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Numerical study and experimental validation of blastworthy structure using aluminum foam sandwich subjected to fragmented 8 kg TNT blast loading

机译:用铝泡沫夹层进行碎裂8kg TNT爆破载荷的基弹性结构的数值研究与实验验证

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摘要

A blastworthy structure is defined as a structure that has the ability to deform with a controlled force and preserve sufficient residual space around the occupants to limit bodily injury during a blast impact incident. In this research, a blastworthy aluminum foam sandwich (AFS) structure that consisted of an occupant side plate (OSP), a struck side plate (SSP), and an aluminum foam (Al-foam) core were numerically and experimentally subjected to blast-fragmented loading. The explosion with high-pressure shock waves was produced by steel-covered TNT, creating a synergistic blast and fragment loading. The interaction between the blast-fragment loading and the AFS created a unique perforation pattern due to Monroe's effect. The measured blastworthiness characteristics included structural integrity, acceleration, and reaction force. A numerical modeling strategy to analyze the blastworthiness performance of the AFS structure was developed to capture the dynamic responses and the damage mechanism. Two types of blast loading, namely load blast enhanced (LBE) and smooth particle hydrodynamic (SPH) blast loading, were utilized along with the Cockcroft-Latham damage modeling on the AFS. A blast experimental setup with a fix-clamped method was used to evaluate the blastworthy characteristics of the panel to acquire the central acceleration and reaction force histories. A two-step process of experimental validation was carried out. First, a pre-test system validation with a very low explosive blast using 60 gram of TNT was conducted on the sandwich specimen to ensure the data acquisition system's functionality and to obtain comparable data for system validation. Second, a blast impact test using 8 kg of steel-covered TNT was carried out to validate the numerical modeling results. The results of the numerical analysis showed that the LBE model had good agreement with the test data for the small deformation blast impact loading with 60 gram TNT. For the large deformation blast impact loading with 8 kg TNT, the SPH models provided excellent agreement with the damage mode and dynamic responses, where the acceleration and the reaction force performances were both within 6.1% and 6.4% of the experimental validation, respectively. As for the structural performance of the AFS construction, it was observed that the sandwich panel met the structural integrity requirements. There were no cracks or fractures in the OSP. The SSP and Al-foam absorbed more than 98.3% of the blast impact energy, providing extra protection for the OSP. This research contributes to the dynamic structural-response and damage investigation of AFS subjected to fragmented 8 kg TNT blast loading.
机译:基质结构被定义为具有能够使受控力变形的能力,并在乘员周围保持足够的残余空间,以限制在爆炸冲击事件期间的身体损伤。在本研究中,由乘员侧板(OSP),撞击侧板(SSP)和铝泡沫(AL-FOAM)核构成的基质铝泡沫夹层(AFS)结构在数值上进行了数值和实验促进爆炸 - 碎片装载。具有高压冲击波的爆炸由钢覆盖的TNT制造,产生协同爆炸和片段载荷。由于门罗的效果,爆炸片段负荷和AFS之间的相互作用产生了独特的穿孔模式。测得的积极性特性包括结构完整性,加速度和反作用力。开发了一种分析AFS结构积极性能的数值建模策略,以捕获动态响应和损伤机制。使用两种类型的爆破载荷,即负载爆炸增强(LBE)和平滑粒子流体动力学(SPH)鼓风机加载,以及AFS上的Cockcroft-Latham损伤造型。用固定夹紧法进行喷射实验装置,用于评估面板的基质特性,以获得中央加速度和反作用力历史。进行了两步的实验验证过程。首先,在夹层标本上进行了使用60克TNT进行非常低的爆炸爆炸的测试系统验证,以确保数据采集系统的功能并获得系统验证的可比数据。其次,进行了使用8千克钢覆盖的TNT的爆炸冲击试验,以验证数值模拟结果。数值分析的结果表明,LBE模型与具有60克TNT的小变形冲击冲击载荷的测试数据良好。对于具有8kg TNT的大变形冲击冲击载荷,SPH模型与损坏模式和动态响应提供了很好的一致性,其中加速度和反应力性能分别在实验验证的6.1%和6.4%以内。至于AFS施工的结构性能,观察到夹层面板符合结构完整性要求。 OSP中没有裂缝或骨折。 SSP和Al-Foam吸收了超过98.3%的爆炸冲击能量,为OSP提供额外的保护。该研究有助于动态结构 - 反应和损伤对碎片8kg TNT爆炸载荷的AFS。

著录项

  • 来源
    《International journal of impact engineering》 |2020年第12期|103699.1-103699.17|共17页
  • 作者单位

    Inst Teknol Bandung Fac Mech & Aerosp Engn Lightweight Struct Res Grp Jl Ganesha 10 Bandung 40132 Indonesia;

    Inst Teknol Bandung Fac Mech & Aerosp Engn Lightweight Struct Res Grp Jl Ganesha 10 Bandung 40132 Indonesia|Natl Ctr Sustainable Transportat Technol NCSTT Jl Ganesha 10 Bandung 40132 Indonesia;

    Inst Teknol Bandung Fac Mech & Aerosp Engn Lightweight Struct Res Grp Jl Ganesha 10 Bandung 40132 Indonesia|Natl Ctr Sustainable Transportat Technol NCSTT Jl Ganesha 10 Bandung 40132 Indonesia;

    Inst Teknol Bandung Fac Mech & Aerosp Engn Lightweight Struct Res Grp Jl Ganesha 10 Bandung 40132 Indonesia;

    Inst Teknol Bandung Fac Mech & Aerosp Engn Lightweight Struct Res Grp Jl Ganesha 10 Bandung 40132 Indonesia|Natl Ctr Sustainable Transportat Technol NCSTT Jl Ganesha 10 Bandung 40132 Indonesia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Blastworthy structure; Blast experimental setup; Aluminum foam sandwich; Fragmented explosion; Steel-covered TNT;

    机译:Blastworthy结构;爆炸实验设置;铝泡沫夹层;碎片爆炸;钢覆盖的TNT;

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