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Static and dynamic scaling experiments on double lap shear specimens at room temperature and at 77 K

机译:在室温和77 K下双搭接剪切试样的静态和动态缩放实验

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摘要

In view of applications of fibre-reinforced plastics as insulating materials for the windings of the superconducting magnets in the TIER fusion device and because of its pulsed operation, the interlaminar shear strength (ILSS) of these materials has to be assessed at cryogenic temperatures in the static and in the fatigue mode. However, none of the existing test procedures for the assessment of the ILSS provides a pure and uniform shear stress over a sizable region of the test sample. Therefore, the results depend on the size of the shear area. A scaling programme of the double lap shear test specimen geometry was performed in the static and the fatigue mode on a glass-fibre-reinforced epoxy at room temperature and at 77 K. The results show an increase of the ILSS with decreasing length of the shear area, while the shear fatigue behaviour appears to be independent of sample geometry.
机译:鉴于将纤维增强塑料用作TIER聚变设备中超导磁体绕组的绝缘材料,并且由于其脉冲运行,必须在低温下在低温下评估这些材料的层间剪切强度(ILSS)。静态和疲劳模式。但是,现有的用于评估ILSS的测试程序都无法在测试样本的相当大的范围内提供纯净且均匀的剪切应力。因此,结果取决于剪切区域的大小。在室温和77 K下,在玻璃纤维增​​强的环氧树脂上以静态和疲劳模式执行了双搭接剪切试样几何尺寸的缩放程序。结果表明,ILSS随着剪切长度的减小而增加区域,而剪切疲劳行为似乎与样品几何形状无关。

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