Experimental studies on controlling of process parameters in dissimilar friction stir welding of DH36 shipbuilding steel–AISI 1008 steel

被引:0
作者
Pardeep Pankaj
Avinish Tiwari
Pankaj Biswas
A. Gourav Rao
Sukhomay Pal
机构
[1] Indian Institute of Technology Guwahati,Department of Mechanical Engineering
[2] NMRL,undefined
来源
Welding in the World | 2020年 / 64卷
关键词
Microstructure; Mechanical properties; Z-force; DH36 steel; AISI 1008 steel; Thermal history;
D O I
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中图分类号
学科分类号
摘要
In the present work, DH36 steel and AISI 1008 steel sheets were joined using friction stir welding (FSW) process to investigate the influence of the rotational speed, traverse speed, and tool offset on temperature distribution, z-force, microstructure, and mechanical properties of the welded specimens. At a traverse speed (v) of 50 mm/min with a rotational speed (ω) of 600 rpm and tool offset of 2 mm, the maximum impact toughness and hardness were obtained due to higher grain refinement. The transverse tensile test specimens fractured in the weaker material (i.e., AISI 1008 steel) and exhibited the ultimate tensile strength values at least on the level of the weaker material. The impact toughness and hardness were highly dependent on the grain size variation. The effect of pitch ratio (ω/v) on grain size variation was more as compared with that on tool offset. Increasing the pitch ratio reduced the grain size and improved the impact toughness and hardness. Stir zone exhibited the acicular-shaped bainitic ferrite in DH36 steel and Widmanstatten ferrite grains in AISI 1008 steel. The higher hardness values were observed in thermo-mechanically affected zone of both steels due to significant grain refinement. Increasing the rotational speed and decreasing the traverse speed result in a higher welding temperature, which reduced the z-force.
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页码:963 / 986
页数:23
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  • [21] De A(2019)Investigation of microstructure and mechanical properties of friction stir welded dissimilar St37/St52 joints Mater Res Express 6 1-403
  • [22] Bhadeshia HKDH(2018)Microstructure evolution during dissimilar friction stir welding of AA7003-T4 and AA6060-T4 Materials 11 342-615
  • [23] DebRoy T(2017)State of the art about dissimilar metal friction stir welding Sci Technol Weld Join 22 389-684
  • [24] Rahimi S(2007)Effect of friction stir welding on microstructure, tensile and fatigue properties of the AA7005/10 vol.% Al2O3p composite Compos Sci Technol 67 605-665
  • [25] Konkova TN(2010)Modeling of AA5083 material-microstructure evolution during butt friction-stir welding J Mater Eng Perform 19 672-613
  • [26] Violatos I(2006)Experimental defect analysis and force prediction simulation of high weld pitch friction stir welding Sci Technol Weld Join 11 657-460
  • [27] Baker TN(2007)Tool materials selection for friction stir welding of L80 steel Sci Technol Weld Join 12 610-16
  • [28] Thomas WM(2007)Analysis of FSW welds made of aluminium alloy AW6082-T6 Arch Mater Sci Eng 28 453-602
  • [29] Threadgill PL(2012)Effect of tool rotational speed and pin profile on microstructure and tensile strength of dissimilar friction stir welded AA5083-H111 and AA6351-T6 aluminum alloys Mater Des 40 7-1581
  • [30] Nicholas ED(2016)Local heat generation and material flow in friction stir welding of mild steel assemblies P I Mech Eng L-J Mat 230 586-268