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Numerical simulations of impact behaviour of thin steel plates subjected to cylindrical, conical and hemispherical non-deformable projectiles

机译:圆柱,圆锥和半球形不可变形弹丸作用下薄钢板冲击行为的数值模拟

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摘要

In this paper, a numerical study of normal perforation of thin steel plates impacted by different projectile shapes is reported. The numerical simulations of this problem have been performed using a finite element code, ABAQUS-Explicit with a fixed and an adaptive mesh for the plate. To define the thermoviscoplastic behaviour of the material constituting the plate, the Johnson-Cook model has been used. This homogeneous behaviour has been coupled with the Johnson-Cook fracture criterion to predict completely the perforation process. Three kinds of projectile shape (blunt, conical and hemispherical) have been simulated with a large range of impact velocities from 190 to 600 m/s. The analysis considers the influence of adiabatic shear bands, plastic work and the gradient of temperature generated in the plate. The numerical results predict correctly the behaviour projectile-plate in agreement with experimental data published by other authors.
机译:本文报道了受不同弹丸形状影响的薄钢板正常穿孔的数值研究。已经使用有限元代码ABAQUS-Explicit对板进行了固定和自适应网格的数值模拟。为了定义构成板的材料的热粘塑性行为,使用了Johnson-Cook模型。这种均匀的行为与Johnson-Cook断裂判据相结合,可以完全预测射孔过程。模拟了三种弹丸形状(钝形,圆锥形和半球形),其冲击速度范围从190到600 m / s不等。分析考虑了绝热剪切带,塑性功和板中产生的温度梯度的影响。数值结果与其他作者发表的实验数据一致,正确预测了弹丸板的行为。

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