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兵工学报 ›› 2025, Vol. 46 ›› Issue (3): 240037-.doi: 10.12382/bgxb.2024.0037

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变形可控内凹蜂窝结构抗冲击性能研究

毛光辉1, 王成1,*(), 王万里1, 徐文龙2   

  1. 1 北京理工大学 爆炸科学与安全防护全国重点实验室, 北京 100081
    2 山东大学 高等技术研究院, 山东 济南 250100
  • 收稿日期:2024-01-11 上线日期:2025-03-26
  • 通讯作者:
  • 基金资助:
    国家自然科学基金项目(12221002); 国家自然科学基金项目(12372336); 北京市自然科学基金项目(L212018)

Research on the Impact Resistance of Deformation-controllable Concave Honeycomb Structures

MAO Guanghui1, WANG Cheng1,*(), WANG Wanli1, XU Wenlong2   

  1. 1 State Key Laboratory of Explosion Science and Safety Protection, Beijing Institute of Technology, Beijing 100081, China
    2 Institute for Advanced Technology, Shandong University, Jinan 250100, Shandong, China
  • Received:2024-01-11 Online:2025-03-26

摘要:

内凹蜂窝结构因其独特的变形模式、出色的抗冲击和能量吸收特性以及轻质特点,在汽车工业、航空航天、生物医疗等领域具有广阔的应用前景。基于传统内凹六边形蜂窝结构,引入圆角设计并通过改变圆角的排布方式,提出一种基于圆角增强的变形可控内凹蜂窝结构,采用金属3D打印技术制备变形模式为Z型和Y型的变形可控蜂窝结构。为探究其抗冲击性能,开展准静态压缩和落锤冲击实验以及有限元数值模拟,分析结构的变形模式和吸能特性。研究结果表明:新提出的新型蜂窝结构实现了变形模式的可控,通过定制的Z型和Y型变形模式,显著提高了结构的吸能性能,具有良好的压溃稳定性;在同种结构下,吸能性能随着圆角半径的增大逐渐提高;随着速度的增加,结构变形模式逐渐向I型压溃演变,结构的平台力大致呈现出递增的趋势,吸能效率逐渐降低;Z型结构因其圆角的非对称排布,在多数情况下其抗冲击性能优于Y型结构。研究结果可为动态冲击作用下新型结构的耐撞性设计提供参考。

关键词: 内凹蜂窝结构, 圆角设计, 3D打印, 吸能特性, 变形模式, 动态冲击

Abstract:

The concave honeycomb structure has broad application prospects in the automotive industry,aerospace,biomedical and other fields due to their unique deformation mode,excellent impact resistance and energy absorption properties,and lightweight characteristics.Based on the traditional Concave hexagonal honeycomb structure,a deformation-controllable concave honeycomb structure based on rounded corners enhancement is proposed by introducing a rounded corner design and changing the arrangement of the rounded corners,and a deformation-controllable honeycomb structure with deformation modes of Z and Y shapes is designed and prepared using metal 3D printing technology.In order to explore its impact resistance,its deformation mode and energy absorption properties are analyzed through the quasi-static compression and drop weight impact experiments and the finite element numerical simulation.The research results show that the proposed honeycomb structure achieves controllable deformation mode and has higher crushing stability,and the energy absorption performance of the structure is significantly improved through customized Z and Y deformation modes.For the same structure,the energy absorption performance gradually improves as the fillet radius increases.As the speed increases,the structural deformation mode gradually evolves into an I type collapse,the platform force generally shows an increasing trend,and the energy absorption efficiency gradually decreases.Due to the asymmetric arrangement of the rounded corners,the Z shape structure has better impact resistance than the Y shape structure in most cases.The research results can provide reference for the crashworthiness design of new structures under dynamic impact.

Key words: concave honeycomb structure, rounded corner design, 3D printing, energy absorption property, deformation mode, dynamic impact

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