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Behavior of Soil-Fly Ash-Lime Blends Under Different Curing Temperatures

机译:不同固化温度下土壤 - 飞灰 - 石灰混合的行为

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Compaction of layers of soil-fly ash-lime blends is often used to improve soil conditions for infrastructure projects. Such understanding is the starting point to develop more rational dosages that allow for a more efficient use of resources. To achieve this objective the present research aims to quantify the influence of curing temperature (T), amount of lime (L), porosity (η), and porosity/lime ratio (η/L_(iv)) on the assessment of splitting tensile strength (q_t) and unconfined compressive strength (q_u) of sand-coal fly ash-lime blends. A series of splitting tensile and unconfined compression tests were carried out in the present work. The results show a linear function fits well the relation between q_t and qu with L, and a power function fits well as the relation between q_t and q_u with η for all curing temperatures of the specimens. It was also shown that the porosity/lime ratio (η/L_(iv)) is a good parameter in the evaluation of q_t and q_u of the studied blends for the whole range of lime, porosities and temperature studied, at specific amount of coal fly ash (25%) and curing time period (28 days). The volumetric cementitious material content (L_(iv)) is adjusted by an exponent (0.30 for all curing temperatures blends) to end in unique correlations for each temperature. For the sand, coal fly ash, lime, curing time period and curing temperatures, a unique relationship was achieved linking q_t as well q_u to η; L_(iv) and T. For a given curing time period (28 days), the relations q_t-η/L_(iv) and q_u-η/L_(iv) versus T are shown to vary linearly up to a threshold, when asymptotes occur. Finally, the relation between q_t/q_u is a constant and equal to 0.19 for the whole range of L, η and T studied.
机译:土壤 - 飞灰 - 石灰混合物层的压实通常用于改善基础设施项目的土壤条件。这种理解是开发更多理性剂量的起点,允许更有效地使用资源。为了实现这一目标,本研究旨在量化固化温度(T),石灰(L),孔隙率(η)和孔隙率/石灰比(η/ L_(IV))对分裂拉伸的影响的影响砂煤粉煤灰 - 石灰混合物的强度(Q_T)和非整合压缩强度(Q_U)。在本作工作中进行了一系列分裂拉伸和无束缚的压缩测试。结果显示线性函数很好地适合Q_T和QU与L之间的关系,并且功率函数非常适合Q_T和Q_U与η的关系,对于标本的所有固化温度。还表明,孔隙率/石灰比(η/ L_(IV))是评估Q_T和Q_U的Q_T和Q_U的良好参数,用于在煤炭的特定量的煤炭中研究的整体石灰,孔隙率和温度飞灰(25%)和固化时间(28天)。体积胶凝材料含量(L_(IV))由指数(0.30用于所有固化温度混合)调节,以结束每个温度的独特相关性。对于砂,煤粉煤灰,石灰,固化时间段和固化温度,实现了与Q_U相连的Q_U与η;对于给定的固化时间段(28天),Q_T-η/ L_(iv)和Q_U-η/ L_(iv)与t的关系达到阈值,当发生渐近。最后,对于L,η和T的整个范围,Q_T / Q_U之间的关系是恒定的,等于0.19。

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