Chaohua Jiang

1.0k total citations · 1 hit paper
26 papers, 835 citations indexed

About

Chaohua Jiang is a scholar working on Civil and Structural Engineering, Building and Construction and Mechanical Engineering. According to data from OpenAlex, Chaohua Jiang has authored 26 papers receiving a total of 835 indexed citations (citations by other indexed papers that have themselves been cited), including 18 papers in Civil and Structural Engineering, 6 papers in Building and Construction and 5 papers in Mechanical Engineering. Recurrent topics in Chaohua Jiang's work include Concrete and Cement Materials Research (16 papers), Innovative concrete reinforcement materials (11 papers) and Grouting, Rheology, and Soil Mechanics (6 papers). Chaohua Jiang is often cited by papers focused on Concrete and Cement Materials Research (16 papers), Innovative concrete reinforcement materials (11 papers) and Grouting, Rheology, and Soil Mechanics (6 papers). Chaohua Jiang collaborates with scholars based in China, Australia and Singapore. Chaohua Jiang's co-authors include Da Chen, Fei Wu, Ke Fan, Shanshan Huang, Sheng Yan, Jin Chen, Yizhi Wang, Peng Gao, Min Wei and Xingguo Feng and has published in prestigious journals such as Construction and Building Materials, Materials and Water.

In The Last Decade

Chaohua Jiang

26 papers receiving 799 citations

Hit Papers

Experimental study on the mechanical properties and micro... 2014 2026 2018 2022 2014 100 200 300 400 500

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Chaohua Jiang China 11 739 518 72 54 42 26 835
Soner Güler Türkiye 22 910 1.2× 631 1.2× 73 1.0× 49 0.9× 59 1.4× 44 1.0k
Sadaqat Ullah Khan Pakistan 14 773 1.0× 531 1.0× 141 2.0× 40 0.7× 26 0.6× 37 884
Veysel Akyüncü Türkiye 6 610 0.8× 439 0.8× 77 1.1× 42 0.8× 19 0.5× 14 675
Hui Zhong United Kingdom 17 947 1.3× 710 1.4× 120 1.7× 51 0.9× 31 0.7× 26 1.1k
Ahmet B. Kizilkanat Türkiye 13 883 1.2× 580 1.1× 175 2.4× 47 0.9× 39 0.9× 21 988
Behzad Tahmouresi Iran 15 921 1.2× 559 1.1× 112 1.6× 29 0.5× 23 0.5× 20 968
Sajjad Ali Mangi Pakistan 16 644 0.9× 549 1.1× 125 1.7× 52 1.0× 17 0.4× 47 819
Wai Hoe Kwan Malaysia 10 828 1.1× 757 1.5× 72 1.0× 93 1.7× 19 0.5× 21 994
Haoliang Wu China 14 799 1.1× 457 0.9× 153 2.1× 32 0.6× 47 1.1× 25 872
Tehmina Ayub Pakistan 17 1.1k 1.5× 734 1.4× 182 2.5× 45 0.8× 37 0.9× 45 1.2k

Countries citing papers authored by Chaohua Jiang

Since Specialization
Citations

This map shows the geographic impact of Chaohua Jiang's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Chaohua Jiang with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Chaohua Jiang more than expected).

Fields of papers citing papers by Chaohua Jiang

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Chaohua Jiang. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Chaohua Jiang. The network helps show where Chaohua Jiang may publish in the future.

