本地生产的UHPC:钢纤维种类和含量的影响

IF 0.7 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Nordic Concrete Research Pub Date : 2021-06-01 DOI:10.2478/ncr-2021-0003
I. Lande, R. T. Thorstensen
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引用次数: 2

摘要

在某些用途上,超高性能混凝土可能是普通混凝土的一种有竞争力的替代品。但是,尽管几十年来的研究努力,利用仍然不普遍。原因包括有限的能力和材料可用性。本文介绍了一项旨在促进挪威UHPC使用的研究倡议的一个步骤。这里介绍的步骤包括对钢纤维(含量、类型和混合组合)对当地生产的UHPC材料强度和变形行为的影响的研究累积结果,这些材料由挪威南部发现的成分制成。测试了231个样品,涵盖9种UHPC混合物。利用数字图像相关(DIC)技术成功地研究了裂纹扩展。抗压强度为166 MPa, e模量为46 GPa,不受纤维含量的影响。发现弯曲拉伸强度在很大程度上取决于钢纤维性能和混合设计的变化。最高的弯曲拉伸强度是由单独的微直钢纤维或50%的宏观钩端纤维组合而成的棱镜。实验结果被考虑在一个理论知情的讨论。建议在本地生产的超高性能聚乙烯中使用钢纤维,可能降低30%的成本。
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Locally Produced UHPC: The Influence of Type and Content of Steel Fibres
Abstract Ultra-high performance concrete might be a competitive alternative to normal concrete for some purposes. But despite research efforts during decades, utilisation is still not widespread. Reasons include limited competence and material availability. This paper presents one step of a research initiative aimed at facilitating the use of UHPC in Norway. The step presented here comprises the accumulated results from investigations on the influence steel fibres (content, type, and hybrid combination) have on material strength and deformation behaviour of locally produced UHPC, made with constituents found in southern Norway. 231 specimens were tested, spanning nine UHPC mixes. Digital Image Correlation (DIC) was successfully used to study crack propagation. Compressive strength of 166 MPa and E-modulus of 46 GPa were obtained, not being influenced by fibre content. The flexural tensile strength was found to be strongly dependent on variations in steel fibre properties and mix design. The highest flexural tensile strength was obtained for prisms with micro straight steel fibres alone, or in 50% combination with macro hooked-end fibres. The experimental results are considered in a theory-informed discussion. Suggestions are made on the use of steel fibres in locally produced UHPC, potentially lowering the cost by 30%.
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来源期刊
Nordic Concrete Research
Nordic Concrete Research CONSTRUCTION & BUILDING TECHNOLOGY-
自引率
20.00%
发文量
8
期刊最新文献
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