首页> 美国卫生研究院文献>Polymers >Comparative Study of the Durability Behaviors of Epoxy- and Polyurethane-Based CFRP Plates Subjected to the Combined Effects of Sustained Bending and Water/Seawater Immersion
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Comparative Study of the Durability Behaviors of Epoxy- and Polyurethane-Based CFRP Plates Subjected to the Combined Effects of Sustained Bending and Water/Seawater Immersion

机译:持续弯曲和水/海水浸没共同作用下基于环氧树脂和聚氨酯的CFRP板的耐久性能比较研究

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摘要

In many applications, carbon fiber reinforced polymer (CFRP) composite materials suffer from the combined effects of sustained bending and immersion. In the present study, pultruded epoxy- and polyurethane (PU)-based CFRP plates were studied for their long-term performances, subjected to the combined effects of water/seawater immersion and sustained bending (0%, 30%, and 58% of the ultimate strain). The water uptake and the evolution of the mechanical properties were investigated. In addition, the service lives of the CFRPs were predicted using the Arrhenius method. Generally, the sustained bending led to a decrease in the water uptake, and reduced the mechanical properties. A diffusion model, dividing the cross-section of CFRPs into the “less resin area” and “rich resin area”, was proposed to elucidate the variation of water uptake and mechanical properties. Compared to epoxy-based CFRPs, although PU-based CFRPs possessed a significantly higher water uptake, they exhibited better long-term performances in terms of mechanical properties.
机译:在许多应用中,碳纤维增强聚合物(CFRP)复合材料遭受持续弯曲和浸入的综合作用。在本研究中,对拉挤的环氧和聚氨酯(PU)基CFRP板的长期性能进行了研究,这些板受到了水/海水浸泡和持续弯曲(分别为0%,30%和58%极限应变)。研究了水的吸收和机械性能的演变。此外,使用Arrhenius方法预测了CFRP的使用寿命。通常,持续的弯曲导致吸水率的降低,并降低了机械性能。提出了一个扩散模型,将CFRP的横截面分为“较少的树脂区域”和“较丰富的树脂区域”,以阐明吸水率和机械性能的变化。与基于环氧的CFRP相比,尽管基于PU的CFRP具有明显更高的吸水率,但它们在机械性能方面表现出更好的长期性能。

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