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Hardening Cement Conglomerates by Mining Industries Waste

机译:通过采矿工业浪费淬火水泥砾岩

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About 3.5 billion tons of mining waste is generated annually in Russia. The task of their utilization is urgent in connection with the accumulation of large-tonnage waste of simultaneously mined rocks, enrichment waste and crushing screenings. The problem can be solved by using these wastes as mineral additives to artificial cement-based conglomerates. According to the study results it was found, that the compressive strength of hardened cement paste increased during all hardening periods, when finely dispersed mining wastes were introduced. In the early stages of hardening, limestone had a predominant effect. Introduction of diopside led to the greatest hardening together with the hardening period increase. Linear and nonlinear mathematical models, describing the dependence of cement strength on the type and amount of mineral additives, were constructed. The highest strength values of hardened cement paste, both after hardening under normal conditions for 28 days, and after heat and moisture treatment could be achieved with 7% dispersed diopside. At the same time, the hardening effect (increase in the strength of cement by 35-40%) was retained when 1/3 of the diopside in the complex additive was replaced by dispersed limestone. An increase in the content of limestone in the complex additive composition over 1/3 was impractical.
机译:在俄罗斯每年生成约35亿吨采矿废物。他们的利用的任务是与同时挖掘的大吨位浪费的积累急剧紧急。通过使用这些废物作为人造水泥基集团的矿物添加剂可以解决问题。根据发现的研究结果,当引入精细分散的采矿废物时,硬化水泥浆料的抗压强度增加了。在硬化的早期阶段,石灰石具有主要效果。诊断介绍导致最大的硬化与硬化时段增加。建立了线性和非线性数学模型,描述了水泥强度对矿物添加剂类型和量的依赖性。硬化水泥浆料的最高强度值,在正常条件下硬化后28天,并且在7%分散的缩孔中可以实现热量和水分处理后。同时,当复合添加剂中的1/3缩小剂量被分散的石灰石取代时,保留了硬化效果(水泥强度的增加35-40%)。复杂添加剂组合物中的石灰石含量的增加是不切实际的。

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