首页> 外文会议>International Symposium on Ballistics vol.1; 20070416-20; Tarragona(ES) >CALCULATED CONCRETE TARGET DAMAGE BY MULTIPLE ROD IMPACT AND PENETRATION
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CALCULATED CONCRETE TARGET DAMAGE BY MULTIPLE ROD IMPACT AND PENETRATION

机译:多杆冲击和侵彻计算的混凝土目标损伤

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The effect of enhanced crater formation has been demonstrated experimentally when multiple and delayed shaped charge jets impact and penetrate concrete. The concept for enhancement utilizes a single follow-on jet at the centerline of holes produced by multiple precursor jets penetrating the surrounding the region. Calculations of the 3D crater enhancement phenomena have been conducted with multiple rods to simulate the steady state portion of the multiple jet penetration process. It is expected that this analysis methodology will be beneficial for optimization of the multiple jet crater enhancement application. We present calculated results using ALE3D where the model uses the standard Gruneisen equation of state combined with a rate dependent strength model including material damage parameters. This study focuses on the concrete material damage model as a representation of the portion of the target that would eventually be ejected creating a large bore-hole. The calculations are compared with the experimental evidence and limitations of the modeling approach are discussed.
机译:实验证明了当多个和延迟形状的电荷射流撞击并穿透混凝土时,火山口形成增强的作用。增强的概念在由穿透周围区域的多个前体射流产生的孔的中心线处利用单个后续射流。已经用多根杆进行了3D火山口增强现象的计算,以模拟多射流穿透过程的稳态部分。可以预期,这种分析方法将有利于优化多喷口增强应用。我们使用ALE3D展示了计算结果,其中该模型使用标准的Gruneisen状态方程与速率依赖的强度模型(包括材料破坏参数)相结合。这项研究集中在混凝土材料损伤模型上,该模型代表了最终将被弹出而产生较大钻孔的目标部分。将计算结果与实验证据进行比较,并讨论了建模方法的局限性。

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