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Investigation of Fibers Reinforced Engineered Cementitious Composites Properties Using Quartz Powder

机译:石英粉对纤维增强工程水泥基复合材料性能的研究

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摘要

In relation to the use of retrofit materials on damaged constructions, application on earthquake-resistant buildings, and for the strengthening and rehabilitation on weakened regions, there is a need for a more superior material than concrete. Application sites include beam-column joints, corbels, link-slabs, deep beams, support regions and dapped-end areas. Fiber reinforced engineered cementitious composites (FR-ECC) can address this issue, because FR-ECC is one of the composite materials that has high strength, ductility and durability. In order to develop FR-ECC, this study was done to investigate the effect of adding quartz powder on the compressive strength capacity and properties of FR-ECC through the use of polyvinyl alcohol (PVA) and steel fibers. The volume fraction of fiber was set to 0%–2%. To support the friendly environment, FR-ECC uses by-product materials such as fly ash and silica fume, with a cement content less than 600 kg/m . In terms of the experimental investigation on FR-ECC, this work conducted the fresh property tests showing that PVA fibers have quite an influence on ECC workability, due to their hydrophilic behavior. By adjusting the superplasticizer (SP) content, the consistency and high workability of the ECC mixes have been achieved and maintained. The test results indicated that the PVA and steel fibers-based ECC mixes can be classified as self-compacting composites and high early compressive strength composites. Significantly, addition of quartz powder into the ECC mixes increased the compressive strength ratio of the ECC samples up to 1.0747. Furthermore, the steel fiber-based ECC samples exhibited greater compressive strength than the PVA fibers-based ECC samples with the strength ratio of 1.1760. Due to effect of the pozzolanic reaction, the fibers dispersion and orientation in the fresh ECC mixes, so that the cementitious matrices provided the high strength on the FR-ECC samples. During the compression loading, the bulging effect always occurred before the failures of the fibers-based ECC samples. No spalling occurred at the time of rupture and the collapse occurred slowly. Thus, FR-ECC has provided unique characteristics, which will reduce the high cost of maintenance.
机译:关于在受损建筑上使用翻新材料,在抗震建筑物上使用以及在薄弱地区进行加固和修复,需要一种比混凝土更好的材料。应用场所包括梁柱节点,托梁,连接板,深梁,支撑区域和末端区域。纤维增强工程水泥复合材料(FR-ECC)可以解决此问题,因为FR-ECC是具有高强度,延展性和耐久性的复合材料之一。为了开发FR-ECC,本研究旨在研究通过添加聚乙烯醇(PVA)和钢纤维来添加石英粉对FR-ECC的抗压强度和性能的影响。纤维的体积分数设置为0%–2%。为了支持友好的环境,FR-ECC使用了粉煤灰和硅粉等副产品,其水泥含量小于600 kg / m 2。根据对FR-ECC的实验研究,这项工作进行了新鲜的性能测试,表明PVA纤维由于其亲水性而对ECC的可加工性有很大影响。通过调整高效减水剂(SP)的含量,可以实现并保持ECC混合物的一致性和高可加工性。测试结果表明,PVA和基于钢纤维的ECC混合物可分为自密实复合材料和高早期抗压强度复合材料。值得注意的是,将石英粉添加到ECC混合物中可将ECC样品的抗压强度比提高到1.0747。此外,钢纤维基ECC样品的抗压强度比强度比为1.1760的PVA纤维基ECC样品高。由于火山灰反应的作用,纤维在新的ECC中的分散和取向混合在一起,因此水泥基在FR-ECC样品上提供了高强度。在压缩载荷期间,膨胀效应总是在基于纤维的ECC样本失效之前发生。破裂时未发生剥落,塌陷缓慢发生。因此,FR-ECC提供了独特的特性,这将降低高昂的维护成本。

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