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重复发射下铝沉积层对枢轨界面滑动电接触的影响

邢泽西 王健 李鸿剑 韩智云 李庆民

电工技术学报2025,Vol.40Issue(10):3044-3055,12.
电工技术学报2025,Vol.40Issue(10):3044-3055,12.DOI:10.19595/j.cnki.1000-6753.tces.240746

重复发射下铝沉积层对枢轨界面滑动电接触的影响

Influence of Aluminum Deposition Layers on Sliding Electrical Contact at the Pivot-Rail Interface under Repetitive Emission

邢泽西 1王健 1李鸿剑 1韩智云 1李庆民1

作者信息

  • 1. 新能源电力系统全国重点实验室(华北电力大学)北京 102206
  • 折叠

摘要

Abstract

The electromagnetic rail launch process exists in high current,ultra-high speed,high temperature-rise,strong friction,and extreme impact conditions.The high heat generated causes the surface of the aluminum armature to melt,resulting in a transition at the pivot-rail interface from solid-solid electrical contact to a solid-liquid-solid melt process.Eventually,molten aluminum solidifies on the rail surface,forming a complex deposition layer.This deposition layer has implications for the performance of the pivot rail system during subsequent launches.The operational environment characterized by ultra-high-speed friction during repeated launches results in a low melting point in the armature.A portion of molten material forms a liquid transferred onto the rail,enhancing the interface and diminishing the electromagnetic rail's longevity.Consequently,it is imperative to investigate the impact of the aluminum deposition layer on the sliding electrical contact at the pivot-rail interface. This study conducted small-diameter electromagnetic launching tests with varying launching times to examine the carrier friction wear behavior of the friction sub-material of the pivot rail.The results revealed that a significant amount of molten aluminum was transferred to the rail surface after multiple launches,increasing the roughness of the pivot-rail interface due to the residual deposit layer.As a result,the pivot-rail friction sub-contact deteriorated,characterized by organizational features such as gouges and cracks on the rail surface.The wear intensity escalated with an increase in the number of launches.However,after a certain number of launches,the aluminum alloy oxide layer on the rail surface reached a critical thickness,reducing the wear on the rail body.Nonetheless,mechanical and electrical wear simultaneously intensified the environmental conditions at the pivot-rail contact surface. Finally,a liquid film fusion deposition model at the pivot-rail interface was developed,and the deposited layer's impacts on the operational dynamics of the liquid film and the electrical contact condition of the pivot-rail interface were studied.The study involved the calculation of the thickness of the deposited layer and the deposition efficiency for varying launch times.During high-speed launches,the aluminum liquid layer experienced significant viscous forces,and pronounced velocity variations of the liquefied layer at the armature tail exit increased viscous dissipation forces.With multiple launches,heightened interfacial friction can counteract the viscous forces within the aluminum liquid layer,destabilizing the interfacial liquid film.Thickening the aluminum deposition layer on the rail surface can exert extrusion effects on the liquid film,introducing destabilizing factors to the flow of the liquefied layer.Consequently,the aluminum liquid layer,which serves as a lubricant between the armature and the rail,may be extruded from the interface.Therefore,the armature's normal operation is compromised,and the rail's longevity is diminished.

关键词

电磁发射/重复发射/铝沉积层/弹流润滑模型/摩擦磨损

Key words

Electromagnetic launch/repeated launch/aluminum deposits/elastic flow lubrication model/friction wear

分类

动力与电气工程

引用本文复制引用

邢泽西,王健,李鸿剑,韩智云,李庆民..重复发射下铝沉积层对枢轨界面滑动电接触的影响[J].电工技术学报,2025,40(10):3044-3055,12.

基金项目

国家自然科学基金(92266109,52207153)和中央高校基本科研业务费专项资金(2023JC005)资助项目. (92266109,52207153)

电工技术学报

OA北大核心

1000-6753

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