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Experimental Investigation of Strength of Curved Beam by Thin Ply Non-Crimp Fabric Laminates

机译:薄层非压接织物层压板弯曲梁强度的实验研究

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Resistance against delamination failure and through the thickness tensile properties of curved carbon fiber reinforced plastics composites are investigated experimentally by conducting the curved beam strength tests. Effect of novel material thin ply non crimp fabric (NCF) architecture on delamination resistance of carbon fiber reinforced composites are investigated and compare with that of standard UD layups. In order to determine through the thickness tensile properties of curved carbon fiber composites, standard test method is carried out, namely four-point bending tests. The dynamic delamination propagation and failure sequences under curved beam bending is captured using Photron Fastcam SA5 ultra high speed system. For the non-crimp fabric configuration an increase in the curved beam strength is observed in comparison with [0] and [0/45/-45/0] laminates by unidirectional (UD) tape material. For the UD tape, the initial defects caused by the out-of-autoclave manufacturing process is found to be the potential failure sites. The test results and observations suggest that thin-ply NCF is much less vulnerable to the existence of manufacturing voids in contrast to standard thickness UD tape. Finally, TPNCF is shown to have superior properties in regard to delamination resistance and curved-beam strength.
机译:通过进行弯光梁强度试验实验研究了抗分层失效和通过弯曲碳纤维增强塑料复合材料的厚度拉伸性能。研究了新型材料薄帘布层非卷曲织物(NCF)架构对碳纤维增强复合材料的分层电阻的影响,并与标准UD上叠层进行比较。为了通过弯曲碳纤维复合材料的厚度拉伸性能,进行标准测试方法,即四点弯曲试验。使用光环FastCAM SA5超高速系统捕获弯曲光束弯曲下的动态分层传播和故障序列。对于非卷曲织物配置,与单向(UD)胶带材料相比,与[0]和[0/45 / -45 / 0]相比,观察到弯曲光束强度的增加。对于UD磁带,发现由自动灭菌制造过程引起的初始缺陷是潜在的故障位点。测试结果和观察结果表明,与标准厚度UD胶带相比,薄层NCF易受制造空隙的存在。最后,TPNCF在分层电阻和弯曲梁强度方面具有优异的特性。

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