首页> 外文会议>ASME international mechanical engineering congress and exposition >AN EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THICKNESS EFFECT ON CROSS-PLY GLARE 5 FML PLATES SUBJECTED TO BALLISTIC IMPACT
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AN EXPERIMENTAL AND NUMERICAL INVESTIGATION OF THICKNESS EFFECT ON CROSS-PLY GLARE 5 FML PLATES SUBJECTED TO BALLISTIC IMPACT

机译:弹道冲击力对多层玻璃5 FML板厚度影响的实验和数值研究

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摘要

GLARE 5 fiber-metal laminated (FML) plates of dimensions: 152.4 mm × 101.6 mm with various thicknesses, ranging from 1.12 mm up to 4.37 mm, were impacted by a 0.22 caliber bullet-shaped projectile using a high-speed gas gun. A high-speed camera was used to measure the projectile velocity along its ballistic trajectory. The post-impact damage characteristics were evaluated using both nondestructive ultrasonic and destructive mechanical sectioning techniques. Only the contour of the entire damage area could be obtained using ultrasonic C-scan; whereas more details of the damage were provided through the mechanical cross-sectioning technique. As expected, thicker GLARE 5 offered higher impact resistance. It was found that by increasing the specimen thickness, the damage contour increased. In addition, the results showed that for a given specimen thickness, the damage contour was maximized near its ballistic limit velocity. The 3D dynamic nonlinear finite element (FE) software, LS-DYNA, was used to validate the experimental results. Good agreement between experimental and FE results was obtained.
机译:眩光5尺寸的纤维金属层压(FML)板材:152.4 mm×101.6 mm,各种厚度,范围为1.12毫米,高达4.37毫米,使用高速气枪撞击0.22口径子弹形射弹。高速相机用于沿着突出轨迹测量弹丸速度。利用非破坏性超声波和破坏性机械切片技术评估后冲击后损伤特性。只有使用超声C扫描可以获得整个损伤区域的轮廓;虽然通过机械横截面技术提供了更多的损坏细节。正如预期的那样,较厚的眩光5提供更高的抗冲击性。结果发现,通过增加样品厚度,损坏轮廓增加。另外,结果表明,对于给定的样品厚度,损伤轮廓最大化在其弹道极限速度附近。 3D动态非线性有限元(FE)软件LS-DYNA用于验证实验结果。获得实验和Fe结果之间的良好一致性。

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