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9th International Symposium 2012
With regard to the development of aluminium military vehicles, a report is presented into production level single run friction stir welding (FSW) process parameters for thick plate samples (thickness 12.7-40.6 mm) of 5083, 5059 and 2139 aluminium al…
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7th International Symposium 2008
Friction stir welding experiments were undertaken on commercial SPF (superplastic forming) AA 5083-H19 (Al, 4.43%Mg) and AA 2004 (Al, 6.05%Cu) aluminium alloys, and the effects of tool size, geometry and primary process variables on microstructure a…
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9th International Symposium 2012
Analytical modelling and experimental measurements were undertaken to investigate a dual-loop temperature control algorithm for friction stir processing, incorporating an inner loop to maintain constant power and an outer loop to set the power based…
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5th International Symposium 2004
Two types of WC-Co hard alloy tools (threaded and smooth) were used to friction stir weld an AC4A aluminium matrix composite (Al, 9%Si reinforced with 30 vol.% SiC particles) and the wear behaviour of the tools was investigated. Samples were butt we…
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4th International Symposium 2003
Tensile testing was used to characterise and compare the fracture locations and their influencing factors for a number of friction stir welded aluminium materials (AA-1050, AA-2017, AA-6061). Friction stir welding was carried out on sheets of thickn…
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4th International Symposium 2003
A combined analytical and experimental study was carried out to determine power, heat input, tool shoulder temperature and process efficiency for the FSW of aluminium alloys, carbon steels and titanium alloys and to compare heat input with that for …
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3rd International Symposium 2001
Friction stir welding (FSW) was used to form lap joints in two aluminium alloys: A5182 without heat treatment and AlMg0.5Si1 sheet in T4 condition. Sheet thicknesses of 1 and 2 mm were used. The effects of tool rotation direction were assessed. The …
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2nd International Symposium 2000
Lap joints between 2 mm aluminium alloy sheet in 2024-T3 (Al, 4.4%Cu, 1.5%Mg, 0.6%Mn) and 7075-T6 (Al, 1.6%Cu, 2.5%Mg, 0.23%Cr, 5.6%Zn) were prepared and evaluated. The welds were produced using a range of welding and tool speeds, with a non-threade…
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6th International Symposium 2006
An experimental investigation is presented into the fatigue properties of welded joints made by friction stir welding (FSW) of 2024-T4 (Al, 4.4%Cu, 0.6%Mn, 1.5%Mg) and 2014-T6 (Al, 4.5%Cu, 0.8%Mn, 0.5%Mg) aircraft alloys and their dependence on proc…
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6th International Symposium 2006
Extruded AZ31 (Mg, 3%Al, 1%Zn) alloy plates (thickness 6 mm) were joined by one-run or two-run friction stir welding (FSW) and the microstructure, mechanical properties and residual stress characteristics of the welded joints were investigated. FSW …
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10th International Symposium 2014
Friction stir welding experiments were undertaken on Ti-6%Al-4%V sheets (thickness 2 mm) in order to investigate the influence of process conditions on stir zone microstructure and local texture. Welding was performed at rotational speeds of 225-300…
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11th International Symposium 2016
With regard to the occurrence of residual oxide defects associated with friction stir welding (FSW) of aluminium alloys, an investigation is presented into a possible alternative mechanism for oxide formation within the weld nugget involving enhance…
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5th International Symposium 2004
A method investigated by Sweden for storage of nuclear waste in copper canisters sealed using friction stir welding (where EB welding has been used before) is described. Topics include: Nimonic 105 and Densimet sintered tungsten alloy tool; welding …
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5th International Symposium 2004
The numerical simulation of the friction stir welding process using two different commercial finite element codes is described. FORGE3, which uses an updated Lagrangian approach, was used to simulate the plunge of the pin and the THERCAST package, w…
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4th International Symposium 2003
Evaluation of phased array ultrasonic inspection for the detection of typical friction stir weld defects is reported. Characteristics of friction stir welds with respect to inspectability are described. Phased array operation is outlined. A variety …
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2nd International Symposium 2000
Friction stir welded joints in aluminium alloy 6061-T6 sheet were produced using a robot arm, to assess the ability of the arm to withstand the mechanical stresses associated with friction stir welding. The arm was fitted with an electrically powere…
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1st International Symposium 1999
Friction stir welding of aluminium alloys suitable for railway and shipbuilding applications was investigated. Sheet of 4 mm thickness of alloys 6N01-T5 (Al, 0.7%Mg, 0.6%Si, 0.1%Cu) and 5083-H112 (Al, 4.7%Mg) were friction stir welded, and the joint…
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5th International Symposium 2004
The feasibility of friction stir welding TIMETAL 21S beta titanium in the annealed condition was investigated. The composition of the alloy is Ti, 14-16%Mo, 2.4-3.2%Nb, 2.5-3.5%Al, 0.15-0.25%Si, max.0.4%Fe, 0.11-0.17%O, max.0.05%C, max.0.05%N, max.0…
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Development of micro-FSW
ArticleIn order to develop a method for microjoining by friction stir welding (FSW), micro-FSW trials were conducted on Mg alloy AZ31 (2.97%Al, 0.83%Zn) thin sheets (0.4 mm thickness), and the welding performance was assessed. The micro-FSW system incorpor…
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4th International Symposium 2003
A three-dimensional thermomechanical model of the friction stir welding of aluminium alloy was developed, based on the finite element method, to predict temperature and stress distributions in the workpiece, residual stresses, and the stresses exper…
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