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Thick AA7020-T651 plates under ballistic impact of fragment-simulating projectiles

机译:片段模拟弹丸弹道冲击下的AA7020-T651厚板

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摘要

The ballistic performance of an Al alloy AA7020-T651 (AlZn4.5Mg1, 3.4335) against fragment-simulating projectiles (FSPs) is investigated at impact velocities between 900 m/s and 1500 m/s. The target plates are considered as thick regarding the ratio between the specimen thickness (40 mm) and the projectile diameter (20 mm). With increasing impact velocities, the observed failure modes of the target plates change from plugging to discing. The stress state leading to the discing formation has been described and numerically modeled by the Lagrangian approach. In order to understand the mechanisms that occur in the material under highly dynamic loadings, its mechanical, thermal and micro-structural properties are discussed. The experimental conditions (thick target, penetrator of a specific shape, high-velocity impacts) allow the authors to draw conclusions, which are complementary to those that resulted from investigations of semi-thick and thin target plates under ballistic impacts in a lower velocity range. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在冲击速度为900 m / s至1500 m / s的情况下,研究了AA7020-T651铝合金(AlZn4.5Mg1,3.4335)对碎片模拟弹丸(FSP)的弹道性能。就试样厚度(40 mm)和弹丸直径(20 mm)之间的比率而言,目标板被认为是较厚的。随着冲击速度的增加,观察到的目标板的破坏模式从堵塞变为盘状。拉格朗日方法已经描述了导致盘状形成的应力状态并对其进行了数值建模。为了理解在高动态载荷下材料中发生的机理,讨论了其机械,热和微观结构特性。实验条件(厚靶,特定形状的穿透器,高速撞击)使作者得出结论,这些结论与在较低速度范围内在弹道撞击下研究半厚和薄靶板所得出的结论是互补的。 (C)2015 Elsevier Ltd.保留所有权利。

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