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Original Articles

Evaluation of rutting potential for asphalt concrete mixes containing copper slag

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Pages 630-640 | Received 14 Jan 2016, Accepted 04 May 2016, Published online: 20 Jun 2016

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Hossam F. H. Abdelfattah, Hassan Baaj & Hawraa J. Kadhim. (2022) Calibration of MEPDG permanent deformation models using Hamburg Wheel Rut Tester and field data. International Journal of Pavement Engineering 23:12, pages 4174-4189.
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Articles from other publishers (13)

Marko Orešković, João Santos, Goran Mladenović & Vladana Rajaković-Ognjanović. (2023) The feasibility of using copper slag in asphalt mixtures for base and surface layers based on laboratory results. Construction and Building Materials 384, pages 131285.
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Jialei Li, Yalong Liao, Haifei Ma, Qingfeng Liu & Yue Wu. (2023) Review on Comprehensive Recovery Valuable Metals and Utilization of Copper Slag. Journal of Sustainable Metallurgy 9:2, pages 439-458.
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Hossam F. Hassan, Khalid Al-Shamsi & Khalifa Al-Jabri. (2023) Effect of Steel Slag on the Permanent Deformation and Life Cycle Cost of Asphalt Concrete Pavements. International Journal of Pavement Research and Technology.
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Yahia Mohamedzein, Hossam Hassan & Khalil Al-Hashmi. (2021) Effect of cement-by-pass dust stabilized-expansive soil subgrade on pavement rutting. Innovative Infrastructure Solutions 7:1.
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Kang Yao, Xin Jiang, Jin Jiang, Zhonghao Yang & Yanjun Qiu. (2021) Influence of Modulus of Base Layer on The Strain Distribution for Asphalt Pavement. The Baltic Journal of Road and Bridge Engineering 16:4, pages 126-152.
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Ji Chen, Jianxin Yang, Yanhong Chen, Bin Li, Yucheng Huang & Qiang Tang. (2021) Numerical analysis of dynamic loads in pavement structures based on the subgrade material of MSWI bottom ash. Japanese Geotechnical Society Special Publication 9:6, pages 255-261.
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Osvaldo Muñoz-Cáceres, Aitor C. Raposeiras, Diana Movilla-Quesada, Daniel Castro-Fresno, Manuel Lagos-Varas, Valerio C. Andrés-Valeri & Gonzalo Valdés-Vidal. (2021) Mechanical performance of sustainable asphalt mixtures manufactured with copper slag and high percentages of reclaimed asphalt pavement. Construction and Building Materials 304, pages 124653.
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Aitor C. Raposeiras, Diana Movilla-Quesada, Osvaldo Muñoz-Cáceres, Valerio C. Andrés-Valeri & Manuel Lagos-Varas. (2021) Production of asphalt mixes with copper industry wastes: Use of copper slag as raw material replacement. Journal of Environmental Management 293, pages 112867.
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Noe Hernandez-Fernandez, Tania A. García-Mejía, Rosa M. Ramírez-Zamora, Ricardo Ochoa-Diaz & Alexandra Ossa-Lopez. (2021) Effect of application of metallurgical slag powders on physical and rheological properties of asphalt. Construction and Building Materials 292, pages 123432.
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Ruijun Wang, Qi Shi, Yang Li, Zhiliang Cao & Zheng Si. (2021) A critical review on the use of copper slag (CS) as a substitute constituent in concrete. Construction and Building Materials 292, pages 123371.
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Laiana Ferreira da CostaLêda Christiane de Figueirêdo Lopes LucenaAdriano Elísio de Figueirêdo Lopes LucenaAblenya Grangeiro de Barros. (2020) Use of Banana Fibers in SMA Mixtures. Journal of Materials in Civil Engineering 32:1.
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D.D. Adegoke, T. O. Ogundairo, D.O Olukanni & O.M. Olofinnade. (2019) Application of Recycled Waste Materials for Highway Construction: Prospect and Challenges. Journal of Physics: Conference Series 1378:2, pages 022058.
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Israel Rodríguez-Fernández, Pedro Lastra-González, Irune Indacoechea-Vega & Daniel Castro-Fresno. (2019) Recyclability potential of asphalt mixes containing reclaimed asphalt pavement and industrial by-products. Construction and Building Materials 195, pages 148-155.
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