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Performance improvement of hydraulic lime based grouts for masonry consolidation: an experimental study

机译:砌体固结液压石灰灌浆性能改进:实验研究

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Grouting is currently a repair technique for consolidating and strengthening old masonry structures. Grouts can be seen as mixtures of binder with water, admixtures and/or additives, which should present low viscosity and high penetrability. The grout specification involves the knowledge of the flow capacity within the masonry inner core and physic-chemical compatibility with the original materials present in the historic structures. Nevertheless, the grout properties are affected by a large number of parameters, including binder type and composition, mixing procedure, admixture type and dosage, environmental conditions, like temperature that may lead to different grout injection capacities, as reported by other studies. This paper deals with the effect of environmental temperature over superplasticised hydraulic lime-based grouts with partial replacement of lime by silica fume. Grout performance was analysed in fresh and hardened state by testing its rheological and mechanical behaviour, as well as its hydration reactions kinetics. In spite of the considerable amount of information that exists for cement based mixtures with superplasticisers, there is little information about the effects of superplasticisers when used in natural hydraulic lime mixtures proportioned with silica fume. This study aims to contribute to better understand the behaviour that superplasticised hydraulic lime grouts present under different temperatures. The results showed that hydraulic lime grouts performance could be improved, regarding rheological parameters and strength capacity if they are properly design and a suitable processing temperature were ensured.
机译:灌浆目前是一种用于整合和加强老砌体结构的修复技术。灌浆可以被视为粘合剂的混合物,其与水,混合物和/或添加剂,其应呈现低粘度和高渗透性。灌浆规范涉及与历史结构中存在的原材料内芯内核心和物理化学兼容性内的流量的知识。然而,灌浆性质受大量参数的影响,包括粘合剂类型和组成,混合过程,混合物类型和剂量,环境条件,如其他研究所报道的,可能导致不同的灌浆喷射能力。本文涉及环境温度对超塑性液压石灰的灌浆效果,通过二氧化硅烟灰部分更换石灰。通过测试其流变和力学行为,以及其水合反应动力学来分析清新和硬化状态的灌浆性能。尽管存在具有超塑性体的水泥基的混合物存在的相当大量的信息,但在用二氧化硅烟气成比例的天然液压石灰混合物中使用时,超血糖酶的影响很少。本研究旨在有助于更好地了解在不同温度下存在的超塑性液压石灰灌浆的行为。结果表明,如果流变参数和强度容量,可以改善液压石灰灌浆性能,如果它们是正确的设计,并且确保了合适的加工温度。

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