石灰对 Jamshoro 页岩压实特性的影响

IF 0.6 Q3 ENGINEERING, MULTIDISCIPLINARY Jurnal Kejuruteraan Pub Date : 2023-09-30 DOI:10.17576/jkukm-2023-35(5)-11
Shoaib Abdullah, Nouman Ali, Muhammad Behram, Aneel Kumar
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引用次数: 0

摘要

对于任何土木工程来说,最复杂的问题就是土壤上的结构是否脆弱。贾姆索罗页岩就是这种问题土壤的一个例子,它一接触到水分就会膨胀,一旦干燥就会回缩。这种现象对建在页岩上的结构和道路网络非常不利,会形成沉降和裂缝。必须通过化学或机械技术对这类土壤进行稳定处理,使其足够坚固,以承受荷载并抵抗沉降和开裂。利用或添加任何化学制剂来稳定地层是一种可持续的方法;它可以在不取代或浪费现有土壤的情况下加强土壤的特性。在这项研究中,对页岩进行了石灰处理,以观察土壤岩土特性的改变。按土壤干重混合了 0%、7%、8% 和 9% 的不同比例的熟石灰,以研究石灰对页岩的压实和塑性特征的影响。在实验室中进行了各种试验,如改良压实试验、液限试验和塑限试验。结果表明,Jamshoro 页岩的塑性指数、最佳含水量和最大干密度等特性都得到了改善。页岩的塑性指数从 24% 降到了 2%。这表明石灰可用作经济环保的稳定剂。
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Impact of Lime on Compaction Characteristics of Jamshoro Shale
The most complex problem for any civil engineering work is when the structure which is laying on the soil is weak. Jamshoro shale is an example of such problematic soil, which gets expanded as soon as it is exposed to moisture and shrinks back once it dries. Such phenomenon is very critical for the structures and road networks built on shale forming settlements and cracks. Such kinds of soil must be stabilized by chemical or mechanical techniques to make them strong enough to carry the loads and resist settlements and cracking. The stabilization of the ground by utilizing or adding any chemical agent is a sustainable approach; it strengthens the soil properties without replacing or wasting the soil present. In this research, the treatment of lime with shale is been performed to observe the modification of the geotechnical characteristics of the soil. The different proportions of Hydrated Lime 0%, 7%, 8%, and 9% were mixed by the dry weight of soil to investigate the effect of lime on the compaction and plasticity characteristics of the shale. Various tests such as the modified proctor test, liquid limit test, and plastic limit test performed in the laboratory. From the results, it was observed that the properties of Jamshoro shale such as plasticity index, optimum moisture content, and maximum dry density were improved. The plasticity index of shale dropped to 2% from 24%. That suggests lime can be used as an economical and eco-friendly stabilizing agent.
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Jurnal Kejuruteraan
Jurnal Kejuruteraan ENGINEERING, MULTIDISCIPLINARY-
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24 weeks
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