The stress–strain and degradation response of railway ballast to imparted train loading is often largely dominated by intrinsic properties, including particle size and particle-size distribution (PSD). To investigate these aspects, a series of large-scale triaxial cyclic tests were conducted on railway ballast. To investigate the influence of grading and frequency on the resilient modulus of railroad ballast, laboratory data from previous work were analysed and discussed. It was observed that the resilient modulus of ballast decreased with an increase in the coefficient of uniformity and cyclic loading frequency. However, for samples with the constant coefficient of uniformity, the resilient modulus appeared to decrease as the particle size and the associated broadness increased. It was also found that the resilient modulus underwent substantial reduction with the evolution of particle breakage by shifting the initial PSD to a broader range.
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December 2018
Research Article|
December 17 2018
Grading and frequency dependence of the resilient modulus of ballast Available to Purchase
Y. Sun
;
Y. Sun
*Key Laboratory of Ministry of Education for Geomechanics and Embankment Engineering, Geotechnical Engineering Research Center of Jiangsu Province, Hohai University, Nanjing, China
†ARC Centre of Excellence for Geotechnical Science and Engineering (CGSE), University of Wollongong, NSW, Australia
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S. Nimbalkar;
S. Nimbalkar
‡School of Civil and Environmental Engineering, University of Technology Sydney, Ultimo NSW, Australia
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C. Chen
C. Chen
§School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan, China
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Publisher: Emerald Publishing
Received:
May 15 2018
Revision Received:
October 29 2018
Accepted:
October 30 2018
ICE Publishing: all rights reserved
2018
Geotechnique Letters (2018) 8 (4): 305–309.
Article history
Received:
May 15 2018
Revision Received:
October 29 2018
Accepted:
October 30 2018
Citation
Sun Y, Nimbalkar S, Chen C (2018), "Grading and frequency dependence of the resilient modulus of ballast". Geotechnique Letters, Vol. 8 No. 4 pp. 305–309, doi: https://doi.org/10.1680/jgele.18.00084
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