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Influence of aggregate and supplementary cementitious materials on the properties of hydrated lime (CL90s) mortars

机译:骨料和辅助胶凝材料对熟石灰砂浆性能的影响

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Hydrated lime is a historic material currently used in conservation. It hardens slowly by carbonation slowing construction however, supplementary cementitious materials accelerate hardening enhancing strength. Hydrated-lime mortars with rice husk ash–RHA-; ground granulated blastfurnace slag–GGBS- and increasing amounts of two aggregates were studied. Increasing aggregate lowered strength as interfacial zones proliferate; it lowered hygric properties and raised water demand. Aggregate content/composition didn’t affect the high water retention. For the higher aggregate contents (90 days), limestone mortars are c.20% stronger than silica mortars while the (1:1) silica sand mortars are 56% stronger in flexion. Additions increased strength with little impact on hygric properties. GGBS increased strength c.six times. RHA increased strength with little impact on hygric properties due to its great specific surface and high water-demand increasing porosity. GGBS and RHA properties ruling hydrate production and the kinetics of the pozzolanic reaction are considered partially responsible for the mortar property variation.
机译:熟石灰是目前用于保护的历史性材料。它会通过碳化作用减慢施工速度而缓慢硬化,但是,辅助胶凝材料会加速硬化并提高强度。稻壳灰水合石灰砂浆–RHA-;研究了粉碎的粒状高炉渣GGBS和两种骨料的增加量。随着界面区域的扩散,骨料强度降低的增加;它降低了保湿性能并增加了需水量。骨料的总含量/组成不会影响高保水性。对于较高的骨料含量(90天),石灰石砂浆比二氧化硅砂浆强约20%,而(1:1)硅砂砂浆的挠曲性强56%。添加剂增加了强度,而对保湿性能影响很小。 GGBS的强度提高了约六倍。 RHA具有比表面积大和高需水孔隙率,因此可以提高强度,而对保湿性能的影响很小。决定水合物生产和火山灰反应动力学的GGBS和RHA性能被认为是造成砂浆性能变化的部分原因。

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