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A computational study of the overload characteristic curves of projectile penetrating concrete

机译:弹丸侵彻混凝土过载特性曲线的计算研究。

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In the present paper, a concrete material is taken as a studying object, both the No. 16 and the JHC constitutive models in LS-DYNA commercial software are used because the parameters of both models are comparatively easy to obtain. The results show that, computational maximum value and the width of the overload curves are good agreement with experimental curves by using these two models in the Lagrange method. With increasing penetrating depth, the ramp and down slopes of the overload curves by computing is increasingly agreement with experimental curves. The JHC model is better to compute overload curves in the Lagrange method. The Lagrange method is also used to compute the penetration of multilayer concrete plate. It is found that, the peak value of acceleration goes down with increasing penetrating layers; this decreasing peak value depends on layer thickness and the strength. Acceleration value between layers will go to zero; this trend is agreement with experiments.
机译:本文以混凝土材料为研究对象,由于这两个模型的参数比较容易获得,因此使用LS-DYNA商业软件中的No.16模型和JHC本构模型。结果表明,在拉格朗日方法中使用这两个模型,计算的最大值和过载曲线的宽度与实验曲线吻合良好。随着穿透深度的增加,通过计算得出的过载曲线的斜率和斜率与实验曲线越来越吻合。 JHC模型更好地以Lagrange方法计算过载曲线。拉格朗日方法还用于计算多层混凝土板的穿透力。发现,随着穿透层的增加,加速度的峰值减小。该降低的峰值取决于层厚度和强度。层之间的加速度值将为零;这种趋势与实验相符。

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