Jing Xue

609 total citations
41 papers, 476 citations indexed

About

Jing Xue is a scholar working on Mechanical Engineering, Materials Chemistry and Aerospace Engineering. According to data from OpenAlex, Jing Xue has authored 41 papers receiving a total of 476 indexed citations (citations by other indexed papers that have themselves been cited), including 27 papers in Mechanical Engineering, 16 papers in Materials Chemistry and 12 papers in Aerospace Engineering. Recurrent topics in Jing Xue's work include Aluminum Alloys Composites Properties (16 papers), Aluminum Alloy Microstructure Properties (12 papers) and Advanced ceramic materials synthesis (10 papers). Jing Xue is often cited by papers focused on Aluminum Alloys Composites Properties (16 papers), Aluminum Alloy Microstructure Properties (12 papers) and Advanced ceramic materials synthesis (10 papers). Jing Xue collaborates with scholars based in China, Australia and Austria. Jing Xue's co-authors include Gang Sha, Jun Wang, Baode Sun, Yanfeng Han, Lianyong Xu, Bo Xiao, Roland E. Logé, Cyril Cayron, Pan Li and Chong Chen and has published in prestigious journals such as Acta Materialia, Materials Science and Engineering A and Applied Surface Science.

In The Last Decade

Jing Xue

37 papers receiving 460 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Jing Xue China 13 377 228 139 81 56 41 476
Junrong Tang China 15 344 0.9× 214 0.9× 277 2.0× 109 1.3× 59 1.1× 25 532
Filip Šiška Czechia 15 403 1.1× 354 1.6× 118 0.8× 42 0.5× 160 2.9× 56 615
Kerstin Sempf Germany 11 237 0.6× 204 0.9× 106 0.8× 186 2.3× 100 1.8× 19 410
H. Liu China 10 431 1.1× 286 1.3× 102 0.7× 117 1.4× 133 2.4× 18 606
Jian Peng China 14 493 1.3× 300 1.3× 324 2.3× 48 0.6× 74 1.3× 45 682
Yupeng Shen China 11 343 0.9× 282 1.2× 124 0.9× 57 0.7× 84 1.5× 23 490
Abir Bhattacharyya India 14 389 1.0× 215 0.9× 71 0.5× 49 0.6× 209 3.7× 24 532
Ricardo Fernández Spain 18 759 2.0× 419 1.8× 395 2.8× 151 1.9× 103 1.8× 65 891
Shu Yu China 15 346 0.9× 213 0.9× 154 1.1× 84 1.0× 108 1.9× 28 506
Guangjie Feng China 17 432 1.1× 142 0.6× 40 0.3× 118 1.5× 111 2.0× 33 544

Countries citing papers authored by Jing Xue

Since Specialization
Citations

This map shows the geographic impact of Jing Xue'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 Jing Xue with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Jing Xue more than expected).

Fields of papers citing papers by Jing Xue

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Jing Xue. 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 Jing Xue. The network helps show where Jing Xue may publish in the future.

