. Mater.
Process. Tech. 225, 385–392 (2015)
14. Elangovan, K., Balasubramanian, V.: Influences of tool pin profile and tool shoulder diameter
on the formation of friction stir processing zone in AA6061 aluminium alloy. Mater. Des. 29,
362–373 (2008)
15. Cao, X., Jahazi, M.: Effect of tool rotational speed and probe length on lap joint quality of a
Friction Stir Welded magnesium alloy. Mater. Des. 32(1), 1–11 (2011)
16. Kaur, M., Singh, T., Singh, K.: Comparison between Friction Stir Welding & fusion welding
of aluminium alloys based on mechanical properties & microstructure: a review. IJRAET 4(2),
2–5 (2016)
17. Isern, N., Perez, C., Gonzalez, P., Laborde, L., Patino, D.: Analysis of structure and mechanical
properties of AA5083 aluminum alloy. Rev Adv Mater Sci. 10, 473–478 (2005)
18. Alloy, A., Sheet, D.: Aluminium alloy data sheet aluminium alloy data sheet, 1–3
19. Titilayo, A.E., Makundwaneyi, M.D., Akinwale, A.S.: Reconfiguration of a milling machine
to achieve Friction Stir Welds. Appl. Mech. Mater. 232, 86–91 (2012)
20. Sohn, K.Y., Allison, S.A., Johns, J.W.: Manganese containing inclusions in LPDC AM50
Alloys. Magnes. Technol. 815, 50–52 (2000)
