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Effect of vibration on freeze-thaw resistance of concrete.

机译:振动对混凝土抗冻融性的影响。

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摘要

Pre-stressed concrete is used for manufacturing railroad ties. Air entrainment is used in concrete railroad ties to provide durability in freeze-thaw conditions commonly present in track. Vibration practices in pre-stressed concrete railroad tie plants could contribute to excessive air loss during manufacture and thus poor freeze-thaw resistance. Rheological properties of fresh concrete significantly influence the determination of how much air is lost during vibration. This research attempted to increase understanding of the effect of vibration on air bubble distribution and freeze-thaw resistance of concrete given certain compositions and rheological properties of concrete. The objective was achieved by examining the effect of different admixtures combinations, vibration parameters, and rheological properties on the air void system and freeze-thaw resistance of concrete. This research also proposed a method to measure rheological properties of concrete when vibrated and for concrete mixtures too stiff to measure using conventional rheology measurements. Results showed that delaying the initiation of vibration can cause significant air loss but does not necessarily decrease freeze-thaw performance of concrete. Results also showed that a majority of air loss occurs in the first 30 seconds of vibration. The types of admixtures used in the concrete mixture can significantly affect the air system and freeze-thaw durability of concrete; this effect was shown to be more pronounced in mixtures with low yield stress and plastic viscosity. While the peak vibration acceleration had a mild effect, the frequency and peak velocity of vibration did not seem to have a noticeable effect on the air system and freeze-thaw performance of concrete. Results also showed that rheological properties of stiff mixtures can be estimated by running the rheology test during vibration.
机译:预应力混凝土用于制造铁路枕木。空气夹带用于混凝土铁路枕木中,以在轨道上常见的冻融条件下提供耐久性。预应力混凝土铁路联络站中的振动做法可能会导致制造过程中空气过多流失,从而导致抗冻融性差。新鲜混凝土的流变特性显着影响振动期间损失多少空气的确定。这项研究试图在给定混凝土的某些成分和流变性能的情况下,进一步了解振动对气泡分布和抗冻融性的影响。通过检查不同掺合料组合,振动参数和流变性质对混凝土气孔系统和抗冻融性的影响,实现了该目标。这项研究还提出了一种方法来测量振动时混凝土的流变特性,以及测量混凝土混合物的硬度,以至于无法使用常规流变学方法进行测量。结果表明,延迟振动的产生会导致大量的空气损失,但不一定会降低混凝土的冻融性能。结果还表明,大多数空气损失发生在振动的前30秒。用于混凝土混合物中的外加剂类型会显着影响混凝土的空气系统和冻融耐久性;在具有低屈服应力和塑性粘度的混合物中,这种作用被证明更为明显。虽然峰值振动加速度具有轻微的影响,但振动的频率和峰值速度似乎对混凝土的空气系统和冻融性能没有显着影响。结果还表明,可以通过在振动过程中进行流变测试来估计硬质混合物的流变特性。

著录项

  • 作者

    Ghadban, Ahmad A.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 192 p.
  • 总页数 192
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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