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Original Articles

Characterisation of a lightly stabilised granular material by indirect diametrical tensile testing

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Pages 445-456 | Received 08 Oct 2007, Accepted 12 Jul 2008, Published online: 29 Oct 2008

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Menglim Hoy, Duong Vinh Nhieu, Apichat Suddeepong, Suksun Horpibulsuk, Arul Arulrajah, Yongfeng Deng & Artit Udomchai. (2023) Stiffness, rutting, and fatigue performance evaluation of cement-natural rubber latex stabilized recycled concrete aggregate. International Journal of Pavement Engineering 24:2.
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D. K. Paul & C. T. Gnanendran. (2013) Stress–strain behaviour and stiffness of lightly stabilised granular materials from UCS testing and their predictability. International Journal of Pavement Engineering 14:3, pages 291-308.
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Articles from other publishers (21)

Hui Li, Xue Luo, Zhangyi Gu, Qi Chen & Yuqing Zhang. (2023) Predicting crack growth of paving materials under indirect tensile fatigue loads. International Journal of Fatigue 175, pages 107818.
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Apinun BuritatumKrairerk AiamsriTeerasak Yaowarat, Apichat SuddeepongSuksun Horpibulsuk, Arul Arulrajah & Hailei Kou. (2023) Improved Fatigue Performance and Cost-Effectiveness of Natural Rubber Latex–Modified Cement-Stabilized Pavement Base at Raised Temperatures. Journal of Materials in Civil Engineering 35:3.
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Apinun BuritatumApichat SuddeepongSuksun Horpibulsuk, Artit UdomchaiArul Arulrajah, Alireza MohammadiniaJitwadee HorpibulsukMenglim Hoy. (2022) Improvement of Tensile Properties of Cement-Stabilized Soil Using Natural Rubber Latex. Journal of Materials in Civil Engineering 34:4.
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Cezary Kraszewski, Leszek Rafalski & Beata Gajewska. (2022) Effect of Compaction Ratio on Mechanical Properties of Low-Strength Hydraulically Bound Mixtures for Road Engineering. Materials 15:4, pages 1561.
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Patimapon Sukmak, Gampanart Sukmak, Suksun Horpibulsuk, Sippakarn Kassawat, Apichat Suddeepong & Arul Arulrajah. (2021) Improved Mechanical Properties of Cement-Stabilized Soft Clay Using Garnet Residues and Tire-Derived Aggregates for Subgrade Applications. Sustainability 13:21, pages 11692.
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Meng Meng, Stefan Miska, Mengjiao Yu & Evren Mehmet Ozbayoglu. (2020) Mechanical Behavior of Berea Sandstone under Cyclic Loading: An Application to Dynamic Loading of a Wellbore. SPE Journal 26:05, pages 2759-2779.
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Xiaokang Zhao, Qiao Dong, Xueqin Chen & Fujian Ni. (2021) Meso-cracking characteristics of rubberized cement-stabilized aggregate by discrete element method. Journal of Cleaner Production 316, pages 128374.
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C. T. GnanendranDalim K. Paul. (2016) Fatigue Characterization of Lightly Cementitiously Stabilized Granular Base Materials Using Flexural Testing. Journal of Materials in Civil Engineering 28:9.
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Carthigesu T. Gnanendran & Dalim K. Paul. (2016) Fatigue Behaviour of Lightly Stabilised Granular Materials from Flexural and Indirect Diametral Tensile Testing. Fatigue Behaviour of Lightly Stabilised Granular Materials from Flexural and Indirect Diametral Tensile Testing.
Dalim K. Paul & Carthigesu T. Gnanendran. (2016) Determination of Stiffness Modulus and Poisson's Ratio of Lightly Stabilized Granular Materials From Indirect Diametral Tensile Testing. Geotechnical Testing Journal 39:4, pages 20150087.
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Dalim K. PaulCarthigesu T. Gnanendran. (2016) Characterization of Lightly Stabilized Granular Base Materials Using Monotonic and Cyclic Load Flexural Testing. Journal of Materials in Civil Engineering 28:1.
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Pranshoo SolankiMusharraf Zaman. (2014) Behavior of Stabilized Subgrade Soils under Indirect Tension and Flexure. Journal of Materials in Civil Engineering 26:5, pages 833-844.
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Yuyou Yang, Guihe WangSiwei Xie. (2012) Effect of Magnesium Sulfate on the Unconfined Compressive Strength of Cement-Treated Soils. Journal of Testing and Evaluation 40:7, pages 20120132.
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D. K. Paul & C. T. Gnanendran. (2012) Characterisation of Lightly Stabilised Granular Base Materials by Flexural Beam Testing and Effects of Loading Rate. Geotechnical Testing Journal 35:5, pages 104183.
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J. PiratheepanC. T. GnanendranA. Arulrajah. (2012) Determination of c and φ from IDT and Unconfined Compression Testing and Numerical Analysis. Journal of Materials in Civil Engineering 24:9, pages 1153-1164.
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Pranshoo Solanki & Musharraf Zaman. (2011) Characterization of Lime- and Fly Ash-Stabilized Soil by Indirect Tensile Testing. Characterization of Lime- and Fly Ash-Stabilized Soil by Indirect Tensile Testing.
L. D. Suits, T. C. Sheahan, C. T. Gnanendran, J. Piratheepan, J. Ramanujam & A. Arulrajah. (2011) Accelerated Laboratory Pavement Model Test on Cemented Base and Clay Subgrade. Geotechnical Testing Journal 34:4, pages 103311.
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Carthigesu T. GnanendranJegatheesan Piratheepan. (2010) Determination of Fatigue Life of a Granular Base Material Lightly Stabilized with Slag Lime from Indirect Diametral Tensile Testing. Journal of Transportation Engineering 136:8, pages 736-745.
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J. PiratheepanC. T. GnanendranS.-C. R. Lo. (2010) Characterization of Cementitiously Stabilized Granular Materials for Pavement Design Using Unconfined Compression and IDT Testings with Internal Displacement Measurements. Journal of Materials in Civil Engineering 22:5, pages 495-505.
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L. D. Suits, T. C. Sheahan, Carthigesu Thiagarajah Gnanendran & Jegatheesan Piratheepan. (2009) Indirect Diametrical Tensile Testing with Internal Displacement Measurement and Stiffness Determination. Geotechnical Testing Journal 32:1, pages 101988.
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