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Effects of water cooled ferrochrome slag as fine aggregate on the properties of concrete

机译:水冷铬铁矿渣作为细骨料对混凝土性能的影响

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The present study aims to represent the outcomes of investigation carried out to assess the use of water cooled ferrochrome slag (WCFS) as an alternative to natural sand in concrete making. Various destructive tests such as compressive strength, splitting tensile strength, flexural strength and modulus of elasticity were conducted on various concrete samples containing 0-50% of the WCFS on replacement of equal weight of natural sand. Non-destructive test like ultrasonic pulse velocity (UPV) test was conducted to compare the results of destructive tests. Rapid chloride permeability test (RCPT), acid resistance and sulphate resistance tests were addressed to access the durability of concrete containing the WCFS. Optical micro structural study was conducted to examine the microstructure of concrete with the WCFS. The WCFS is found similar to natural sand. The results indicated that there is a little decrease in strength properties of concrete due to inclusion of the WCFS but can be used up to 30% with minor scarification of strength. This little scarification may not be considered important when compared with the advantages on reuse of industrial waste and thus conservation of natural resources. Inclusion of the WCFS up to 30% has almost no negative impact on durability of concrete. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本研究旨在代表为评估混凝土制造中使用水冷铬铁渣(WCFS)作为天然砂的替代品而进行的调查的结果。在更换等重量的天然砂土后,对含有0-50%WCFS的各种混凝土样品进行了各种破坏性试验,例如抗压强度,劈裂抗拉强度,弯曲强度和弹性模量。进行了无损检测,如超声脉冲速度(UPV)检测,以比较检测结果。快速氯化物渗透性测试(RCPT),耐酸性和耐硫酸盐性测试针对获得WCFS的混凝土的耐久性。进行了光学微观结构研究,以检验采用WCFS的混凝土的微观结构。发现WCFS与天然砂相似。结果表明,由于加入了WCFS,混凝土的强度性能略有下降,但可以使用高达30%的强度,且强度几乎没有降低。与再利用工业废料的优势以及自然资源的保护相比,这种很少的划痕可能并不重要。 WCFS含量不超过30%对混凝土的耐久性几乎没有负面影响。 (C)2018 Elsevier Ltd.保留所有权利。

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