Processing, Please wait...

  • Home
  • About Us
  • Search:
  • Advanced Search

Growing Science » Engineering Solid Mechanics » Effect of transverse speed of the tool on microstructure and mechanical properties in dissimilar butt friction stir welding of al5083–copper sheets

Journals

  • IJIEC (678)
  • MSL (2637)
  • DSL (606)
  • CCL (460)
  • USCM (1087)
  • ESM (391)
  • AC (543)
  • JPM (215)
  • IJDS (802)
  • JFS (81)

ESM Volumes

    • Volume 1 (16)
      • Issue 1 (4)
      • Issue 2 (4)
      • Issue 3 (4)
      • Issue 4 (4)
    • Volume 2 (32)
      • Issue 1 (6)
      • Issue 2 (8)
      • Issue 3 (10)
      • Issue 4 (8)
    • Volume 3 (27)
      • Issue 1 (7)
      • Issue 2 (7)
      • Issue 3 (6)
      • Issue 4 (7)
    • Volume 4 (25)
      • Issue 1 (5)
      • Issue 2 (7)
      • Issue 3 (7)
      • Issue 4 (6)
    • Volume 5 (25)
      • Issue 1 (7)
      • Issue 2 (6)
      • Issue 3 (6)
      • Issue 4 (6)
    • Volume 6 (32)
      • Issue 1 (8)
      • Issue 2 (8)
      • Issue 3 (8)
      • Issue 4 (8)
    • Volume 7 (28)
      • Issue 1 (7)
      • Issue 2 (6)
      • Issue 3 (7)
      • Issue 4 (8)
    • Volume 8 (36)
      • Issue 1 (8)
      • Issue 2 (10)
      • Issue 3 (9)
      • Issue 4 (9)
    • Volume 9 (36)
      • Issue 1 (9)
      • Issue 2 (9)
      • Issue 3 (9)
      • Issue 4 (9)
    • Volume 10 (35)
      • Issue 1 (9)
      • Issue 2 (8)
      • Issue 3 (10)
      • Issue 4 (8)
    • Volume 11 (39)
      • Issue 1 (10)
      • Issue 2 (10)
      • Issue 3 (9)
      • Issue 4 (10)
    • Volume 12 (41)
      • Issue 1 (10)
      • Issue 2 (9)
      • Issue 3 (12)
      • Issue 4 (10)
    • Volume 13 (19)
      • Issue 1 (12)
      • Issue 2 (7)

Keywords

Supply chain management(156)
Jordan(154)
Vietnam(147)
Customer satisfaction(119)
Performance(108)
Supply chain(105)
Service quality(95)
Tehran Stock Exchange(94)
Competitive advantage(91)
SMEs(85)
Financial performance(81)
optimization(81)
Factor analysis(78)
Job satisfaction(78)
Trust(77)
Knowledge Management(76)
Genetic Algorithm(74)
TOPSIS(73)
Social media(72)
Organizational performance(71)


» Show all keywords

Authors

Naser Azad(82)
Mohammad Reza Iravani(64)
Zeplin Jiwa Husada Tarigan(52)
Endri Endri(44)
Muhammad Alshurideh(40)
Hotlan Siagian(36)
Muhammad Turki Alshurideh(35)
Jumadil Saputra(35)
Barween Al Kurdi(32)
Hassan Ghodrati(31)
Dmaithan Almajali(30)
Mohammad Khodaei Valahzaghard(30)
Ahmad Makui(30)
Ni Nyoman Kerti Yasa(29)
Basrowi Basrowi(29)
Shankar Chakraborty(29)
Prasadja Ricardianto(28)
Sulieman Ibraheem Shelash Al-Hawary(27)
Ali Harounabadi(26)
Haitham M. Alzoubi(26)


» Show all authors

Countries

Iran(2149)
Indonesia(1208)
India(762)
Jordan(726)
Vietnam(489)
Malaysia(415)
Saudi Arabia(400)
United Arab Emirates(209)
Thailand(142)
China(130)
United States(100)
Turkey(97)
Ukraine(93)
Egypt(86)
Canada(83)
Pakistan(81)
Nigeria(72)
Peru(70)
United Kingdom(69)
Taiwan(65)


» Show all countries

Engineering Solid Mechanics

ISSN 2291-8752 (Online) - ISSN 2291-8744 (Print)
Quarterly Publication
Volume 2 Issue 3 pp. 239-246 , 2014

Effect of transverse speed of the tool on microstructure and mechanical properties in dissimilar butt friction stir welding of al5083–copper sheets Pages 239-246 Right click to download the paper Download PDF

Authors: Y. Fotouhi, S. Rasaee, A. Askari, H. Bisadi

Keywords: Dissimilar Al-Cu joint, Friction stir welding, Intermetallic compounds, Microstructure, Tensile strength, Transverse speed

Abstract: In this paper, butt joining of Al5083 to commercially pure copper is investigated by friction stir welding method. The effects of transverse welding speed of the tool on the mechanical properties and microstructure of the joint were studied, experimentally. By examining different circumstances, changes in the joint strength were studied and optimized in term of transverse speed. Based on the obtained results, welding speed can improve or reduce the joint strength and an optimum value can be found for the welding speed. Welded Joint that was conducted at the rotation speed of 800 RPM and tool traverse speed of 60 mm min?1 had the highest tensile strength (i.e. about 98% of the weak base metal). Intermetallic compounds were formed in the stir zone and XRD results indicated that Al4Cu9 and Al2Cu were the intermetallic compounds in the stir zone. Micro-cracks formed around the intimatelic particles were observed in the section of joint.

