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火炮磁流变后坐阻尼器的设计与可控性分析
引用本文:胡红生,王炅,蒋学争,李延成,李兆春. 火炮磁流变后坐阻尼器的设计与可控性分析[J]. 振动与冲击, 2010, 29(2): 184-188. DOI:  
作者姓名:胡红生  王炅  蒋学争  李延成  李兆春
作者单位:(1.嘉兴学院机电工程学院,浙江 嘉兴 314001;2.南京理工大学机械工程学院,南京210094)
基金项目:国家自然科学基金项目,浙江省科技计划项目,嘉兴市科技计划项目,中国博士后基金项目 
摘    要:以高冲击、高速环境下的某口径火炮反后坐装置为研究对象,讨论了后坐阻力对火炮静止性和射击稳定性的影响,研究了磁流变阻尼器对火炮后坐运动的控制作用。设计了火炮磁流变后坐阻尼器及冲击试验平台;考虑冲击载荷激励下惯性力的影响,建立了火炮反后坐装置动力学模型并进行了计算仿真,对所设计长行程磁流变阻尼器进行了冲击试验,测试其在冲击载荷下的动态特性,并进行了后坐过程半实物仿真控制。试验结果表明设计的长行程火炮用磁流变阻尼器可有效抑制冲击载荷激励作用,为进一步实现火炮后坐力与行程控制的一体化设计和工程应用奠定了基础。

关 键 词:火炮   磁流变后坐阻尼器   冲击载荷   动态特性    
收稿时间:2009-01-04
修稿时间:2009-03-13

Design and controllability analysis of a gun magnetorheological recoil damper
HU Hong-sheng,WANG Jong,JIANG Xue-zheng,LI Yan-cheng,LI Zhao-chun. Design and controllability analysis of a gun magnetorheological recoil damper[J]. Journal of Vibration and Shock, 2010, 29(2): 184-188. DOI:  
Authors:HU Hong-sheng  WANG Jong  JIANG Xue-zheng  LI Yan-cheng  LI Zhao-chun
Affiliation:(1 Department of Mechanical and Electrical Engineering, Jiaxing University, Jiaxing, 314001, China;2 School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, China)
Abstract:According to gun magnetorheological (MR) recoil damper's characteristics, aiming at the recoil part of a gun system under high impact and high-speed environment, the recoil resistance force's effect on the quiescence and firing stability of the gun was studied. The controllability of a magnetorheological damper to the gun recoil part's movement was also studied. A new gun magnetorheological recoil damper was designed and developed. And a suit of real-time measuring and controlling simulation experimental platform including hardware and software for dynamic response of a gun MR recoil damper under impact load was developed. Considering the dynamic behavior of the MR damper under impact load, an in-ertia factor was introduced into the dynamic model of the recoil part of the gun system. A shock test was clone to measure the designed long-stroke MR damper's dynamic performance under impact load. To evaluate the control effect of the MR damper on the gun recoil movement during recoiling, a hardware-in-loop simulation and a test were performed. The testing results showed that the recoil's resistance and stroke of the designed gun MR recoil damper under impact load can be con-trolled by changing the applied current. The results lay a foundation for the integrated design and engineering application of the gun recoil force and stroke control.
Keywords:gun  magnetorheological (MR) recoil damper  impact load  controllability
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