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Decomposition and reconstitution principle for complex surfaces and its applications
引用本文:黄克正,艾兴,张承瑞. Decomposition and reconstitution principle for complex surfaces and its applications[J]. 中国科学E辑(英文版), 1997, 40(1): 89-96. DOI: 10.1007/BF02916594
作者姓名:黄克正  艾兴  张承瑞
作者单位:College of Mechanical Engineering,Shandong University of Technology,Jinan 250061,China,College of Mechanical Engineering,Shandong University of Technology,Jinan 250061,China,College of Mechanical Engineering,Shandong University of Technology,Jinan 250061,China
基金项目:Project supported by the National Natural Science Foundation of China and the Provincial Natural Science Funds of Shandong Province.
摘    要:Though there are already a variety of models for complex surfaces, they are not so convenient as needed in practice. A hierarchical model and the principle of decomposition and reconstitution for complex surfaces have been proposed, which have the potential to enhance the support of automated design systems on creative work intelligently Then the progress made is discussed involving the applications of the new principle in the following three areas:conjugation surface calculation, tool path generation in numerically controlled machining, and machining process innovation by re-recognition


Decomposition and reconstitution principle for complex surfaces and its applications
Kezheng Huang,Xing Ai,Chengrui Zhang. Decomposition and reconstitution principle for complex surfaces and its applications[J]. Science in China(Technological Sciences), 1997, 40(1): 89-96. DOI: 10.1007/BF02916594
Authors:Kezheng Huang  Xing Ai  Chengrui Zhang
Affiliation:(1) College of Mechanical Engineering, Shandong University of Technology, 250061 Jinan, China
Abstract:Though there are already a variety of models for complex surfaces, they are not so convenient as needed in practice. A hierarchical model and the principle of decomposition and reconstitution for complex surfaces have been proposed, which have the potential to enhance the support of automated design systems on creative work intelligently Then the progress made is discussed involving the applications of the new principle in the following three areas:conjugation surface calculation, tool path generation in numerically controlled machining, and machining process innovation by re-recognition
Keywords:CAD/CAM   conjugating surface   adaptability   decomposition.
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