Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance

碩士 === 國立臺灣科技大學 === 機械工程系 === 104 === The resistance of the extreme pressure (E.P.) and anti-wear (A.W.) on different kinds of the extreme pressure additives (E.P. additives) under the extreme pressure conditions is the major object of this study. The refrigerant oil blend into weight percantage con...

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Main Authors: Shih-Wei Peng, 彭世偉
Other Authors: Yuan-Ching Lin
Format: Others
Language:zh-TW
Published: 2016
Online Access:http://ndltd.ncl.edu.tw/handle/70472598256497161709
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spelling ndltd-TW-104NTUS54891542017-09-10T04:30:09Z http://ndltd.ncl.edu.tw/handle/70472598256497161709 Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance 不同冷媒對極壓添加劑磨潤性能的影響 Shih-Wei Peng 彭世偉 碩士 國立臺灣科技大學 機械工程系 104 The resistance of the extreme pressure (E.P.) and anti-wear (A.W.) on different kinds of the extreme pressure additives (E.P. additives) under the extreme pressure conditions is the major object of this study. The refrigerant oil blend into weight percantage concentration with 0.5%, 1% and 5% of the E.P. additives. In order to know how the resistance of the extreme pressure and antiwear affected by the concentration of the E.P. additive and the oil temperature. The wear test is in fixed sliding speed during the 1hr test. And the oil temperature are at room temperature (25℃) and 80℃. After the test and changed the load. After finding the optimal concentration of the E.P. additves, they are used to do the long time wear test and blend into refrigerants. The result shows that the concentration of sulfur and chlorine in 0.5wt% and 5wt% has the best extreme pressure and anti-wear resistance. And refrigerant R134a has good performance in anti-wear resistance in the low load but refrigerant R32 is not and it make the reation rate of the sulfur E.P. additive up. But all refrigerants has poor performance in extreme pressure resistance. In long time wear test, mixed oil with surfur E.P. has the lowerest wear scar diameter in the same test time. So when wear test in the steady state, the mixed oil with surfur E.P. has the highest steady state stress. Yuan-Ching Lin 林原慶 2016 學位論文 ; thesis 193 zh-TW
collection NDLTD
language zh-TW
format Others
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description 碩士 === 國立臺灣科技大學 === 機械工程系 === 104 === The resistance of the extreme pressure (E.P.) and anti-wear (A.W.) on different kinds of the extreme pressure additives (E.P. additives) under the extreme pressure conditions is the major object of this study. The refrigerant oil blend into weight percantage concentration with 0.5%, 1% and 5% of the E.P. additives. In order to know how the resistance of the extreme pressure and antiwear affected by the concentration of the E.P. additive and the oil temperature. The wear test is in fixed sliding speed during the 1hr test. And the oil temperature are at room temperature (25℃) and 80℃. After the test and changed the load. After finding the optimal concentration of the E.P. additves, they are used to do the long time wear test and blend into refrigerants. The result shows that the concentration of sulfur and chlorine in 0.5wt% and 5wt% has the best extreme pressure and anti-wear resistance. And refrigerant R134a has good performance in anti-wear resistance in the low load but refrigerant R32 is not and it make the reation rate of the sulfur E.P. additive up. But all refrigerants has poor performance in extreme pressure resistance. In long time wear test, mixed oil with surfur E.P. has the lowerest wear scar diameter in the same test time. So when wear test in the steady state, the mixed oil with surfur E.P. has the highest steady state stress.
author2 Yuan-Ching Lin
author_facet Yuan-Ching Lin
Shih-Wei Peng
彭世偉
author Shih-Wei Peng
彭世偉
spellingShingle Shih-Wei Peng
彭世偉
Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance
author_sort Shih-Wei Peng
title Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance
title_short Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance
title_full Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance
title_fullStr Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance
title_full_unstemmed Effect of Different Refrigerants on Extreme Pressure Additives Tribological Performance
title_sort effect of different refrigerants on extreme pressure additives tribological performance
publishDate 2016
url http://ndltd.ncl.edu.tw/handle/70472598256497161709
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