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DEFORMATION FIELDS IN WOVEN COMPOSITE PLATES UNDER IMPACT

机译:冲击作用下机织复合板的形变场

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摘要

The deformation fields and kinematics of woven composite material systems due to impact loads are analyzed and characterized for various structural parameters. Target plates comprised of woven composites with 3D preforms are considered. The analysis examines fully consolidated as well as cellular systems and simulates actual experiments. Solution of the nonlinear dynamic/contact problem was obtained by a meso-mechanics based finite element model. The results quantify experimental observations, which reveal distinct behavior under impact among nonporous and porous systems. It was found that wave propagation effects at incident energies in the order of 500 J are significant and lead to penetration at the impact face. Localized shear damage in the 3D woven system precede penetration in both the nonporous and the porous systems. The porous system is capable of dissipating more energy prior to penetration due to containment of local damage, which emanates from the void boundaries, within subsurface locations.
机译:针对各种结构参数,分析和表征了机织复合材料系统由于冲击载荷而产生的变形场和运动学。考虑了由具有3D预成型件的机织复合材料组成的目标板。该分析检查完全合并的以及蜂窝系统,并模拟实际实验。通过基于细观力学的有限元模型获得了非线性动态/接触问题的解决方案。结果量化了实验观察结果,这些结果揭示了无孔和多孔系统在冲击下的不同行为。已经发现,在入射能量为500 J数量级时,波的传播效应是显着的,并导致在冲击面上的穿透。 3D编织系统中的局部剪切损伤先于无孔和多孔系统的渗透。多孔系统能够在渗透之前消散更多的能量,这归因于地下区域内孔隙边界产生的局部破坏的抑制。

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