Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate

碩士 === 崑山科技大學 === 機械工程研究所 === 96 === The nano technology has been advanced continuously recent years. The micro-wearing behavior and mechanism of thin film material under micro/nano scale have discussed. The most research are discuss the properties of nano-tribology and the manufacturing process tec...

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Main Authors: Hung-Jui Huang, 黃瑞鴻
Other Authors: 于劍平
Format: Others
Language:zh-TW
Published: 2007
Online Access:http://ndltd.ncl.edu.tw/handle/kg37ju
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spelling ndltd-TW-096KSUT54890752019-05-15T20:33:45Z http://ndltd.ncl.edu.tw/handle/kg37ju Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate 銀及銅金屬薄膜鍍於PMMA基材表面微磨耗行為之研究 Hung-Jui Huang 黃瑞鴻 碩士 崑山科技大學 機械工程研究所 96 The nano technology has been advanced continuously recent years. The micro-wearing behavior and mechanism of thin film material under micro/nano scale have discussed. The most research are discuss the properties of nano-tribology and the manufacturing process technology which sputtering on the PMMA substrate. The properties of nano-wearing experiments are measured by NanoTest and Pin-On Disc (POD), respectively. The experimental parameters are: applied load, rotational speed and rotational radius, etc. And analyze the surface morphology under wearing behavior, to create the rule which the mechanical properties after coat film for future research. As the experimental results, the average coefficient of friction can be separated two stages: firstly, due to the adhesion effect phenomenon occurred on the surface of metal thin film when the loading is around 1 to 5mN; second is the ploughing causing the coefficient of friction increased when the loading between 20 to 200mN. The stick-slip phenomenon occurred simultaneously under large loading, it’s the special phenomenon which due to the substrate effect when the metal film coated on the PMMA substrate. 于劍平 2007 學位論文 ; thesis 77 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 崑山科技大學 === 機械工程研究所 === 96 === The nano technology has been advanced continuously recent years. The micro-wearing behavior and mechanism of thin film material under micro/nano scale have discussed. The most research are discuss the properties of nano-tribology and the manufacturing process technology which sputtering on the PMMA substrate. The properties of nano-wearing experiments are measured by NanoTest and Pin-On Disc (POD), respectively. The experimental parameters are: applied load, rotational speed and rotational radius, etc. And analyze the surface morphology under wearing behavior, to create the rule which the mechanical properties after coat film for future research. As the experimental results, the average coefficient of friction can be separated two stages: firstly, due to the adhesion effect phenomenon occurred on the surface of metal thin film when the loading is around 1 to 5mN; second is the ploughing causing the coefficient of friction increased when the loading between 20 to 200mN. The stick-slip phenomenon occurred simultaneously under large loading, it’s the special phenomenon which due to the substrate effect when the metal film coated on the PMMA substrate.
author2 于劍平
author_facet 于劍平
Hung-Jui Huang
黃瑞鴻
author Hung-Jui Huang
黃瑞鴻
spellingShingle Hung-Jui Huang
黃瑞鴻
Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate
author_sort Hung-Jui Huang
title Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate
title_short Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate
title_full Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate
title_fullStr Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate
title_full_unstemmed Study on Micro Wear Behavior of Silver and Copper Metal Thin Film on PMMA Substrate
title_sort study on micro wear behavior of silver and copper metal thin film on pmma substrate
publishDate 2007
url http://ndltd.ncl.edu.tw/handle/kg37ju
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AT hungjuihuang yínjítóngjīnshǔbáomódùyúpmmajīcáibiǎomiànwēimóhàoxíngwèizhīyánjiū
AT huángruìhóng yínjítóngjīnshǔbáomódùyúpmmajīcáibiǎomiànwēimóhàoxíngwèizhīyánjiū
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