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Development of Epoxy Matrix Artificial Stone Incorporated with Sintering Residue from Steelmaking Industry

机译:炼钢工业烧结渣结合环氧基人造石的研制

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The present work is part of an innovation research project aiming to develop artificial stone from industrial wastes. In principle, the project goal is to fabricate artificial stones with improved characteristics to be used as plates for housing and road construction. In this work, the specific industrial residue was an electrostatically precipitated powder obtained from the initial sintering stage of an integrated steelmaking plant. Plates were produce by vacuum vibro-compression of epoxy resin mixed with 80 and 85 wt% of this specific residue. After curing, the plates were characterized for physical parameters and mechanical properties. The microstructural aspect of the finishing surface was analyzed for both novel artificial stones by scanning electron microscopy. The results indicated that the 80% residue incorporated artificial stone is superior to the 85% residue incorporated and markedly stronger than a commercial artificial stone, incorporated with granite residue, with comparable density and water absorption. These characteristics favor the technical substitution of the presently investigated artificial for the commercial stone. In particular, based on wear tests, the residue incorporated artificial stone would be restricted to application as pavement in medium traffic roads.
机译:目前的工作是一项创新研究项目的一部分,该项目旨在利用工业废物开发人造石材。原则上,该项目的目标是制造具有改进特性的人造石,以用作房屋和道路建设的板材。在这项工作中,特定的工业残留物是从综合炼钢厂的初始烧结阶段获得的静电沉淀粉末。通过与80和85重量%的这种特定残余物混合的环氧树脂的真空振动压缩来生产板。固化后,对板进行物理参数和机械性能表征。通过扫描电子显微镜分析了两种新型人造石材的精加工表面的微观结构。结果表明,掺入80%残留物的人造石优于掺入85%残留物的人造石,并且显着强于掺有花岗岩残留物的商业人造石,密度和吸水率可比。这些特征有利于目前研究的人造石在商业上替代石材。特别地,基于磨损测试,掺入残留物的人造石将被限制用于中等交通道路的人行道。

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