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Development of cement-based lightweight composites - Part 1: Mix design methodology and hardened properties

机译:水泥基轻质复合材料的开发-第1部分:混合料设计方法和硬化性能

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摘要

This article aims at the development of durable cement-based lightweight aggregate composites, with a good balance between the thermal and mechanical properties. The mixtures are developed with the optimized packing applying the modified Andreasen and Andersen model, to obtain the optimal target grading curve of all the solids in the mixture. A lightweight material produced from recycled glass is used as the lightweight aggregates (LWA) in order to obtain the desired low thermal conductivity. The properties of the designed composites, including the flowability and relative viscosity in fresh state, and the porosity, strength and thermal properties in hardened state are investigated. The porosity of the developed composites is studied by both modeling and experiments. Results indicate that there is a certain amount of closed internal LWA pores in the composites, which contributes positively to a better thermal insulation property. The developed composites have a low thermal conductivity while still retaining sufficient strength. Therefore, the designed composite can be used monolithically as both load-bearing element and thermal insulator.
机译:本文旨在开发耐用的水泥基轻质骨料复合材料,在热性能和机械性能之间取得良好的平衡。使用改进的Andreasen和Andersen模型以优化的装填量开发混合物,以获得混合物中所有固体的最佳目标分级曲线。由回收玻璃制成的轻质材料被用作轻质骨料(LWA),以获得所需的低导热率。研究了所设计复合材料的性能,包括新鲜状态下的流动性和相对粘度,以及硬化状态下的孔隙率,强度和热性能。通过建模和实验研究了开发的复合材料的孔隙率。结果表明,复合材料中存在一定数量的封闭的内部LWA孔,这对更好的隔热性能有积极的贡献。所开发的复合材料具有低导热率,同时仍保持足够的强度。因此,设计的复合材料可以整体用作承载元件和绝热体。

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