Dynamic Study and System Design for the Superdental Handpiece

碩士 === 國立彰化師範大學 === 機電工程學系 === 95 === Based on FEM theory, we use MATLAB programming software as the tool to analyze various the support stiffness of dental high-speed turbine rotor- bearing system, consequently determine the critical speed. Finally compared with the critical speed of bearing system...

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Main Authors: Jun-Changh Huang, 黃圳樟
Other Authors: Ming-Fei Chen
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/23253372954724873463
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spelling ndltd-TW-095NCUE54890472015-10-13T16:51:34Z http://ndltd.ncl.edu.tw/handle/23253372954724873463 Dynamic Study and System Design for the Superdental Handpiece 超高速牙科手機動態系統設計研究 Jun-Changh Huang 黃圳樟 碩士 國立彰化師範大學 機電工程學系 95 Based on FEM theory, we use MATLAB programming software as the tool to analyze various the support stiffness of dental high-speed turbine rotor- bearing system, consequently determine the critical speed. Finally compared with the critical speed of bearing system, campbell diagram and mode shape through theory & test a design method for support stiffness of a turbine rotor-bearing system will be established. In the future we will plan to propose a complete hypothesis to precisely analyze the turbine rotor-bearing system, and use it as the basis to examine turbine rotor-bearing multiple speed system and compare test results with existing literature to test reliability of test method, expecting that dental handpiece performance criteria could be established to provide domestic handpiece manufacturers a important reference in product research and development. Ming-Fei Chen 陳明飛 2007 學位論文 ; thesis 64 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立彰化師範大學 === 機電工程學系 === 95 === Based on FEM theory, we use MATLAB programming software as the tool to analyze various the support stiffness of dental high-speed turbine rotor- bearing system, consequently determine the critical speed. Finally compared with the critical speed of bearing system, campbell diagram and mode shape through theory & test a design method for support stiffness of a turbine rotor-bearing system will be established. In the future we will plan to propose a complete hypothesis to precisely analyze the turbine rotor-bearing system, and use it as the basis to examine turbine rotor-bearing multiple speed system and compare test results with existing literature to test reliability of test method, expecting that dental handpiece performance criteria could be established to provide domestic handpiece manufacturers a important reference in product research and development.
author2 Ming-Fei Chen
author_facet Ming-Fei Chen
Jun-Changh Huang
黃圳樟
author Jun-Changh Huang
黃圳樟
spellingShingle Jun-Changh Huang
黃圳樟
Dynamic Study and System Design for the Superdental Handpiece
author_sort Jun-Changh Huang
title Dynamic Study and System Design for the Superdental Handpiece
title_short Dynamic Study and System Design for the Superdental Handpiece
title_full Dynamic Study and System Design for the Superdental Handpiece
title_fullStr Dynamic Study and System Design for the Superdental Handpiece
title_full_unstemmed Dynamic Study and System Design for the Superdental Handpiece
title_sort dynamic study and system design for the superdental handpiece
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/23253372954724873463
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