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3. Numerical simulation of a moving high-current vacuum arc driven by a Transverse Magnetic Field (TMF)

4. Conditioning of series vacuum interrupters (VIs) for medium voltage by applying high-frequency (HF) current to increase the dielectric strength of VIs

5. Contact behavior in vacuum under capacitive switching duty

6. Switching of capacitive currents and the correlation of restrike and pre-ignition behavior

7. High-speed observations of arc modes and material erosion on RMF- and AMF-contact electrodes

8. Multilayer contact material based on copper and chromium material and its interruption ability

9. Breaking Operations of a Vacuum Test Interrupter Setup Using a Common Servo Drive With Belt Transmission.

10. Speed, safety and savings

11. Influence of Current Interruption Operations on Internal Pressure in Vacuum Interrupters.

12. Surface Temperature Analysis of Transversal Magnetic Field Contacts Using a Thermography Camera.

13. Resistance increase of vacuum interrupters due to high-current interruptions.

14. A Novel Vacuum Interrupter Contact Design for Improved High Current Interruption Performance Based on a Double-TMF Arc Control System.

19. Theoretical and Experimental Investigation of New Innovative TMF–AMF Contacts for High-Current Vacuum Arc Interruption.

20. Investigations of Copper Chrome Coatings on Vacuum Circuit Breaker Ceramics by Electron Probe Microanalysis and Electric Field Simulation.

21. Arcing Behavior on Different TMF Contacts at High-Current Interrupting Operations.

22. Properties of WCAg and WCCu for Vacuum Contactors.

23. Condensed Metal Vapor on Alumina Ceramic in Vacuum Interrupters.

24. Modeling and simulation of metal bellows in vacuum interrupters.

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