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Reversible Rail Shear Apparatus Applied to the Study of Woven Laminate Shear Behavior

机译:可逆钢轨剪切装置在编织层板剪切行为研究中的应用

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摘要

The multitude of in-plane shear tests existing in the literature seems to demonstrate the complexity of developing a test adapted to all experimental works. In a general framework of investigation of translaminar cracks in thin laminates, a test able to reproduce a pure in-plane shear loading was required. The laminate studied is notably employed as helicopter blade skin, and cyclic torsion induced by aerodynamic load involves cyclic in-plane shear. This particular application established some specifications for the test needed to carry out this study. To comply with them, an original technological solution has been developed from a three-rail shear test apparatus. This paper describes the resulting "reversible rail shear test" solution and its application to the study of in-plane shear behavior of a thin glass-epoxy laminate. The results concern plain and notched coupons under quasi-static loading, and crack growth tests under cyclic loading.
机译:文献中存在的大量面内剪切试验似乎证明了开发适用于所有实验工作的试验的复杂性。在研究薄层压板中的层间裂纹的一般框架中,需要能够再现纯平面内剪切载荷的测试。所研究的层压板主要用作直升机的叶片蒙皮,并且由空气动力载荷引起的循环扭转涉及循环面内剪切。这个特定的应用程序为进行这项研究所需的测试建立了一些规范。为了符合这些要求,已经从三轨剪切测试仪开发出了原始的技术解决方案。本文介绍了所得的“可逆轨道剪切试验”解决方案及其在研究薄玻璃环氧树脂层压板的面内剪切行为中的应用。结果涉及准静态载荷下的平试样和缺口试样,以及循环载荷下的裂纹扩展测试。

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