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Progressive Damage and Fracture of Unstiffened and Stiffened Composite Pressure Vessels

机译:未加筋和加筋的复合压力容器的渐进式损伤和断裂

摘要

Structural durability and damage tolerance characteristics of pressurized graphite/epoxy laminated thin composite cylinders are investigated via computational simulation. Both unstiffened and integral hoop stiffened cylinders are considered. A computer code is utilized for the simulation of composite structural degradation under loading. Damage initiation, growth, accumulation, and propagation to structural fracture are included in the simulation. The increase of burst pressure due to hoop stiffening is quantified. Results demonstrate the significance of the type and size of local defects on the structural durability of pressurized composite cylindrical shells.
机译:通过计算仿真研究了加压石墨/环氧层压薄复合圆柱体的结构耐久性和损伤耐受特性。同时考虑了未加强型和整体箍式加强圆柱体。利用计算机代码来模拟载荷作用下的复合结构退化。模拟中包括损伤的引发,增长,累积和传播至结构性断裂。量化由于环向刚度引起的爆裂压力的增加。结果表明,局部缺陷的类型和大小对加压复合圆柱壳的结构耐久性具有重要意义。

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