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Experimental and numerical investigation of the strain response of the filament wound pressure vessels subjected to pressurization test

机译:对加压试验的长丝缠绕压力容器应变响应的实验性和数值研究

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摘要

This article presents the strain response of glass fiber reinforced epoxy matrix pressure vessels subjected to pressurization test. Three filament wound composite pressure vessels with different dimensions are manufactured by fiber winding processing, and the pressurization tests of these pressure vessels are performed. The stain of the inner/outer surface of the vessels during the pressurization tests is recorded. A progressive damage model is built based on the 3D Hashin failure criteria by finite element method (FEM) to predict the strain response of the composite pressure vessels. Fundamental mechanical tests that including the tensile, double cantilever beam, and three-point end notched flexure tests of the composite laminates are carried out to determine the strength and stiffness parameters used in the FEM. The results show that the circumferential strain of the three composite pressure vessels is greater than the longitudinal strain. The maximum stress and strain occurs at the head of the pressure vessels. The predictions of FEM match the experimental results well, and the strain differences between FEM and experiments of the pressure vessels are less than 12%.
机译:本文介绍了经受加压试验的玻璃纤维增​​强环氧基质压力容器的应变响应。采用纤维绕组处理制造具有不同尺寸的三根灯缠绕复合压力容器,进行这些压力容器的加压试验。记录了在加压试验期间容器的内/外表面的污渍。通过有限元方法(FEM)基于3D Hashin故障标准构建渐进式损坏模型,以预测复合压力容器的应变响应。进行基本机械测试,包括张拉伸,双悬臂梁和三点末端的复合层压板的挠性弯曲试验,以确定有限元的强度和刚度参数。结果表明,三个复合压力容器的圆周应变大于纵向菌株。在压力容器的头部发生最大应力和应变。对有限元的预测匹配实验结果良好,有限元和压力容器的实验之间的应变差异小于12%。

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