author_facet Gu, Li Zhi
Zhou, Zong Zhi
Gu, Li Zhi
Zhou, Zong Zhi
author Gu, Li Zhi
Zhou, Zong Zhi
spellingShingle Gu, Li Zhi
Zhou, Zong Zhi
Key Engineering Materials
Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
Mechanical Engineering
Mechanics of Materials
General Materials Science
author_sort gu, li zhi
spelling Gu, Li Zhi Zhou, Zong Zhi 1662-9795 Trans Tech Publications, Ltd. Mechanical Engineering Mechanics of Materials General Materials Science http://dx.doi.org/10.4028/www.scientific.net/kem.579-580.283 <jats:p>Based on the analysis of the helical surface movement forming principle, adopted synthesized modular modeling ideas, realized the construction of a complete helical surface mathematical model consisting of three core elements, element of the general mathematical model of rotator generatrix profile, element of the general mathematical model of characteristic line and element of the general mathematical model of transformation between the cross-section coordinate system and workpiece coordinate system. Generatrix of the linear-typed contour, the arc-typed contour, the higher order equation-typed contour, and the discrete point-typed contour was investigated systematically for the model. With the synthesized modular model, if the specific profile of a helical Component is given on the cross-section, it is of convenience and ease to obtain the concrete parametric model of the helical surface, simply by changing the parameter settings through the interface to acquire any types of helical surface model, thereby increasing the efficiency of modeling and providing technical support for the precise model of the helical surface with parameterization.</jats:p> Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface Key Engineering Materials
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series Key Engineering Materials
source_id 49
title Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_unstemmed Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_full Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_fullStr Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_full_unstemmed Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_short Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_sort research on synthesized modular modeling based on general mathematic model of arbitrary rotary helical surface
topic Mechanical Engineering
Mechanics of Materials
General Materials Science
url http://dx.doi.org/10.4028/www.scientific.net/kem.579-580.283
publishDate 2013
physical 283-288
description <jats:p>Based on the analysis of the helical surface movement forming principle, adopted synthesized modular modeling ideas, realized the construction of a complete helical surface mathematical model consisting of three core elements, element of the general mathematical model of rotator generatrix profile, element of the general mathematical model of characteristic line and element of the general mathematical model of transformation between the cross-section coordinate system and workpiece coordinate system. Generatrix of the linear-typed contour, the arc-typed contour, the higher order equation-typed contour, and the discrete point-typed contour was investigated systematically for the model. With the synthesized modular model, if the specific profile of a helical Component is given on the cross-section, it is of convenience and ease to obtain the concrete parametric model of the helical surface, simply by changing the parameter settings through the interface to acquire any types of helical surface model, thereby increasing the efficiency of modeling and providing technical support for the precise model of the helical surface with parameterization.</jats:p>
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author Gu, Li Zhi, Zhou, Zong Zhi
author_facet Gu, Li Zhi, Zhou, Zong Zhi, Gu, Li Zhi, Zhou, Zong Zhi
author_sort gu, li zhi
container_start_page 283
container_title Key Engineering Materials
container_volume 579-580
description <jats:p>Based on the analysis of the helical surface movement forming principle, adopted synthesized modular modeling ideas, realized the construction of a complete helical surface mathematical model consisting of three core elements, element of the general mathematical model of rotator generatrix profile, element of the general mathematical model of characteristic line and element of the general mathematical model of transformation between the cross-section coordinate system and workpiece coordinate system. Generatrix of the linear-typed contour, the arc-typed contour, the higher order equation-typed contour, and the discrete point-typed contour was investigated systematically for the model. With the synthesized modular model, if the specific profile of a helical Component is given on the cross-section, it is of convenience and ease to obtain the concrete parametric model of the helical surface, simply by changing the parameter settings through the interface to acquire any types of helical surface model, thereby increasing the efficiency of modeling and providing technical support for the precise model of the helical surface with parameterization.</jats:p>
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spelling Gu, Li Zhi Zhou, Zong Zhi 1662-9795 Trans Tech Publications, Ltd. Mechanical Engineering Mechanics of Materials General Materials Science http://dx.doi.org/10.4028/www.scientific.net/kem.579-580.283 <jats:p>Based on the analysis of the helical surface movement forming principle, adopted synthesized modular modeling ideas, realized the construction of a complete helical surface mathematical model consisting of three core elements, element of the general mathematical model of rotator generatrix profile, element of the general mathematical model of characteristic line and element of the general mathematical model of transformation between the cross-section coordinate system and workpiece coordinate system. Generatrix of the linear-typed contour, the arc-typed contour, the higher order equation-typed contour, and the discrete point-typed contour was investigated systematically for the model. With the synthesized modular model, if the specific profile of a helical Component is given on the cross-section, it is of convenience and ease to obtain the concrete parametric model of the helical surface, simply by changing the parameter settings through the interface to acquire any types of helical surface model, thereby increasing the efficiency of modeling and providing technical support for the precise model of the helical surface with parameterization.</jats:p> Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface Key Engineering Materials
spellingShingle Gu, Li Zhi, Zhou, Zong Zhi, Key Engineering Materials, Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface, Mechanical Engineering, Mechanics of Materials, General Materials Science
title Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_full Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_fullStr Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_full_unstemmed Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_short Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
title_sort research on synthesized modular modeling based on general mathematic model of arbitrary rotary helical surface
title_unstemmed Research on Synthesized Modular Modeling Based on General Mathematic Model of Arbitrary Rotary Helical Surface
topic Mechanical Engineering, Mechanics of Materials, General Materials Science
url http://dx.doi.org/10.4028/www.scientific.net/kem.579-580.283