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High rate loading of hybrid joints in a Split Hopkinson Tension Bar

机译:分裂式霍普金森张力杆中混合关节的高载荷加载

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Bonded joints are nowadays seen as one of the preferred joining methods in aerospace applications. However, the difficulty in certifying bond strength and the relatively low energy absorption capability of the joint are barriers to widespread adoption. The use of a hybrid joint, that is, the combination of a mechanical and a bonded joint, allows for a fail-safe design and offers improved performance of the joint. The quasi-static properties of hybrid joints have been investigated by a number of researchers. In contrast, the high rate loading regime has been only sparsely investigated. In this work, hybrid joints are tested in quasi-static and high rate loading in order to analyze their loading rate dependence. The hybrid joint studied is a composite-aluminum double lap shear joint with Sikaforce 7752 adhesive and Hi-Lite-315 countersunk titanium bolts. In order to quantitatively analyze the high rate behavior of the hybrid joints and their respective sub-components, additional tests are carried out on simply bonded and simply bolted specimens. The high rate characterization was performed with a Split Hopkinson Tension Bar. The main challenges for these tests are the relatively large specimen size and complex specimen geometry needed to properly characterize the joint behavior, which both are in contradiction with the assumptions of the classical Split Hopkinson Bar-analysis. In this paper we describe an approach to solve these challenges based on an elastic wave analysis of the system.
机译:如今,粘结接头被视为航空航天应用中的首选连接方法之一。但是,难以确定粘结强度和接头的相对较低的能量吸收能力是广泛采用的障碍。混合接头的使用,即机械接头和粘结接头的组合,可以实现故障安全设计并提高接头的性能。许多研究人员已经研究了混合接头的准静态特性。相反,仅对稀疏负载率高的加载方式进行了研究。在这项工作中,混合接头在准静态和高速率载荷下进行测试,以分析其载荷速率依赖性。研究的混合接头是复合铝双搭接剪切接头,带有Sikaforce 7752粘合剂和Hi-Lite-315沉头钛螺栓。为了定量分析混合接头及其相应子组件的高速率行为,对简单粘结和简单螺栓连接的试样进行了额外的测试。使用Split Hopkinson张力棒进行了高速率表征。这些测试的主要挑战是,要正确表征关节行为需要相对较大的试样尺寸和复杂的试样几何形状,这两者均与经典的斯普利特霍普金森杆分析的假设相矛盾。在本文中,我们基于系统的弹性波分析描述了一种解决这些挑战的方法。

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