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Freeze-Thaw Resistance of Field and Laboratory Produced Portland Cement Pervious Concrete

机译:田间和实验室生产的硅酸盐水泥渗透混凝土的抗冻融性

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High porosity with interconnected voids between aggregate particles is the primary characteristic of Portland cement pervious concrete (PCPC), which endows it with many environmental-friendly functions. However, due to its open pore structures, significant reductions in the strength and durability are caused, and one of the main concerns and controversy topics of PCPC is its durability under extremely cold climates. In this study, the freeze-thaw resistance of field fabricated pervious concrete was investigated through laboratory experiments, and a PCPC pavement section was paved in a pedestrian road for the purpose. Vinyl acetate ethylene (VAE) copolymer latex, polypropylene fiber, and polycarboxylate superplasticizer (SP) were added in the mixtures expecting to improve the freeze-thaw resistance of pervious concrete. The testing results indicated that in a saturated condition the PCPC could still suffer from freezing and thawing damages. The mixtures with latex modified exhibited relatively higher freeze-thaw resistance than other mixtures due to the enhancement of cementitious matrix and bonding strength between aggregate particles. In addition, single-length fibers were found have no apparent influence on the porosity and freeze-thaw resistance of PCPC.
机译:骨料颗粒之间具有互连孔隙的高孔隙率是波特兰水泥渗透混凝土(PCPC)的主要特征,这使其具有许多环保功能。然而,由于其开孔结构,导致强度和耐用性显着降低,PCPC的主要关注和争议话题之一是其在极冷气候下的耐用性。在这项研究中,通过实验室实验研究了现场制造的透水混凝土的抗冻融性,并为此目的在人行道上铺设了PCPC路面。在混合物中添加了乙酸乙烯酯乙烯(VAE)共聚物胶乳,聚丙烯纤维和聚羧酸盐高效减水剂(SP),以期改善透水性混凝土的抗冻融性。测试结果表明,在饱和条件下,PCPC仍可能遭受冰冻和融化破坏。由于胶凝基质的增强和聚集颗粒之间的粘结强度的增强,乳胶改性的混合物比其他混合物具有相对更高的抗冻融性。另外,发现单长度纤维对PCPC的孔隙率和抗冻融性没有明显的影响。

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