Co-authorship network of co-authors of Jing Xue

This figure shows the co-authorship network connecting the top 25 collaborators of Jing Xue. A scholar is included among the top collaborators of Jing Xue 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 Jing Xue. Jing Xue 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.
Xue, Jing, et al.. (2025). Surface defect segmentation in ultrasonic welding harnesses using GhostConvolution attention mechanism. Materials Today Communications. 47. 112840–112840.
2.
Shi, Lei, et al.. (2025). Understanding the formation of powder bed cavities in paving by the van der Waals force. Journal of Materials Research and Technology. 37. 2813–2824.
3.
Zeng, Yijian, Jin Yang, Min Zheng, et al.. (2024). Influence of surface pretreatment of steel substrate on the interfacial microstructure and tensile properties of laser Al/steel joints. Materials Letters. 377. 137523–137523. 1 indexed citations
4.
Xue, Jing, Zhiping Wang, Xianghai An, et al.. (2024). High-pressure-torsion-induced segregation, precipitation and grain refinement of Al-(Si, Mg and Cu) binary alloys. Journal of Material Science and Technology. 199. 102–113. 23 indexed citations
5.
Hu, Gang, et al.. (2024). Impact fracture failure analysis and mechanism study of a TBM disc cutter ring. Engineering Failure Analysis. 163. 108508–108508. 14 indexed citations
7.
Xue, Jing, et al.. (2024). Corrosion characteristics of in situ hybrid (Al3Ni + Al2O3)/Al composites synthesized by the solid-state combustion. Corrosion Reviews. 42(3). 341–354. 1 indexed citations
8.
Hu, Gang, Lili Yu, Zheng Zhang, et al.. (2024). Research on fatigue failure analysis and fracture mechanisms of a cutter ring in tunnel boring machine. Engineering Failure Analysis. 169. 109232–109232. 2 indexed citations
9.
Yang, Jin, et al.. (2023). Outstanding ductility of dissimilar laser Al/steel spot joint using a high entropy alloy interlayer. Materials Letters. 349. 134707–134707. 12 indexed citations
10.
Xue, Jing, et al.. (2021). Study on the fabrication of in-situ TiB 2 /Al composite by electroslag melting. Science and Engineering of Composite Materials. 28(1). 73–82. 1 indexed citations
11.
Xue, Jing, Rong Hu, Guanghai Bai, et al.. (2021). Temperature-Dependent Irradiation-Induced Clustering in a Fe–Mn–Ni Alloy. Metallurgical and Materials Transactions A. 52(9). 4264–4274. 3 indexed citations
12.
Xue, Jing, Shenbao Jin, Rong Hu, Fei Xue, & Gang Sha. (2021). Ion-irradiation-induced clustering in Fe-Mn-Ni-(Si) steels: Nucleation, growth and chemistry evolution. Journal of Nuclear Materials. 560. 153477–153477. 3 indexed citations
13.
Xue, Jing, et al.. (2019). Two-way shape memory effect and magnetic-field-induced twin boundary motion in Ni-Mn-Ga microwire. Materials Letters. 243. 173–175. 9 indexed citations
14.
Wang, Mengmeng, Jing Xue, Haiyan Gao, et al.. (2019). Interface morphology and corrosion behavior of bulk Fe2B in liquid Al. Materials Characterization. 152. 1–11. 20 indexed citations
15.
Yuan, Huihui, Jing Xue, Bin Qian, et al.. (2016). Preparation and antifouling property of polyurethane film modified by chondroitin sulfate. Applied Surface Science. 394. 403–413. 25 indexed citations
16.
Xue, Jing, Jun Wang, Yanfeng Han, Chong Chen, & Baode Sun. (2012). Behavior of CeO2 additive in in-situ TiB2 particles reinforced 2014 Al alloy composite. Transactions of Nonferrous Metals Society of China. 22(5). 1012–1017. 23 indexed citations
17.
Xue, Jing, J. Wang, Yanfeng Han, & Bin Sun. (2012). Wear Behaviour of Squeeze-Cast Al 2014 Alloy and <i>In-Situ</i> 5 vol% TiB<sub>2</sub>/2014 Composite. MATERIALS TRANSACTIONS. 53(12). 2119–2128. 5 indexed citations
18.
Chen, Chong, Jun Wang, Da Shu, et al.. (2011). A Novel Method to Remove Iron Impurity from Aluminum. MATERIALS TRANSACTIONS. 52(8). 1629–1633. 16 indexed citations
19.
Li, Dejun, Xiao-Yun Wang, Xianwu Mi, & Jing Xue. (2008). Quantum Solitary Wave Solutions in a Ferromagnetic Chain with Nearest- and Next-Nearest-Neighbor Interaction. Communications in Theoretical Physics. 50(5). 1177–1180. 7 indexed citations
20.
Xue, Jing, Wei Li, Yunmao Liao, Jinglin Zhou, & Jukun Song. (2008). [Microdiffraction measurements of natural tooth by high resolution X-ray diffraction equipment].. PubMed. 25(1). 65–8. 3 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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