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Use of Thixotropy-Enhancing Agent to Reduce Formwork Pressure Exerted by Self-Consolidating Concrete

机译:使用触变增强剂降低自密实混凝土施加的模板压力

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This paper seeks to evaluate the impact of a thixotropy- enhancing agent (TEA) on the variations in thixotropy and formwork lateral pressure of self-consolidating concrete (SCC) with 650 ± 15 mm (24.3 ± 0.6 in.) slump flow consistency. Six mixtures containing various TEA concentrations along with either a melamine- or polycarboxylate-based high-range water-reducing admixture (HRWRA) were tested. The results are compared with similar SCC mixtures made with conventional viscosity-enhancing admixtures (VEAs), including a liquid polysaccharide, powder polysaccha-ride, and cellulose-based.rnTest results show that the use of TEA can significantly increase the degree of thixotropy and reduce the formwork pressure compared with similar mixtures containing conventional VEAs. This is attributed to the thixotropic nature of this agent that enables the material to rapidly recover its cohesiveness following some time at rest. The combination of TEA with either powder polysaccharide or cellulose-based VEA at low concentration was found to reduce the maximum initial pressure and increase the rate of pressure drop with time compared with SCC containing only conventional VEA at similar concentration. The TEA/VEA combinations resulted in better fluidity retention with time.rnA good relationship exists between the lateral pressure and thixotropy determined from SCC mixtures containing various concentrations of TEA and/or low concentrations of conventional VEA. The higher the degree of thixotropy, the less the mixture develops lateral pressure. This is attributed to the reversible effect of thixotropy that enables the material to increase its shear strength properties after some resting time.
机译:本文旨在评估触变性增强剂(TEA)对650±15 mm(24.3±0.6 in。)坍落度流动一致性的自固结混凝土(SCC)的触变性和模板侧向压力变化的影响。测试了六种包含各种TEA浓度的混合物以及三聚氰胺或多羧酸酯基高范围减水剂(HRWRA)。将该结果与采用常规增粘剂(VEA)制成的类似SCC混合物进行了比较,包括液体多糖,粉末多糖和纤维素基。rn测试结果表明,使用TEA可以显着提高触变性和与包含常规VEA的类似混合物相比,可降低模板压力。这归因于该试剂的触变性,使材料在静止一段时间后能迅速恢复其内聚力。与仅包含相似浓度的常规VEA的SCC相比,发现TEA与粉末多糖或纤维素基VEA的低浓度组合可降低最大初始压力,并随时间增加压降率。 TEA / VEA组合可随着时间的流逝更好地保持流动性。rn从包含各种浓度TEA和/或低浓度常规VEA的SCC混合物确定的侧向压力和触变性之间存在良好的关系。触变性程度越高,混合物产生的侧向压力越小。这归因于触变性的可逆作用,这种触变性使材料在经过一定的静置时间后能够提高其剪切强度性能。

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