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Development of cement-based lightweight composites - Part 2: Durability-related properties

机译:水泥基轻质复合材料的开发-第2部分:耐久性相关的性能

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Cement-based lightweight composites were developed in Part 1 of this study [1], employing the modified Andreasen and Andersen particle packing model. The design was targeted on a good balance between the mechanical and thermo-physical performance of the material. By the application of expanded glass lightweight aggregates in a form of closed spheres, the design was also targeted on a low permeability to fluids, which is a unique feature for this type of material. The durability-related properties of the developed lightweight composites were investigated in this paper. The durability was quantified based on the measurements of water-permeable porosity, capillary water absorption, chloride transport properties, electrical resistivity, freeze-thaw resistance and alkali-silica reaction. The results show that by using the proposed design methodology, it is possible to develop lightweight composites of low density and thermal conductivity, sufficient strength and low permeability to fluids.
机译:本研究的第1部分[1]使用改进的Andreasen和Andersen颗粒堆积模型开发了水泥基轻质复合材料。设计的目标是在材料的机械性能和热物理性能之间取得良好的平衡。通过以封闭球体形式使用膨胀玻璃轻质骨料,该设计还针对流体的低渗透性,这是此类材料的独特功能。本文研究了开发的轻质复合材料的耐久性相关性能。基于对水的孔隙率,毛细管吸水率,氯化物传输性能,电阻率,抗冻融性和碱-二氧化硅反应的测量来定量耐久性。结果表明,通过使用所提出的设计方法,可以开发出低密度和导热率,足够的强度和低的流体渗透性的轻质复合材料。

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