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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Halme, Jari
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (5/5 displayed)
- 2018Design and Verification of a Wireless Readout System for Integrated Motor Axle Condition Monitoringcitations
- 2010Rolling contact fatigue and wear fundamentals for rolling bearing diagnostics:State of the artcitations
- 2010Rolling contact fatigue and wear fundamentals for rolling bearing diagnosticscitations
- 2006Towards adaptive grease lubrication
- 2006Measurement-based grease lubrication management
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article
Rolling contact fatigue and wear fundamentals for rolling bearing diagnostics
Abstract
Rolling bearing operation is affected by friction, wear and lubricationmechanisms, fluid dynamics and lubricant rheology, material properties,and contact mechanics. Changes in rolling surfaces occur due to plasticdeformation, rolling contact wear, and rolling contact fatigue. Wearparticles can be formed and mixed into the lubricant. Increased levelsof vibrations due to surface degradation can be monitored by sensors.Rolling contact wear and rolling contact fatigue during rolling bearingoperation can be diagnosed by combining measured and interpretedcondition monitoring data with theory, and conclusions drawn thereof cansupport a continuous prognosis for the remaining bearing life. In thepresent work, connections between bearing diagnostics and tribologicalmechanisms are outlined.