火炮发射与控制学报
火砲髮射與控製學報
화포발사여공제학보
GUNLAUNCH & CONTROL JOURNAL
2014年
3期
11-15
,共5页
邢彦昌%吕庆敖%李治源%向红军%朱仁贵
邢彥昌%呂慶敖%李治源%嚮紅軍%硃仁貴
형언창%려경오%리치원%향홍군%주인귀
电磁发射%轨道炮%发射性能%有限元分析%SAM值%载流极限
電磁髮射%軌道砲%髮射性能%有限元分析%SAM值%載流極限
전자발사%궤도포%발사성능%유한원분석%SAM치%재류겁한
electromagnetic launching%railguns%launching performance%finite element analy-sis%SAM value%current-carrying margin
电磁轨道炮可以超高速发射宏观弹丸,目前制约轨道炮的关键技术之一是电流不均匀特性及其引起的最大电流密度欧姆加热至材料局部熔化。在分析了制约电流不均匀分布的趋肤效应和短路径聚集特性的基础上,设计了电流比较均匀的电枢和轨道结构,参考SAM值和仿真结果,获得了在局部熔化限制条件下最大承载电流的近似取值。根据该位形最大承载电流近似取值,参考电磁轨道炮物理学原理,分析了优化位形发射不同载荷情况下弹丸的理论速度分布及加速距离分布。上述结果对分析电磁轨道炮极限性能以及军事应用前景有重要参考意义。
電磁軌道砲可以超高速髮射宏觀彈汍,目前製約軌道砲的關鍵技術之一是電流不均勻特性及其引起的最大電流密度歐姆加熱至材料跼部鎔化。在分析瞭製約電流不均勻分佈的趨膚效應和短路徑聚集特性的基礎上,設計瞭電流比較均勻的電樞和軌道結構,參攷SAM值和倣真結果,穫得瞭在跼部鎔化限製條件下最大承載電流的近似取值。根據該位形最大承載電流近似取值,參攷電磁軌道砲物理學原理,分析瞭優化位形髮射不同載荷情況下彈汍的理論速度分佈及加速距離分佈。上述結果對分析電磁軌道砲極限性能以及軍事應用前景有重要參攷意義。
전자궤도포가이초고속발사굉관탄환,목전제약궤도포적관건기술지일시전류불균균특성급기인기적최대전류밀도구모가열지재료국부용화。재분석료제약전류불균균분포적추부효응화단로경취집특성적기출상,설계료전류비교균균적전추화궤도결구,삼고SAM치화방진결과,획득료재국부용화한제조건하최대승재전류적근사취치。근거해위형최대승재전류근사취치,삼고전자궤도포물이학원리,분석료우화위형발사불동재하정황하탄환적이론속도분포급가속거리분포。상술결과대분석전자궤도포겁한성능이급군사응용전경유중요삼고의의。
Electromagnetic launcher can accelerate a macroscopic proj ectile to the hyperveloci-ty.At present,the nonuniform current distribution and thus caused material locally melt,is one of the key techniques that restrict the development of the electromagnetic launcher.The theories of the Skin Effect and the Short Path Priority were analyzed.Based on these theories, the structure of the armature and rails were designed and improved in order to make the current distribution more uniform.Then the current density distribution of electromagnetic launcher model was simulated by use of Maxwell 14.0.With the help of comparing the simulation re-sults with the SAM value,an approximate current value was acquired under the condition of lo-cal melting restriction.This current value was the maximum value the armature can carry be-fore locally melting.According to this value and the theory of electromagnetic launcher,the theoretical velocity and acceleration distance of proj ectile under different load conditions were calculated.These results have reference significances for analyzing the launcher performance of railguns and its prospect of military application.