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Skeleton-Sectional Structural Analysis for 3D Printing

Skeleton-Sectional Structural Analysis for 3D Printing
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摘要 3D printing has become popular and has been widely used in various applications in recent years. More and more home users have motivation to design their own models and then fabricate them using 3D printers. However, the printed objects may have some structural or stress defects as the users may be lack of knowledge on stress analysis on 3D models. In this paper, we present an approach to help users analyze a model's structural strength while designing its shape. We adopt sectional structural analysis instead of conventional FEM (Finite Element Method) analysis which is computationally expensive. Based on sectional structural analysis, our approach imports skeletons to assist in integrating mesh designing, strength computing and mesh correction well. Skeletons can also guide sections building and load calculation for analysis. For weak regions with high stress over a threshold value in the model from analysis result, our system corrects them by scaling the corresponding bones of skeleton so as to make these regions stiff enough. A number of experiments have demonstrated the applicability and practicability of our approach. 3D printing has become popular and has been widely used in various applications in recent years. More and more home users have motivation to design their own models and then fabricate them using 3D printers. However, the printed objects may have some structural or stress defects as the users may be lack of knowledge on stress analysis on 3D models. In this paper, we present an approach to help users analyze a model's structural strength while designing its shape. We adopt sectional structural analysis instead of conventional FEM (Finite Element Method) analysis which is computationally expensive. Based on sectional structural analysis, our approach imports skeletons to assist in integrating mesh designing, strength computing and mesh correction well. Skeletons can also guide sections building and load calculation for analysis. For weak regions with high stress over a threshold value in the model from analysis result, our system corrects them by scaling the corresponding bones of skeleton so as to make these regions stiff enough. A number of experiments have demonstrated the applicability and practicability of our approach.
出处 《Journal of Computer Science & Technology》 SCIE EI CSCD 2016年第3期439-449,共11页 计算机科学技术学报(英文版)
基金 This work was supported by the National Natural Science Foundation of China under Grant Nos. 61222206 and 11526212, the 100 Talents Project of the Chinese Academy of Sciences, the Science and Technology Project of Henan Province of China under Grant No. 162102310090, and the Key Scientific Research Projects of the Higher Education Institutions of Henan Province of China under Grant No. 16A520011.
关键词 3D printing sectional structural analysis SKELETON mesh correction 3D printing, sectional structural analysis, skeleton, mesh correction
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参考文献50

  • 1Stava O, Vanek J, Benes B, Carr N, Mch R. Stress re- lief: Improving structural strength of 3D printable objects. ACM Transactions on Graphics, 2012, 31(4): 48:1-48:ll.
  • 2Zhou Q, Panetta J, Zorin D. Worst-case structural analysis. ACM Transactions on Graphics, 2013, 32(4): 137:1-137:12.
  • 3Umetani N, Schmidt R. Cross-sectional structural analysis for 3D printing optimization. In Proc. SIGGRAPH Asia Technical Briefs, November 2013, pp.5:1-5:4.
  • 4Prvost R, Whiting E, Lefebvre S, Sorkine-Hornung O. Make it stand: Balancing shapes for 3D fabrication. ACM Transactions on Graphics, 2013, 32(4): 81:1-81:10.
  • 5B/icher M, Whiting E, Bickel B, Sorkine-Hornung O. Spin- it: Optimizing moment of inertia for spinnable objects. ACM Transactions on Graphics, 2014, 33(4): 96:1-96:10.
  • 6Bickel B, Bgcher M, Otaduy M A, Lee H R, Pfister H, Gross M, Matusik W. Design and fabrication of materials with desired deformation behavior. ACM Transactions on Graphics, 2010, 29(4): 63:1-63:10.
  • 7Xie Y, Xu W, Yang Y, Guo X, Zhou K. Agile struc- tural analysis for fabrication-aware shape editing. Com- puter Aided Geometric Design, 2015, 35/36: 163-179.
  • 8Hao J, Fang L, Williams R E. An efficient curvature-based partitioning of large-scale STL models. Rapid Prototyping Journal, 2011, 17(2): 116-127.
  • 9Luo L, Baran I, Rusinkiewicz S, Matusik W. Chopper: Par- titioning models into 3D-printable parts. ACM Transac- tions on Graphics, 2012, 31(6): 129:1-129:10.
  • 10Wang W, Wang T Y, Yang Z, Liu L, Tong X, Tong W, Deng J Chen F, Liu X. Cost-effective printing of 3D objects with skin-frame structures. ACM Transactions on Graph- ics, 2013, 32(6): 177:1-177:10.

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