How to cite this paper
Fotouhi, Y., Rasaee, S., Askari, A & Bisadi, H. (2014). Effect of transverse speed of the tool on microstructure and mechanical properties in dissimilar butt friction stir welding of al5083–copper sheets.Engineering Solid Mechanics, 2(3), 239-246.

Refrences
Abdollah-Zadeh, A., Saeid, T., & Sazgari, B. (2008). Microstructural and mechanical properties of friction stir welded aluminum/copper lap joints. Journal of Alloys and Compounds, 460(1), 535-538.

Bisadi, H., Tavakoli, A., Tour Sangsaraki, M., & Tour Sangsaraki, K. (2013). The influences of rotational and welding speeds on microstructures and mechanical properties of friction stir welded Al5083 and commercially pure copper sheets lap joints. Materials & Design, 43, 80-88.

Colegrove, P. A., & Shercliff, H. R. (2003). Experimental and numerical analysis of aluminium alloy 7075-T7351 friction stir welds. Science and Technology of Welding & Joining, 8(5), 360-368.

Firouzdor, V., & Kou, S. (2012). Al-to-Cu Friction Stir Lap Welding. Metallurgical and Materials Transactions A, 43(1), 303-315.

Fotoohi, Y., Rasaee, S., Bisadi, H., & Zahedi, M. (2013). Effect of friction stir welding parameters on the mechanical properties and microstructure of the dissimilar Al5083–copper butt joint. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials Design and Applications, 1464420713499479.

Galv?o, I., Verdera, D., Gesto, D., Loureiro, A., & Rodrigues, D. M. (2013). Influence of aluminium alloy type on dissimilar friction stir lap welding of aluminium to copper. Journal of Materials Processing Technology, 213(11), 1920-1928.

Galv?o, I., Oliveira, J. C., Loureiro, A., & Rodrigues, D. M. (2012). Formation and distribution of brittle structures in friction stir welding of aluminium and copper: Influence of shoulder geometry. Intermetallics, 22, 122-128.

Guo, J. F., Chen, H. C., Sun, C. N., Bi, G., Sun, Z., & Wei, J. (2014). Friction stir welding of dissimilar materials between AA6061 and AA7075 Al alloys effects of process parameters. Materials & Design, 56, 185-192.

Jonckheere, C., de Meester, B., Denquin, A., & Simar, A. (2013). Torque, temperature and hardening precipitation evolution in dissimilar friction stir welds between 6061-T6 and 2014-T6 aluminum alloys. Journal of Materials Processing Technology, 213(6), 826-837.

Khodir, S. A., Morisada, Y., Ueji, R., & Fujii, H. (2012). Microstructures and mechanical properties evolution during friction stir welding of SK4 high carbon steel alloy. Materials Science and Engineering: A, 558, 572-578.

Kiss, Z., & Czig?ny, T. (2012). Microscopic analysys of the morphology of seams in friction stir welded polypropylene. Express Polymer Letters, 6(1).

Rajakumar, S., Balasubramanian, V., & Razalrose, A. (2013). Friction stir and pulsed current gas metal arc welding of AZ61A magnesium alloy: A comparative study. Materials & Design, 49, 267-278.

Sharma, C., Dwivedi, D. K., & Kumar, P. (2012). Effect of welding parameters on microstructure and mechanical properties of friction stir welded joints of AA7039 aluminum alloy. Materials & Design, 36, 379-390.

Sutton, M. A., Yang, B., Reynolds, A. P., & Taylor, R. (2002). Microstructural studies of friction stir welds in 2024-T3 aluminum. Materials Science and Engineering: A, 323(1), 160-166.

Ouyang, J., Yarrapareddy, E., & Kovacevic, R. (2006). Microstructural evolution in the friction stir welded 6061 aluminum alloy (T6-temper condition) to copper. Journal of Materials Processing Technology, 172(1), 110-122.

Xue, P., Xiao, B. L., Ni, D. R., & Ma, Z. Y. (2010). Enhanced mechanical properties of friction stir welded dissimilar Al–Cu joint by intermetallic compounds. Materials Science and Engineering: A, 527(21), 5723-5727.

Xue, P., Ni, D. R., Wang, D., Xiao, B. L., & Ma, Z. Y. (2011). Effect of friction stir welding parameters on the microstructure and mechanical properties of the dissimilar Al–Cu joints. Materials Science and Engineering: A, 528(13), 4683-4689.
  • 17
  • 1
  • 2
  • 3
  • 4
  • 5

Journal: Engineering Solid Mechanics | Year: 2014 | Volume: 2 | Issue: 3 | Views: 2707 | Reviews: 0

Related Articles:
  • Influence of heat transfer types on residual stress distribution of a welde ...
  • Application of desirability function for optimizing the performance charact ...
  • Optimization of process parameters for friction Stir welding of dissimilar ...
  • Tool flank wear model and parametric optimization in end milling of metal m ...
  • A survivability model for ejection of green compacts in powder metallurgy t ...

Add Reviews

Name:*
E-Mail:
Review:
Bold Italic Underline Strike | Align left Center Align right | Insert smilies Insert link URLInsert protected URL Select color | Add Hidden Text Insert Quote Convert selected text from selection to Cyrillic (Russian) alphabet Insert spoiler
winkwinkedsmileam
belayfeelfellowlaughing
lollovenorecourse
requestsadtonguewassat
cryingwhatbullyangry
Security Code: *
Include security image CAPCHA.
Refresh Code

® 2010-2025 GrowingScience.Com