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Parameter Study of Superabsorbent Polymers (SAPs) for Use in Durable Concrete Structures

机译:用于耐久性混凝土结构的超吸收性聚合物(SAPs)的参数研究

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摘要

Superabsorbent polymers (SAPs) can be added to a concrete mixture to provide internal curing and reduce the risk for early-age shrinkage cracking. Hence, they can help to increase the overall durability of concrete structures. The type, swelling characteristics, kinetics of water release, amount and particle size of the SAPs will dictate their effectiveness for this purpose. In this paper, SAPs with different cross-linking degrees, particle sizes and amount of solubles are investigated. By varying these parameters, insight can be gained on the influence of each of these parameters on SAP properties such as the swelling capacity. In a next step, the SAPs can be implemented in mortar to assess their influence on mortar properties like workability, compressive strength or hydration kinetics. Based on these results, the ‘ideal’ SAP with tunable properties for a specific concrete application can be selected. For this purpose, an anionic SAP was synthesized with varying amounts of cross-linker and ground to particle sizes with d50 varying between 10 and 100 µm. The swelling capacity in demineralised water of 40 µm SAP particles increased with a decreasing degree of cross-linker from 66 g/g SAP with 1 mol% cross-linker to 270 g/g SAP in case of 0.15 mol% cross-linker, and was about three to four times larger than the swelling capacity in the prepared cement filtrate. The SAPs were tested for their effect on mortar workability, cement hydration kinetics and mechanical properties of the hardened mortar. With proper compensation for the absorbed water by the SAPs, the mortar workability was not negatively affected and the reduction in flow over the first two hours remained limited. The SAPs with the lowest swelling capacity, resulting in the smallest total amount of macro pores formed, showed the smallest negative effect on mortar compressive strength (a reduction of 23% compared to the reference after 28 days for an addition of 0.5 m% SAP) and a negligible effect on cement hydration. The difference in strength with the reference decreased as a function of mortar age. When using SAPs with particle sizes in the range of 10–100 µm, no significant differences between the studied particle sizes were found concerning the mortar properties. With the ease of upscaling in mind, the need to purify the SAPs and to remove the non-cross-linked soluble fraction was further investigated. It was shown that the solubles had no effect on the mortar properties, except for increasing the setting time with almost 100%.
机译:可以将超吸收性聚合物(SAPs)添加到混凝土混合物中,以提供内部养护并降低早期收缩裂缝的风险。因此,它们可以帮助提高混凝土结构的整体耐久性。 SAP的类型,溶胀特性,释水动力学,SAP的数量和粒径将决定其在此目的上的有效性。本文研究了具有不同交联度,粒径和可溶物含量的SAP。通过更改这些参数,可以了解这些参数中的每一个对SAP属性(例如溶胀能力)的影响。下一步,可以在砂浆中实施SAP,以评估它们对砂浆性能(如可加工性,抗压强度或水合动力学)的影响。根据这些结果,可以为特定的具体应用选择具有可调属性的“理想” SAP。为此目的,合成了具有不同数量的交联剂的阴离子型SAP,并将其研磨成d50在10至100 µm之间变化的粒径。 40微米SAP颗粒在软化水中的溶胀能力随着交联剂程度的降低而增加,从具有1 mol%交联剂的66 g / g SAP到0.15 mol%交联剂的情况下达到270 g / g SAP,以及其比所制备的水泥滤液的溶胀能力大约三至四倍。测试了SAP对砂浆可加工性,水泥水合动力学和硬化砂浆机械性能的影响。通过对SAP吸收的水进行适当的补偿,砂浆的可加工性不会受到负面影响,并且前两个小时的流量减少仍然受到限制。溶胀能力最低,导致形成的细孔总数最少的SAP对砂浆抗压强度的负面影响最小(添加0.5 m%SAP 28天后与参考相比降低23%)对水泥水合作用的影响可忽略不计。强度与参比强度的差异随砂浆年龄的增加而减小。当使用粒径在10–100 µm范围内的SAP时,研究的粒径之间在砂浆性能方面没有显着差异。考虑到易于升级,进一步研究了纯化SAP和除去非交联可溶级分的需求。结果表明,可溶物对砂浆性能没有影响,只是增加了几乎100%的凝固时间。

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