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Discrete modelling of low-velocity impact on Nomex® honeycomb sandwich structures with CFRP skins

机译:对CFRP蒙皮对Nomex®蜂窝夹层结构的低速冲击的离散建模

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摘要

Predicting the honeycomb sandwich's response to impact loading is a major challenge in the aeronautical industry. Several papers demonstrated the possible use of non-linear springs to model Nomex's impact behavior. On the other hand, the authors show that the lack of transverse shear consideration constitutes a real limitation. The aim of this study is to overcome this limitation by introducing a compression/shear coupling to take into account the transverse shear. In this approach, the modelling of a low velocity impact test is performed on a sandwich composite with CFRP skins and Nomex (R) honeycomb. Composite skins are modeled as an elasto-plastic-damage material using a user field surbroutine (Abaqus(C)). The Nomex core is modeled with non-linear springs integrating a compression/shear coupling behavior. Then, the sandwich response under low speed impact is realized and compared with experimental data leading to a good correlation.
机译:预测蜂窝三明治对冲击载荷的响应是航空业的一项重大挑战。几篇论文证明了可能使用非线性弹簧来模拟Nomex的冲击行为。另一方面,作者表明缺乏横向剪切考虑构成了真正的限制。这项研究的目的是通过引入压缩/剪切耦合来考虑横向剪切,从而克服这一限制。在这种方法中,低速冲击试验的建模是在具有CFRP蒙皮和Nomex(R)蜂窝的三明治复合材料上进行的。使用用户现场surbroutine(Abaqus(C))将复合蒙皮建模为弹塑性破坏材料。 Nomex芯采用集成压缩/剪切耦合特性的非线性弹簧建模。然后,实现了低速冲击下的夹心响应并将其与实验数据进行比较,从而得出了良好的相关性。

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