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Effect of natural pozzolan and recycled concrete aggregates on thermal and physico-mechanical characteristics of self-compacting concrete

机译:天然波利和再生混凝土聚集在自压制混凝土热敏和物理机械特性的影响

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摘要

To properly meet the environmental and ecological side the construction of environmentally friendly buildings has become very important and this can be done by recycling demolition waste to replace natural gravel in the construction of concrete mixtures with the use of additives as part of the investment in local materials. As well as the reduction of carbon dioxide emissions, all of this aims to reduce the excessive exploitation of natural resources. Thermal insulation of buildings has attracted a lot of attention in recent years as it became apparent that the greatest energy savings could be achieved by using appropriate thermal insulation for the building. In this experimental investigation, physico-mechanical and thermal properties of self-compacting concrete (SCC) composed of coarse aggregates and natural pozzolana (NP) are evaluated.Eleven concrete mixes were prepared in order to vary the substitution rate by weight of natural aggregates by recycled aggregates. The substitution rates were set at 50% and likewise, the cement has also been substituted from 5% to 20% by weight by natural pozzolan (NP).The results indicate that recycle SCC mixes that contain NP has a beneficial effect on the capillary dimension of the hardened cement paste, since the capillary absorption provides information on the rise of water through the open porosity of the concrete produced by the tension superficial liquid. The presence of NP reduces capillary pores by filling these pores with second-generation CS-H gel formed from pozzolan silica and portlandite, the hydrate resulting from the hydration of cement. It should be noted that the substitution of 20% NP reduces the thermal conductivity by 17% at 28 days and 19% at 120 days, compared to the reference (RSCC) and the substitution of 15% NP reduces the thermal conductivity by 22% at 28 days and 16% at 120 days, compared to the reference (NSCC). Finally, a good correlation between compressive strengths Cs (MPa), thermal conductivity (sic) (W/mk), ultrasonic pulse velocity V (m/s), dynamic elasticity modulus Ed (GPa)) and the open porosity epsilon (%). (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了适当地满足环境和生态方面的环境友好建筑的建设变得非常重要,这可以通过回收拆除废物来取代自然砾石,以使用添加剂作为当地物料投资的一部分,取代混凝土混合物的建设中。除了减少二氧化碳排放的情况下,所有这一切旨在减少对自然资源的过度开发。近年来,建筑物的热绝缘引起了很多关注,因为它变得显而易见的是,通过使用适当的建筑物的热绝缘可以实现最大的节能。在该实验研究中,评估由粗骨料和天然波佐拉甘油(SCC)组成的自体压实混凝土(SCC)的物理机械和热性能。制备混凝土混凝土混凝土混凝土,以便改变自然骨料重量的替代率再生的聚集体。替代速率设定为50%且同样,水泥也被自然波佐(NP)从5%〜20重量%取代。结果表明,含有NP的再循环含量对毛细管尺寸有益的影响由于毛细管吸收提供了通过张力表面液体产生的混凝土的开放孔隙率提供有关水的升高的信息。 NP的存在通过用Pozzolan二氧化硅和波特兰石的第二代CS-H凝胶填充这些孔,通过水泥的水合得到的水合物,通过第二代CS-H凝胶填充这些孔隙,减少了毛细血管。应注意,与参考(RSCC)相比,20%NP的取代将导热率降低17%,120天,120天内将导热性降低22%,将导热率降低22%与参考(NSCC)相比,120天28天和16%。最后,压缩强度Cs(MPa),导热率(SiC)(W / MK),超声波脉冲速度V(M / S),动态弹性模量Ed(GPA)和开放孔隙率ε(%)之间的良好相关性。 (c)2020 elestvier有限公司保留所有权利。

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