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Mortars based in different binders with incorporation of phase-change materials: Physical and mechanical properties

机译:掺入相变材料的基于不同粘合剂的砂浆:物理和机械性能

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摘要

In a society with a high growth rate and increased standards of comfort arises the need to minimise the currently high-energy consumption by taking advantage of renewable energy sources. The mortars with incorporation of phase-change materials (PCM) have the ability to regulate the temperature inside buildings, contributing to the thermal comfort and reduction in the use of heating and cooling equipment, using only the energy supplied by the sun. However, the incorporation of phase-change materials in mortars modifies its characteristics. The main purpose of this study was the production and characterisation in the fresh and hardened state of mortars with incorporation of different contents of PCM in mortars based in different binders. The binders studied were aerial lime, hydraulic lime, gypsum and cement. For each type of binder, different mortars were developed with different content of PCM. The proportion of PCM studied was 0, 20, 40 and 60% of the mass of the sand. It was possible to observe that the incorporation of PCM in mortars caused differences in properties such as workability, microstructure, compressive strength, flexural strength and adhesion.
机译:在具有高增长率和提高的舒适度标准的社会中,需要通过利用可再生能源来使当前的高能耗最小化。掺有相变材料(PCM)的砂浆具有调节建筑物内部温度的能力,从而仅使用太阳提供的能量就有助于提高热舒适性并减少供暖和制冷设备的使用。但是,在砂浆中掺入相变材料会改变其特性。这项研究的主要目的是在不同硬度的砂浆中掺入不同含量的PCM,从而在砂浆的新鲜和硬化状态下进行生产和表征。所研究的粘合剂是气生石灰,水硬性石灰,石膏和水泥。对于每种类型的粘合剂,都开发了具有不同含量PCM的不同灰浆。所研究的PCM的比例为沙质量的0、20、40和60%。可以观察到,在灰浆中掺入PCM会引起性能差异,例如可加工性,微观结构,抗压强度,弯曲强度和附着力。

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