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Effect of Superabsorbent Polymer on the Properties of Concrete

机译:高吸水聚合物对混凝土性能的影响。

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摘要

Incorporating superabsorbent polymer (SAP), which has the abilities of absorption and desorption in concrete can achieve the effect of internal curing. The influences of the volume, particle size and ways of entrained water of SAP on the workability, compressive strength, shrinkage, carbonation resistance and chloride penetration resistance of concrete were analyzed through the macroscopic and microscopic test. The results show that pre-absorbed SAP can increase the slump of the mixture, but SAP without water absorption and pre-absorbed SAP with the deduction of internal curing water from mixing water can reduce the slump. The improvement effects of SAP on compressive strength of concrete increase gradually with the increase of age. Especially from 28 days, the compressive strength of concrete increases obviously. At later age, the compressive strengths of SAP concrete under natural curing environment exceed the strength of reference concrete under natural curing environment and nearly reach the strengths of reference concrete under standard curing environment. SAP effectively reduces the shrinkage of concrete, improves the concrete’s abilities of carbonation resistance and chloride penetration resistance. The microscopic test results show that SAP can effectively improve the micro structure and make the pore structure refined. When SAP is added into concrete, the gel pores and small capillary pores are increased, the size of big capillary pores and air pores are reduced.
机译:掺入在混凝土中具有吸收和解吸能力的超吸收性聚合物(SAP)可以达到内部固化的效果。通过宏观和微观试验分析了SAP的体积,粒径和夹带水的方式对混凝土的可加工性,抗压强度,收缩率,抗碳化性和抗氯化物渗透性的影响。结果表明,预吸收的SAP可以增加混合物的坍落度,但是不吸水的SAP和通过从混合水中扣除内部固化水而预吸收的SAP可以降低坍落度。随着年龄的增长,SAP对混凝土抗压强度的改善作用逐渐增强。特别是从28天开始,混凝土的抗压强度明显提高。在晚些时候,SAP混凝土在自然养护环境下的抗压强度超过了参考混凝土在自然养护环境下的强度,几乎达到了标准养护环境下的参考混凝土的强度。 SAP有效地减少了混凝土的收缩,提高了混凝土的抗碳化性和抗氯化物渗透性。微观测试结果表明,SAP可以有效改善微观结构,细化孔结构。将SAP添加到混凝土中后,凝胶孔和细毛细孔会增加,大毛细孔和气孔的大小会减小。

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