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Tidal turbine blade composites - A review on the effects of hygrothermal aging on the properties of CFRP

机译:潮汐涡轮机叶片复合材料-湿热老化对CFRP性能的影响综述

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摘要

The aging of polymer-composites is a ubiquitous problem that leads to the degradation of mechanical properties, reducing the service life of an engineered structure, and potentialising premature, catastrophic modes of failure. Polymer-composites used in moist or aqueous environments are subject to moisture influenced changes that affect their physical, chemical and mechanical properties. The coupled problem of polymer-composites aging within an aqueous environment is currently seeing a surge in research efforts. This is partly due to that materials used in renewable energy structures, such as tidal turbine blades, are now high-priority concerns and there is mounting societal pressure for the development of clean energy technology. The coupling of aging and water ingress in polymer-composites is not a trivial subject and is a very slow process, but as a consequence of clean energy technology concerns, there is an ever growing impetus towards the research of exacerbated rates of water aging by the integration of a third influence, heat. Heat is a means by which the rate of aging can be magnified and this combination of heat induced aging with water ingress, termed hygrothermal aging, is the topic of this review. In particular we focus on carbon fibre reinforced plastics (CFRP), as these are composites with superior mechanical properties, a high resistance to corrosion, and are considered to be important materials for the future of clean energy technology. Through this review we aim to elucidate the relevance and applicability of hygrothermal aging to the understanding of CFRP composites in marine structures such as tidal turbine blades.
机译:聚合物复合材料的老化是一个普遍存在的问题,它会导致机械性能下降,工程结构的使用寿命缩短以及潜在的过早的灾难性故障模式。在潮湿或水性环境中使用的聚合物复合材料会受到水分影响的变化,从而影响其物理,化学和机械性能。在水性环境中聚合物复合材料老化的耦合问题目前正在研究中大量涌现。这部分是由于用于可再生能源结构中的材料(例如潮汐涡轮机叶片)现在受到高度重视,并且清洁能源技术的发展也给社会带来了越来越大的压力。聚合物复合材料中老化和进水的耦合不是一个简单的问题,并且是一个非常缓慢的过程,但是由于对清洁能源技术的关注,越来越多的动力推动了水的老化速率的加剧。整合第三种影响力,热量。热是一种可以增加老化速率的方法,而热诱导老化和进水的这种结合称为湿热老化,是本综述的主题。我们特别关注碳纤维增强塑料(CFRP),因为它们是具有优异机械性能,高耐腐蚀性的复合材料,被认为是清洁能源技术未来的重要材料。通过这篇综述,我们旨在阐明湿热老化与理解诸如潮汐涡轮机叶片等海洋结构中CFRP复合材料的相关性和适用性。

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