Experimental Analysis of the Influence of the Electrical Arc on the Wear Rate of Contact Strip and Contact Wire in a.c. System
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-48375-7_48
Reference7 articles.
1. CEI EN 50317—Railway applications—Current collection systems—Requirements for and validation of measurements of the dynamic interaction between pantograph and overhead line (2013)
2. Kubo S, Kato K (1999) Effect of arc discharge on the wear rate and wear mode transition of a copper-impregnated metallized carbon contact strip sliding against a copper disk. Tribol Int 32:367–378
3. Nagasawa H, Kato K (1998) Wear mechanism of copper alloy wire sliding against iron-base strip under electric current. Wear 216:179–183
4. Bucca G, Collina A (2015) Electromechanical interaction between carbon-based pantograph strip and copper contact wire: a heuristic wear model. Tribol Int 92:47–56
5. Bucca G, Collina A (2009) A procedure for the wear prediction of collector strip and contact wire in pantograph–catenary system. Wear 266:46–59
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1. Influence of arc discharge on the temperature and wear behaviors of the contact strip in pantograph-rigid catenary systems under AC conditions;Wear;2024-06
2. Experimental Study of Wear Rate Between Copper Impregnated Graphite and Copper;2023 IEEE Vehicle Power and Propulsion Conference (VPPC);2023-10-24
3. Contact point lateral speed effects on contact strip wear in pantograph – catenary interaction for railway operations under 15 kV 16.67 Hz AC systems;Wear;2021-12
4. Evaluation Method for Allowable Continuous AC Arc Current of Contact Wire;IEEJ Transactions on Industry Applications;2020-11-01
5. A heuristic wear model for the contact strip and contact wire in pantograph – Catenary interaction for railway operations under 15 kV 16.67 Hz AC systems;Wear;2020-09
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