WARP3D

Open Source Code for 3D Nonlinear Analysis of Solids. WARP3D is under continuing development as a research code for the solution of large-scale, 3-D solid models subjected to static and dynamic loads. The capabilities of the code focus on fatigue & fracture analyses primarily in metals. WARP3D runs on laptops-to-supercomputers and can analyze models with several million nodes and elements. See Capabilities page for detailed list of features.


References in zbMATH (referenced in 22 articles )

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  1. Tang, Shan; Yang, Hang; Qiu, Hai; Fleming, Mark; Liu, Wing Kam; Guo, Xu: MAP123-EPF: a mechanistic-based data-driven approach for numerical elastoplastic modeling at finite strain (2021)
  2. Huang, Song; Chen, Zhiping; Su, Wenqiang; Jiao, Peng; Tang, Xiaoyu: Limit and shakedown analysis under hydrogen embrittlement condition (2018)
  3. Timothy J. Truster: DEIP, discontinuous element insertion Program - Mesh generation for interfacial finite element modeling (2018) not zbMATH
  4. Jarzebski, P.; Wisniewski, K.; Taylor, R. L.: On parallelization of the loop over elements in FEAP (2015)
  5. English, Shawn A.; Arakere, Nagaraj K.: Effects of the strain-hardening exponent on two-parameter characterizations of surface-cracks under large-scale yielding (2011)
  6. Chew, Huck Beng; Hong, Soonsung; Kim, Kyung-Suk: Cohesive zone laws for void growth. II: Numerical field projection of elasto-plastic fracture processes with vapor pressure (2009)
  7. Donato, Gustavo H. B.; Magnabosco, Rodrigo; Ruggieri, Claudio: Effects of weld strength mismatch on (J) and CTOD estimation procedure for SE(B) specimens (2009)
  8. Sobotka, J. C.; Dodds, R. H. jun.; Sofronis, P.: Effects of hydrogen on steady, ductile crack growth: computational studies (2009)
  9. Khandelwal, Ratnesh; Kishen, J. M. Chandra: The use of conservative integral in bi-material interface crack problems subjected to thermal loads (2008)
  10. Ahn, D. C.; Sofronis, P.; Dodds, R. jun.: Modeling of hydrogen-assisted ductile crack propagation in metals and alloys (2007)
  11. Cravero, Sebastian; Ruggieri, Claudio: Further developments in (J) evaluation procedure for growing cracks based on LLD and CMOD data (2007)
  12. Kim, Y.; Chao, Y. J.: Effect of loading rate on dynamic fracture initiation toughness of brittle materials (2007)
  13. Andrade-Campos, A.; Menezes, L. F.; Teixeira-Dias, F.: Numerical analysis of large deformation processes at elevated temperatures (2006)
  14. Shim, Do-Jun; Paulino, Glaucio H.; Dodds, Robert H. jun.: (J) resistance behavior in functionally graded materials using cohesive zone and modified boundary layer models (2006)
  15. Chew, H. B.; Guo, T. F.; Cheng, L.: Vapor pressure and residual stress effects on mixed mode toughness of an adhesive film (2005)
  16. Kroon, Martin; Faleskog, Jonas: Micromechanics of cleavage fracture initiation in ferritic steels by carbide cracking (2005)
  17. Petti, Jason P.; Dodds, Robert H. jun.: Ductile tearing and discrete void effects on cleavage fracture under small-scale yielding conditions (2005)
  18. Guo, T. F.; Cheng, L.: Vapor pressure and void size effects on failure of a constrained ductile film (2003)
  19. Tabiei, Ala; Wu, Jin: Development of the DYNA3D simulation code with automated fracture procedure for brick elements (2003)
  20. Brezany, Peter; Lee, Jonghyun; Winslett, Marianne: Parallel I/O support for HPF on computational grids (2002)

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