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Shape Factors for Irregular Glass Reinforced Plastic Pipes - An Analytical and Numerical Approach

机译:不规则玻璃纤维增​​强塑料管的形状因子-解析和数值方法

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This paper presents the development of a mathematical model based on curved beam theory of composite pipes with irregular shapes under diametral loading. The analytical solution was validated through finite element models of the same pipe shapes under similar loading conditions. Four shapes (circular, elliptical, rectangular, and egg shaped pipes) were considered in this study. The analytical and finite element results were used to estimate the shape factor defined by the ratio of the maximum tangential stress of an irregular shape over the maximum tangential stress for a circular pipe. Comparison of the load-deflection curves for the four different shapes revealed that the egg pipe is the stiffest among the rest of the pipes while the square shape is the most flexible one. The analytical solution and finite element results were used to determine the shape factor for the four pipe shapes taking into account the circular pipe as the base shape. Both results were in good agreement and can be used as design guidelines for the irregular shapes without resorting to the conduct of any further testing.
机译:本文提出了基于弯曲梁理论的直径不规则形状的复合管数学模型的开发。通过在相似的负载条件下使用相同管形的有限元模型对分析解决方案进行了验证。在这项研究中考虑了四种形状(圆形,椭圆形,矩形和卵形管)。分析和有限元结果用于估计形状因子,该形状因子由不规则形状的最大切向应力与圆形管道的最大切向应力之比定义。四种不同形状的载荷-挠度曲线的比较显示,蛋管在其余的管中最坚硬,而方形的则是最柔软的。以圆形管为基本形状,使用解析解和有限元结果确定四种管形的形状因子。两种结果吻合良好,可以用作不规则形状的设计指南,而无需进行任何进一步的测试。

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