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Optimisation of fibre reinforcement with a combination strategy and through the use of self-compacting concrete

机译:通过组合策略和使用自密实混凝土来优化纤维增强

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摘要

Both steel and polyolefin fibres have become an attractive alternative to steel bar reinforcement of concrete. Therefore, many research papers that deal with such a type of fibre reinforcement, as well as reports that examine structural applications, have been published. Fibre-reinforced self-compacting concrete uses the flowability of concrete in the fresh state to improve fibre orientation, in due course enhancing fracture behaviour. The residual strengths obtained from fracture tests are important values for structural design. Other possibilities to improve the residual behaviour are based on the development of new fibres with improved material properties and shapes that enhance the properties of the fibre-matrix system. That can be the case of the so-called 5D fibres or OL. Moreover, each fibre type performs depending on certain demands imposed for each element. This study proposes the optimisation based on the combined use of different fibre types. The results show the various advantages that can be obtained with the combination of the fibres; relevant information for future design of structural fibre reinforced self-compacting concrete is provided. (C) 2019 Elsevier Ltd. All rights reserved.
机译:钢纤维和聚烯烃纤维都已成为钢筋替代混凝土的有吸引力的替代方法。因此,已经发表了许多有关这种纤维增强的研究论文,以及研究结构应用的报告。纤维增强的自密实混凝土利用新鲜状态下的混凝土流动性来改善纤维取向,从而在适当时候增强断裂性能。从断裂试验获得的残余强度对于结构设计是重要的值。改善残留性能的其他可能性是基于新纤维的开发,这些新纤维的材料特性和形状得到改善,从而增强了纤维基质系统的性能。所谓的5D纤维或OL就是这种情况。此外,每种纤维的类型取决于对每种元素施加的某些要求。这项研究提出了基于不同纤维类型组合使用的优化方案。结果表明,纤维的组合可以获得各种优点。提供了有关结构纤维增强自密实混凝土未来设计的相关信息。 (C)2019 Elsevier Ltd.保留所有权利。

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