TWI

781 results in Symposia Papers
  1. Attallah M.M., Salem H.G. 5th International Symposium 2004

    An investigation is presented into the influence of friction stir welding (FSW) process parameters (tool rotation speed and feed rate) on the mechanical properties and microstructure of welded joints of AA2095 (Al, 4.6%Cu, 1.14%Li) in as-welded and …

  2. Meyer A., Schilling C. 5th International Symposium 2004

    A description is presented of the process flow of a production job based on friction stir welding (FSW) for the serial production of aluminium drying trays for the food industry. FSW joint quality issues (joint impermeability, weld surface quality a…

  3. Sorensen C.D., Nelson T.W., Parker S.M., Steel R.J. 5th International Symposium 2004

    Technology improvements and process innovations in respect of friction stir welding (FSW) of high temperature materials are reviewed, welding process conditions and mechanical properties of completed welds for various alloys using polycrystalline cu…

  4. Mishina O.K., Norlin A. 4th International Symposium 2003

    An experimental study was carried out to investigate friction stir welded lap joints in AA-6082 aluminium alloy sheets in order to determine methods to improve weld quality; the experiments were performed using two different types of probe, the MX-T…

  5. Mahoney M.W., Mishra R., Nelson T. 3rd International Symposium 2001

    The use of friction stir processing (FSP), a process derived from friction stir welding, to tailor a material's microstructure locally to achieve maximum performance was investigated. Superplastic behaviour was examined in friction stir processed 5 …

  6. Nagano Y., Jogan S., Hashimoto T. 3rd International Symposium 2001

    The mechanical properties and microstructures of dissimilar butt welds made between aluminium die casting alloy ADC1 (Al, 11.9%Si, 0.37%Fe, 0.44%Mg) and the extruded alloy A-6061-T6 (Al, 0.84%Mg, 0.67%Si) were studied. The materials were 4 mm thick …

  7. Hassan K.A.A., Norman A.F., Prangnell P.B. 3rd International Symposium 2001

    An experimental study was carried out to investigate the effect of welding conditions on weld macrostructure and the microstructure and mechanical properties of the nugget zone in welds in AA-7010 aluminium alloy made by friction stir welding (FSW).…

  8. James M., Mahoney M.W., Waldron D. 1st International Symposium 1999

    The surface and near-surface residual stress distributions of friction stir welds in three different aluminium alloys were measured using an x-ray diffraction technique. Welds in very low alkali and hydrogen content Al-Li alloy C458 (Al, 1.73%Li, 2.…

  9. Schmidt H., Hattel J. 5th International Symposium 2004

    A fully coupled thermomechanical three dimensional finite element (FE) model was developed to analyse the thermomechanical conditions, including material flow and heat generation, at the tool/matrix interface in friction stir welding. The model was …

  10. Li J.Z., Dong C.L., Luan G.H. 10th International Symposium 2014

    Friction stir welding was employed to fabricate butt joints in Ti-6%Al-4%V sheets (thickness 2 mm) and the effect of process parameters on joint microstructure and plastic deformation behaviour was investigated. Welding experiments were conducted at…

  11. Mahoney M., Baumann J. 11th International Symposium 2016

    An experimental investigation was undertaken into the preparation and mechanical properties of two candidate substitutes to MP 159 Ni-Co alloy as tool materials for friction stir welding of high strength aluminium alloys. The alloys studied were "Ae…

  12. Mendoza J., Kahl S. 9th International Symposium 2012

    Butt joints were fabricated in AA 6061-T6 (Al, 0.8%Mg, 0.6%Si) and AA 6082-T6 (Al, 0.62%Mg, 0.99%Si, 0.49%Mn) plates (thickness 6 mm) by friction stir welding, and the tensile and fatigue properties of the weldments were investigated. The microstruc…

  13. Galvao I., Verdera D., Gesto D., Loureiro A., Rodrigues D.M. 9th International Symposium 2012

    Dissimilar butt and lap joints between AA 5083-H111 or AA 6082-T6 aluminium alloys and copper were fabricated by friction stir welding and morphological, metallographic and structural analyses were undertaken on weldments made under a range of proce…

  14. Mironov S., Ohashi R., Fujimoto M., Sato Y.S., Kokawa H. 7th International Symposium 2008

    Optical microscopy, SEM and electron backscattering diffraction techniques were employed to investigate the microstructural evolution and solid-state phase transformations during friction stir spot welding (FSSW: also known as friction spot joining)…

  15. Smith C.B., Pfefferkorn F.E., Cole E.G., Fehrenbacher A., Ferrier N.J., Schultz E.F., Zinn F.R., Cerveny L., Hinrichs J. 8th International Symposium 2010

    The development of an industrialised robot for friction stir welding (FSW) for aluminium alloys is described. The influence of the main processing parameters, plunging and rotational speeds, on FSW performance and efficiency were investigated. The q…

  16. Peterson J.W., Perrett J.G., Steel R., Liu Q.Y. 8th International Symposium 2010

    The tool wear, performance life and optimal parameters for the friction stir welding (FSW) of mild and stainless steels were investigated. Bead-on-plate welds were made in AISI 304L stainless steel (6 mm thickness) and A36 cold-rolled mild steel (6 …

  17. Monsarrat B., Larose S., Wanjara P., Fortin Y., Comeau G., Yousefpour A. 11th International Symposium 2016

    An investigation is presented into the development of a flexible 3D friction stir welding (FSW) process capacity incorporating a rail mounted industrial robot to facilitate high production rate repair of aluminium cathodes for electro refining opera…

  18. Chen P.S., Russell C. 9th International Symposium 2012

    In relation to the occurrence of abnormal grain growth in aluminium alloy spun formed dome development using friction stir welded (FSW) blanks, an investigation is presented into tensile tests performed on two AA 2195 (Al, 4%Cu, 1%Li) FSW parameter …

  19. Luan G.H., Dong C.L., Li G., Wang W.B. 9th International Symposium 2012

    In relation to the development of friction stir welding (FSW) technology for railway rolling stock manufacture in China, an investigation is presented into the microstructure and mechanical properties of AA 6005A-T6 aluminium alloy (Al, 0.56%Mg, 0.7…

  20. Liu H.J., Zhou L., Liu P., Fujii H. 7th International Symposium 2008

    Friction stir welding experiments using a W-Re pin tool were undertaken on thermohydrogen processed Ti, 6-6.2%Al, 4.15-4.18%V, 0-0.5%H alloys to investigate the effect of hydrogen content on weldability, and the welded joint morphology, microstructu…

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