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Effect of Salt Admixtures on Air Content in Fresh Air-Entrained Concretes

机译:盐掺合料对新鲜加气混凝土中空气含量的影响

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摘要

Combined with the foam stability of air-entraining admixtures (AEAs), the effect of salt admixtures (including CaCl_2, Ca(NO_3)2, Na2SO_4 and NaNO_2) on morphology of air-voids in cement paste with a couple kinds of air-entraining admixtures (including SJ-2 and DH-9) was examined by means of SEM. In accordance with foam stability and the morphology, air content of fresh concrete was studied and analyzed more deeply. The results pointed out that these salts mitigated the foam stability of SJ-2 solution, and the deteriorated effect of CaCl_2 and Ca(NO_3)_2 was more obvious. By contrast, these salts seemed to make no difference to the foam stability, but CaCl_2 and Ca(NO_3)_2 reduced the foaming power of DH-9 solution. The walls of air voids in cement paste without using AEAs were compact. Differently, it was a distinct shell that formed around most of the entrained air voids with AEAs. This shell connected with capillary pores. For SJ-2 mixed, the air content of fresh air-entrained concretes was decreased by CaCl_2 and Ca(NO_3)_2, but was enhanced by Na_2SO_4 and NaNO_2; for DH-9 mixed, with the increasing usage of CaCl_2, Ca(NO_3)_2, Na_2SO_4 or NaNO_2, the air content was rising gradually.
机译:结合引气剂(AEAs)的泡沫稳定性,盐掺合剂(包括CaCl_2,Ca(NO_3)2,Na2SO_4和NaNO_2)对水泥浆中气孔形态的影响通过SEM检查混合物(包括SJ-2和DH-9)。根据泡沫的稳定性和形态,对新鲜混凝土的空气含量进行了更深入的研究和分析。结果表明,这些盐降低了SJ-2溶液的泡沫稳定性,并且CaCl_2和Ca(NO_3)_2的降解作用更加明显。相比之下,这些盐似乎对泡沫稳定性没有影响,但是CaCl_2和Ca(NO_3)_2降低了DH-9溶液的发泡能力。不使用AEA的水泥浆中的气孔壁是致密的。与之不同的是,它是一个独特的壳体,围绕着带有AEA的大多数夹带气孔。该壳与毛细孔相连。对于SJ-2混合料,CaCl_2和Ca(NO_3)_2降低了新鲜加气混凝土的空气含量,而Na_2SO_4和NaNO_2则提高了空气含量。对于DH-9混合气,随着CaCl_2,Ca(NO_3)_2,Na_2SO_4或NaNO_2用量的增加,空气含量逐渐增加。

著录项

  • 来源
  • 会议地点 Beijing(CN)
  • 作者单位

    Harbin Institute of Technology, School of Transportation Science Engineering, Department of Road Materials and Engineering, China;

    Harbin Institute of Technology, School of Transportation Science Engineering, Department of Road Materials and Engineering, China;

    Harbin Institute of Technology, School of Transportation Science Engineering, Department of Road Materials and Engineering, China;

    Harbin Institute of Technology, School of Transportation Science Engineering, Department of Road Materials and Engineering, China;

    Harbin Institute of Technology, School of Transportation Science Engineering, Department of Road Materials and Engineering, China;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 混凝土及混凝土制品;
  • 关键词

    salt admixture; foam stability; morphology of air-voids; air content;

    机译:盐混合物泡沫稳定性;气孔的形态空气含量;

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