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首页> 外文期刊>Nondestructive Testing and Evaluation >Mesostructural simulation of discontinuous prepreg platelet based carbon fibre sheet moulding compounds informed by X-ray computed tomography
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Mesostructural simulation of discontinuous prepreg platelet based carbon fibre sheet moulding compounds informed by X-ray computed tomography

机译:X射线计算机断层扫描通知不连续预浸料血小板基碳纤维片成型化合物的介质结构模拟

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Discontinuous prepreg platelet based carbon fibre sheet moulding compound (CF-SMC) materials offer huge potential for lightweight applications in the automotive industry. The composition of these materials and the flow behaviour during compression moulding result in a complex stochastic mesostructure, which presents a challenge in the modelling of the mechanical behaviour. The objective of the current work is to use the information obtained from multiscale X-ray computed tomography (XCT) scans to generate full-scale three-dimensional finite element models of tensile coupon specimens for the prediction of the elastic modulus. The models incorporate the stochastic distribution and discontinuous nature of the prepreg platelets. Defects such as porosity, resin-rich areas and fibre waviness can be observed by means of XCT. Porosity is found to be below 0.0076 vol.% and thus negligible. An average volume fraction of 6.48 vol.% of interlaminar resin-rich areas is considered in the mesostructural simulations. The predicted values of the tensile modulus are validated by experimental tensile tests on basis of a large series of specimens. The statistical analysis of variance methodology is employed to reach conclusive validation. The inherent stochasticity of prepreg platelet based CF-SMC materials is well captured with the proposed mesostructural simulation approach and the variability in their mechanical properties is accurately predicted.
机译:不连续的预浸料血小板基碳纤维片模塑化合物(CF-SMC)材料为汽车行业中的轻质应用提供了巨大的潜力。这些材料的组成和压缩成型期间的流动性能导致复杂的随机腹部结构,这在机械行为的建模中具有挑战。目前工作的目的是使用从多尺度X射线计算断层扫描(XCT)扫描获得的信息,以产生用于预测弹性模量的拉伸优惠券样本的全尺寸三维有限元模型。该模型包括预浸料血小板的随机分布和不连续性。可以通过XCT观察诸如孔隙率,树脂的区域和纤维波形等缺陷。孔隙率被发现低于0.0076体积%。%,因此可忽略不计。平均体积分数为6.48体积。在Mesostratural模拟中考虑了富含层间树脂的富含树脂的含量。拉伸模量的预测值通过基于大量样本的实验拉伸试验验证。采用方差方法的统计分析来达到确凿的验证。预浸料血小板基CF-SMC材料的固有速度利用所提出的介性结构模拟方法井井用捕获,准确地预测了其机械性能的可变性。

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