Behaviour of stress wave propagation in utility timber pole

M. Subhani, J. Li, B. Samali

    Research output: Chapter in Book / Conference PaperConference Paperpeer-review

    1 Citation (Scopus)

    Abstract

    ![CDATA[Non-destructive testing has been used for many years to evaluate the in situ condition of timber piles. Longitudinal impact is usually applied on the top of piles to induce longitudinal wave to detect faults in piles due to the fact that the longitudinal wave has less dispersive nature at low frequency. On the other hand, when it comes to evaluation of poles in situ, it is different as poles are partly embedded in soil and it is more practical to produce bending waves, as the top of the pole is not easily accessible. However, bending wave is known for its highly dispersive nature; especially in the low frequency range which is usually induced in low strain integrity testing. As bending wave can be considered as a hybrid of longitudinal and shear waves, it will be helpful, if it could detect the component of these two waves separately. To do so, components of displacements or accelerations along radial and longitudinal directions need to be determined. By applying Fast Fourier Transform (FFT) on the signals, the dominant frequencies can be obtained. It has been found that, the longitudinal component decreases along radial direction which indicates the presence of bending wave component and this finding allows to the application of Continuous Wavelet Transform (CWT) on the longitudinal component of wave signals in order to obtain phase velocity. Phase velocities at different frequencies are then determined to draw the dispersive curve and compare with analytical phase velocity curve. The dispersion curve matched well with the analytical curve.]]
    Original languageEnglish
    Title of host publicationFrom Materials to Structures: Advancement Through Innovation: Proceedings of the 22nd Australasian Conference on the Mechanics of Structures and Materials, ACSM 22, Sydney, Australia, 11-14 December 2012
    PublisherCRC Press
    Pages1077-1082
    Number of pages6
    ISBN (Print)9780415633185
    DOIs
    Publication statusPublished - 2013
    EventAustralasian Conference on the Mechanics of Structures and Materials -
    Duration: 1 Jan 2013 → …

    Conference

    ConferenceAustralasian Conference on the Mechanics of Structures and Materials
    Period1/01/13 → …

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