Tài liệu tham khảo |
Loại |
Chi tiết |
[1] "Kết cấu bê tông cốt thép, Phần 1 - Cấu kiện cơ bản", 2012, Ngô Đăng Quang, Nguyễn Duy Tiến.Tiếng Anh |
Sách, tạp chí |
Tiêu đề: |
Kết cấu bê tông cốt thép, Phần 1 - Cấu kiện cơ bản |
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[3] “Elastic crack growth in finite elements with minimal remeshing”, Belytschko T, T. Black,. Int. J. Numer. Methods Eng., 45, 601–620, 1999 |
Sách, tạp chí |
Tiêu đề: |
Elastic crack growth in finite elements with minimal remeshing |
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[4] “Abaqus implementation of extended finite element method using a level set representation for three-dimensional fatigue crack growth and life predictions”, Shi J, D. Chopp, J. Lua, N. Sukumar, T. Belytschko,. Eng. Fract. Mechan., 77(14), 2840– |
Sách, tạp chí |
Tiêu đề: |
Abaqus implementation of extended finite element method using a level setrepresentation for three-dimensional fatigue crack growth and life predictions |
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[5] Emdadi A, M.A. Zaeem, “Phase-field modeling of crack propagation in polycrystalline materials”. Comput. Mater. Sci., 186, 110057, 2021.doi:10.1016/j.commatsci.2020.110057 |
Sách, tạp chí |
Tiêu đề: |
Phase-field modeling of crack propagation inpolycrystalline materials |
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[6] Tam M, Z. Yang, S. Zhao, H. Zhang, Y. Zhang, J. Yang, “Nonlinear bending of elastically restrained functionally graded graphene nanoplatelet reinforced beams with an open edge crack”. Thin-Walled Structures, 156, 106972, 2020 |
Sách, tạp chí |
Tiêu đề: |
Nonlinear bending ofelastically restrained functionally graded graphene nanoplatelet reinforced beams withan open edge crack |
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[7] Hansen-Dửrr A.C., L. Wilkens, A. Croy, A. Dianat, G. Cuniberti, M. Kọstner,“Combined molecular dynamics and phase-field modelling of crack propagation in defective graphene”, Comput. Mater. Sci., 163, 117–126, 2019, doi:10.1016/j.commatsci.2019.03.028 |
Sách, tạp chí |
Tiêu đề: |
Combined molecular dynamics and phase-field modelling of crack propagation indefective graphene |
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[8] Yao J, Y. Xia, S. Dong, P. Yu, J. Zhao, “Finite element analysis and molecular dynamics simulations of nanoscale crack-hole interactions in chiral graphene nanoribbons”,Eng. Frac.Mech.,10657, 2019, doi:10.1016/j.engfracmech.2019.106571 |
Sách, tạp chí |
Tiêu đề: |
Finite element analysis and moleculardynamics simulations of nanoscale crack-hole interactions in chiral graphenenanoribbons |
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[9] Engel B, J.P. Rouse, C.J. Hyde, W. Lavie, D. Leidermark, S. Stekovic, H. Li, “The prediction of crack propagation in coarse grain RR1000 using a unified modelling approach”, Inter. J. Fatig., 137, 105652, 2020. doi:10.1016/j.ijfatigue.2020.105652 |
Sách, tạp chí |
Tiêu đề: |
Theprediction of crack propagation in coarse grain RR1000 using a unified modellingapproach |
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[11] Broek D, “Elementary engineering fracture mechanics”. Matinus Nijhoff, Boston, London, 1982 |
Sách, tạp chí |
Tiêu đề: |
Elementary engineering fracture mechanics |
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[12] Thông số vật liệu bê tông Mac400 và thép , https://shundengsdt.com/mo-dun-dan-hoi-cua-thep-be-tong/ |
Link |
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[13] Hệ số poisson của thép , https://www.scribd.com/document/461102430 Poisson- doc |
Link |
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[10] Kimura H, Y. Akiniwa, K. Tanaka, H. Tanaka, Y. Okumura, “Smart structure for suppression of mode I and II crack propagation in CFRP laminates by shape memory |
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