ZHU Lin-sen, TANG Yang-ping, BIN Hong-zan, XIONG Cai-hua, LIU Ping. 3-D modeling method of ship model surface for numerical control machining[J]. Journal of Traffic and Transportation Engineering, 2006, 6(3): 78-81.
Citation: ZHU Lin-sen, TANG Yang-ping, BIN Hong-zan, XIONG Cai-hua, LIU Ping. 3-D modeling method of ship model surface for numerical control machining[J]. Journal of Traffic and Transportation Engineering, 2006, 6(3): 78-81.

3-D modeling method of ship model surface for numerical control machining

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  • Author Bio:

    Zhu Lin-sen(1966-), male, doctoraI student, 86-27-87556018, zlinsen@sina.com

    Bin Hong-zan(1940-), male, professor, 86-27-87543771, binhz@public.hb.wh.cn

  • Received Date: 2006-01-12
  • Publish Date: 2006-09-25
  • In order to farthest make use of three sets of molded lines of ship model surface (SMS) so that SMS modeling contains more design information, SMS modeling effects realized by many kinds of surface modeling methods based on UG were analyzed, a modeling method of through curve mesh (TCM) for numerical machining of SMS was proposed, the key technologies of SMS 3-D modeling by TCM were studied, which are local region enveloping and surface partition, and SMS 3D modeling module was developed by UG/OpenGrip.It needs at least 30 d for traditional handcrafting manufacturing method to finish twin-skeg SMS, however, only 6 h is needed for 4-axis SMS NC (numerical control) machining system to finish 98% of the workload, the dimension precision, geometrical precision and fairing effect of SMS realized by the method are better than those realized by the traditional method, so the 3-D modeling precision of SMS realized by TCM can fully satisfy the requirements of numerical control machining, and is feasible.

     

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  • [1]
    Rogers DF, Satterrfield S G. B-spline surfaces for ship hull design[J]. Computer Graphics, 1980, 14 (3): 211-217. doi: 10.1145/965105.807494
    [2]
    Fog N G. Creative definition and fairing of ship hulls using a B-spline surface[J]. CAD, 1984, 16 (4): 225-229.
    [3]
    Bardis L, Vafiadou M. Ship-hull geometry representation with B-spline surface patches[J]. CAD, 1992, 24 (4): 217-222.
    [4]
    史国友, 贾传荧. 基于NURBS的三维船体曲面重构[J]. 交通运输工程学报, 2004, 4 (3): 99-103. http://transport.chd.edu.cn/article/id/200403023

    Shi Guo-you, Jia Chuan-ying. Reconstruction of 3-D ship hull surface based on NURBS[J]. Journal of Traffic and Transportation Engineering, 2004, 4 (3): 99-103. (in Chinese) http://transport.chd.edu.cn/article/id/200403023
    [5]
    史国友, 贾传荧. 基于NURBS的船体曲面自适应三角网格剖分[J]. 交通运输工程学报, 2006, 6 (1): 88-92. http://transport.chd.edu.cn/article/id/200601018

    Shi Guo-you, Jia Chuan-ying. Adaptive triangular mesh generation of ship hull surface based on NURBS[J]. Journal of Traffic and Transportation Engineering, 2006, 6 (1): 88-92. (in Chinese) http://transport.chd.edu.cn/article/id/200601018
    [6]
    Piegl L, Tiller W. The NURBS Book[M]. Berlin: Springer, 1997.
    [7]
    施法中. 计算机辅助几何设计与非均匀有理B样条[M]. 北京: 高等教育出版社, 2001.
    [8]
    朱心雄. 自由曲线曲面造型技术[M]. 北京: 科学出版社, 2000.
    [9]
    赵波, 龚勉, 浦维达. UG CAD实用教程[M]. 北京: 清华大学出版社, 2002.
    [10]
    王庆林. UG/OpenGrip实用编程基础[M]. 北京: 清华大学出版社, 2002.
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