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Soft subgrades' stabilization by using various fly ashes

机译:通过使用各种飞灰来稳定软基

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This publication presents the results of research involving different types of self-cementing fly ashes (without any other activators) for the stabilization of four different types of soft subgrades from various road sites in Wisconsin, USA. The strength approaches were applied to estimate the optimum mixture design and to determine the thickness of the stabilized layer. The stabilized soil samples were prepared by mixing fly ash at different contents at varying water contents. The performance of fly ash stabilized subbase depends both on the specific source of fly ash and the engineering properties of soils. It is suggested that the performance analysis of fly ash should be based upon the laboratory tests such as index properties, compaction, unconfined compressive strength and CBR tests of a specific site. This is suggested rather than using the study of the physical properties and chemical composition of fly ash and. soil. As disclosed in the literature, the strength gain due to stabilization depends mainly upon three factors; ash content, molding water content and compaction delay. The samples were subjected to unconfined compression strength and Califomia bearing ratio (CBR) tests after 7 days curing time to develop water content-strength relationship. To evaluate the impact of compaction delay that commonly occurs in the field during construction, the sets of samples were compacted 2 h later after mixing with water. The unconfined compression strength and CBR tests were performed and used to determine the thickness of the stabilized layer in pavement design. All of these factors were taken into account throughout this research. (c) 2005 Elsevier B.V. All rights reserved.
机译:该出版物介绍了涉及不同类型的自固型粉煤灰(无任何其他活化剂)的研究结果,以稳定美国威斯康星州不同道路现场的四种不同类型的软质路基。应用强度方法来评估最佳混合物设计并确定稳定层的厚度。通过将不同含量的粉煤灰在不同的含水量下混合来制备稳定的土壤样品。粉煤灰稳定的基层的性能取决于粉煤灰的特定来源和土壤的工程特性。建议粉煤灰的性能分析应基于实验室测试,例如指标性能,压实度,无侧限抗压强度和特定地点的CBR测试。这是建议而不是使用对粉煤灰的物理性质和化学组成的研究。泥。如文献中所公开的,由于稳定​​而产生的强度增加主要取决于三个因素。灰分,成型水含量和压实延迟。固化7天后,对样品进行无侧限抗压强度和加利福尼亚定焦比(CBR)测试,以建立水含量与强度的关系。为了评估在施工期间通常在现场发生的压实延迟的影响,在与水混合后2小时后将样品组压实。进行无侧限抗压强度和CBR测试,并用于确定路面设计中稳定层的厚度。在整个研究过程中,所有这些因素都被考虑在内。 (c)2005 Elsevier B.V.保留所有权利。

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