长江科学院院报 ›› 2012, Vol. 29 ›› Issue (12): 103-108.DOI: 10.3969/j.issn.1001-5485.2012.12.021

• 水工结构与材料 • 上一篇    下一篇

细骨料品种对外掺MgO砂浆膨胀性能的影响研究

李 洋, 陈 霞, 王述银   

  1. 长江科学院 材料与结构研究所, 武汉 430010
  • 收稿日期:2011-10-27 修回日期:2011-11-29 出版日期:2012-12-01 发布日期:2012-12-18
  • 作者简介:李 洋(1986-),男,湖北武汉人,硕士,主要从事水工混凝土研究与应用
  • 基金资助:

    国家自然科学基金(51109015);国家自然科学基金重点项目(50539010);中央级公益性科研院所基本科研业务费(CKSF2012035/CL)

Effect of Fine Aggregates on Expansive Performance of MgO Mortar

LI Yang, CHEN Xia, WANG Shu-yin   

  1. Material and Engineering Structure Department, Yangtze River Scientific Research Institute, Wuhan 430010, China
  • Received:2011-10-27 Revised:2011-11-29 Online:2012-12-01 Published:2012-12-18

摘要: 为了阐明骨料岩性对MgO混凝土膨胀特性的影响规律及作用机理,研究了20,38,60℃水养护温度下不同骨料砂浆的膨胀率,并结合能谱、元素聚类及相分布等微观测试手段深入分析了水泥基体区与细骨料界面过渡区的微结构及元素富集特性。研究结果表明:养护温度从20℃提高至60℃时,砂浆膨胀率增大,且天然砂与辉石闪长岩砂浆的膨胀率最高,其次为灰岩砂浆,玄武岩砂浆最小。38℃水养条件下,辉石闪长岩砂浆和玄武岩砂浆界面区的Ca,Mg元素富集程度高于灰岩与天然砂砂浆,天然砂较高的表面孔隙率和表面含水率有助于吸引更多的MgO迁移至界面区,快速水化形成晶粒尺寸较大、结构较疏松的“外部膨胀水化产物”水镁石;骨料颗粒通过影响界面过渡区的元素富集特性、水化物相类型和形态来影响MgO砂浆的膨胀特性,含有细粉的人工细骨料可以通过改变外掺MgO水泥水化程度和MgO含量来改变MgO砂浆的特性。

关键词: 细骨料, 膨胀率, 界面区, 元素聚类

Abstract: With an objective of disclosing the effect of aggregate lithology on MgO mortar expansion, we investigated the expansive performances of cement mortar made from various fine aggregates under water curing at 20℃, 38℃ and 60℃ respectively, and probed into the microstructure and elements enrichment on the interfacial transition zone(ITZ) between cement matrix and fine aggregate by employing of EDS, Elements enrichment and BEIW. Results indicated that when curing temperature was elevated from 20℃ to 60℃, mortar expansion was increased, the greatest of which was mortar made from gabbro and natural sand, followed by mortar made from limestone sand and then basalt. Cured in water at 38℃, the enrichment of elements Ca and Mg in ITZ of gabbro and basalt mortar grew more obviously than that of limestone and natural sand mortar. Higher surface porosity and moisture content of natural sand was preferable for MgO migrating to ITZ for hydration, and favorable for the growth of brucite, an exterior expansive hydration products of larger size. Overall, the effect of fine aggregates on MgO mortar expansion was achieved by changing elements enrichment and patterns and morphology of hydration products on the ITZ. The artificial fine aggregate containing fine powder can change the expansion property of MgO mortar by changing the hydration level of MgO cement and the volume of total MgO.

Key words: fine aggregate, expansion rate, interfacial transition zone(ITZ), element enrichment

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