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Testing of Stiffened Composite Cylindrical Shells in the Postbuckling Range Until Failure

机译:在后屈曲范围内测试加硬的复合圆柱壳直到失效

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摘要

The results of an experimental investigation of two stringer-stiffened shells and of two ring- and stringer-stiffened cylindrical shells made of carbon fabric reinforced plastic are presented. The specimens are tested until collapse by means of custom-made biaxial testing equipment that allows axial and torsion loading, applied separately and in combination, using a position control mode. This apparatus includes a laser scanning system for the measurement in situ of the geometric imperfections, as well as of the progressive change in deformations. The experimental data acquired during the first nondestructive buckling tests and during the destructive failure tests clearly demonstrate the strength capacity of these structures to work in the postbuckling field, allowing for the further weight savings likely to be requested in the near future for the construction of aerospace structures. Indeed, the results show that the shells are able to sustain load in the postbuckling field without any damage, whereas the collapse, both under axial compression and under torsion, due to the failure of the stringers is sudden and destructive. The measured data can be used for the development and validation of analytical and numerical high-fidelity methods and, together to these validated analysis tools, to provide design criteria that are less conservative than those presented.
机译:给出了对两个由碳纤维增强塑料制成的纵梁加劲壳以及两个环形和纵梁加劲圆柱壳进行实验研究的结果。使用定制的双轴测试设备对样品进行测试直至坍塌,该设备允许使用位置控制模式单独或组合施加轴向和扭转载荷。该设备包括激光扫描系统,用于就地测量几何缺陷以及变形的逐步变化。在第一个非破坏性屈曲测试和破坏性破坏测试期间获得的实验数据清楚地表明了这些结构在后屈曲领域中发挥作用的强度,从而有可能在不久的将来进一步减轻航空航天业的重量结构。的确,结果表明,壳能够在屈曲后的场中承受载荷而没有任何损坏,而由于桁条的破坏,在轴向压缩和扭转下的坍塌是突然的,并且具有破坏性。测得的数据可用于分析和数字高保真度方法的开发和验证,并与这些经过验证的分析工具一起使用,可提供比所提供的保守性低的设计标准。

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