Friction Stir Welded Joint Aluminum Alloy H20-H20 with Different Type of Tools Mechanical Properties
Commenced in January 2007
Frequency: Monthly
Edition: International
Paper Count: 32804
Friction Stir Welded Joint Aluminum Alloy H20-H20 with Different Type of Tools Mechanical Properties

Authors: Omid A. Zargar

Abstract:

In this project three type of tools, straight cylindrical, taper cylindrical and triangular tool all made of High speed steel (Wc-Co) used for the friction stir welding (FSW) aluminum alloy H20–H20 and the mechanical properties of the welded joint tested by tensile test and vicker hardness test. Besides, mentioned mechanical properties compared with each other to make conclusion. The result helped design of welding parameter optimization for different types of friction stir process like rotational speed, depth of welding, travel speed, type of material, type of joint, work piece dimension, joint dimension, tool material and tool geometry. Previous investigations in different types of materials work pieces; joint type, machining parameter and preheating temperature take placed. In this investigation 3 mentioned tool types that are popular in FSW tested and the results completed other aspects of the process. Hope this paper can open a new horizon in experimental investigation of mechanical properties for friction stir welded joint with other different type of tools like oval shape probe, paddle shape probe, three flat sided probe, and three sided re-entrant probe and other materials and alloys like titanium or steel in near future.

Keywords: Friction stir welding (FSW), tool, CNC milling machine, aluminum alloy H20, Vickers hardness test, tensile test, straight cylindrical tool, taper cylindrical tool, triangular tool.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1090470

Procedia APA BibTeX Chicago EndNote Harvard JSON MLA RIS XML ISO 690 PDF Downloads 2822

References:


[1] Liedl G., Bielak R., Ivanova J., Enzinger N., Figner G., Bruckner J., Pasic M., Pudar M. and Hampel S. 2011. Joining of aluminum and steel in car body manufacturing. Physics Procedia, 12: 150-156.
[2] The Delphion Integrated View, friction stir welding tool made of Cemented Tungsten. http://www.delphion.com/ details?pn=WO2D068122A1 Published in 2013-05-16.
[3] S. Yazdanian Z.W. and Chen G. 2012. Little fair, Effects of friction stir lap welding parameters on weld features on advancing side and fracture strength of A6060-T5 welds. Journal of Materials Science, 47: 1251-1253.
[4] Ali Zargar O. 2013. The Preheating Influence on Welded Joint Mechanical Properties Prepared by Friction Stir Welding Aluminum Alloy H20-H20. Middle-East Journal of Scientific Research, 15:1417-1419.
[5] Pouranvari M. 2011. TLP Bonding of A Gamma Prime Strengthened Super alloy Using Ni-Si-B Interlayer at 1150°C-Part I: Microstructure. World Applied Sciences Journal, 15: 1532-1533.
[6] Kumar R., Siva Pragash M. and Varghese S. 2013. Optimizing the Process Parameters of FSW on AZ31B Mg Alloy by Taguchi-Grey Method. Middle-East Journal of Scientific Research, 15: 163-164.
[7] Thiru S., Lai Huat C., Jusoff K. and Hemavathi S. 2013. Prediction and Measurement of Weld Dilution in Robotic CO Arc Welding. World Applied Sciences Journal, 21(Special Issue of Engineering and Technology): 25-26.
[8] Two Day workshop on Friction Welding & Friction Stir Welding International Center for Advancement of Manufacturing Technology 24 & 25 November, 2011, 26.
[9] Ali Zargar O. 2014. Friction Stir Welding Aluminum Alloy H20-H20 Conventional and Overlap Joints Mechanical Properties.Manufacturing Science and Technology 2(2): 27-33.
[10] Kallee S., Davenport J. and Nicholas D. 2002. Railway Manufacturers Implement Friction Stir Welding. Welding Journal, 33: 47-50.
[11] The Delphion Integrated View, friction stir welding using a super abrasive tool. Published in 2013-03-14.
[12] http://www.delphion.com/details?pn=US2D062395A1&s_detd=1#DETD .
[13] Küçükrendeci I. 2013. Effect of Welding Parameters on Welding Microstructure in EN AW-6060 Aluminum Alloy Combined with Friction Stir Welding Process. World Applied Sciences Journal, 22: 304-305.
[14] kandasamy J., Hussain M.M and Rajesham S. 2011. An Investigation on the Effect of Rolling Direction on the IMC Formed During Friction Stir Welding of AA7075 Alloys. The IUP Journal of Mechanical Engineering, 3: 52-54.
[15] Zhang Y. N., Cao X., Larose S. and P. Wanjara P. 2012. Review of tools for friction stirs welding and processing. Canadian Metallurgical Quarterly, 51: 3-7.
[16] Gibson B.T. 2011. Custom low force measurement methods in friction stir welding. Thesis Submitted to the Faculty of the Graduate School of Vanderbilt University in partial fulfillment of the requirements for the degree of Master of Science in Mechanical Engineering: 5-17.
[17] Rai R., De A., H., Bhadeshia H. K. D. and Deb Roy T. 2011. Review friction stir welding tools. Journal of Science and Technology in Welding and Joining, 16: 324-325.
[18] Midling O.T. 2000. Prefabricated Friction Stir Welded Panels in Catamaran Building. In: ESAB Aluminum 2000 symposium 29th-30th June 2000, Göteborg, Sweden. 6 p.
[19] Cam G. 2011. Friction stir welded structural materials beyond Al alloys. Int. Mater. Rev, 56: 34-38.
[20] Küçükrendeci H. and Küçük H. 2013. Effects of Rotating Speed and Feed Rate on Mechanical Behaviors in EN-AW6060 Aluminum Alloys Bonded by Using Friction Stir Welding. World Applied Sciences Journal, 22: 577-579.