THE EFFECT OF TOOL POSITION FOR ALUMINUM AND COPPER AT HIGH ROTATIONAL FRICTION STIR WELDING

被引:0
|
作者
Cakir, Recep [1 ]
Celik, Sare [2 ]
机构
[1] Personel Temin Merkezi Komutanligi, Ankara, Turkey
[2] Balikesir Univ, Muhendislik Mimarlik Fak, Makine Muhendisligi Bolumu, Balikesir, Turkey
来源
PAMUKKALE UNIVERSITY JOURNAL OF ENGINEERING SCIENCES-PAMUKKALE UNIVERSITESI MUHENDISLIK BILIMLERI DERGISI | 2015年 / 21卷 / 08期
关键词
Friction Stir welding; AA1050; Cu; Mechanical Properties; Microstructure;
D O I
10.5505/pajes.2015.44154
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Friction Stir Welding (FSW) is a solid state welding process used for welding similar and dissimilar materials. This welding technique allows welding of Aluminum alloys which present difficulties in fusion joining and allows different material couples to be welded continuously. In this study, 1050 aluminum alloy and commercially pure copper to increase heat input were produced at high rotation rate (2440 rev/min) with four different pin position (0-1-1.5-2 mm) and three different weld speeds (20-30-50 mm/min) by friction stir welding. The influence of welding parameters on microstructure and mechanical properties of the joints was investigated. Tensile and bending tests and microhardness measurements were used to determine of mechanical properties. Nugget zone microstructures were investigated by optical microscope and scanning electron microscope (SEM) and were analyzed in energy-dispersive X-ray spectroscopy (EDX). Depending on the XRD analysis results intermetallic phase was observed to form in the interfacial region. In the tensile test results, 83.55% weld performance was obtained in the friction stir welding merge of Al-Cu.
引用
收藏
页码:352 / 357
页数:6
相关论文
共 50 条
  • [21] Influence of Tool Pin Profiles on Friction Stir Welding of Copper
    Kumar, A.
    Raju, L. Suvarna
    MATERIALS AND MANUFACTURING PROCESSES, 2012, 27 (12) : 1414 - 1418
  • [22] The influence of rotational speed on welding strength and surface roughness of friction stir welded copper
    Budin, Salina
    Hyie, Koay Mei
    Maideen, Normariah Che
    JURNAL TRIBOLOGI, 2022, 32 : 69 - 78
  • [23] Effect of tool rotational speed on the microstructure and mechanical properties of bobbin tool friction stir welding of Al-Li alloy
    Wang, F. F.
    Li, W. Y.
    Shen, J.
    Hu, S. Y.
    dos Santos, J. F.
    MATERIALS & DESIGN, 2015, 86 : 933 - 940
  • [24] Effect of tool offset on microstructure and mechanical properties of dissimilar copper-brass friction stir welding
    Sadeghi, Hamid Reza
    Amini, Kamran
    Gharavi, Farhad
    METALLURGICAL RESEARCH & TECHNOLOGY, 2021, 118 (03)
  • [25] Effect of materials position on friction stir lap welding of Al to Cu
    Akbari, M.
    Behnagh, R. Abdi
    Dadvand, A.
    SCIENCE AND TECHNOLOGY OF WELDING AND JOINING, 2012, 17 (07) : 581 - 588
  • [26] Effect of position and force tool control in friction stir welding of dissimilar aluminum-steel lap joints for automotive applications
    Safeen, M. Wasif
    Spena, P. Russo
    Buffa, G.
    Campanella, D.
    Masnata, A.
    Fratini, L.
    ADVANCES IN MANUFACTURING, 2020, 8 (01) : 59 - 71
  • [27] Friction Stir Spot Welding of Aluminum and Copper: A Review
    Li, Mingshen
    Zhang, Chaoqun
    Wang, Dayong
    Zhou, Li
    Wellmann, Daniel
    Tian, Yingtao
    MATERIALS, 2020, 13 (01) : 156
  • [28] Design and Optimization of Friction Stir Welding Tool
    Aissani, Mouloud
    Gachi, Saliha
    Boubenider, Fouad
    Benkedda, Younes
    MATERIALS AND MANUFACTURING PROCESSES, 2010, 25 (11) : 1199 - 1205
  • [29] Influence of tool geometry in friction stir welding
    Kumar, K.
    Kailas, Satish V.
    Srivatsan, T. S.
    MATERIALS AND MANUFACTURING PROCESSES, 2008, 23 (02) : 189 - 195
  • [30] Basic Tool Design Guidelines for Friction Stir Welding of Aluminum Alloys
    Hoyos, Elizabeth
    Serna, Maria Camila
    METALS, 2021, 11 (12)