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考虑破损泡沫前补偿设计的泡沫混凝土制备方法

Translated title of the contribution: Foam Concrete Design and Preparation Method Considering the Pre-compensation of Damaged Foam
  • 郝逸飞
  • , 郭瑞云
  • , 梁恺康*
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

To investigate the impact of various factors on foam breakage in foam concrete and enhance the quality of the final products, this study examined the effects of mixing speed, water-cement ratio, and design density on the defoaming rate. Furthermore, a mix ratio design method for foam concrete, known as pre-compensation, was introduced to compensate for the damaged foam content and remove excess water beforehand. Foam concretes ranging from 400 kg / m3 to 1 000 kg / m3 were prepared according to the pre / post compensation method, and their physical and mechanical properties were compared. Results demonstrate that the compressive strength of foam concrete prepared using the pre-compensation method increases by up to 39. 6% at the same density level compared to the post-compensation method. Notably, the pre-compensation method offers simplicity over the post-compensation method, which requires multiple “filling and weighing” procedures during practical engineering. This simplicity reduces the risk of pipe plugging during long-distance operations and enhances both the quality of foam concrete and the overall engineering process. © 2024 Beijing University of Technology. All rights reserved.
Translated title of the contributionFoam Concrete Design and Preparation Method Considering the Pre-compensation of Damaged Foam
Original languageChinese (Simplified)
Pages (from-to)396-404
JournalBeijing Gongye Daxue Xuebao / Journal of Beijing University of Technology
Volume50
Issue number4
Online published10 Apr 2024
DOIs
Publication statusPublished - Apr 2024

Research Keywords

  • 泡沫混凝土
  • 泡沫破损
  • 前补偿法
  • 力学性能
  • 物理发泡
  • 道路工程
  • foam concrete
  • foam damage
  • pre-compensation method
  • mechanical property
  • physical foaming
  • road engineering

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