Experimental investigation of filament-wound composite tubes for mechanical characterization by internal pressure testing

T. Rasheed, S. Akbar, S. Mirza
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引用次数: 1

Abstract

This paper presents method for the characterization of composite tubes produced by filament winding technique. The aim of this study is to investigate the mechanical properties by tensile test and under internal pressure loads. For this purpose specimens produced with different orientation having the same reinforcement with two different matrix systems. Data produced experimentally by measuring the mechanical properties like longitudinal tensile and hoop tensile properties, strain in hoop direction and maximum hoop stresses during the hydraulic testing. In order to investigate these parameters, internal pressure tests are done on the filament-wound composite tubes having internal diameter 64.5± 0.5 mm and length 320± 2.0 mm according to ASTM D 1599-99 standard. The tubes for the testing are manufactured by wet filament winding methods of [± 60°] E-glass/Epoxy of various wall thicknesses. Hydraulic tests revealed that the tubes with winding orientation [± 60°]2[±90°]2 exhibits better burst performance compared with others orientations. In addition, factors affecting the behavior of the tubes like buckling, stress variation through wall thickness are discussed.
纤维缠绕复合材料管力学性能内压试验研究
本文介绍了长丝缠绕复合材料管的表征方法。本研究的目的是通过拉伸试验和内压载荷来研究其力学性能。为此,用两种不同的基体体系制作具有不同取向、相同配筋的试样。通过测量水力测试期间的纵向拉伸和环向拉伸性能、环向应变和最大环向应力等力学性能的实验数据。根据ASTM D 1599-99标准,对内径64.5±0.5 mm、长度320±2.0 mm的丝绕复合材料管进行了内压试验。用于测试的管是用不同壁厚的[±60°]e -玻璃/环氧树脂湿长丝缠绕法制造的。水力试验结果表明,缠绕方向为[±60°]2[±90°]2的管具有较好的爆破性能。此外,还讨论了影响管的屈曲、应力随壁厚变化等因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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