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Experimental assessment of the mechanical behaviour of 3D woven composite T-joints

机译:3D编织复合T型接头力学性能的实验评估

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摘要

To understand the influence of the fibre architecture of 3D woven composite T-joints on mechanical performance, as well as the benefits that 3D woven T-joints can offer over the equivalent 2D laminates, experimental testing is performed on two types of 3D woven T-joint with only weave variation at the junction, and one type of 2D woven laminate T-joint. A quasi-static tensile pull-off loading is selected in this work as this out-of-plane load case is one of the typical loading conditions for such T-joint structures. The significant advantages of 3D woven composite T-joints in terms of ultimate strength and damage tolerance over the 2D alternative were identified in the testing. More importantly, this work showed that variation in the fibre architecture can considerably enhance properties such as delamination resistance and total energy absorption to failure, as well as increasing slightly the stiffness and initial failure load. This experimental assessment has demonstrated that using 3D woven reinforcements is an effective way to improve the load-bearing capability of composite T-joints over laminates, and also that this improvement could be optimised with regard to fibre architecture.
机译:为了了解3D编织复合T型接头的纤维结构对机械性能的影响以及3D编织T型接头相对于等效2D层压板的优势,我们对两种类型的3D编织T型接头进行了实验测试接头处只有一个编织变化,并且是一种2D编织层压T型接头。在这项工作中选择了准静态拉伸拉力载荷,因为这种面外载荷工况是此类T型接头结构的典型载荷条件之一。在测试中确定了3D编织复合T形接头在极限强度和破坏耐受性方面优于2D替代项的显着优势。更重要的是,这项工作表明,纤维结构的变化可以显着增强诸如抗分层性和对破坏的总能量吸收之类的性能,并略微提高刚度和初始破坏负荷。该实验评估表明,使用3D编织增强材料是提高层压板上复合T型接头的承载能力的有效方法,并且这种改进可以在纤维结构方面进行优化。

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