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Original Articles

Development and evaluation of hot mix asphalt stability index

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Pages 529-539 | Received 21 Oct 2008, Accepted 20 Apr 2010, Published online: 25 May 2010

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Muhammad Akhtar Tarar, Ammad Hassan Khan & Zia ur Rehman. (2022) Evaluation of effects of soybean derived oil and aggregate petrology on the performance of asphalt mixes. Road Materials and Pavement Design 23:2, pages 308-334.
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Ahmad M. Abu Abdo. (2012) Sensitivity analysis of a new dynamic modulus (| E*|) model for asphalt mixtures. Road Materials and Pavement Design 13:3, pages 549-555.
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Articles from other publishers (15)

Xue Wang, Shihui Shen, Hai Huang & Shuai Yu. (2023) Understanding the role of particle rotation in asphalt mixture compaction by tracking coarse aggregate movement. Construction and Building Materials 395, pages 132325.
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Mohammed Abu Saq, Emad Kassem, Fouad Bayomy & Ahmed Muftah. (2022) Development of Gyratory Stability Mathematical Model and Evaluation of Its Sensitivity to Mix Composition. International Journal of Pavement Research and Technology.
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Dina A. Rasool, Miami M. Hilal & Mohammed Y. Fattah. (2022) Typical strength of asphalt mixtures compacted by gyratory compactor. Journal of the Mechanical Behavior of Materials 31:1, pages 186-192.
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M.A. Dalhat, Khaleel Al-Adham, Hamad I. Al-Abdul Wahhab & Arshad Jamal. (2022) Refinement and estimation of asphalt flow number using partial load history. Journal of Traffic and Transportation Engineering (English Edition) 9:1, pages 120-133.
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Shibin Chen, Xingtai Shi, Yunshi Yao, Yongchang Gao & Pei Su. (2020) Improved Mechanical Properties of Asphalt Mixture Using Vacuum Compaction Method. IOP Conference Series: Earth and Environmental Science 455:1, pages 012092.
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Mohammed Y. Fattah, Miami M. Hilal & Huda B. Flyeh. (2019) Evaluation of the mechanical stability of asphalt mixture using the gyratory compactor. International Journal of Pavement Research and Technology 12:5, pages 508-518.
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Mohammed Y. FattahMiami M. HilalHuda B. Flyeh. (2019) Assessment of Mechanical Stability Performance of Asphalt Mixture Using Superpave Gyratory Compactor. Journal of Transportation Engineering, Part B: Pavements 145:2, pages 04019004.
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Kyoungchul Kim & Myungook Kang. (2018) Effects of compaction temperature on the volumetric properties and compaction energy efforts of polymer-modified asphalt mixtures. Journal of Wuhan University of Technology-Mater. Sci. Ed. 33:1, pages 146-154.
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Erica YeungAndrew BrahamJim Barnat. (2016) Exploring the Effect of Asphalt-Concrete Fabrication and Compaction Location on Six Compaction Metrics. Journal of Materials in Civil Engineering 28:12.
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Samer Dessouky & Manuel Diaz. 2015. TMS Middle East - Mediterranean Materials Congress on Energy and Infrastructure Systems (MEMA 2015). TMS Middle East - Mediterranean Materials Congress on Energy and Infrastructure Systems (MEMA 2015) 77 86 .
Y.J. Jiang & L.F. Fan. (2015) An experimental investigation of optimal asphalt–aggregate ratio for different compaction methods. Construction and Building Materials 91, pages 111-115.
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Samer Dessouky. (2015) Laboratory and Field Evaluation of Asphalt Concrete Mixture Workability and Compactability. Laboratory and Field Evaluation of Asphalt Concrete Mixture Workability and Compactability.
Andrew Braham, Todd Lynn, Richard Steger & Roger Pyle. (2015) Characterizing Compactability of High RAP and Warm Mix Asphalt Mixtures in the Superpave Gyratory Compactor. Journal of Testing and Evaluation 43:3, pages 20130319.
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Samer Dessouky & Manuel Diaz. 2016. Proceedings of the TMS Middle East — Mediterranean Materials Congress on Energy and Infrastructure Systems (MEMA 2015). Proceedings of the TMS Middle East — Mediterranean Materials Congress on Energy and Infrastructure Systems (MEMA 2015) 77 86 .
Samer DessoukyArvindreddy PothugantiLubinda F. WalubitaDale Rand. (2013) Laboratory Evaluation of the Workability and Compactability of Asphaltic Materials prior to Road Construction. Journal of Materials in Civil Engineering 25:6, pages 810-818.
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