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首页> 外文期刊>Journal of Materials Research and Technology >Influence of fabric orientation and compression factor on the mechanical properties of 3D E-glass reinforced epoxy composites
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Influence of fabric orientation and compression factor on the mechanical properties of 3D E-glass reinforced epoxy composites

机译:织物取向和压缩因子对3D E-玻璃增强环氧复合材料力学性能的影响

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3-D E-glass fabric reinforced epoxy composites at 6mm thickness were fabricated for various orientations of the binder yarn viz. 0°, 30°, 45°, 60° and 90° respectively. Tensile, flexural, interlaminar shear stress tests were conducted to ascertain the influence of binder yarn orientation on the mechanical properties of the composites. The composites with 0° binder yarn orientation showed the best strength followed by 90° whilst the others showed highly depleted traits in comparison. Shear stress induced at the interface of each lamina was seen as the major reason for drop in the strength. A secondary study was carried out to explore the effect of compression factor during fabrication on the mechanical properties of the composites. Laminates with varying thickness namely, 4mm, 5mm and 7mm but, with same number of plies of 3D E-glass fabric at 0° orientation were fabricated. The test results were compared with the results of 6mm composites from the primary study. The results showed that, compression factor affected the mechanical properties of the composites and had a direct relation with increasing compression factor up to a certain value beyond which a drop in properties was seen. Composites pressed to a thickness of 5mm showed the best properties. Drop in properties was attributed to close packing of reinforcement and crushing of fibres leading to inefficient stress transfer. Scanning electron microscopy was employed to understand the modes of failure. The major failure modes observed were delamination, matrix cracking and debonding. Based on the results obtained, these composites can be seen as a material system for applications like ballistic armours, structural renovations and automobile components.
机译:3-D e-玻璃织物增强的环氧复合材料以6mm厚度为粘合剂纱线的各种取向制造。 0°,30°,45°,60°和90°。进行拉伸,弯曲,层间剪切应力测试,以确定粘合剂纱线取向对复合材料的力学性能的影响。具有0°粘合剂纱线取向的复合材料显示出最佳强度,然后是90°,而其他强度相比显示出高度耗尽的性状。在每个椎板的界面处引起的剪切应力被认为是强度下降的主要原因。进行二次研究以探讨压缩因子在复合材料的机械性能下的压缩因子的效果。具有不同厚度的层压性,即4mm,5mm和7mm,但是,制造了0°定向的相同数量的3D E-玻璃织物。将测试结果与来自初步研究的6mm复合材料进行比较。结果表明,压缩因子影响复合材料的机械性能,并且与将压缩因子增加到几个值的压缩因子的直接关系,超出其特征的特定值。压制到5mm厚度的复合材料显示出最佳性能。属性下降归因于密集加固和粉碎纤维,导致效率低下的应力转移。扫描电子显微镜被用来了解失败模式。观察到的主要失败模式是分层,矩阵开裂和剥离。基于所获得的结果,这些复合材料可以被视为用于弹道铠装,结构装修和汽车部件等应用的材料系统。

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