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金属矿山 ›› 2016, Vol. 45 ›› Issue (03): 180-184.

• 综合利用 • 上一篇    下一篇

粉煤灰对微膨胀碱活性骨料混凝土的影响

杨冬鹏1,2,3   

  1. 1.东北大学资源与土木工程学院,辽宁 沈阳 110819;2.深部金属矿山安全开采教育部重点实验室,辽宁 沈阳 110819;3.辽宁省水利水电勘测设计研究院,辽宁 沈阳 110000
  • 出版日期:2016-03-15 发布日期:2016-05-17

Effects of Fly-ash on Micro Expansion Concrete with Alkali-active Aggregate

Yang Dongpeng1,2,3   

  1. 1.College of Resources and Civil Engineering,Northeastern University,Shenyang 110819,China;2.Key Laboratory of Ministry of Education on Safe Mining of Deep Metal Mines,Shenyang 110006,China;3.Investigation and Design Institute of Water Resources and Hydropower Liaoning Province,Shenyang 110006,China
  • Online:2016-03-15 Published:2016-05-17

摘要: 为探究碱活性骨料在大体积混凝土工程应用的可行性,进行了混凝土中粗骨料的碱硅酸反应抑制试验、抗压强度试验、自生体积变形试验和快速冻融试验。结果表明:对所研究骨料掺加30%粉煤灰和3%~5%的轻烧氧化镁能有效抑制骨料碱硅酸反应;粉煤灰使碱活性骨料混凝土前期强度降低,后期强度提升较快,而3%~5%的轻烧氧化镁对强度影响不明显;粉煤灰会降低轻烧氧化镁产生的自生体积膨胀,但不改变轻烧氧化镁这一特性;粉煤灰对碱活性骨料混凝土抗冻性有不利影响,而轻烧氧化镁能改善混凝土抗冻性。因此,合理的粉煤灰和轻烧氧化镁掺量能使碱活性骨料在大体积混凝土中的应用成为可能。

关键词: 碱活性骨料, 碱硅酸反应, 轻烧氧化镁, 大体积混凝土, 微膨胀

Abstract: For the engineering application of alkali-active aggregate in mass concrete,the alkali-silica reaction inhibition test,compressive strength test,autogenous volume deformation test and the fast freeze-thaw test using alkali-active aggregate with different dosage of fly ash,light-burned MgO were carried out.The tests showed that:alkali-silica reaction is effectively restrained when the fly-ash content is 30% and light-burned MgO content is 3%~5%;Fly-ash make concrete early strength reduced,the late strength increased fast,and the amount of 3%~5% light-burned MgO dosage has little impact on the strength;light-burned MgO autogenous volume deformation will be reduced by hydration of fly-ash,but fly-ash cannot change this characteristics of light-burned MgO;fly-ash has adverse effects on frost resistance of concrete,and light-burned MgO can improve the frost resistance of concrete.So,the reasonable dosage of fly-ash and light-burned MgO make the alkali-active aggregate concrete possible be applied in the mass concrete.

Key words: Alkali-active aggregate, Alkali-silica reaction, light-burned MgO, Mass concrete, Micro expansion