首页> 外文期刊>Journal of Composites Science >Numerical Analysis of Filament Wound Cylindrical Composite Pressure Vessels Accounting for Variable Dome Contour
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Numerical Analysis of Filament Wound Cylindrical Composite Pressure Vessels Accounting for Variable Dome Contour

机译:可变圆顶轮廓核对灯丝圆柱形复合压力容器数值分析

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In this work, the stress distribution along cylindrical composite pressure vessels with different dome geometries is investigated. The dome contours are generated through an integral method based on shell stresses. Here, the influence of each dome contour on the stress distribution at the interface of the dome-cylinder is evaluated. At first, the integral formulation for dome curve generation is presented and solved for the different dome contours. An analytical approach for the calculation of the secondary stresses in a cylindrical pressure vessel is introduced. For the analysis, three different cases were investigated: (i) a polymer liner; (ii) a single layer of carbon-epoxy composite wrapped on a polymer liner; and (iii) multilayer carbon-epoxy pressure vessel. Accounting for nonlinear geometry is seen to have an effect on the stress distribution on the pressure vessel, also on the isotropic liner. Significant secondary stresses were observed at the dome-cylinder interface and they reach a maximum at a specific distance from the interface. A discussion on the trend in these stresses is presented. The numerical results are compared with the experimental results of the multilayer pressure vessel. It is observed that the secondary stresses present in the vicinity of the dome-cylinder interface has a significant effect on the failure mechanism, especially for thick walled cylindrical composite pressure vessel. It is critical that these secondary stresses are directly accounted for in the initial design phase.
机译:在这项工作中,研究了沿着圆柱形复合容器的应力分布,具有不同的圆顶几何形状。通过基于壳应力的整体方法产生圆顶轮廓。这里,评估每个圆顶轮廓对圆顶缸的界面处的应力分布的影响。首先,为不同的圆顶轮廓提出并解决了圆顶曲线生成的整体配方。介绍了用于计算圆柱形压力容器中的次要应力的分析方法。对于分析,研究了三种不同的病例:(i)聚合物衬里; (ii)单层碳 - 环氧复合材料包裹在聚合物衬里; (iii)多层碳 - 环氧压力容器。对于非线性几何形状的核算是对压力容器上的应力分布的影响,也在各向同性衬垫上产生影响。在圆顶缸界面处观察到显着的二次应力,并且它们在距界面的比距离处达到最大值。提出了关于这些压力的趋势的探讨。将数值结果与多层压力容器的实验结果进行比较。观察到圆顶缸界面附近存在的二次应力对故障机构具有显着影响,特别是对于厚壁圆柱形复合压力容器。重要的是,这些二次应力直接占初始设计阶段。

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