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Influences of superplasticizer modification and mixture composition on the performance of self-compacting concrete at varied ambient temperatures

机译:高效减水剂的改性和混合物组成对环境温度变化下自密实混凝土性能的影响

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摘要

The fresh behaviour of self-compacting concrete (SCC) at varying temperatures differs from that of normal vibrated concrete. This is because the rheology of SCC depends not only on degree of cement hydra-tion, but also on the adsorption of superplasticizers - mostly polycarboxylate based polymers (PCE) -, which is affected by the time and hydration progress. Due to the variety of PCEs and mixture compositions for SCC a prediction of the rheology at varying temperatures is complicated. The charge densities of PCEs as well as the water to solid ratio in the paste are identified to be the main decisive parameters for robust fresh concrete properties. Rheometric concrete investigations with different SCC mixture compositions and varied anionic charge densities of the PCE were conducted. SCC which is rich in powder components showed robust performance at low temperatures while SCC with low powder content was favourable at high temperatures. High charge density PCE pointed out to be very robust at low temperatures but at high temperatures it significantly reduced the flow retention. Low charge density PCE could not generate self-compacting properties at low temperatures but retained the flow performance over sufficiently long time. Based on considerations about particle interactions and adsorption mechanisms of PCEs, the relevant processes are explained and options for the development of robust mixture compositions for individual temperature ranges are itemised.
机译:自密实混凝土(SCC)在不同温度下的新鲜行为不同于普通振动混凝土。这是因为SCC的流变性不仅取决于水泥的水合程度,还取决于高效减水剂(主要是基于聚羧酸盐的聚合物(PCE))的吸附,这受时间和水化进程的影响。由于用于SCC的PCE和混合物组成的多样性,在不同温度下流变学的预测非常复杂。 PCE的电荷密度以及浆料中的水与固体之比被确定为坚固的新鲜混凝土性能的主要决定性参数。用不同的SCC混合物组成和PCE的不同阴离子电荷密度进行流变混凝土研究。粉末成分丰富的SCC在低温下表现出强劲的性能,而粉末含量低的SCC在高温下则表现良好。指出高电荷密度PCE在低温下非常坚固,但在高温下会显着降低流动保持力。低电荷密度PCE在低温下不会产生自压缩特性,但会在足够长的时间内保持流动性能。基于对PCE的颗粒相互作用和吸附机理的考虑,对相关过程进行了解释,并列出了开发适用于各个温度范围的稳固混合物组成的选项。

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