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Effect of Curing Temperature on the Strength of Lime Stabilized Fly Ash

机译:养护温度对石灰稳定粉煤灰强度的影响

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摘要

For popularizing the usage of fly ash as one of the dominant construction material, it is advisable to enhance and improve some properties of it by stabilizing it by addition of some suitable stabilizer like lime. This project work aims at evaluation of the effectiveness of addition of lime as an agent in stabilizing the waste product like fly ash and its suitability to be used as a construction material for structural fills and embankment materials. Fly ash used for experimentation in this project was collected from the thermal power plant of CPP- NSPCL, Rourkela Steel Plant. For evaluating the suitability of any construction material for various geotechnical engineering works its consistency properties, compaction properties, strength parameters and settlement properties are the most important properties to be tested. In this project, an attempt was made to evaluate the above stated geo-engineering properties of fly ash along with the treated fly ash with different proportion of lime. The overall testing program was conducted in two phases. In the first phase, the physical and chemical characteristics of the fly ash samples were studied by conducting Hydrometer analysis, UCS test, Permeability test and CBR test. In the second phase of the test program, fly ash was mixed with 2%, 4%, 8% and 12% of lime. Lime was added as a percentage of dry weight of Fly ash. The particular UCS samples were cured for 7, 15, 30, and 60 days with varying temperature of 10°C, 25°C, 45°C and 90°C respectively to evaluate the effect of curing temperature on strength of lime stabilized flyash.
机译:为了普及使用粉煤灰作为主要的建筑材料之一,建议通过添加一些合适的稳定剂(如石灰)使其稳定来增强和改善粉煤灰的某些性能。该项目的工作旨在评估添加石灰作为稳定粉煤灰等废品的有效剂,以及其是否适合用作结构填充料和路堤材料的建筑材料。本项目中用于实验的粉煤灰是从鲁尔凯拉钢铁厂的CPP-NSPCL热电厂收集的。为了评估任何建筑材料对各种岩土工程的适用性,其一致性,压实性,强度参数和沉降性是要测试的最重要的属性。在该项目中,尝试评估上述粉煤灰的地球工程特性以及不同石灰比例的已处理粉煤灰。整个测试程序分两个阶段进行。在第一阶段,通过进行比重计分析,UCS试验,渗透性试验和CBR试验研究了粉煤灰样品的理化特性。在测试程序的第二阶段,将粉煤灰与2%,4%,8%和12%的石灰混合。加入石灰作为粉煤灰干重的百分比。将特定的UCS样品分别在10°C,25°C,45°C和90°C的不同温度下固化7天,15天,30天和60天,以评估固化温度对石灰稳定的粉煤灰强度的影响。

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    Pani Aparupa;

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  • 年度 2014
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