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Measurements of Gun Tube Motion and Muzzle Pointing Error of Main Battle Tanks

机译:主战斗坦克枪管运动和枪口指向误差的测量

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摘要

Beginning in 1990, the US Army Aberdeen Test Center (ATC) began testing a prototype cannon mounted in a non-armored turret fitted to an M1A1 Abrams tank chassis. The cannon design incorporated a longer gun tube as a means to increase projectile velocity. A significant increase in projectile impact dispersion was measured early in the test program. Through investigative efforts, the cause of the error was linked to the increased dynamic bending or flexure of the longer tube observed while the vehicle was moving. Research and investigative work was conducted through a collaborative effort with the US Army Research Laboratory, Benet Laboratory, Project Manager – Tank Main Armament Systems, US Army Research and Engineering Center, and Cadillac Gage Textron Inc. New test methods, instrumentation, data analysis procedures, and stabilization control design resulted through this series of investigations into the dynamic tube flexure error source. Through this joint research, improvements in tank fire control design have been developed to improve delivery accuracy. This paper discusses the instrumentation implemented, methods applied, and analysis procedures used to characterize the tube flexure during dynamic tests of a main battle tank and the relationship between gun pointing error and muzzle pointing error.
机译:从1990年开始,美国军队的Aberdeen测试中心(ATC)开始测试安装在适用于M1A1 Abrams Tank底盘的非装甲炮塔中的原型大炮。加农炮设计包括更长的枪管,作为提高弹丸速度的手段。在测试计划早期测量射弹冲击分散的显着增加。通过调查努力,误差的原因与在车辆移动时较长管的动态弯曲或弯曲的增加。研究和调查工作是通过与美国陆军研究实验室,BENET实验室,项目经理 - 坦克主要武器系统,美国陆军研究和工程中心和凯迪拉克Gage Textron Inc.新的测试方法,仪器,仪器,仪器数据分析程序进行了研究和调查工作并且稳定控制设计通过这一系列的调查导致动态管弯曲误差源。通过这项联合研究,已经开发出坦克防火设计的改进以提高输送精度。本文讨论了所实施的仪器,应用方法,以及用于在主战斗箱的动态测试期间表征管弯曲的分析程序以及枪指向误差和枪口指向误差之间的关系。

著录项

  • 作者

    Peter L. McCall;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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