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Utilization of Kota stone slurry powder and accelerators in concrete

机译:混凝土中瓜子浆料粉和加速器的利用

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Recent advances in the concrete technology are aiding in minimizing the use of conventional materials by substituting by-products of various industries and energy sources. A large amount of stone waste i.e., dust and slurry form both are being originated during natural stone processing and causing deadily effects on the environment. The disposal problem of stone waste can be resolved effectively by using waste in construction industries. In present work, Kota stone slurry powder, as a substitution of cement was used along with accelerators namely calcium nitrate and triethanolamine as additives, to study their impact on various properties of the concrete mixtures. Kota stone slurry powder (7.5%), calcium nitrate (1%) and triethanolamine (0.05%) were used separately as well in combination in different concrete mixtures. Mechanical Strength, modulus of elasticity and electrical resistivity of concrete specimens of different mix proportions under water curing were studied experimentally. The durability properties in terms of strength and electrical resistivity against sulphate and chloride solution attack at various curing ages were also studied experimentally. Results showed that accelerators and Kota stone slurry powder separately enhanced the mechanical strength and electrical resistivity; but, their combination decreased strength at all curing ages. The durability of concrete specimens was also affected under the exposure to chemical attack too. Kota stone slurry powder found to be the most effective material among all materials. Material characterization was also done to study the microstructural properties.
机译:混凝土技术的最新进展辅助通过替代各种行业和能源的副产品最小化常规材料的使用。在天然石材加工过程中,灰尘和浆料形式都是大量的石渣,灰尘和浆料形成均产生令人困难的影响。通过在建筑业中使用废物可以有效地解决石渣的处理问题。在目前的工作中,作为水泥的替代品,随着促进剂即硝酸钙和三乙醇胺作为添加剂,研究它们对混凝土混合物的各种性能的影响。在不同的混凝土混合物中,单独使用Kota Stone Slurry粉末(7.5%),硝酸钙(1%)和三乙醇胺(0.05%)。实验研究了水固化下不同混合比例的混凝土标本的机械强度,弹性模量和电阻率。在实验中还研究了对硫酸盐和氯化物溶液侵蚀的强度和电阻率方面的耐久性性能。结果表明,加速器和典可的石材浆料粉末分别提高了机械强度和电阻率;但是,它们的结合在所有固化年龄下降。混凝土样本的耐久性也在暴露于化学侵袭下受到影响。 Kota Stone Slurry粉末是所有材料中最有效的材料。还进行了物质表征以研究微观结构性能。

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