References
- Deng, D., Liangand, W. and Murakawa, H., 2007. Determination of weldingde for mationinfillet welded joint by mean so fnumerical simulation andcomparison with experimental measurements. Journal of Materials Processing Technology, 183(2), pp.219-225. https://doi.org/10.1016/j.jmatprotec.2006.10.013
- Deng, D., Murakawa, H. and Liang, W., 2007. Numerical simulation of welding distortion in large structures. Computer methods in applied mechanics and engineering, 196(45), pp. 4613-4627. https://doi.org/10.1016/j.cma.2007.05.023
- Ha, Y.S., Cho, S.H. and Jang, T.W., 2008. Development of welding distortion analysis method using residual strain as boundary condition. Materials Science Forum, 580-582, pp.649-654. https://doi.org/10.4028/www.scientific.net/MSF.580-582.649
- Jang, C.D., Seo, S.I. and Ko, D.E., 1997. A study on the prediction of deformations of plates due to line heating using a simplified thermal elasto-plastic analysis. Journal of Ship Production,13(1), pp.22-27.
- Jung, G. and Tsai, C., 2004. Plasticity-based distortion analysis for fillet welded thin plate T-joints. Welding Journal-New York, 83, pp.177-S.
- Luo, Y., Ishiyama, M. and Murakawa, H., 1999. Welding deformation of plates with longitudinal curvature (Mechanics, Strength & Structure Design). Transaction of JWRI, 28(2), pp.57-65.
- Luo, Y., Murakawa, H. and Ueda, Y., 1997. Prediction of welding deformation and residual stress by elastic FEM based on inherent strain (report I): mechanism of inherent strain production (mechanics, strength & structure design). Transactions of JWRI, 26(2), pp.49-57.
- Ma, N.X., Ueda, Y., Murakawa, H. and Maeda, H., 1995. FEM analysis of 3-D welding residual stresses and angular distortion in T-type fillet welds (mechanics, strength & structural design). Transactions of JWRI, 24(2), pp.115-122.
- Peric, M., Tonkovic, Z., Rodic, A., Surjak, M., Garasic, I., Boras, I. and Svaic, S., 2014. Numerical analysis and experimental investigation of welding residual stresses and distortions in a T-joint fillet weld. Materials & Design, 53, pp. 1052-1063. https://doi.org/10.1016/j.matdes.2013.08.011
- Teng, T.L., Fung, C.P. Chang, P.H. and Yang, W.C., 2001. Analysis of residual stresses and distortions in T-joint fillet welds. International Journal of Pressure Vessels and Piping, 78(8), pp.523-538. https://doi.org/10.1016/S0308-0161(01)00074-6
- Ueda, Y., Fukuda, K., Nakacho, K. and Endo, S., 1975. A new measuring method of residual stresses with the aid of finite element method and reliability of estimated values. Transactions of JWRI, 4(2), pp.123-131. https://doi.org/10.1007/BF00164683
- Ueda, Y., Kim, Y.C. and Yuan, M.G., 1989. A predicting method of welding residual stress using source of residual stress (report I): characteristics of inherent strain (source of residual stress) (mechanics, strength & structural design). Transactions of JWRI, 18(1), pp.135-141.
- Ueda, Y. and Ma, N.X., 1994. Measuring methods of three-dimensional residual stresses with aid of distribution function of inherent strain (Report I): a function method for estimating inherent strain distributions (mechanics, strength & structural design). Transactions of JWRI, 23(1), pp.71-78.
- Wang, J., Rashed, S., Murakawa, H. and Luo, Y., 2013. Numerical prediction and mitigation of out-of-plane welding distortion in ship panel structure by elastic FE analysis. Marine Structures, 34, pp.135-155. https://doi.org/10.1016/j.marstruc.2013.09.003
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