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首页> 外文期刊>International Journal of Integrated Engineering >Finite Element Simulation on Damage and Fracture Properties of a Ring Cut from Filament-Wound Pipes with and without Delamination
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Finite Element Simulation on Damage and Fracture Properties of a Ring Cut from Filament-Wound Pipes with and without Delamination

机译:带有和不带有分层的细丝缠绕管环割的损伤和断裂特性的有限元模拟

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The technological advances in various industries have increased the demands on new engineered material tremendously since conventional materials such as steel, failed to perform in severe conditions. Nowadays, composite materials especially fibre-reinforced plastic composites (FRP) are broadly being used in many engineering fields to manufacture critical components with high stress concentration, exposure to extreme surrounding or weight constraint. However, they often suffer from a characteristic weakness, i.e. they are prone to interlaminar damage, often in a form delamination. In order to assess the development and the consequences of such damage, interlaminar fracture properties are essential. In this study, the ring cut specimen from filament-wound pipes with and without delamination was modelled and simulated based on experimental work using finite element modelling to further assist the identification and determination of the fracture properties. Investigation also involves the effect of the delamination length to the Energy Release Rate, G. Comparison between 23mm delamination of simulation and experimental results from [7] is presented.
机译:由于诸如钢之类的常规材料在恶劣条件下无法发挥作用,因此各个行业的技术进步极大地增加了对新工程材料的需求。如今,复合材料,尤其是纤维增强塑料复合材料(FRP)在许多工程领域中被广泛使用,以制造应力集中,暴露于极端环境或重量限制下的关键部件。然而,它们经常遭受特征性的弱点,即,它们易于以层间形式分层的层间损坏。为了评估这种破坏的发展和后果,层间断裂性能至关重要。在这项研究中,基于有限元建模的实验工作,对具有和不具有分层的细丝缠绕管的环形切割试样进行了建模和仿真,以进一步帮助识别和确定断裂特性。研究还涉及分层长度对能量释放速率G的影响。[23]对23mm分层模拟与实验结果进行了比较。

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