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Experimental and numerical comparisons of ballistic impact behaviors between 3D angle-interlock woven fabric and its reinforced composite

机译:3D角度互锁机织织物及其增强复合材料弹道冲击行为的实验和数值比较

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摘要

This paper compares the ballistic impact damage behaviors between the three-dimensional angle-interlock woven fabric and its reinforced composite (three-dimensional angle interlock woven composite) under various ballistic strike velocities based on experimental and numerical finite element analysis. In experiments, the residual velocities of projectiles were recorded to compare their ballistic proof properties undergoing different impact loading conditions. Furthermore, the ultimate damage morphologies of both types of materials were also compared to deduce the specific ballistic impact performance and energy absorption mechanisms between the three-dimensional angle interlock woven fabric and three-dimensional angle interlock woven composite. It was found that the three-dimensional angle interlock woven composite has absorbed more energy than the three-dimensional angle interlock woven fabric under the “high” ballistic velocities (higher than 350 m/s). And it shows the opposite phenomena under the “low” ballistic velocities (lower than 350 m/s). In finite element analysis, the simplified finite element models were established for both materials to characterize the critical importance of resin matrix in transferring and dissipating the high velocity impact energy. Especially for three-dimensional angle interlock woven composite, the impact energy was transferred to the large area during a relatively short period of time, thereby resulting in an overall bearing capacity of the composite structure, therefore absorbed most of the impact energy, which was well applied to explain the experimental results.
机译:通过实验和数值有限元分析,比较了在各种弹道打击速度下三维角互锁织物及其增强复合材料(三维角互锁编织复合材料)之间的冲击冲击破坏行为。在实验中,记录了弹丸的残余速度,以比较它们在不同冲击载荷条件下的防弹性能。此外,还比较了两种材料的最终损伤形态,以推论三维角互锁编织物与三维角互锁编织物之间的特定弹道冲击性能和能量吸收机理。发现在“高”弹道速度(高于350μm/ s)下,三维角互锁编织复合材料比三维角互锁编织织物吸收更多的能量。它显示了在“低”弹道速度(低于350μm/ s)下的相反现象。在有限元分析中,为这两种材料建立了简化的有限元模型,以表征树脂基体在传递和消散高速冲击能量中的至关重要性。特别是对于三维角互锁编织复合材料,冲击能量在相对较短的时间内转移到了较大的区域,从而导致复合结构的整体承载能力,因此吸收了大部分的冲击能量,这很好用来解释实验结果。

著录项

  • 来源
    《Journal of Industrial Textiles》 |2019年第6期|1044-1058|共15页
  • 作者

    Pibo Ma; Limin Jin; Liwei Wu;

  • 作者单位

    College of Textiles and Clothing, Jiangnan University, Wuxi, China|Key Laboratory of High Performance Fibers & Products, Donghua University, Shanghai, China|Hubei Key Laboratory of Advanced Textile Materials & Application, Wuhan Textile University, Wuhan, China;

    Hubei Key Laboratory of Advanced Textile Materials & Application, Wuhan Textile University, Wuhan, China|Chinese Academy of Science, Shanghai Institute of Applied Physics, Shanghai, China;

    College of Textiles and Clothing, Jiangnan University, Wuxi, China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Three-dimensional angle-interlock woven fabric/composite; ballistic-proof behaviors; finite element analysis;

    机译:三维角互锁机织物/复合材料;防弹性能;有限元分析;

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