@article{Liu2026, 
author = {Luyao Liu and Hongshun Liu and Pengfei Lu and Jingtong Feng and Haoxi Cong and Li Zhang},
title = {Rail damage patterns and contact state evolution characteristics of electromagnetic launch},
year = {2026},
journal = {Friction},
keywords = {contact state, electrothermal characteristics, electromagnetic launch, rail damage},
url = {https://www.sciopen.com/article/10.26599/FRICT.2025.9441211},
doi = {10.26599/FRICT.2025.9441211},
abstract = {Rail damage characteristics are crucial factors affecting the contact quality in electromagnetic launch, while interface current and temperature are critical parameters determining the contact state. To improve launch quality and guide equipment design, this work establishes an electromagnetic launch experimental and testing platform to analyze rail surface damage patterns. Based on the experimental results, simulation models for different contact states are constructed, and the interface electrothermal characteristic distribution is calculated. The results indicate that mechanical friction occurs initially between the armature and rail, followed by the formation of a liquid metal film under the action of high temperature, which not only reduces surface roughness but may also trigger gap discharge. The increased peak value of the pulse current and the number of launches exacerbate the damage. During the launch process, the current density and high-temperature areas are primarily concentrated at the rear end of the armature–rail contact surface and in regions with high curvature, with abrupt changes observed at phase transition points. Finally, based on the variation in contact resistance, optimization strategies are proposed for the front, middle, and rear segments of the rail.}
}