Simulation and validation of experimental residual stresses of dissimilar AA2124 and AA7075 TIG weld joint using ANSYS APDL

Author:

Prasad M. Jothi Hari,Sudhakar I.ORCID,Adinarayana S.,Rao D. V. N. J. Jagannadha

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Modeling and Simulation

Reference30 articles.

1. Zhang, W.Y., Jiang, W.C., Zhao, X., Tu, S.T.: Fatigue life of a dissimilar welded joint considering the weld residual stress: experimental and finite element simulation. Int J Fatigue 109, 182–190 (2018)

2. Taban, E., Gould, J.E., Lippold, J.C.: Dissimilar friction welding of 6061–T6 aluminum and AISI 1018 steel: properties and micro structural characterization, (Materials & Design). Elsevier, Armsterdam (2010)

3. HuseyinUzun, C.D., Donne, A.A., TommasoGhidini, C.G.: Friction stir welding of dissimilar Al 6013–T4 To X5CrNi18-10 stainless steel. Mater. Des. 26, 41–46 (2005)

4. Aliha, M.R.M., Gharehbaghi, H.: The effects of combined mechanical load/welding residual stress on mixed mode fracture parameters of a thin aluminum cracked cylinder. EngFractMech 180, 213–228 (2017)

5. Lu, Y., Zhu, S., Zhao, Z., Chen, T., Zeng, J.: Numerical simulation of residual stresses in aluminum alloy welded joints. J. Manuf. Process. 50, 380–393 (2020). https://doi.org/10.1016/j.jmapro.2019.12.056

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