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Research for a Projectile Positioning Structure for Stacked Projectile Weapons

机译:堆叠式弹丸武器的弹丸定位结构研究

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摘要

One of the key technologies of stacked projectile weapons is projectile positioning. However, the present projectile positioning structures have their respective advantages and shortcomings. A new structure based on the self-locking principle is put forward in this paper and verified as feasible by static analysis if the proper material and structural parameters are chosen. In order to check the strength and verify the feasibility of the structure under launch conditions, the multibody contact finite element model of the structure is established, coupled with dynamic load in the interior ballistic cycle. According to simulations and analysis, the projectile positioning structure is feasible and the strength of the projectile can meet the strength requirement for launch conditions. For different maximum static friction coefficients, simulations show that an increase in the maximum static friction coefficient between the contact surfaces of the positioning ring and barrel improves the positioning performance, but an increase in the maximum static friction coefficient between the contact surfaces of the positioning ring and projectile worsens. On the basis of great computation, it is found that an increase in the upper thickness and height of the positioning ring improves the positioning performance, but an increase in the lower thickness worsens the positioning performance. Further, a lower thickness affects the positioning performance more greatly. As a result, the positioning ring will be thin and light to improve the positioning performance. Compared with other positioning structures, the new structure has little influence on the ballistic performance and is a good application prospect.
机译:堆叠式射弹武器的关键技术之一是射弹定位。然而,目前的弹丸定位结构具有其各自的优点和缺点。提出了一种基于自锁原理的新结构,并通过选择适当的材料和结构参数,通过静态分析证明是可行的。为了在发射条件下检查强度并验证结构的可行性,建立了结构的多体接触有限元模型,并结合了内部弹道循环中的动态载荷。根据仿真分析,弹丸的定位结构是可行的,弹丸的强度可以满足发射条件的强度要求。对于不同的最大静摩擦系数,仿真显示,定位环和镜筒接触表面之间的最大静摩擦系数的增加会改善定位性能,但定位环接触表面之间的最大静摩擦系数会增加弹丸恶化。基于大量的计算,发现定位环的上部厚度和高度的增加改善了定位性能,但是下部厚度的增加使定位性能变差。此外,较低的厚度对定位性能的影响更大。结果,定位环将薄而轻,以提高定位性能。与其他定位结构相比,新结构对弹道性能影响不大,具有良好的应用前景。

著录项

  • 来源
    《Journal of Applied Mechanics》 |2011年第5期|p.1-7|共7页
  • 作者

    Qiao Luo and Xiaobing Zhang;

  • 作者单位

    College of Energy and Power, Nanjing University of Science and Technology, Nanjing 210094, China;

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  • 原文格式 PDF
  • 正文语种 eng
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