Design and Analysis of Carbon Fiber Reinforced Composite Shell Structure Using Classical Laminate Plate Theory

P. Krishna, P. Meghana, A. Kumar, K. Kishore
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引用次数: 2

Abstract

The main focus of this project is to understand the nature of these laminated composites when subjected to specific damage cases like loads. In order to understand the progression of the failure modes in a laminated composite, models were designed and analyzed using ANSYS 14.5. In this work composite cylinder is designed which can withstand an external pressure of 5 bar. Stress analysis of the structure is done using classical laminate theory theoretically and the result obtained is validated using finite element analysis procedure using ANSYS and the error is very less. The behavior of the composite cylinder is checked by exploring the stresses and strains. The present work includes determination of optimum design parameters like fiber orientation. Finally, utilizing the finite element modeling of a cylindrical shell specimen, a relative comparison is made between the results of the finite element and the analytical method. The results thus obtained were found to be in good agreement in terms of damage size. To check the health of the composite cylindrical shell, failure criteria’s like Tsai-wu and Maximum stress criteria were also calculated in this paper. Short Research Article Krishna et al.; BJAST, 20(1): 1-12, 2017; Article no.BJAST.31981 2
基于经典层合板理论的碳纤维复合材料壳体结构设计与分析
该项目的主要重点是了解这些层压复合材料在受到特定损伤情况(如载荷)时的性质。为了了解层合复合材料中失效模式的发展,使用ANSYS 14.5设计和分析了模型。在这项工作中,设计了能够承受5巴外部压力的复合材料圆柱体。采用经典层合理论对该结构进行了理论分析,并采用ANSYS有限元分析程序对分析结果进行了验证,误差较小。通过探索应力和应变来检查复合材料圆柱体的行为。目前的工作包括确定最佳设计参数,如纤维取向。最后,利用圆柱壳试件的有限元建模,将有限元结果与解析方法进行了比较。由此获得的结果被发现在损伤大小方面是非常一致的。为了检验复合材料圆柱壳的健康状况,本文还计算了蔡武和最大应力准则等失效准则。研究短文Krishna等人。;BJAST,20(1):2017年1月12日;文章编号:BJAST.31891 2
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