Nanoparticle as additive in lubricating oil for long stroke cylinder

碩士 === 國立臺北科技大學 === 製造科技研究所 === 96 === The principal research of this paper is about tribological properties in long stroke cylinder of pneumatic system. We use long stroke cylinder to simulate the pneumatic door of injection machine, and then improve the stick-slip phenomenon causing by friction in...

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Main Authors: Chin-Ming Fan, 樊晉民
Other Authors: Tsing-Tshih Tsung
Format: Others
Language:zh-TW
Published: 2008
Online Access:http://ndltd.ncl.edu.tw/handle/76u9g2
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spelling ndltd-TW-096TIT056210122019-07-31T03:42:33Z http://ndltd.ncl.edu.tw/handle/76u9g2 Nanoparticle as additive in lubricating oil for long stroke cylinder 長行程氣壓缸中奈米潤滑特性研究 Chin-Ming Fan 樊晉民 碩士 國立臺北科技大學 製造科技研究所 96 The principal research of this paper is about tribological properties in long stroke cylinder of pneumatic system. We use long stroke cylinder to simulate the pneumatic door of injection machine, and then improve the stick-slip phenomenon causing by friction in the cylinder. Most lubricat of pneumatic system is liquid. It’ s not a good condition to use this oil in long stroke cylinder. Because this oil has lower viscosity property and thinner film causing poor performance in long stroke cylinder. In additionl, liquid lubricant will spread out of air, it will cause pollution problem. Try to solve above problem, we using difference liquid and soild lubricants in long stroke cylinder. We find that solid lubricant has better performance than liquid. However, to reduce friction is not enough to use solid lubricant only. In this experiments, using Submerged Arc Nanoparticles Synthesis System (SANSS) to get nanoparticle, different nanoparticle add to lubricant, we analyze the dynamic characteristics which include friction, pressures, velocity and position. The experimental results show that exact of lubricat can reduce friction and stick-slip phenomenon in the cylinder. On the other side, some kind of nanoparticle as an additive for lubricant can reduce the friction, especially for the titanium dioxide nanoparticle. By comparing different experimental results, the rolling friction replaces the sliding friction on contacting surface. Therefore, this paper infers that the effect of solid-lubrication of nanoparticle werw the major tribology mechanism. Tsing-Tshih Tsung 鍾清枝 2008 學位論文 ; thesis 87 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺北科技大學 === 製造科技研究所 === 96 === The principal research of this paper is about tribological properties in long stroke cylinder of pneumatic system. We use long stroke cylinder to simulate the pneumatic door of injection machine, and then improve the stick-slip phenomenon causing by friction in the cylinder. Most lubricat of pneumatic system is liquid. It’ s not a good condition to use this oil in long stroke cylinder. Because this oil has lower viscosity property and thinner film causing poor performance in long stroke cylinder. In additionl, liquid lubricant will spread out of air, it will cause pollution problem. Try to solve above problem, we using difference liquid and soild lubricants in long stroke cylinder. We find that solid lubricant has better performance than liquid. However, to reduce friction is not enough to use solid lubricant only. In this experiments, using Submerged Arc Nanoparticles Synthesis System (SANSS) to get nanoparticle, different nanoparticle add to lubricant, we analyze the dynamic characteristics which include friction, pressures, velocity and position. The experimental results show that exact of lubricat can reduce friction and stick-slip phenomenon in the cylinder. On the other side, some kind of nanoparticle as an additive for lubricant can reduce the friction, especially for the titanium dioxide nanoparticle. By comparing different experimental results, the rolling friction replaces the sliding friction on contacting surface. Therefore, this paper infers that the effect of solid-lubrication of nanoparticle werw the major tribology mechanism.
author2 Tsing-Tshih Tsung
author_facet Tsing-Tshih Tsung
Chin-Ming Fan
樊晉民
author Chin-Ming Fan
樊晉民
spellingShingle Chin-Ming Fan
樊晉民
Nanoparticle as additive in lubricating oil for long stroke cylinder
author_sort Chin-Ming Fan
title Nanoparticle as additive in lubricating oil for long stroke cylinder
title_short Nanoparticle as additive in lubricating oil for long stroke cylinder
title_full Nanoparticle as additive in lubricating oil for long stroke cylinder
title_fullStr Nanoparticle as additive in lubricating oil for long stroke cylinder
title_full_unstemmed Nanoparticle as additive in lubricating oil for long stroke cylinder
title_sort nanoparticle as additive in lubricating oil for long stroke cylinder
publishDate 2008
url http://ndltd.ncl.edu.tw/handle/76u9g2
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