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Effect of moulding water content on strength characteristics of a cement‑stabilized granular lateritic soil

机译:模塑水含量对水泥稳定粒状茎状土的强度特性的影响

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Performance of the cement-stabilized soils primarily depends on the soil type, cement quantity, moulding moisture content and ambient temperature. Control of the moulding moisture content and curing temperature are the challenges for most of the pavement engineers as these play a significant role in the strength development of stabilized soils. In the work presented here, an effort has been made to study the effect of the moulding water content on compressive strength and flexural strength of a stabilized granular lateritic soil collected from the eastern part of India. A detailed experimental programme was conducted, which involves various strength tests such as unconfined compressive strength test, California bearing ratio test and four-point flexure test. Microstructural analysis was also conducted using a scanning electron microscope and X-ray diffraction techniques to study the mechanism behind the variation of strength with varying moisture contents. Effect of moisture was also investigated through measurement of residual compressive strength. It is observed that compressive strength decreases with an increase in the moulding moisture content; however, the flexural strength increases with an increase in moulding moisture content within the testing range of moisture content around optimum moisture content (OMC), i.e. OMC-2% to OMC+2%.
机译:水泥稳定土壤的性能主要取决于土型,水泥量,模塑水分含量和环境温度。对模塑水分含量和固化温度的控制是大多数人行道工程师的挑战,因为这些工程师在稳定的土壤的强度发展中起着重要作用。在此处呈现的工作中,已经努力研究模塑水含量对从印度东部收集的稳定颗粒状斑块的抗压强度和抗弯强度的影响。进行了详细的实验计划,这涉及各种强度试验,例如无束缚的抗压强度试验,加州轴承比试验和四点挠曲试验。还使用扫描电子显微镜和X射线衍射技术进行微观结构分析,以研究具有不同水分含量的强度变化背后的机制。还通过测量残留抗压强度来研究水分的影响。观察到,压缩强度随着模塑水分含量的增加而降低;然而,弯曲强度随着在最佳水分含量(OMC)的水分含量的测试范围内的模塑范围内的增加而增加,即OMC-2%至OMC + 2%。

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