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Experimental and modelling study of mixture design optimisation of glass fibre-reinforced concrete with combined utilisation of Taguchi and Extreme Vertices Design Techniques

机译:玻璃纤维钢筋混凝土混合设计优化的实验和建模研究,玉米池和极端顶点设计技术综合利用

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Micro and short fibre inclusions to concrete mixtures increase their precrack resistance, and random distribution of fibres improve the properties of concrete in all directions. In this study, general design optimisation of glass fibre (GF)-reinforced concrete (GRC) was conducted to help professionals in producing industrial concrete facades and walls. The effects of ingredients, including paste and silica sand used as aggregate metakaolin (MK) and GF contents, were examined in terms of their compressive and flexural strengths. Fresh concrete properties, such as workability, were investigated through fibre content tests. Concrete specimens containing various GF% and MK amounts (0%, 5%, 10% and 15% by weight of cement) were evaluated during the experiments. Test results were analysed and used in the optimisation phase of the study. The optimum ingredient contents and their relations with concrete performance were determined through combined utilisation of Taguchi, ANOVA and extreme vertices design methods. Results obtained from these optimisation methods were applied to the specimens. The proposed design and optimisation method is effective in optimising the mechanical properties of GRC mixtures. (C) 2020 The Authors. Published by Elsevier B.V.
机译:与混凝土混合物的微型和短纤维夹杂物增加了它们的预碎片电阻,并且纤维的随机分布改善了各方向混凝土的性质。在本研究中,进行了玻璃纤维(GF)的一般设计优化 - 对抗混凝土(GRC),以帮助专业人员生产工业混凝土外墙和墙壁。在其压缩和弯曲强度方面,研究了成分,包括糊状和硅砂,包括糊状物和硅沙和GF含量的含量。通过纤维含量试验研究了新的混凝土性质,例如可操作性。在实验期间评估含有各种GF%和MK的混凝土试样(0%,5%,10%和15重量%的水泥)。分析测试结果并用于研究的优化阶段。通过组合利用Taguchi,Anova和极端顶点设计方法,确定了最佳成分内容及其与具体性能的关系。将从这些优化方法获得的结果施加到标本中。所提出的设计和优化方法在优化GRC混合物的机械性能方面是有效的。 (c)2020作者。 elsevier b.v出版。

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