纤维取向对碳纤维增强复合材料管道耐撞性能的影响

Ö. Özbek
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引用次数: 4

摘要

本文研究了纤维取向角对碳/环氧纤维增强复合材料管材在准静态轴压作用下耐撞性能的影响。采用长丝缠绕技术制备了具有±(40°)、±(55°)和±(70°)三种不同纤维取向角的样品。确定每个试样的破碎参数,包括荷载-位移响应、承载能力、能量吸收能力和平均破碎应力。结果表明,纤维取向角对复合材料管材的耐撞性有显著影响。纤维取向角的增大导致吸能能力下降,破碎载荷效率提高。在比能吸收方面,在±(70°)取向时,比能吸收最小值为32.20 J/g,增加取向角可提高比能吸收46%。此外,还对断裂机制进行了详细的研究,以了解破坏模式。所有试样均表现出片状弯曲或脆性断裂的渐进破碎。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Influence of Fiber Orientation on Crashworthiness Behavior of Carbon Fiber Reinforced Composite Pipes
The current paper described an experimental investigation about the effect of fiber orientation angle on the crashworthiness characteristics of carbon/epoxy fiber reinforced composite pipes subjected to quasi-static axial compression. The samples, having three different fiber orientation angles as ± (40°), ± (55°) and ± (70°), were fabricated by filament winding technique. Crushing parameters, in terms of load-displacement response, load carrying capacity, energy absorption capability and mean crushing stress, were determined for each sample. The results showed that the fiber orientation angle were found to have significant influences on crashworthiness of composite pipes. The increase in fiber orientation angle resulted with decrease in energy absorption capability and increase in crushing load efficiency. In the view of specific energy absorption aspect, minimum value of 32.20 J/g was obtained in ± (70°) fiber orientation and improvements up to 46% were achieved by increasing in orientation angle. Also, detailed investigations on fracture mechanisms were performed to understand failure modes. All samples were exhibited the progressive crushing in types of lamina bending or brittle fracturing.
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