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Small-Strain Shear Modulus and Strength Increase of Cement-Treated Clay

机译:小应变剪切模量和水泥砂土的强度提高

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摘要

A simple nondestructive technique was used as an alternative method to monitor the hardening of cement-treated clay as a function of time. The principle of this monitoring technique is based on the use of bender elements to measure the small-strain shear modulus (G_0) at various time intervals. The strength increase was monitored by conventional unconfined compression testing. Experimental work was carried out on Kaolin clay treated with Portland cement and blast furnace slag cement at different dosages. The results showed that G_0, as well as strength, of cement-treated samples increases logarithmically with time. However, blast furnace slag cement produces a slower hardening rate early after mixing. It was found that for each binder type, the G_0 increase and the strength increase, when normalized, follow a common trend. Such a hardening function may be used as the basis of a strength prediction rule. The functions obtained are in good agreement with data on other cement-treated inorganic clays published in the literature.
机译:一种简单的非破坏性技术被用作监测水泥处理的粘土随时间变化的硬化方法。此监视技术的原理是基于使用弯曲器元素在不同的时间间隔测量小应变剪切模量(G_0)。通过常规的无限制压缩测试来监测强度的增加。对用不同剂量的硅酸盐水泥和高炉矿渣水泥处理的高岭土进行了实验工作。结果表明,水泥处理的样品的G_0和强度随时间呈对数增加。但是,高炉矿渣水泥在混合后早期会产生较慢的硬化速率。发现对于每种粘结剂类型,当归一化时,G_0增加并且强度增加遵循共同的趋势。这样的硬化功能可以用作强度预测规则的基础。获得的功能与文献中发表的其他水泥处理的无机粘土的数据非常吻合。

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