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Effect of fibre reinforcement on CBR behaviour of lime-blended expansive soils: reliability approach

机译:纤维增强对石灰混合膨胀土CBR性能的影响:可靠性方法

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摘要

The use of synthetic fibres as reinforcement to stabilise expansive soils is gaining momentum. As a contribution towards this growing field of research two different types of synthetic fibres, Fiber Mesh (R) and Fiber Cast (R), were evaluated as a stabilisation alternative for expansive soils in the presence of lime. California bearing ratio (CBR) is chosen as a performance indicator as it is a good pointer towards pavement effectiveness. Variables such as length and amount of the fibres as well as curing period were studied. Both deterministic and probabilistic (or reliability) analyses is presented in this paper. While the deterministic analysis helps in understanding the measured experimental data, the probabilistic approach accounts for the stochastic nature of the experimental data and provides a better rationale for the design methods. The deterministic approach showed that the improvement in CBR increased with higher fibre contents and longer lengths and the effect was prominent when lime was used as a stabiliser. There were some exceptions to this behaviour, which were noted in the paper. The probabilistic analysis showed that the amount and lengths of fibres were important factors in CBR strength. It was also determined that the variation in the target CBR value had a considerable effect on optimising the length and amount of the fibres.
机译:使用合成纤维作为稳定膨胀土的增强材料的势头越来越大。作为对这一不断发展的研究领域的贡献,人们评估了两种不同类型的合成纤维,即纤维网(R)和纤维铸件(R),作为石灰存在下膨胀土的稳定替代品。选择加利福尼亚承载比(CBR)作为性能指标,因为它可以很好地指示铺装效果。研究了诸如纤维的长度和数量以及固化时间之类的变量。本文介绍了确定性和概率(或可靠性)分析。虽然确定性分析有助于理解所测得的实验数据,但概率方法说明了实验数据的随机性,并为设计方法提供了更好的原理。确定性方法表明,随着纤维含量的增加和纤维长度的增加,CBR的提高也随之增加,并且在使用石灰作为稳定剂时效果显着。该行为中有一些例外,已在本文中提到。概率分析表明,纤维的数量和长度是影响CBR强度的重要因素。还确定目标CBR值的变化对优化纤维的长度和数量有很大影响。

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