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Durability of ternary blended cements in bridge applications.

机译:三元混合水泥在桥梁应用中的耐久性。

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摘要

The long-term performance of bridge components can be greatly influenced by the durability parameters including freeze-thaw and chloride permeability resistance. Both freeze-thaw resistance and chloride permeability resistance were tested along with the compressive strength of 24 high performance concrete (HPC) mixtures. The effects of binary and ternary blended HPC including silica fume and fly ash were tested with respect to freeze thaw resistance and chloride permeability. The study included observations of how water to binder ratio and curing time affected the pore structure development of fly ash and silica fume concretes when tested using the Rapid Choride Permeability Test.;The chloride permeability test results prove that both fly ash and silica fume are useful in reduction of chloride permeability. It is evident that fly ash is generally much slower reacting than silica fume from the tests conducted at 7, 28, and 56 days of moist curing. Results also indicate an increase in chloride penetration with increased w/b ratio dependent upon cement composition. A reduction in chloride permeability values can also be seen with increased curing time with the largest reduction between 7 and 28 days when tests were conducted at 7, 28, and 56 days. The results indicate that properly air entrained HPC is generally resistant to the effects of freezing and thawing as there was minimal degradation of the dynamic modulus of elasticity in all specimens tested.
机译:桥梁部件的长期性能会受到包括冻融和耐氯化物渗透性在内的耐久性参数的极大影响。测试了24种高性能混凝土(HPC)混合物的抗冻融性和抗氯化物渗透性以及抗压强度。就抗冻融性和氯化物渗透性而言,测试了包括硅灰和粉煤灰在内的二元和三元混合HPC的效果。该研究包括使用快速氯化物渗透性测试进行测试时观察到的水与粘合剂的比例以及固化时间如何影响粉煤灰和硅粉混凝土的孔结构的发展。氯化物渗透性测试结果证明粉煤灰和硅粉均是有用的降低氯化物渗透性。很明显,在7、28和56天的湿固化测试中,粉煤灰的反应通常比硅粉慢得多。结果还表明,取决于水泥组成,氯化物渗透率随w / b比的增加而增加。当在7、28和56天进行测试时,随着固化时间的增加,氯化物渗透率值也会降低,其中最大的降低是在7到28天之间。结果表明,适当地夹带空气的HPC通常可以抵抗冷冻和融化的影响,因为在所有测试的样品中,动态弹性模量的降幅最小。

著录项

  • 作者

    Stundebeck, Curtis J.;

  • 作者单位

    University of Missouri - Columbia.;

  • 授予单位 University of Missouri - Columbia.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2007
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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