The experimental data, received at the synchronous measurement of oil temperature, lubricant layer thickness and hydrodynamical pressures distribution on the circumferential of plain bearing confirmed the earlier detected regularities of each one's variation. The experimentally received temperature distribution in lubricant layer of plain bearing let to specify the values of middle oil temperatures in loaded and unloaded zones in comparison with bushes' temperatures in these zones on depth (0.8÷1) mm on 2÷6°C. Definitely, the maximal oil temperature values can exceed the middle on 2÷10°C. Experimentally received lubricant layer thickness distribution on circumference of plain bearing in real time do not need decipher on calibration device. Experimentally received hydrodynamical pressures distribution in lubricant layer with the help of magnetoelastic sensor, which is distortion-free for the oil layer, lets to judge about bush deformation. The suggested methodology of thermal calculation lets to determine the middle value of temperatures in loaded and unloaded zones with enough for practice accuracy.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
The experimental data, received at the synchronous measurement of oil temperature, lubricant layer thickness and hydrodynamical pressures distribution on the circumferential of plain bearing confirmed the earlier detected regularities of each one's variation. The experimentally received temperature distribution in lubricant layer of plain bearing let to specify the values of middle oil temperatures in loaded and unloaded zones in comparison with bushes' temperatures in these zones on depth (0.8÷1) mm on 2÷6°C. Definitely, the maximal oil temperature values can exceed the middle on 2÷10°C. Experimentally received lubricant layer thickness distribution on circumference of plain bearing in real time do not need decipher on calibration device. Experimentally received hydrodynamical pressures distribution in lubricant layer with the help of magnetoelastic sensor, which is distortion-free for the oil layer, lets to judge about bush deformation. The suggested methodology of thermal calculation lets to determine the middle value of temperatures in loaded and unloaded zones with enough for practice accuracy.
Prof. Vladyslav Vlastopulo is a scientifically-commercial director of biophysical department on creating of new biomedical methods and devices, bio-field simulators in "Research Laboratories VVL", and professor of cathedra of ways and methods of struggling with marine corrosion and biological fouling in Odessa Marine University.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Etat : New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Vlastopulo VladyslavProf. Vladyslav Vlastopulo is a scientifically-commercial director of biophysical department on creating of new biomedical methods and devices, bio-field simulators in Research Laboratories VVL , and professor. N° de réf. du vendeur 5465056
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Taschenbuch. Etat : Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The experimental data, received at the synchronous measurement of oil temperature, lubricant layer thickness and hydrodynamical pressures distribution on the circumferential of plain bearing confirmed the earlier detected regularities of each one''s variation. The experimentally received temperature distribution in lubricant layer of plain bearing let to specify the values of middle oil temperatures in loaded and unloaded zones in comparison with bushes'' temperatures in these zones on depth (0.8÷1) mm on 2÷6°C. Definitely, the maximal oil temperature values can exceed the middle on 2÷10°C. Experimentally received lubricant layer thickness distribution on circumference of plain bearing in real time do not need decipher on calibration device. Experimentally received hydrodynamical pressures distribution in lubricant layer with the help of magnetoelastic sensor, which is distortion-free for the oil layer, lets to judge about bush deformation. The suggested methodology of thermal calculation lets to determine the middle value of temperatures in loaded and unloaded zones with enough for practice accuracy. N° de réf. du vendeur 9783843350419
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Taschenbuch. Etat : Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The experimental data, received at the synchronous measurement of oil temperature, lubricant layer thickness and hydrodynamical pressures distribution on the circumferential of plain bearing confirmed the earlier detected regularities of each one''s variation. The experimentally received temperature distribution in lubricant layer of plain bearing let to specify the values of middle oil temperatures in loaded and unloaded zones in comparison with bushes'' temperatures in these zones on depth (0.8÷1) mm on 2÷6°C. Definitely, the maximal oil temperature values can exceed the middle on 2÷10°C. Experimentally received lubricant layer thickness distribution on circumference of plain bearing in real time do not need decipher on calibration device. Experimentally received hydrodynamical pressures distribution in lubricant layer with the help of magnetoelastic sensor, which is distortion-free for the oil layer, lets to judge about bush deformation. The suggested methodology of thermal calculation lets to determine the middle value of temperatures in loaded and unloaded zones with enough for practice accuracy. 124 pp. Englisch. N° de réf. du vendeur 9783843350419
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Taschenbuch. Etat : Neu. Neuware -The experimental data, received at the synchronous measurement of oil temperature, lubricant layer thickness and hydrodynamical pressures distribution on the circumferential of plain bearing confirmed the earlier detected regularities of each one''s variation. The experimentally received temperature distribution in lubricant layer of plain bearing let to specify the values of middle oil temperatures in loaded and unloaded zones in comparison with bushes'' temperatures in these zones on depth (0.8÷1) mm on 2÷6°C. Definitely, the maximal oil temperature values can exceed the middle on 2÷10°C. Experimentally received lubricant layer thickness distribution on circumference of plain bearing in real time do not need decipher on calibration device. Experimentally received hydrodynamical pressures distribution in lubricant layer with the help of magnetoelastic sensor, which is distortion-free for the oil layer, lets to judge about bush deformation. The suggested methodology of thermal calculation lets to determine the middle value of temperatures in loaded and unloaded zones with enough for practice accuracy.Books on Demand GmbH, Überseering 33, 22297 Hamburg 124 pp. Englisch. N° de réf. du vendeur 9783843350419
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