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Three-dimensional multiscale simulation on fracture behaviors of cylindrical shells subjected to inner pressure and surface laser irradiation

机译:内压和表面激光辐照下圆柱壳断裂行为的三维多尺度模拟

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摘要

Multiscale numerical simulation has important advantages in analyzing the partial fracture problems of shell structures subjected to the coupled thermo-mechanical effects. The multiscale time-space model of a cylindrical shell subjected to inner pressure and surface laser irradiation by coupling the three-dimensional discrete element method (DEM) and the shell finite element method was established. By simulating the crack-bifurcation extending behaviors of the aluminum alloy cylindrical shell and comparing the fracture behaviors and the calculation time by the multiscale time-space model with those by the multiscale space model of the overlapping elementode, the multiscale time-space model not only satisfies the requirement of simulation accuracy, but also enhances the calculation efficiency greatly under the condition of stable simulation. The multiscale time-space model was applied to the simulations in the fracture behaviors of the aluminum alloy and the 30CrMnSiA steel cylindrical shells under four modes of action. The failure modes of cylindrical shells under different modes of action are directly related to the radius of the laser spot, the power density of the laser, and the extensibility of material. At the same time, the damage evolution process of the cylindrical shells under four modes of action was analyzed through the crack ratio in the mesoscopic DEM elements. The multiscale time-space model provides a reliable analytical way to the complex partial fracture mechanical problems of large-scale cylindrical shell structures subjected to inner pressure and surface laser irradiation.
机译:多尺度数值模拟在分析热力耦合作用下的壳体结构局部断裂问题方面具有重要优势。通过将三维离散元法(DEM)和壳体有限元法相结合,建立了圆柱壳承受内压和表面激光辐照的多尺度时空模型。通过模拟铝合金圆柱壳的裂纹分叉扩展行为,并通过多尺度时空模型与重叠元素/节点的多尺度空间模型,多尺度时空模型的断裂行为和计算时间进行比较在稳定仿真的条件下,不仅满足了仿真精度的要求,而且大大提高了计算效率。将多尺度时空模型用于模拟铝合金和30CrMnSiA圆柱壳在四种作用方式下的断裂行为。圆柱壳在不同作用方式下的失效模式与激光光斑的半径,激光的功率密度以及材料的延展性直接相关。同时,通过介观DEM元件的裂纹率分析了四种作用方式下圆柱壳的损伤演化过程。多尺度时空模型为承受内部压力和表面激光辐照的大型圆柱壳结构的复杂局部断裂力学问题提供了可靠的分析方法。

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