期刊文献+

基于投影法的过渡曲面构造方法 被引量:2

Constructing Transition Surface Based on Curve Projection
下载PDF
导出
摘要 在采用组合函数法构造过渡曲面方法的基础上,提出了一种在基曲面上构造G1连续的过渡切触线的方法。该方法只需给定曲面上的一组点列及其点上的切矢,在此基础上构造一条空间曲线,并基于正交投影法将这条曲线投影到基曲面上得到一条G1连续的过渡切触线,使得设计人员可以根据需要直接在基曲面上确定过渡曲面与基曲面的切触线的位置,并以此为边界构造过渡曲面。还提出了新的构造过渡辅助面和重新参数化局部基曲面的方法,以适应过渡切触线为分段曲线的情况,并将其应用于翼身融合面的构造中,实例证明了该方法的可行性,效果令人满意。 Based on blending surface method by combination functions,a new algorithm of designing G1 continuous curve on the base surface was proposed.Given an arbitrary sequence of points and the tangent directions of the points,a space curve can be designed.By using the normal projection method,the curve was projected orthogonally onto the base surface and thus the blending contact curve was obtained.In this way,the contact curve can be placed at the appropriate position according to the design requirements as the borderline of the blending surface.The new methods were presented to generate auxiliary surface andreparameterize local base surface,which extended the capability of the blending method.The effectiveness and feasibility of the new algorithm were illustrated with an instance of blending wing body.
出处 《中国机械工程》 EI CAS CSCD 北大核心 2014年第6期780-784,共5页 China Mechanical Engineering
基金 国家自然科学基金资助项目(51075206)
关键词 过渡曲面 过渡组合函数 接触线 辅助面 transition surface blending function contact curve auxiliary surface
  • 相关文献

参考文献8

  • 1Braid Ic. Non-local Blending of Boundary Models [J]. Computer-Aided Design, 1997,29 (2) : 89-100.
  • 2Hartmann E. Parametric G" Blending of Curves and Surfaces[J]. The Visual Computer, 2001,17 ( 1 ) 1 13.
  • 3宋遒志,戴全辉,陈立平,钟毅芳.满足约束的G^n连续过渡曲面的构造(英文)[J].Chinese Journal of Aeronautics,2003,16(2):108-116. 被引量:4
  • 4Song Qiuzhi, Wang Jianzhong. Generating Paramet- ric G" Blending Surfaces Based on Partial Reparam- eterization of Base Surfaces [J]. Computer- Aided Design,2007,39(ll) :953-963.
  • 5宋遒志,戴全辉,王建中.基于边界控制的G^n连续过渡曲面的构造[J].中国机械工程,2004,15(6):533-535. 被引量:1
  • 6Wang Xiaoping, Meng Yaqin, Wang Zhiguo, et al.Constructing up to G2 Continuous Curve on Free- form Surface [J]. The Visual Computer, 2010, 26(6/8) :813-822.
  • 7Wolter F E,Tushy S T. Approximation of High-de- gree and Procedural Curves[J]. Engineering with Computer, 1992,8 (2) : 61-80.
  • 8Qu J,Sarma R. The Continuous Non-linear Approx- imation of Procedurally Defined Curves Using Inte- gral B-Spline[J]. Engineering with Computer, 2004, 20(1) :22-30.

二级参考文献12

  • 1Lukács G.Differential geometry of G1 variable radius rolling ball blend surfaces[J].Computer Aided Geometric Design,1998,15(6):585-613.
  • 2Choi B K,Ju S Y. Constant-radius blending in surface modeling[J]. Computer-Aided Design, 1989, 21(4):213-220.
  • 3Chuang J H, Hwang W C. Variable-radius blending by constrained spine generation [J]. The Visual Computer,1997, 13(7): 316-329.
  • 4Vida J, Martin R R, Varady. T. A survey of blending methods that use parametric surfaces[J]. Computer-Aided Design, 1994, 26(5):341-365.
  • 5Farouki R A M T, Sverrisson R. Approximation of rollingball blends for free-form parametric surfaces[J]. Computer-Aided Design, 1996, 28(11): 871-878.
  • 6Lukacs G. Differential geometry of G^1 variable radius rolling ball blend surfaces[J]. Computer Aided Geometric Design,1998, 15(6): 585-613.
  • 7Braid I C. Non-local blending of boundary models[J]. Computer-Aided Design, 1997, 29(2): 89-100.
  • 8Bloor M I G, Wilson M J. Generating blend surfaces using partial differential equations[J]. Computer-Aided Design,1989, 21(4): 165-171.
  • 9Bloor M I G, Wilson M J. Using partial differential equations to generating free form surfaces[J]. Computer-Aided Design , 1990, 22(4): 221-234.
  • 10Hartmann E. Parametric G^n blending of curves and surfaces [J]. The Visual Computer, 2001,17 (1) : 1 - 13.

共引文献3

同被引文献28

  • 1丁展,胡华强,彭维,叶修梓.三维手绘CAD系统的设计与表达[J].计算机辅助设计与图形学学报,2005,17(10):2359-2366. 被引量:4
  • 2Bae S H, Balakrishnan R, Singh K. Everybody loves sketch: 3D sketching for a broader audience[ C] //UIST 2009, 2009:59 -68.
  • 3Bae S H, Balakrishnan R, Singh K. I love sketch: as natural as possible sketching system for creating 3D curve models[ C]// UIST 2008, 2008 : 151 - 160.
  • 4Tovi Grossman, Ravin Balakrishnan, Gordon Kurtenbach, et al. Creating principal 3D curves with digital tape drawing [ D]. Toronto : University of Toronto, 2012.
  • 5Xu H Y, Fang X, Tam H, et al. A second-order algorithm for curve orthogonal projection onto parametric surface [ J ]. International Journal of Computer Mathematics, 2012, 89( 1 ) : 98 - 111.
  • 6Xuan C X, Gong Y J, Li Q. Research progress of 3D style design based on sketching[ J]. Applied Mechanics and Materials, 2013, 423 -426 : 1819 - 1822.
  • 7Li Q, Qi N, Gong Y J. An algorithm of multi-stroke combination in the automotive styling[ C ]//2011 International Conference on Electronic & Mechanical Engineering and Information Technology, 2011, 1:417 -420.
  • 8Li Q, Zhang X F, Zhang C F. 3D sketching in autosketch [ C] //2011 International Conference on Electronic & Mechanical Engineering and Information Technology, 2011:433 -436.
  • 9Li Q, Wang X, Qi N, et al. Surface matching by using the simple strategy in the application of automotive styling[ C]//2010 International Conference of Information Science and Management Engineering, 2011 : 253 - 256.
  • 10Xuan C X, Gong Y J, Li Q, et al. Study on 3D freehand stroke creation[J]. Advances in Mechanical Engineering, 2015, 7(5) :1 - 13.

引证文献2

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部