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Robot-guided eddy current measurement of yarn orientation change during stepwise 3D draping

机译:逐步3D悬垂期间的机器人引导涡流测量纱线定向变化

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The production of high-performance carbon fiber-reinforced plastics (CFRP) involves the draping of the carbon fiber fabrics to a 3D shape, a process which changes the orientation of the load-bearing fibers in the fabric and therefore has a high impact on the strength of the final composite part. This paper investigates the change in yarn orientation during the 3D-draping process of biaxial carbon-fiber non-crimp fabrics to a hemispherical shape. The draping process is partitioned in several steps, after each of which the yarn orientation in the fabric is measured by a robot-guided eddy current scanning system. The results show that the greatest change in yarn orientation occurs in the final stages of the draping. Furthermore, the yarn orientation change is not linear-in some regions, later draping steps reverse the yarn orientation change from earlier steps. These results are of high importance for a better controlling of the textile draping process.
机译:高性能碳纤维增强塑料(CFRP)的生产涉及将碳纤维织物覆盖到3D形状,这是改变织物中承载纤维的取向的过程,因此对此产生高影响力最终复合部分的强度。本文研究了双轴碳纤维非压接织物3D帷展过程中的纱线取向变化,以使半球形。在几个步骤之后,覆盖过程被划分,之后通过机器人引导的涡流扫描系统测量织物中的纱线取向之后。结果表明,纱线方向的最大变化发生在悬垂的最终阶段。此外,在一些区域中,纱线取向变化不是线性的,后来覆盖步骤从早期步骤反转纱线取向变化。这些结果具有很高的重要性,更好地控制纺织品悬垂过程。

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