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作 者:蔡灿伟 焦贵伟 宁全利 刘闯 陈翠华 CAI Canwei;JIAO Guiwei;NING Quanli;LIU Chuang;CHEN Cuihua(Teaching and Research Section of Weapon System Technology,Army Artillery and Anti-aircraft Academy, Hefei 230031,Anhui,China;High Overload Ammunition Guidance and Information Awareness Lab, Army Artillery and Anti-aircraft Academy,Hefei 230031,Anhui,China)
机构地区:[1]陆军炮兵防空兵学院武器系统技术教研室,安徽合肥230031 [2]陆军炮兵防空兵学院高过载弹药制导控制与信息感知实验室,安徽合肥230031
出 处:《火炮发射与控制学报》2018年第3期67-70,共4页Journal of Gun Launch & Control
基 金:装备预研基金项目(9140A27020314JB91441)
摘 要:基于部队实战训练过程中某型榴弹炮出现不同射角弹丸自动装填不到位并且难以发现这一实际问题,在分析弹丸全自动装填过程的基础上,利用激光测距技术、自动控制技术和单片机技术设计了弹丸卡膛深度监控系统。介绍了系统的实现原理、总体设计和应用试验,给出了3门火炮不同状态下的弹丸卡膛深度检测结果。结果表明该设计能快速有效地完成自行榴弹炮弹丸卡膛深度的监控,为自动检测火炮全自动输弹系统工作状态是否良好以及为部队火炮装备预防性维修和勤务保障奠定了一定的理论依据。According to the actual problem that the automatic loading of the artillery projectile is not in place and difficult to find in different firing angles in the army combat training process,the bayonet-chamber depth monitoring system for the certain type of self-propelled howitzer was designed through laser ranging and automatic control and single chip processor technology based on the working principle analysis of the fully automatic transmission system.An introduction was made to the realization principle and the overall design and the application experiment of this system with the inspection results of bayonet-chamber depth for the three guns in different states given in this paper.The results show that the design can quickly and effectively complete the monitoring of self-propelled projectile bayonet-chamber depth and can lay a measure of theoretical foundation for the working condition of gun’s fully automatic system and the preventive maintenance and service support.
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