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Damage mechanics in G/E tubes under tension-torsion cyclic loading

机译:拉伸-扭转循环载荷下G / E管的损伤机理

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In this work, multiaxial fatigue tests results on [0_F/90_(U,3)/0_F] glass/epoxy tubes are discussed. Specimens are subjected to combined tension-torsion loadings, resulting in the stress components σ_2 and τ_(12) in the 90° layers of the tubes. The effect of shear stress on damage mechanics has been investigated and a strong influence on both damage onset and propagation has been observed. SEM investigation of fracture surfaces shows the dependence of damage modes, at the microscopic scale, on the multiaxiality condition. Comparison with previous results on tubes with different lay-ups ([90_4], [0_p/90_u,3]) shows the strong influence of the constraining 0° fabric layers on the damage onset and propagation.
机译:在这项工作中,讨论了[0_F / 90_(U,3)/ 0_F]玻璃/环氧树脂管的多轴疲劳测试结果。试样承受组合的拉伸-扭转载荷,从而在管的90°层中产生应力分量σ_2和τ_(12)。已经研究了剪切应力对损伤力学的影响,并且观察到了对损伤的开始和传播的强烈影响。断裂表面的SEM研究表明,在微观尺度上,损伤模式与多轴性条件有关。与先前对具有不同叠层的管子的结果进行比较([90_4],[0_p / 90_u,3])显示,约束0°织物层对损伤的开始和传播具有强烈的影响。

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