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Scientific Notes

Experimental study on the pore structure variation of self-compacting rubberised concrete under fatigue load

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Pages 716-733 | Received 04 Jul 2018, Accepted 08 Jul 2019, Published online: 21 Jul 2019

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Sridhar Reddy Kasu, Nilanjan Mitra & Amarnatha Reddy Muppireddy. (2021) Influence of polyester microfiber reinforcement on flexural fatigue characteristics of concrete. Road Materials and Pavement Design 22:12, pages 2866-2882.
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Articles from other publishers (7)

Pinghua Zhu, Haifeng Fan, Xiancui Yan, Hui Liu, Xinjie Wang & Chunhong Chen. (2023) Effect of Fatigue Loading on the Mechanical Properties and Resistance of High-strength Straight-hole Recycled Pervious Concrete to Rainstorm-based Waterlogging. Journal of Wuhan University of Technology-Mater. Sci. Ed. 38:1, pages 141-148.
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Jinna Shi & Yanru Zhao. (2021) Pore structure of concrete under fatigue load in areas with large temperature differences. Structural Concrete 23:4, pages 2132-2149.
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Zhiping Zeng, Ji Hu, Xudong Huang, Weidong Wang, Zhibin Huang, Abdulmumin Ahmed Shuaibu, Yu Yuan, Zhonglin Xie & Xianfeng He. (2022) Research on Fatigue Damage Evolution of the Base Plate Structure of China Railway Track System III Type Slab Ballastless Track under Heavy Haul Train Load. Applied Sciences 12:3, pages 1694.
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Gyanendra Kumar Chaturvedy & Umesh Kumar Pandey. (2021) Performance characteristics of rubberized concrete: a multipoint review. Innovative Infrastructure Solutions 7:1.
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Zhennan Li, Aiqin Shen, Hongjun Long, Yinchuan Guo & Tianqin He. (2021) Dynamic deterioration of strength, durability, and microstructure of pavement concrete under fatigue load. Construction and Building Materials 306, pages 124912.
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Zhi-ping Zeng, Xu-dong Huang, Bin Yan, Wei-dong Wang, Abdulmumin Ahmed Shuaibu & Xian-feng He. (2021) Research on the fatigue performance of self-compacting concrete structure in CRTSIII slab ballastless track under the action of heavy haul train. Construction and Building Materials 303, pages 124465.
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Le Zhang, Faning Dang, Weihua Ding & Lin Zhu. (2020) Quantitative study of meso-damage process on concrete by CT technology and improved differential box counting method. Measurement 160, pages 107832.
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