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Hydroburst Test Methodology for Evaluation of Composite Structures

机译:用于评估复合结构的水性试验方法

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The University of Texas at Austin Center for Electromechanics (UT-CEM) is under contract to develop high-speed composite flywheel systems for a number of energy and power averaging applications in the transportation and space industries. Safe and reliable design of composite flywheels requires well-characterized material properties. Efforts have been focused on design optimization of a hydroburst test technique that demonstrates a useful method for characterizing the hoop (circumferential) properties of filament wound composite rings, and those results are then available to predict the performance of full-scale flywheels. To demonstrate the usefulness of this method, this paper discusses typical hydroburst techniques to determine material properties for filament-wound composite rings. Test results are also presented. Seal design is a key element of this fixture, and a design has evolved that provides nearly uniform radial loading on the inside surface of the composite ring, while minimizing axial bending. Correlations of tow strand data with hydroburst lamina data are presented. Also discussed are hydroburst test applications for flaw assessment and fatigue property evaluation.
机译:德克萨斯大学奥斯汀机电学中心(UT-CEM)是在交通运输和太空行业中的一些能源和电力平均应用开发高速复合飞轮系统的合同。复合飞轮的安全可靠设计需要良好特征的材料特性。努力专注于水性测试技术的设计优化,证明了用于表征长丝缠绕复合转环的箍(圆周)性质的有用方法,然后可以使用这些结果来预测满量程飞轮的性能。为了证明这种方法的有用性,本文讨论了典型的水解技术,以确定长丝缠绕复合戒指的材料性质。还提出了测试结果。密封设计是该夹具的一个关键元件,设计已经进化,在复合环的内表面上提供了几乎均匀的径向载荷,同时最小化轴向弯曲。提出了牵引丝网数据与水乳杆菌数据的相关性。还讨论了缺陷评估和疲劳性能评估的水性测试应用。

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