您的位置: 专家智库 > >

国家自然科学基金(07JJ4012)

作品数:2 被引量:22H指数:2
发文基金:上海市教育委员会重点学科基金中国博士后科学基金国家自然科学基金更多>>
相关领域:农业科学化学工程更多>>

文献类型

  • 2篇中文期刊文章

领域

  • 1篇化学工程
  • 1篇农业科学

主题

  • 1篇压强度
  • 1篇树脂
  • 1篇水分
  • 1篇水分特征
  • 1篇水泥混凝土
  • 1篇水泥混凝土路
  • 1篇水泥混凝土路...
  • 1篇土路
  • 1篇膨润土
  • 1篇温度升高
  • 1篇路面
  • 1篇抗压
  • 1篇抗压强度
  • 1篇环氧
  • 1篇环氧固化剂
  • 1篇环氧树脂
  • 1篇混凝土
  • 1篇混凝土路面
  • 1篇固化剂
  • 1篇保水

传媒

  • 2篇Journa...

年份

  • 2篇2009
2 条 记 录,以下是 1-2
排序方式:
Effect of temperature on soil-water characteristics and hysteresis of compacted Gaomiaozi bentonite被引量:11
2009年
Laboratory tests under different constraint conditions were carried out to obtain the soil-water retention curves(SWRCs) of highly-compacted confined/unconfined Gaomiaozi(GMZ) bentonite at 20,40 and 80 ℃,respectively. The effect of temperature on the soil-water characteristics of the highly-compacted GMZ bentonite was analyzed. The results show that the water retention capacity of the highly-compacted GMZ bentonite decreases as the temperature increases under unconfined and confined conditions. At a certain temperature,the constraint conditions have little influence on the water retention capacity of the compacted bentonite at high suction,but the water retention capacity of the confined specimen is lower than that of the unconfined specimen at low suction. Under unconfined conditions,the hysteretic behaviour of the compacted bentonite decreases with increasing temperature. At high suction(>4 MPa) ,the hysteretic behaviour of the unconfined bentonite tends to increase with the decrease of the suction. In summary,the hysteretic behaviour of the compacted bentonite is not significant.
叶为民万敏陈宝陈永贵崔玉军王驹
关键词:温度升高膨润土保水能力水分特征
Strength of copolymer grouting material based on orthogonal experiment被引量:11
2009年
Using the orthogonal experimental design method involving three factors and three levels, the flexural strength and the compressive strength of copolymer grouting material were studied with different compositions of water-cement ratio (mass fraction of water to cement), epoxy resin content, and waterborne epoxy curing agent content. By orthogonal range and variance analysis, the orders of three factors to influence the strength, the significance levels of different factors, and the optimized compound ratio scheme of copolymer grouting material mixture at different curing ages were determined. An empirical relationship among the strength of copolymer grouting material, the water-cement ratio, the epoxy resin content, and the waterborne epoxy curing agent content was established by multivariate regression analysis. The results indicate that water-cement ratio is the most principal and significant influencing factor on the strength. eEpoxy resins content and waterborne epoxy curing agent content also have a significant influence on the strength. But epoxy resin content has a greater influence on the 7-day and 28-day flexural strength, and waterborne epoxy curing agent content has a greater influence on the 3-day flexural strength and the compressive strength. The copolymer grouting material with water-cement ratio of 0.4, epoxy resin content of 8% (mass fraction) and waterborne epoxy curing agent content of 2% (mass fraction) is the best one for repairing of cement concrete pavement. The flexural strength and the compressive strength have good correlation, and the ratio of compressive strength to flexural strength is between 1.0 and 3.3.
陈永贵叶为民张可能
关键词:水泥混凝土路面抗压强度环氧树脂环氧固化剂
共1页<1>
聚类工具0