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Articles

A new viscoelastic method of calculation of low-temperature thermal stresses in asphalt layers of pavements

Pages 24-36 | Received 26 Jan 2016, Accepted 30 Jan 2016, Published online: 07 Mar 2016

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H. T. Tai Nguyen, Duy-Liem Nguyen, Vu-Tu Tran & Mai-Lan Nguyen. (2022) Finite element implementation of Huet-Sayegh and 2S2P1D models for analysis of asphalt pavement structures in time domain. Road Materials and Pavement Design 23:1, pages 22-46.
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H. T. Tai Nguyen, Tien-Tho Do, Vu-Tu Tran, Thanh-Nhan Phan, Thanh-An Pham & Mai Lan Nguyen. (2021) Determination of creep compliance of asphalt mixtures at intermediate and high temperature using creep-recovery test. Road Materials and Pavement Design 22:sup1, pages S514-S535.
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Articles from other publishers (20)

Yao Luo, Hao Wu, Weimin Song, Jian Yin, Yiqun Zhan, Jia Yu & Surajo Abubakar Wada. (2023) Thermal fatigue and cracking behaviors of asphalt mixtures under different temperature variations. Construction and Building Materials 369, pages 130623.
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Haopeng Zhang, Hong Zhang, Haibo Ding, Enhui Yang & Yanjun Qiu. (2023) Thermal stress calculation of wax-based warm mix asphalt considering thermorheologically complex behavior. Construction and Building Materials 368, pages 130488.
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Chunshui Huang, Danying Gao, Tong Meng & Changde Yang. (2023) Investigation into Viscoelastic Properties of Fiber-Reinforced Asphalt Composite Concrete Based on the Burgers Model. Buildings 13:2, pages 449.
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Johannes Büchner, Dawid Ryś, Stefan Trifunović & Michael P. Wistuba. (2023) Development and application of asphalt binder relaxation test in different dynamic shear rheometers. Construction and Building Materials 364, pages 129929.
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Kaiwen Zhao, Xianyong Ma, Hongwei Zhang & Zejiao Dong. (2022) Performance zoning method of asphalt pavement in cold regions based on climate Indexes: A case study of Inner Mongolia, China. Construction and Building Materials 361, pages 129650.
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Zhihao Jiao, Aiqin Shen, Zhenghua Lyu, Yinchuan Guo, Lusheng Wang & Shengnan Wang. (2021) Research on a Treatment Measure for Base Regeneration by Preset Cracking and Grouting for Severe Reflective Cracks. Arabian Journal for Science and Engineering 47:4, pages 4695-4712.
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Marek Pszczola, Dawid Rys & Mariusz Jaczewski. (2022) Field Evaluation of High Modulus Asphalt Concrete Resistance to Low-Temperature Cracking. Materials 15:1, pages 369.
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Behnam Jahangiri, Mohammad M. Karimi, Oliver Giraldo-Londoño & William G. Buttlar. (2021) Characterization of viscoelastic properties of asphalt mixture at low temperatures using DC(T) creep test. Construction and Building Materials 298, pages 123731.
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Jiaqi Chen, Lanchun Zhang, Yinfei Du, Hao Wang & Hancheng Dan. (2021) Three-dimensional microstructure based model for evaluating the coefficient of thermal expansion and contraction of asphalt concrete. Construction and Building Materials 284, pages 122764.
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Ahmed Khater, Dong Luo, Moustafa Abdelsalam, Yanchao Yue, Yueqin Hou & Mohamed Ghazy. (2021) Laboratory Evaluation of Asphalt Mixture Performance Using Composite Admixtures of Lignin and Glass Fibers. Applied Sciences 11:1, pages 364.
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H.T. Tai Nguyen, Thanh-Nhan Phan, Tien-Tho Do, Duy-Liem Nguyen & Vu-Tu Tran. (2020) Analysis of Flexible Pavements Comprised of Conventional and High Modulus Asphalt Concrete Subjected to Moving Loading using Linear Viscoelastic Theory. Analysis of Flexible Pavements Comprised of Conventional and High Modulus Asphalt Concrete Subjected to Moving Loading using Linear Viscoelastic Theory.
T Gavrilov & G Kolesnikov. (2020) Conditions modelling of low-temperature cracks existence in the road upper layer. Journal of Physics: Conference Series 1614:1, pages 012100.
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Dawid Rys, Mariusz Jaczewski, Marek Pszczola, Piotr Jaskula & Wojciech Bankowski. (2020) Effect of bitumen characteristics obtained according to EN and Superpave specifications on asphalt mixture performance in low-temperature laboratory tests. Construction and Building Materials 231, pages 117156.
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Dong Luo, Ahmed Khater, Yanchao Yue, Moustafa Abdelsalam, Zengping Zhang, Yuanyuan Li, Junnan Li & David Thomas Iseley. (2019) The performance of asphalt mixtures modified with lignin fiber and glass fiber: A review. Construction and Building Materials 209, pages 377-387.
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Marek Pszczola, Cezary Szydlowski & Mariusz Jaczewski. (2019) Influence of cooling rate and additives on low-temperature properties of asphalt mixtures in the TSRST. Construction and Building Materials 204, pages 399-409.
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Mariusz Jaczewski, Jozef Judycki & Piotr Jaskula. (2019) Asphalt concrete subjected to long-time loading at low temperatures – Deviations from the time-temperature superposition principle. Construction and Building Materials 202, pages 426-439.
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Marek Pszczola, Mariusz Jaczewski & Cezary Szydlowski. (2019) Assessment of Thermal Stresses in Asphalt Mixtures at Low Temperatures Using the Tensile Creep Test and the Bending Beam Creep Test. Applied Sciences 9:5, pages 846.
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Marek Pszczola, Mariusz Jaczewski, Dawid Rys, Piotr Jaskula & Cezary Szydlowski. (2018) Evaluation of Asphalt Mixture Low-Temperature Performance in Bending Beam Creep Test. Materials 11:1, pages 100.
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Timmo Gavrilov & Gennady Kolesnikov. (2018) Cracks in upper road layer at negative temperature change: modelling and forecasting. MATEC Web of Conferences 239, pages 05013.
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Timmo Gavrilov, Gennady Kolesnikov & Konstantin Khoroshilov. (2018) Tangential forces in the contact area of upper road layer with the base. MATEC Web of Conferences 239, pages 05012.
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