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The Microstructure-Mechanical Properties of Hybrid Fibres-Reinforced Self-Compacting Lightweight Concrete with Perlite Aggregate

机译:珍珠岩骨料混杂纤维增强自密实轻质混凝土的微观力学性能

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摘要

The purpose of this paper is to determine the influence of the lightweight porous perlite aggregate and two widely used types of fibres on the physical and mechanical properties, frost durability and microstructure of self-compacting lightweight concrete (SCLC). The experimental investigation consisted of tests carried out on cubes and prismatic samples made of SCLC and fibres-reinforced SCLC with variable content ranging from 0.5 to 1% of basalt fibres (BF) and/or 0.5% of steel fibres (SF). In this study, two variable contents of fine perlite aggregate were used: 5% and 15%. The workability (the slump-flow and t500 values) in fresh state SCLCs have been done. Extensive data on compressive and flexural tensile strength in bending behaviour, frost resistance and the microstructure including interfacial transition zone (ITZ) were recorded and analysed. The hybrid fibres-reinforced SCLC with perlite aggregate showed a more ductile behaviour compared to that of SCLC without fibres. Fibres bridge cracks during flexural tensile strength test. BF successfully protected porous SCLC against frost attack, whereas SF succumbed to damage.
机译:本文的目的是确定轻质多孔珍珠岩骨料和两种广泛使用的纤维类型对自密实轻质混凝土(SCLC)的物理和机械性能,抗冻性和微观结构的影响。实验研究包括对由SCLC和纤维增强的SCLC制成的立方体和棱柱形样品进行的测试,其含量范围为玄武岩纤维(BF)的0.5%至1%和/或钢纤维(SF)的0.5%。在这项研究中,使用了两种可变含量的细珍珠岩骨料:5%和15%。新鲜状态SCLC中的可加工性(坍落度和t500值)已经完成。记录并分析了弯曲性能,抗冻性和包括界面过渡区(ITZ)在内的微观结构的大量数据。与不含纤维的SCLC相比,具有珍珠岩聚集体的混杂纤维增强SCLC显示出更好的延展性。弯曲抗拉强度测试期间,纤维桥接裂缝。 BF成功地保护了多孔SCLC免受霜冻侵袭,而SF则受到了损害。

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