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Modeling of Tricot Stitch Non Crimp Fabric in Forming Simulations

机译:三角针织非压接面料的建模在成型模拟中

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The use of Non Crimp Fabric composite has increased during the last years due to cheaper cost of manufacturing and high mechanical properties suitable for applications such as aeronautic, automotive and wind turbines. The main difference between Non Crimp Fabric (NCF) and textile reinforcement is the mean of manufacturing: where in textile fibers are woven, and in NCF layers of unidirectional oriented fibers are assembled with a stitch. As a consequence, the stitch especially its geometry (the stitch pattern) will have a major influence on the deformation of this type of reinforcement during forming process~1. Experimental program on NCF samples compared to textile with the same fibers orientation have showed that the stitching affects the shear behavior of the reinforcement~2'~3 which is one of the main modes of deformation in the forming process. A method to consider the influence of the tricot stitching in the shear behavior depending on its manufacturing parameters has been developed. This specific behavior has been integrated in a semi discrete element~5 to simulate the forming process. The results from simulation of shear tests showed a good agreement with the experiments for the tested reinforcements.
机译:由于适用于航空,汽车和风力涡轮机等应用的制造和高机械性能的更便宜和高机械性能,在过去几年中使用了非压接织物复合材料的使用。非卷曲织物(NCF)和纺织品加固的主要区别是制造的平均值:在纺织纤维编织的情况下,在NCF层中用针脚组装单向取向纤维。因此,缝合尤其是其几何形状(缝合图案)将对形成过程中这种类型的增强物的变形产生重大影响〜1。与具有相同纤维取向的纺织品相比,NCF样品的实验程序表明,缝合影响了加强〜2'〜3的剪切行为,这是成形过程中变形的主要变形模式之一。已经开发了考虑根据其制造参数的剪切行为中的Tricot缝合的影响的方法。这种特定的行为已经集成在半离散元件〜5中以模拟成形过程。剪切试验模拟结果表明,与测试增援的实验表明良好。

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