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    Moisture Ingress of Cemented Basecourse

    168857_42268_63703.pdf (279.6Kb)
    Access Status
    Open access
    Authors
    Yeo, Yang sheng
    Jitsangiam, Peerapong
    Nikraz, Hamid
    Date
    2011
    Type
    Conference Paper
    
    Metadata
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    Citation
    Yeo, Yang Sheng and Jitsangiam, Peerapong and Nikraz, Hamid. 2011. Moisture Ingress of Cemented Basecourse, in Shahin, M. and Nikraz, H. (ed), International Conference on Advances in Geotechnical Engineering (ICAGE 2011), Nov 7-9 2011, pp. 387-392. Perth, W.A: Curtin University, Department of Civil Engineering.
    Source Title
    Proceedings of the International Conference on Advances in Geotechnical Engineering
    Source Conference
    International Conference on Advances in Geotechnical Engineering (ICAGE 2011)
    ISBN
    978-0-646-55142-5
    School
    Department of Civil Engineering
    URI
    http://hdl.handle.net/20.500.11937/37790
    Collection
    • Curtin Research Publications
    Abstract

    Moisture ingress is a primary catalyst for pavement damage and plays a key role in the performance of pavement materials in service. This is evident from the issues faced as a result of high moisture sensitivity of crushed rocks used in the construction of Kwinana Freeway in Western Australia. Cement treatment is deemed a potential solution to reduce moisture sensitivity. The moisture ingress into cement treated crushed rocks can be based on the unsaturated flow theory and quantified with the term Sorpitivity, S, i.e. the square root rate of inflow volume. The linearity of the Sorptivity when plotting inflow volume against the square root of time, t0.5 also provides an indication of the homogeneity of the material. This paper assessed the Sorptivity of cement treated crushed rocks based on results from the Tube Suction Test procedures developed by Texas Department of Transportation (TxDOT). The tests shows that Sorpitivity decreases with the increase in cement content which means that higher cement content reduces the moisture sensitivity of pavements. The Sorpitivity also showed a high least-square regression of R2 > 0.9, which indicates that the materials are homogeneous.

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