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BRIGE: Linking the Microstructure, Performance, and Sustainability of Mixed Glass Cullet Blended Cements

BRIGE: Linking the Microstructure, Performance, and Sustainability of Mixed Glass Cullet Blended Cements
BRIGE:将混合碎玻璃混合水泥的微观结构、性能和可持续性联系起来
批准号:
1032636
负责人:
Kyle Riding
金额:
$17.5万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2010
资助国家:
美国
项目状态:
已结题
起止时间:
2010-09-01 至 2014-08-31

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中文摘要
翻译
这扩大参与研究启动赠款工程(BRIGE)赠款提供支持,联合收割机物理和化学数值工具,以预测与玻璃填料混凝土的性能。 如果玻璃被精细研磨,不能容易地回收成新玻璃的废玻璃有可能被用于混凝土中代替部分波特兰水泥。 实验和建模方法都将用于(1)测量混凝土中不同细度的单个玻璃类型的化学反应特性和速率,(2)测量含有磨砂玻璃的砂浆的吸水性和强度发展,以及(3)将热力学集成到现有的数值工具中,模拟水泥化学反应产物的结构排列。 然后,该模型将被用来模拟砂浆强度和吸水率时,使用不同类型和细度的玻璃。 最后,将进行灵敏度分析,以确定不同玻璃类型和细度的混合物所需的最佳研磨。 这项研究的结果可能会增加废玻璃在混凝土中的商业用途,从而使环境和基础设施受益。 该项目将揭示目前缺乏的有关混凝土中玻璃反应的基本信息,但对建模性能至关重要。 这项研究的结果将提供洞察机制的其他材料用于取代混凝土中的部分波特兰水泥,如火山灰,地面粒化高炉矿渣,和燃煤飞灰。 开发的建模组件也将适用于任何粒子系统在可变温度下的反应。 该教育计划将与研究计划相结合,将为代表性不足的群体中的中学生提供为期一天的回收工程方案。 与会者的评价将为性别问题在制定外联方案中的作用提供宝贵的见解。
英文摘要
This Broadening Participation Research Initiation Grants in Engineering (BRIGE) grant provides support to combine physical and chemical numerical tools to predict the performance of concrete made with glass filler. Waste glass that cannot easily be recycled into new glass has the potential to be used in concrete in place of part of the Portland cement, if the glass is finely ground. Both experimental and modeling approaches will be used to (1) measure the chemical reaction properties and rates for individual glass types of different fineness in concrete, (2) measure the water absorption and strength development of mortar containing ground glass, and (3) integrate the thermodynamics into an existing numerical tool that simulates the structural arrangement of the cement chemical reaction products. The model will then be used to simulate the mortar strength and water absorption when glasses of different type and fineness are used. Finally, a sensitivity analysis will be performed to determine the optimum grinding needed for mixtures of different glass types and fineness. The results of this research will potentially allow for increased commercial use of waste glass in concrete, benefiting both the environment and infrastructure. This project will reveal fundamental information about glass reaction in concrete that is currently lacking, but vital for modeling performance. The results of this study will provide insight into the mechanisms of other materials used to replace portions of the Portland cement in concrete, such as volcanic ash, ground granulated blast furnace slag, and coal combustion fly ash. The modeling component developed will also be applicable to the reaction of any particle system at variable temperature. The education plan, to be integrated with the research program, will result in a day-long program on recycling engineering for middle school-age girls and boys with representation from underrepresented groups. Evaluations from the participants will provide valuable insights into the role of gender in designing outreach programs.
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Collaborative Research: New Natural Supplementary Cementitious Materials for Concrete
  • 批准号:
    1030939
  • 项目类别:
    Standard Grant
  • 资助金额:
    $21.06万
  • 财政年份:
    2010
  • 负责人:
    Kyle Riding
  • 依托单位:
海外基金