An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection

碩士 === 中華大學 === 機械工程學系碩士班 === 99 === The purpose of this thesis is to investigate the geometric design of curvic couplings and their formate grinding wheel selection, and discuss the geometric precision of grinding wheel for curvic coupling when two gears are in mesh to complete the curvic coupli...

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Main Authors: CHIU, CHEN-HSI, 邱晨熙
Other Authors: Kuo-Jao Huang
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/74664047327570577305
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spelling ndltd-TW-099CHPI54890352015-10-13T20:22:59Z http://ndltd.ncl.edu.tw/handle/74664047327570577305 An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection 曲齒聯軸器幾何設計與成形磨輪選用之探討 CHIU, CHEN-HSI 邱晨熙 碩士 中華大學 機械工程學系碩士班 99 The purpose of this thesis is to investigate the geometric design of curvic couplings and their formate grinding wheel selection, and discuss the geometric precision of grinding wheel for curvic coupling when two gears are in mesh to complete the curvic coupling design by using SolidWorks as a tool to develop. According to the relation between grinding wheel and curvic coupling and by using coordinate transformation, three kinds of Curvic Couplings which are standard model、concave teeth and convex teeth are derived firstly. The 3D modeling process is that by using the equation of gear, tooth surface positions are used to calculate the above three models by adding a dialog box to reach parametric design in Visual C++. Finally, an interference check by SolidWorks with assembly function is used to discuss the influence of geometric precision of grinding wheel which forms the Curvic Coupling. By these above results, the geometry of grinding wheel can be decided to build high accurateness of design and Technique of manufacture of Curvic Coupling. Kuo-Jao Huang 黃國饒 2011 學位論文 ; thesis 75 zh-TW
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language zh-TW
format Others
sources NDLTD
description 碩士 === 中華大學 === 機械工程學系碩士班 === 99 === The purpose of this thesis is to investigate the geometric design of curvic couplings and their formate grinding wheel selection, and discuss the geometric precision of grinding wheel for curvic coupling when two gears are in mesh to complete the curvic coupling design by using SolidWorks as a tool to develop. According to the relation between grinding wheel and curvic coupling and by using coordinate transformation, three kinds of Curvic Couplings which are standard model、concave teeth and convex teeth are derived firstly. The 3D modeling process is that by using the equation of gear, tooth surface positions are used to calculate the above three models by adding a dialog box to reach parametric design in Visual C++. Finally, an interference check by SolidWorks with assembly function is used to discuss the influence of geometric precision of grinding wheel which forms the Curvic Coupling. By these above results, the geometry of grinding wheel can be decided to build high accurateness of design and Technique of manufacture of Curvic Coupling.
author2 Kuo-Jao Huang
author_facet Kuo-Jao Huang
CHIU, CHEN-HSI
邱晨熙
author CHIU, CHEN-HSI
邱晨熙
spellingShingle CHIU, CHEN-HSI
邱晨熙
An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection
author_sort CHIU, CHEN-HSI
title An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection
title_short An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection
title_full An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection
title_fullStr An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection
title_full_unstemmed An Investigatiom on the Geometric Design of Curvic Couplings and Their Formate Grinding Wheel Selection
title_sort investigatiom on the geometric design of curvic couplings and their formate grinding wheel selection
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/74664047327570577305
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