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编织玻璃纤维预浸料取向对用于结构应用的可持续复合蜂窝夹芯板弯曲性能的影响。

Influence of Woven Glass-Fibre Prepreg Orientation on the Flexural Properties of a Sustainable Composite Honeycomb Sandwich Panel for Structural Applications.

作者信息

Amir Abd Latif, Ishak Mohammad Ridzwan, Yidris Noorfaizal, Zuhri Mohamed Yusoff Mohd, Asyraf Muhammad Rizal Muhammad, Zakaria Sharifah Zarina Syed

机构信息

Department of Aerospace Engineering, University Putra Malaysia (UPM), Serdang 43400, Selangor, Malaysia.

Aerospace Malaysia Research Centre (AMRC), University Putra Malaysia (UPM), Serdang 43400, Selangor, Malaysia.

出版信息

Materials (Basel). 2023 Jul 15;16(14):5021. doi: 10.3390/ma16145021.

Abstract

Owing to the high potential application need in the aerospace and structural industry for honeycomb sandwich composite, the study on the flexural behaviour of sandwich composite structure has attracted attention in recent decades. The excellent bending behaviour of sandwich composite structures is based on their facesheet (FS) and core materials. This research studied the effect of woven glass-fibre prepreg orientation on the honeycomb sandwich panel. A three-point bending flexural test was done as per ASTM C393 standard by applying a 5 kN load on different orientation angles of woven glass-fibre prepreg honeycomb sandwich panel: α = 0°, 45° and 90°. The results show that most of the sandwich panel has almost the same failure mode during the three-point bending test. Additionally, the α = 0° orientation angle shows a higher maximum load prior to the first failure occurrence compared to others due to higher flexibility but lower stiffness. In addition, the woven glass-fibre prepreg orientation angle, α = 0°, has the maximum stress and flexural modulus, which directly depend upon the maximum load value obtained during the flexural test. In addition, the experimental results and analytical prediction for honeycomb sandwich deflection show good agreement. According to the result obtained, it is revealed that woven glass-fibre honeycomb sandwich panels with an α = 0° orientation is a good alternative compared to 45° and 90°, especially when better bending application is the main purpose. The final result of this research can be applied to enhance the properties of glass-fibre-reinforced polymer composite (GFRPC) cross-arm and enhance the existing cross-arm used in high transmission towers.

摘要

由于蜂窝夹层复合材料在航空航天和结构工业中具有很高的潜在应用需求,近几十年来,对夹层复合材料结构弯曲行为的研究受到了关注。夹层复合材料结构优异的弯曲性能基于其面板(FS)和芯材。本研究考察了编织玻璃纤维预浸料取向对蜂窝夹芯板的影响。按照ASTM C393标准,对编织玻璃纤维预浸料蜂窝夹芯板在不同取向角(α = 0°、45°和90°)施加5 kN载荷进行三点弯曲试验。结果表明,大多数夹芯板在三点弯曲试验中具有几乎相同的失效模式。此外,α = 0°取向角由于柔韧性较高但刚度较低,在首次出现失效之前显示出比其他取向更高的最大载荷。另外,编织玻璃纤维预浸料取向角α = 0°具有最大应力和弯曲模量,这直接取决于弯曲试验中获得的最大载荷值。此外,蜂窝夹芯板挠度的实验结果与分析预测吻合良好。根据所得结果表明,与45°和90°取向相比,α = 0°取向的编织玻璃纤维蜂窝夹芯板是一个很好的选择,特别是当以更好的弯曲应用为主要目的时。本研究的最终结果可用于增强玻璃纤维增强聚合物复合材料(GFRPC)横担的性能,并改进用于高压输电塔的现有横担。

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