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Original Articles

Quality Improvement of Deformed Mesh Models for FEA by Density and Geometry-recovering Phased ODT Smoothing

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REFERENCES

  • Bhowmick, S; Shontz S. M.: Towards High-Quality, Untangled Meshes via a Force-Directed Graph Embedding Approach, Procedia Computer Science, 1(1), 2010, 357–366. doi: 10.1016/j.procs.2010.04.039
  • Chen, L.; Holst, M.: Efficient mesh optimization schemes based on Optimal Delaunay Triangulations, Computer Methods in Applied Mechanics and Engineering, 200(9–12), 2011, 967–984. doi: 10.1016/j.cma.2010.11.007
  • Chen, L.: Mesh smoothing schemes based on optimal Delaunay triangulations, Proc. of 13th International Meshing Roundtable, 2004, 109–120.
  • Cheng, S. W.; Dey, T. K.; Edelsbruner, H.; Facello, M. A.; Teng, S. H.: Sliver exudation, Proc. of the 15th annual symposium on computational geometry, ACM press, 1999, 1–13.
  • David A, F.: Laplacian Smoothing and Delaunay Triangulations, Communication in Applied Numerical Method, 4(6), 1988, 709–712. doi: 10.1002/cnm.1630040603
  • Du, Q.; Wang, D.: Tetrahedral mesh generation and optimization based on centroidal Voronoi tessellations, International Journal for Numerical Methods in Engineering, 56(9), 2003, 1355–1373. doi: 10.1002/nme.616
  • Gao, Z.; Yu, Z.: Holst, M: Quality tetrahedral mesh smoothing via boundary-optimized Delaunay triangulation, Computer Aided Geometric Design, 29(9), 2012, 707–721. doi: 10.1016/j.cagd.2012.07.001
  • Knupp P. M.: Hexahedral and Tetrahedral Mesh Untangling, Engineering with Computers, 17(3), 2001, 261–268. doi: 10.1007/s003660170006
  • Labelle F.: Sliver Removal by Lattice Refinement, Proc. of the 22nd annual symposium on Computational geometry, 2006, 347–356.
  • Masuda, H.: Feature-preserving Deformation for Assembly Models, Computer-Aided Design & Applications, 4(1–4), 2007, 311–320. doi: 10.1080/16864360.2007.10738551
  • Misztal, M. K.; Bærentzen, J. A.; Anton, F.: Tetrahedral Mesh Improvement Using Multi-face Retriangulation, Proc. of 18th International Meshing Roundtable, 2009, 539–555.
  • Ogawa, K; Masuda, H.: Interactive Deformation of 3D Mesh Models, Computer-Aided Design and Applications, 5(1–4), 2008, 47–57. doi: 10.3722/cadaps.2008.47-57
  • Sastry S. P.; Shontz S. M.; Vavasis S. A.: A Log-Barrier Method for Mesh Quality Improvement and Untangling, Proc. of 20th International Meshing Roundtable, Sandia National Laboratories, 2012, 329–346.
  • Sawai, Y.; Aoyama, H.: Efficient Design Method Based on Evaluation Using CAE System, Journal of Advanced Mechanical Design, Systems, and Manufacturing, 4(5-Special Issue on Advanced Manufacturing Technology (LEM21)), 2010, 827–837. doi: 10.1299/jamdsm.4.827
  • Takano, Y.; Date, H.; Onosato, M.: Dimension-driven deformation and untangling of tetrahedral meshes, Proc. of Asian Conference on Design and Digital Engineering 2010 (ACDDE 2010), 483–491.
  • Tournois, J.; Wormser, C.; Alliez, P.; Desburn, M.: Interleaving Delaunay refinement and optimization for practical isotropic tetrahedron mesh generation, ACM Transactions on Graphics (TOG), 28 (3–75), 2009.
  • Tournois, J.; Srinivasan R.; Alliez P.: Perturbing Slivers in 3D Delaunay Meshes, Proc. of 18th International Meshing Roundtable, Sandia National Laboratories, 2009, 157–173.
  • Xian, C.; Gao, S.; Lin, H; Xiao, D.: FEA-mesh editing with feature constrained, 11th International Conference on Computer-Aided Design and Computer Graphics, CAD/Graphics 2009, 2009, 340–343.

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