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Development of Accelerated Test Methods for Ettringite Related Damage

Development of Accelerated Test Methods for Ettringite Related Damage
钙矾石相关损伤加速试验方法的开发
批准号:
9988725
负责人:
Amde Amde
金额:
$5.0万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-03-15 至 2003-02-28

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中文摘要
翻译
钙矾土相关损伤加速试验方法的发展美国国家科学基金会提案9988725号(UM 990928-8477号)摘要本研究将评估膨胀率测量作为延迟钙矾石形成的一种可能的快速试验方法。将不同含钾量的混凝土试件浇注并在高水分条件下储存,以加速DEF。利用基于不完全Gamma函数的非线性曲线拟合算法对测量的膨胀率数据进行分析,以提取特征膨胀参数。这些参数将与钙矾石形成量的时间分辨测量相关联,这将通过扫描电子显微镜、定量X射线衍射、同步辐射能量色散衍射和其他手段相结合来确定。此外,计算机层析成像将用于裂纹扩展的3D成像。体重增加作为湿度循环的函数也将作为一种可能的替代快速测试方法进行探索。钙矾石或ASR凝胶的形成涉及到水的吸收,这导致样品的永久重量或质量增加。由于质量可以比长度变化更灵敏和方便地测量,这表明有可能用与DEF更直接相关的重量变化测量来取代膨胀测量。本研究将有助于了解DEF产生的原因,并将有助于DEF快速检测方法的发展。
英文摘要
Development Of Accelerated Test Methods for Ettringite Related DamageNSF Proposal No. 9988725 (UM No. 990928-8477)ABSTRACT The study will evaluate expansion rate measurement as a possible rapid test method for delayed ettringite formation (DEF). Concrete specimens with different amount of potassium will be cast and stored under high moisture conditions to accelerate DEF. The measured expansion rate data will be analyzed using nonlinear curve fitting algorithms based on the Incomplete Gamma function in order to extract characteristic expansion parameters. These parameters will then be correlated with time-resolved measurements of the amount of ettringite formed, which will be determined through a combination of scanning electron microscopy, quantitative X-ray diffraction, synchrotron radiation energy dispersive diffraction, and other means. In addition, computer tomography will be used for 3D imaging of crack propagation. Weight gain as a function of humidity cycling will also be explored as a possible alternative rapid test method. The formation of ettringite or ASR gel involves the uptake of water, which results in a permanent weight, or mass, gain of the sample. Since mass can be measured more sensitively and conveniently than length change, this suggests the possibility of replacing the expansion measurement with a weight change measurement that is more directly related to DEF. The study will contribute to the understanding of the cause for the distress mechanism in DEF, and will contribute to the development of a rapid test method for DEF.
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