Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid

碩士 === 國立虎尾科技大學 === 機械與機電工程研究所 === 99 === Static micro-contact theory then has led to the development of the mechanical characteristics of further the understanding in the University. and also to solve parts of the surface and interface problems. but in static and dynamic are considerable micro-cont...

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Main Authors: Yu-Liang Huang, 黃裕良
Other Authors: Jeng-Haur Horng
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/cgt6x6
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spelling ndltd-TW-099NYPI54900562019-09-22T03:40:58Z http://ndltd.ncl.edu.tw/handle/cgt6x6 Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid 表面球狀與橢圓狀波峰界面增長之實驗與應用 Yu-Liang Huang 黃裕良 碩士 國立虎尾科技大學 機械與機電工程研究所 99 Static micro-contact theory then has led to the development of the mechanical characteristics of further the understanding in the University. and also to solve parts of the surface and interface problems. but in static and dynamic are considerable micro-contact characteristics of the different. dynamic micro-contact understanding of micro-contact feature allows us to more accurately predict the interface properties. This study used optical measurement to observe the hemispherical and semi-elliptical cooper metals with soft and tough properties, putting on hard and flat quartz glass. After applied normal per-load and tangential load, the cooper metals would slid on the platform, then explored the deformations of contact areas and geometric shapes after the asperity with various sizes and shapes applied various positive and sliding rate, and to realize the effects between adhesion, friction, and wear to the properties of two contact surface. The results of experiment show that when the two contact objects start to slide, the interface growth, compression, and deformation are all nonlinear, these trends always generate at initial sliding stage; otherwise, the interface growth, compression, and deformation are all proportional to forward load and sliding speed, but inverse proportional to radius of curvature and ellipticity.Friction with the positive load the is proportional, but friction coefficient with the positive load the is inversely proportional, so positive load increase and friction changes is not as geometric. Regardless of the sliding speed changes, the static friction coefficient of maximum occurs the distance of 200μm to 300μm. Slip angle changes and the ellipticity change to regarding coefficient of friction and interface junction growth has not greatly affected. Jeng-Haur Horng 洪政豪 2011 學位論文 ; thesis 100 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立虎尾科技大學 === 機械與機電工程研究所 === 99 === Static micro-contact theory then has led to the development of the mechanical characteristics of further the understanding in the University. and also to solve parts of the surface and interface problems. but in static and dynamic are considerable micro-contact characteristics of the different. dynamic micro-contact understanding of micro-contact feature allows us to more accurately predict the interface properties. This study used optical measurement to observe the hemispherical and semi-elliptical cooper metals with soft and tough properties, putting on hard and flat quartz glass. After applied normal per-load and tangential load, the cooper metals would slid on the platform, then explored the deformations of contact areas and geometric shapes after the asperity with various sizes and shapes applied various positive and sliding rate, and to realize the effects between adhesion, friction, and wear to the properties of two contact surface. The results of experiment show that when the two contact objects start to slide, the interface growth, compression, and deformation are all nonlinear, these trends always generate at initial sliding stage; otherwise, the interface growth, compression, and deformation are all proportional to forward load and sliding speed, but inverse proportional to radius of curvature and ellipticity.Friction with the positive load the is proportional, but friction coefficient with the positive load the is inversely proportional, so positive load increase and friction changes is not as geometric. Regardless of the sliding speed changes, the static friction coefficient of maximum occurs the distance of 200μm to 300μm. Slip angle changes and the ellipticity change to regarding coefficient of friction and interface junction growth has not greatly affected.
author2 Jeng-Haur Horng
author_facet Jeng-Haur Horng
Yu-Liang Huang
黃裕良
author Yu-Liang Huang
黃裕良
spellingShingle Yu-Liang Huang
黃裕良
Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid
author_sort Yu-Liang Huang
title Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid
title_short Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid
title_full Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid
title_fullStr Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid
title_full_unstemmed Experiment and Application of Junction Growth on Surface Peak of Spherical and Ellipsoid
title_sort experiment and application of junction growth on surface peak of spherical and ellipsoid
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/cgt6x6
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