Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants
A series of fluids which represents a cross section of the variety of synthetic materials available on the market was selected for evaluation as electrical contact lubricants. The evaporation_rate, oxidative ^stability, and thermal stability of the various lubricants on both catalytic and noncataly...
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my.umt.ir-5422016-03-10T05:12:26Z Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants Hunter, Maureen E. Mongeon TP 156 .M6 H8 1992 Hunter, Maureen E. Mongeon Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants Chemical engineering -- Research Chemical engineering A series of fluids which represents a cross section of the variety of synthetic materials available on the market was selected for evaluation as electrical contact lubricants. The evaporation_rate, oxidative ^stability, and thermal stability of the various lubricants on both catalytic and noncatalytic surfaces were studied by use of the Penn State microoxidation test which simulates thin-film boundary lubrication conditions. 2010-12-03T09:35:37Z 2010-12-03T09:35:37Z 1992-12 Thesis http://hdl.handle.net/123456789/542 en application/pdf application/pdf The Pennsylvania State University |
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TP 156 .M6 H8 1992 Hunter, Maureen E. Mongeon Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants Chemical engineering -- Research Chemical engineering |
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TP 156 .M6 H8 1992 Hunter, Maureen E. Mongeon Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants Chemical engineering -- Research Chemical engineering Hunter, Maureen E. Mongeon Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants |
description |
A series of fluids which represents a cross section of the variety of synthetic materials available on the market was selected for evaluation as electrical contact lubricants. The evaporation_rate, oxidative ^stability, and thermal
stability of the various lubricants on both catalytic and noncatalytic surfaces were studied by use of the Penn State
microoxidation test which simulates thin-film boundary lubrication conditions. |
format |
Thesis |
author |
Hunter, Maureen E. Mongeon |
author_facet |
Hunter, Maureen E. Mongeon |
author_sort |
Hunter, Maureen E. Mongeon |
title |
Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants |
title_short |
Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants |
title_full |
Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants |
title_fullStr |
Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants |
title_full_unstemmed |
Oxidative stability, thermal stability, and volatility studies of electrical contact lubricants |
title_sort |
oxidative stability, thermal stability, and volatility studies of electrical contact lubricants |
publisher |
The Pennsylvania State University |
publishDate |
2010 |
url |
http://hdl.handle.net/123456789/542 |
_version_ |
1738395657166651392 |
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13.160551 |