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兵工学报 ›› 2024, Vol. 45 ›› Issue (11): 4133-4144.doi: 10.12382/bgxb.2024.0698

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链式回转弹仓刚柔耦合动力学建模及特性分析

刘太素1,2, 尹强2,*(), 李勇3, 张云添2   

  1. 1 南京工程学院 机械工程学院, 江苏 南京 211167
    2 南京理工大学 机械工程学院, 江苏 南京 210094
    3 南京莱斯信息技术股份有限公司, 江苏 南京 210001
  • 收稿日期:2024-08-14 上线日期:2024-11-26
  • 通讯作者:
  • 基金资助:
    国家自然科学基金项目(U2341269); 南京工程学院高层次人才科研基金项目(YKJ202104)

Rigid-flexible Coupling Dynamic Modeling and Characteristics Analysis of a Rotational Chain Magazine

LIU Taisu1,2, YIN Qiang2,*(), LI Yong3, ZHANG Yuntian2   

  1. 1 School of Mechanical Engineering, Nanjing Institute of Technology, Nanjing 211167, Jiangsu, China
    2 School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China
    3 Nanjing Les Information Technology Co., Ltd., Nanjing 210001, Jiangsu, China
  • Received:2024-08-14 Online:2024-11-26

摘要:

考虑到装填系统轨道输送链具有链节大、负载大、速度大的特殊性,提出一种基于相对坐标法和板单元离散方式的刚柔耦合动力学建模方法。利用邻接体的相对运动关系推导出运动学方程及体坐标与铰坐标的转化关系,建立广义坐标为独立铰坐标的动力学方程。利用有限元方法,基于板单元理论将链节和弹筒离散化,以链节为例建立单个链节的刚柔耦合动力学方程,随后通过刚-柔运动约束形式,利用增广方程形式,建立轨道输送链系统的刚柔耦合动力学方程。基于此方法,建立某弹仓(闭式轨道输送链)轨道输送链和弹筒的刚柔耦合动力学方程,并在不同工况下将基于板单元离散的数值仿真与实验结果进行对比。基于建立的刚柔耦合动力学模型,分析弹仓传动构件支撑刚度、轨道间隙等因素对弹仓系统的影响。研究结果表明:数值仿真结果与实验结果的趋势基本一致;支撑刚度对系统动态响应的影响程度取决于动力系统的结构形式和受力形式;轨道间隙的变化对系统的动态特性具有较大的影响,在工程应用中需要合理控制间隙;上下轨道错位对弹仓动态特性影响较大,需要合理控制加工装配精度。

关键词: 火炮, 弹仓, 中厚板理论, 刚柔耦合, 动力学, 间隙, 轨道错位

Abstract:

Considering the unique characteristics of the autoloader’s rail conveyor chain, such as large chain links, heavy load and high speed, a rigid-flexible coupljng dynamic modeling method based on the relative coordinate method and the plate element discretization method is proposed. The relative motion relationships of adjacent bodies are used to derive the kinematic equations and the transformation relationship between body coordinates and hinge coordinates, thereby establishing the dynamic equations with independent hinge coordinates as generalized coordinates. The finite element method is used to discretize the chain links and cartridge cases based on plate element theory. Taking the chain link as an example, the rigid-flexible coupling dynamic equations for a single chain link are established. Subsequently, the rigid-flexible coupling dynamic equations for the rail conveyor chain system are developed by applying the rigid-flexible motion constraints in the form of augmented equations. Based on this method, the rigid-flexible coupling dynamic equations of the rail conveyor chain and cartridge cases for a certain magazine are established. The numerical simulation based on plate element discretization is then compared with experimental results under different working conditions. The effects of factors such as the support stiffness of transmission components and rail clearance on the magazine system, are analyzed by using the proposed rigid-flexible coupling dynamic model. The research results indicate that the numerically simulated results are generally consistent with the experimental results. The influence of support stiffness on the system’s dynamic response depends on the structural form and force application of the power system. The change in rail clearance has a significant effect on the system’s dynamic characteristics, thus necessitating the reasonable control of clearance in engineering applications. The misalignment of the upper and lower rails has a considerable effect on the dynamic characteristics of the magazine, requiring the reasonable control of machining and assembly accuracy.

Key words: gun, magazine, mid-thickness plate theory, rigid-flexible coupling, dynamics, clearance, rail misalignment

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