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Magnesium Phosphate Cements formulated with a low-grade MgO by-product: Physico-mechanical and durability aspects

机译:低品位MgO副产物配制的磷酸镁水泥:物理机械和耐用性方面

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摘要

Chemically Bonded Phosphate Ceramics (CBPCs) and, in particular, Magnesium Phosphate Cements (MPCs), show properties very adequate for using as repair mortar for concrete constructions. The obtainment of MPC using MgO-containing by-products as raw materials was proposed by the authors in previous works. There, formulations including boric acid as additive were optimized to obtain good mechanical properties and proper setting times. The current study aims to analyze the viability of the developed formulations to be used as repair mortar. Adhesion to concrete surfaces was evaluated, and in all cases good adhesion strength values were obtained. The durability tests, including freeze/thaw cycles and salts crystallization cycles, have shown an excellent behavior, especially the samples containing the higher amount of boric acid. These promising results indicate that MPC formulated with a low-cost MgO by-product can be an interesting alternative to other repair mortars. In addition to economic benefits in terms of cost of production, the use of by-products has a positive impact on environmental and sustainability aspects. (C) 2015 Elsevier Ltd. All rights reserved.
机译:化学粘结的磷酸盐陶瓷(CBPC),尤其是磷酸镁水泥(MPC)具有非常适合用作混凝土建筑修补砂浆的性能。作者在以前的工作中提出了使用含MgO的副产物为原料的MPC。在那里,对包括硼酸作为添加剂的配方进行了优化,以获得良好的机械性能和适当的凝固时间。本研究旨在分析用作修补砂浆的已开发配方的可行性。评价了对混凝土表面的粘附力,在所有情况下均获得了良好的粘附强度值。包括冷冻/解冻循环和盐结晶循环在内的耐久性测试显示出优异的性能,尤其是样品中硼酸含量较高的情况。这些有希望的结果表明,用低成本的MgO副产品配制的MPC可以替代其他修补砂浆。除了在生产成本方面的经济利益外,副产品的使用还对环境和可持续性方面产生积极影响。 (C)2015 Elsevier Ltd.保留所有权利。

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