超高速撞击下航天器Nextel/Kevlar填充式防护结构的结构优化设计研究
CSTR:
作者:
作者单位:

作者简介:

通讯作者:

中图分类号:

基金项目:

空间碎片与近地小行星防御科研专项(KJSP2023020202)


Structural Optimization of Nextel/Kevlar-Filled Protective Structures under Hypervelocity Impact for Spacecraft
Author:
Affiliation:

Fund Project:

  • 摘要
  • |
  • 图/表
  • |
  • 访问统计
  • |
  • 参考文献
  • |
  • 相似文献
  • |
  • 引证文献
  • |
  • 资源附件
  • |
  • 文章评论
    摘要:

    为提升航天器在超高速撞击环境下的结构防护性能并实现轻量化设计,本文针对Nextel/Kevlar填充式防护结构,建立了包含球形弹丸与防护结构在内的三维数值模型,并对撞击过程进行了模拟.研究采用拉丁超立方采样方法,在防护结构的四个关键结构参数组成的设计空间内生成样本点,并基于LS-DYNA获取对应的动能响应数据.以动能损失为响应输出,构建克里金近似模型以高效替代显式动力学仿真.进一步,以最小化结构面密度、最大化弹丸动能损失为优化目标,采用NSGA-Ⅱ多目标遗传算法开展结构优化设计.优化结果表明,在确保防护性能的前提下,结构的面密度降低约2.56%,弹丸动能损失提升约1.91%.研究结果验证了克里金模型的预测能力及多目标优化策略的有效性.

    Abstract:

    A numerical model of a Nextel/Kevlar-filled protective structure under hypervelocity impact is developed to investigate its structural response and optimize its configuration. Four key design parameters, namely the thicknesses of the front plate, Nextel and Kevlar layers, and rear plate, are chosen as variables. Latin hypercube sampling is employed to generate sample points, and high-fidelity simulations are carried out using LS-DYNA to obtain the projectile’s kinetic energy dissipation. A Kriging surrogate model is built to approximate the simulation response with reduced computational cost. Based on the surrogate, a multi-objective optimization using the NSGA-II algorithm is performed, aiming to minimize the areal density and maximize energy dissipation. The optimized structure achieves a 2.56% reduction in areal density and a 1.91% increase in energy loss.

    参考文献
    相似文献
    引证文献
引用本文

李耀,叶科奇,朱柏洋,郭晓陶,姜宇,刘晓东.超高速撞击下航天器Nextel/Kevlar填充式防护结构的结构优化设计研究[J].动力学与控制学报,2026,24(2):26~36; Li Yao, Ye Keqi, Zhu Boyang, Guo Xiaotao, Jiang Yu, Liu Xiaodong. Structural Optimization of Nextel/Kevlar-Filled Protective Structures under Hypervelocity Impact for Spacecraft[J]. Journal of Dynamics and Control,2026,24(2):26-36.

复制
分享
相关视频

文章指标
  • 点击次数:
  • 下载次数:
  • HTML阅读次数:
  • 引用次数:
历史
  • 收稿日期:2025-08-02
  • 最后修改日期:2025-10-14
  • 录用日期:
  • 在线发布日期: 2026-02-06
  • 出版日期:
文章二维码

微信公众号二维码

手机版网站二维码