Co-authorship network of co-authors of Chaohua Jiang

This figure shows the co-authorship network connecting the top 25 collaborators of Chaohua Jiang. A scholar is included among the top collaborators of Chaohua Jiang based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Chaohua Jiang. Chaohua Jiang is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Zhang, Jisheng, et al.. (2024). Enhancing Hydrodynamic Performance of Floating Breakwaters Using Wing Plates. Water. 16(13). 1779–1779. 1 indexed citations
2.
Kong, Jun, et al.. (2023). Effect of the cutoff wall on the fate of nitrate in coastal unconfined aquifers under tidal action. Frontiers in Marine Science. 10. 6 indexed citations
3.
Zhao, Junxian, et al.. (2023). A Comparative Study of Metakaolin and Silica Fume on the Properties and Microstructure of Ultrafine Dredged Sand Mortars. Advances in Materials Science and Engineering. 2023. 1–11. 7 indexed citations
5.
Wang, Yixuan, et al.. (2023). Study on the Mechanical Characteristics, Heat Resistance, and Corrosion Resistance of Unsaturated Polyester Resin Composite. Buildings. 13(7). 1700–1700. 1 indexed citations
6.
Wu, Na, et al.. (2023). The Portevin–Le Chatelier Effect of Cu–2.0Be Alloy during Hot Compression. Materials. 16(12). 4455–4455. 3 indexed citations
8.
Jiang, Chaohua, et al.. (2022). Study on purification of flake graphite by heat activation and hydrofluoric acid. Advances in Materials and Processing Technologies. 8(4). 4564–4578. 3 indexed citations
9.
Jiang, Chaohua, et al.. (2022). Characteristics of Foamed Concrete Containing Ultra-fine Drift Sand of the Yangtze River. Civil Engineering Journal. 8(8). 1712–1724. 2 indexed citations
10.
Jiang, Chaohua, et al.. (2018). Mechanical and thermal properties improvement of unsaturated polyester resin by incorporation of TiO2 nanoparticle surface modified with titanate. Materials Research Express. 5(11). 115008–115008. 13 indexed citations
11.
Jiang, Chaohua, et al.. (2018). Experimental Study on the Mechanical Properties of Amorphous Alloy Fiber‐Reinforced Concrete. Advances in Materials Science and Engineering. 2018(1). 8 indexed citations
12.
Jiang, Chaohua, et al.. (2018). Utilization of Sandy Soil as the Primary Raw Material in Production of Unfired Bricks. Advances in Materials Science and Engineering. 2018(1). 13 indexed citations
13.
Jiang, Chaohua, et al.. (2018). Effect of filler type and content on mechanical properties and microstructure of sand concrete made with superfine waste sand. Construction and Building Materials. 192. 442–449. 43 indexed citations
14.
Jiang, Chaohua, Jin Chen, Yizhi Wang, Sheng Yan, & Da Chen. (2018). Effect of heat curing treatment on the drying shrinkage behavior and microstructure characteristics of mortar incorporating different content ground granulated blast-furnace slag. Construction and Building Materials. 186. 379–387. 34 indexed citations
15.
Jiang, Chaohua, et al.. (2017). The effect of nanoparticles on the properties of calcium aluminate cement pastes at high temperatures. Advances in Cement Research. 30(5). 195–203. 10 indexed citations
16.
Jiang, Chaohua, et al.. (2016). Experimental Study on the Performance and Microstructure of Cementitious Materials Made with Dune Sand. Advances in Materials Science and Engineering. 2016. 1–8. 19 indexed citations
17.
Jiang, Chaohua, et al.. (2016). Effect of Polypropylene and Basalt Fiber on the Behavior of Mortars for Repair Applications. Advances in Materials Science and Engineering. 2016. 1–11. 31 indexed citations
18.
Liao, Yingdi, et al.. (2015). Degradation of mechanical properties of cementitious materials exposed to wet–dry cycles of sulphate solution. Materials Research Innovations. 19(sup5). S5–173. 4 indexed citations
19.
Jiang, Chaohua, Ke Fan, Fei Wu, & Da Chen. (2014). Experimental study on the mechanical properties and microstructure of chopped basalt fibre reinforced concrete. Materials & Design (1980-2015). 58. 187–193. 570 indexed citations breakdown →
20.
Chen, Da, Yingdi Liao, Chaohua Jiang, & Xingguo Feng. (2013). The mechanical properties of coastal soil treated with cement. Journal of Wuhan University of Technology-Mater Sci Ed. 28(6). 1155–1160. 11 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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