首页> 外文会议>International Conference on Shock Impact Loads on Structures >NUMERICAL SIMULATION OF DYNAMIC RESPONSES OF DISCRETE MULTILAYERED WOUND RIBBON VESSELS SUBJECTED TO INTERNAL EXPLOSION LOADING
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NUMERICAL SIMULATION OF DYNAMIC RESPONSES OF DISCRETE MULTILAYERED WOUND RIBBON VESSELS SUBJECTED TO INTERNAL EXPLOSION LOADING

机译:离散多层伤口带状血管动态响应的数值模拟,其内部爆炸载荷

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The dynamic responses of the discrete multilayered wound ribbon vessels(DMWRVs) subjected to internal explosion loading are numerically simulated using the code LS-DYNA3D. Three types of DMWRVs with different winding angles including 10°, 15°and 20°are investigated. The sizes and material parameters of the finite element models(FEMs) of vessels are identical to those of the vessels which were experimentally studied. All components of vessels are modeled by elasticplastic constitute material. The effect of strain rate and interlayer friction on FEMs are considered. Hexahedron brick elements and quadrilateral shell elements are employed in the FEMs. To verify the FEMs developed, the numerical results are compared with these of experiments and theoretical analysis. In addition, numerical results of DMWRVs are also compared with these of a monobloc thick-walled high pressure vessel. Numerical results show that the bigger winding angle is, the bigger the residual displacement of outermost layer is when DMWRVs are loaded using the same equivalent weight TNT. It is also found that the DMWRV has excellent property of explosion assistance, which there is not for the monobloc thick-walled high pressure vessel. The results are valuable to establish design criteria of the explosion containment vessels.
机译:使用代码LS-DYNA3D进行数值模拟经过内部爆炸载荷的离散多层伤口带状血管(DMWRV)的动态响应。研究了具有10°,15°和20°的不同绕组角度的三种类型的DMWRV。容器的有限元模型(FEMS)的尺寸和材料参数与实验研究的血管相同。血管的所有组分都是通过弹性平移构成材料的建模。考虑应变率和层间摩擦对有限元的影响。 Hexahedron砖元件和四边形壳体元件在FEM中使用。为了验证开发的有限元件,将数值结果与实验和理论分析进行比较。另外,与这些单卵厚壁的高压容器相比,DMWRV的数值结果也被比较。数值结果表明,更大的绕组角度是,最外层的剩余位移越大是使用相同的等效权重TNT加载DMWRV时的剩余位移。还发现DMWRV具有优异的爆炸援助性质,其中不适用于单卵厚壁的高压容器。结果是建立爆炸堆积船舶的设计标准有价值。

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