Residual thermal stress analysis in cylindrical steel bars using finite element method and artificial neural networks
暂无分享,去创建一个
Shinya Sasaki | E. Özkaya | M. Toparli | S. Sasaki | E. Özkaya | Mustafa Toparli | S. Sahin | S. Şahin
[1] Joseph R. Davis,et al. Properties and selection : irons, steels, and high-performance alloys , 1995 .
[2] Bekir Karlik,et al. VIBRATIONS OF A BEAM-MASS SYSTEMS USING ARTIFICIAL NEURAL NETWORKS , 1998 .
[3] R. Schröder. Influences on development of thermal and residual stresses in quenched steel cylinders of different dimensions , 1985 .
[4] B. Aksakal,et al. Transient and residual thermal stresses in quenched cylindrical bodies , 2000 .
[5] J. Sziveri,et al. Parallel processing neural networks and genetic algorithms , 1998 .
[6] Yuan Fa-rang,et al. Transient-temperature and residual-stress fields in axisymmetric metal components after hardening , 1985 .
[7] S. Kamamoto,et al. Analysis of residual stress and distortion resulting from quenching in large low-alloy steel shafts , 1985 .
[8] Barry Hilary Valentine Topping,et al. Parallel training of neural networks for finite element mesh decomposition , 1997 .
[9] Ardeshir Bahreininejad,et al. Parallel quadrilateral subdomain generation for finite element analysis , 1999 .
[10] Ardeshir Bahreininejad,et al. Finite element mesh partitioning using neural networks , 1996 .
[11] J. C. Boyer,et al. Numerical calculations of residual–stress relaxation in quenched plates , 1985 .