Volume 49 Issue S1
Sep.  2020
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Fei Guobiao, Jin Yong, Chen Xinmei. Optimal design of infrared sight vibration absorption system[J]. Infrared and Laser Engineering, 2020, 49(S1): 20200188. doi: 10.3788/IRLA20200188
Citation: Fei Guobiao, Jin Yong, Chen Xinmei. Optimal design of infrared sight vibration absorption system[J]. Infrared and Laser Engineering, 2020, 49(S1): 20200188. doi: 10.3788/IRLA20200188

Optimal design of infrared sight vibration absorption system

doi: 10.3788/IRLA20200188
  • Received Date: 2020-04-13
  • Rev Recd Date: 2020-05-11
  • Publish Date: 2020-09-22
  • The vibration absorption system of the infrared sight is very important for the infrared sight to bear high impact. The vibration absorption effect directly affects the shooting accuracy and reliability of the weapon. Based on response surface method, the parametric modeling and finite element analysis of the infrared sight and its vibration absorption were carried out in ANSYS Workbench. The response surface curve of the maximum displacement response of the vibration absorption system to the structural parameters was simulated under the impact load of 200 g, and then the sensitivity of the structural parameters of the vibration absorption connection device to the maximum displacement response was set:the change rate of the maximum displacement response to the structural parameters, which judged the sensitivity of the maximum displacement response to the structural parameters and guided the direction of optimization. The influence of structural parameters such as width, height and thickness of leaf spring on the maximum displacement response was optimized. The results showed that the width of leaf spring group was the most sensitive parameter. The results of optimization analysis could be directly used to guide the structural design of the vibration absorption system of infrared sight.
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    [2] Cheng Gang, Zhang Yijun, Sun Yong, et al. Shock absorber for photoelectric stabilized aiming platform[J]. Applied Optics, 2002, 23(3):39-41. (in Chinese)成刚, 张一军, 孙勇, 等. 光电稳瞄平台用减振器[J]. 应用光学, 2002, 23(3):39-41.
    [3] Yang Yanni. Research on vibration reduction technology of airborne stabilized aiming system[J]. Science and Technology Information, 2011, 29:437-438. (in Chinese)杨艳妮. 机载稳瞄系统减振技术研究[J]. 科技信息, 2011, 29:437-438.
    [4] Zhao B, Cao J, Yang H, et al. Study on NNPID-based adaptive control for electro-optical gyro stabilized platform[C]//International Conference on Mechatronic Sciences, Electric Engineering and Computer. IEEE, 2014:348-352.
    [5] Zhang Runfeng. Research on control system of gyro stabilized pod[D]. Harbin:Harbin University of Technology, 2014. (in Chinese)张润丰. 陀螺稳定吊舱控制系统研究[D]. 哈尔滨:哈尔滨工业大学, 2014.
    [6] Wang Chunyang, Zhao Shangqi, Shi Hongwei, et al. Linear active disturbance rejection control of airborne photoelectric stabilized aiming platform[J]. Infrared and Laser Engineering, 2019, 48(12):1213002. (in Chinese)王春阳, 赵尚起, 史红伟, 等. 机载光电稳瞄平台的线性自抗扰控制[J]. 红外与激光工程, 2019, 48(12):1213002.
    [7] Wei Chuanxin, Chen Hongda, Yin Dayi, et al. Optimization design of cross-spring compliant micro-displacement mechanism based on RSM[J]. Infrared and Laser Engineering, 2016, 45(10):1018005. (in Chinese)魏传新, 陈洪达, 尹达一, 等. 基于响应面法的交叉簧片铰链微位移机构优化设计[J]. 红外与激光工程, 2016, 45(10):1018005.
    [8] Hu Junfeng, Xu Guiyang, Hao Yazhou, et al. Multi objective optimization of micro-manipulation stage based on response surface method[J]. Infrared and Laser Engineering, 2015, 44(4):1096-1104. (in Chinese)胡俊峰, 徐贵阳, 郝亚洲, 等. 基于响应面法的微操作平台多目标优化[J]. 红外与激光工程, 2015, 44(4):1096-1104.
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Optimal design of infrared sight vibration absorption system

doi: 10.3788/IRLA20200188
  • 1. College of Artificial Intelligence, Wuchang University of Technology, Wuhan 430200, China;
  • 2. Wuchang Sansheng Precision Machinery Technology Co., Ltd, Wuhan 430000, China;
  • 3. School of Energy and Power Engineering, Wuhan University of Technology, Wuhan 430063, China;
  • 4. Wuhan Institute of Shipbuilding Technology, Wuhan 430050, China

Abstract: The vibration absorption system of the infrared sight is very important for the infrared sight to bear high impact. The vibration absorption effect directly affects the shooting accuracy and reliability of the weapon. Based on response surface method, the parametric modeling and finite element analysis of the infrared sight and its vibration absorption were carried out in ANSYS Workbench. The response surface curve of the maximum displacement response of the vibration absorption system to the structural parameters was simulated under the impact load of 200 g, and then the sensitivity of the structural parameters of the vibration absorption connection device to the maximum displacement response was set:the change rate of the maximum displacement response to the structural parameters, which judged the sensitivity of the maximum displacement response to the structural parameters and guided the direction of optimization. The influence of structural parameters such as width, height and thickness of leaf spring on the maximum displacement response was optimized. The results showed that the width of leaf spring group was the most sensitive parameter. The results of optimization analysis could be directly used to guide the structural design of the vibration absorption system of infrared sight.

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