A Review on Friction Stir Welding of Steels

被引:0
作者
Dhanesh G Mohan
ChuanSong Wu
机构
[1] Shandong University,Institute of Materials Joining
来源
Chinese Journal of Mechanical Engineering | 2021年 / 34卷
关键词
Friction stir welding; Steels; Microstructure; Mechanical testing; Hybrid welding;
D O I
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中图分类号
学科分类号
摘要
Friction Stir Welding (FSW) is the most promising solid-state metals joining method introduced in this era. Compared to the conventional fusion welding methods, this FSW can produce joints with higher mechanical and metallurgical properties. Formerly, FSW was adopted for low melting metals like aluminum alloys. In recent years it has made significant progress in friction stir welding of steels since unfavourable phase transformations occurred in welds due to the melting of the parent and filler metals in fusion welding can be eliminated. The main advantage of FSW over traditional fusion welding is the reduction in the heat-affected zone (HAZ), and the joints exhibit excellent mechanical and corrosion resistance properties. This article reviews the progress in the relevant issues such as the FSW tool materials and tool profiles for joining steels, microstructure and mechanical properties of steels joints, special problems in joining dissimilar steels. Moreover, in-situ heating sources was used to overcome the main limitations in FSW of hard metals and their alloys, i.e., tool damages and insufficient heat generation. Different in-situ heating sources like laser, induction heat, gas tungsten arc welding assisted FSW for various types of steels are introduced in this review. On the basis of the up-to-date status, some problems that need further investigation are put forward.
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[31]  
Liu Y(2018)Mechanical properties and fracture behaviour of ODS steel friction stir welds at variable temperatures Journal of Alloys and Compounds 766 312-317
[32]  
Mohan DG(2015)Characteristics of laser beam and friction stir welded AISI 409M ferritic stainless steel joints Engineering Fracture Mechanics 150 58-69
[33]  
Gopi S(2013)Simultaneous enhancement of strength and ductility in an AlCoCrFeNi2.1 eutectic high-entropy alloy via friction stir processing Materials Science and Engineering: A 561 486-491
[34]  
Rajasekar V(2013)Study on the fracture toughness of friction stir welded API X80 Acta Materialia 61 3465-3472
[35]  
Fujii H(2012)Microstructure and mechanical properties of friction stir welded lean duplex stainless steel Materials & Design 39 175-185
[36]  
Cui L(2016)Anisotropy of structural response of single crystal austenitic stainless steel to friction stir welding Materials Science and Engineering: A 672 40-48
[37]  
Nakata K(2015)Assessment of sensitization resistance of AISI 409M grade ferritic stainless steel joints using modified Strauss test Corrosion Science 94 88-98
[38]  
Reza E(2012)Impact toughness of friction stir processed low carbon steel used in shipbuilding Materials Science and Engineering: A 558 572-578
[39]  
Rabby M(2011)Suppression of hydrogen-induced damage in friction stir welded low carbon steel joints Journal of Materials Science & Technology 27 127-130
[40]  
Ross K(2012)Microstructures and mechanical properties evolution during friction stir welding of SK4 high carbon steel alloy Materials Characterization 66 1-8