首页> 外文会议>International symposium on ballistics >CONSISTENT CONSTITUTIVE MODELING OF METALLIC TARGET PENETRATION USING EMPIRICAL, ANALYTICAL, AND NUMERICAL PENETRATION MODELS
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CONSISTENT CONSTITUTIVE MODELING OF METALLIC TARGET PENETRATION USING EMPIRICAL, ANALYTICAL, AND NUMERICAL PENETRATION MODELS

机译:使用经验,分析和数值渗透模型的金属靶渗透的一致结构构建

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Using the fit for L/D = 10 projectiles penetrating steel targets, an effective flow stress (EFS) for the target can be computed for any matched pair of experimental velocity and penetration data. The so-derived empirical EFS has previously been shown to have value in analytical analysis. For numerical analysis the EFS is taken to be the stress threshold in an elastic/perfectly plastic (Von Mises) strength model. The Johnson-Cook (JC) constitutive (strength) model, also used in numerical modeling, was taken as a baseline. The numerical analyses of L/D = 10 tungsten projectiles penetrating HzB,A steel targets using JC and Von Mises/EFS strength models matched Hohler-Stilp experimental data closely in the velocity range 1,000 to 2,000 m/s. Using the EFS in empirical, analytical, and numerical calculations yields consistent modeling of metallic target penetration.
机译:使用适用于L / D = 10射弹穿透钢靶,可以计算目标的有效流量应力(EFS),用于任何匹配的一对实验速度和渗透数据。先前已显示所以衍生的经验EFS在分析分析中具有值。对于数值分析,EFS在弹性/完美塑料(VONMES)强度模型中以应力阈值被视为应力阈值。 Johnson-Cook(JC)本构模型也用于数值建模,被视为基线。 L / D = 10钨丸穿过HZB的数值分析,一种使用JC和VON MISES / EFS强度模型的钢目标与Hohler-STILP实验数据密切相关,速度范围为1,000至2,000米/秒。使用EFS在经验,分析和数值计算中产生一致的金属靶渗透建模。

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