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D-Index & Metrics

Discipline name D-Index World Ranking Current World Ranking National Ranking Current National Ranking Publications Citations
Engineering and Technology 34 9281 8930 1550 1542 130 3627

Wenchun Jiang publications per year

The chart shows the history of publications by Wenchun Jiang between 2007 and 2025, highlighting the no. of papers published in each year and offering an overview of the publication velocity of this scholar. Wenchun Jiang published across 19 years, from 2007 to 2025, averaging 12 papers a year. Output peaked at 34 publications in 2025. 54 of the 228 publications appeared in the last two years.

No. of publications
10 20 30
Bar chart. Horizontal axis: year, 2007 to 2025. Vertical axis: number of publications, 0 to 34. Peak 34 publications in 2025. 2007: 1 publication 2008: 2 publications 2009: 4 publications 2010: 6 publications 2011: 5 publications 2012: 4 publications 2013: 7 publications 2014: 2 publications 2015: 4 publications 2016: 10 publications 2017: 15 publications 2018: 26 publications 2019: 14 publications 2020: 17 publications 2021: 13 publications 2022: 24 publications 2023: 20 publications 2024: 20 publications 2025: 34 publications
2007 2025

228 publications in total across all disciplines

View publications per year as a table
Wenchun Jiang: publications per year, 2007 to 2025
Year Publications
2007 1
2008 2
2009 4
2010 6
2011 5
2012 4
2013 7
2014 2
2015 4
2016 10
2017 15
2018 26
2019 14
2020 17
2021 13
2022 24
2023 20
2024 20
2025 34
Total 228
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Wenchun Jiang publication distribution in Engineering and Technology in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Engineering and Technology in 2026. The highlighted bar marks where Wenchun Jiang sits on this spectrum.

No. of scientists
100 200 300 400
Bar chart with 78 bars. Horizontal axis: publications, 38–47 to 804+. Vertical axis: number of scientists, 0 to 457. Most scientists, 457, have 148–157 publications. The last bar groups every scientist with 804 publications or more. The highlighted bar, 128–137 publications, is where this scientist sits. 38–47 publications: 20 scientists 48–57 publications: 35 scientists 58–67 publications: 96 scientists 68–77 publications: 135 scientists 78–87 publications: 190 scientists 88–97 publications: 259 scientists 98–107 publications: 283 scientists 108–117 publications: 369 scientists 118–127 publications: 341 scientists 128–137 publications: 386 scientists 138–147 publications: 372 scientists 148–157 publications: 457 scientists 158–167 publications: 415 scientists 168–177 publications: 407 scientists 178–187 publications: 421 scientists 188–197 publications: 378 scientists 198–207 publications: 403 scientists 208–217 publications: 317 scientists 218–227 publications: 346 scientists 228–237 publications: 321 scientists 238–247 publications: 260 scientists 248–257 publications: 280 scientists 258–267 publications: 240 scientists 268–277 publications: 214 scientists 278–287 publications: 242 scientists 288–297 publications: 203 scientists 298–307 publications: 166 scientists 308–317 publications: 154 scientists 318–327 publications: 175 scientists 328–337 publications: 159 scientists 338–347 publications: 99 scientists 348–357 publications: 131 scientists 358–367 publications: 106 scientists 368–377 publications: 118 scientists 378–387 publications: 97 scientists 388–397 publications: 108 scientists 398–407 publications: 82 scientists 408–417 publications: 71 scientists 418–427 publications: 64 scientists 428–437 publications: 55 scientists 438–447 publications: 54 scientists 448–457 publications: 60 scientists 458–467 publications: 47 scientists 468–477 publications: 40 scientists 478–487 publications: 30 scientists 488–497 publications: 29 scientists 498–507 publications: 38 scientists 508–517 publications: 40 scientists 518–527 publications: 32 scientists 528–537 publications: 23 scientists 538–547 publications: 28 scientists 548–557 publications: 23 scientists 558–567 publications: 19 scientists 568–577 publications: 16 scientists 578–587 publications: 17 scientists 588–597 publications: 18 scientists 598–607 publications: 22 scientists 608–617 publications: 15 scientists 618–627 publications: 9 scientists 628–637 publications: 11 scientists 638–647 publications: 21 scientists 648–657 publications: 12 scientists 658–667 publications: 9 scientists 668–677 publications: 11 scientists 678–687 publications: 9 scientists 688–697 publications: 6 scientists 698–707 publications: 14 scientists 708–717 publications: 7 scientists 718–727 publications: 8 scientists 728–737 publications: 10 scientists 738–747 publications: 9 scientists 748–757 publications: 5 scientists 758–767 publications: 5 scientists 768–777 publications: 11 scientists 778–787 publications: 7 scientists 788–797 publications: 2 scientists 798–803 publications: 4 scientists 804+ publications: 100 scientists
38–47 publications 804+

This scientist: 130 publications — 19th percentile

19% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 804 publications or more.

View publications distribution as a table
Number of Engineering and Technology scientists by publication count, Research.com 2026 ranking edition. Based on 9,796 ranked scientists.
Publications Scientists This scientist
38–47 20
48–57 35
58–67 96
68–77 135
78–87 190
88–97 259
98–107 283
108–117 369
118–127 341
128–137 386 130
138–147 372
148–157 457
158–167 415
168–177 407
178–187 421
188–197 378
198–207 403
208–217 317
218–227 346
228–237 321
238–247 260
248–257 280
258–267 240
268–277 214
278–287 242
288–297 203
298–307 166
308–317 154
318–327 175
328–337 159
338–347 99
348–357 131
358–367 106
368–377 118
378–387 97
388–397 108
398–407 82
408–417 71
418–427 64
428–437 55
438–447 54
448–457 60
458–467 47
468–477 40
478–487 30
488–497 29
498–507 38
508–517 40
518–527 32
528–537 23
538–547 28
548–557 23
558–567 19
568–577 16
578–587 17
588–597 18
598–607 22
608–617 15
618–627 9
628–637 11
638–647 21
648–657 12
658–667 9
668–677 11
678–687 9
688–697 6
698–707 14
708–717 7
718–727 8
728–737 10
738–747 9
748–757 5
758–767 5
768–777 11
778–787 7
788–797 2
798–803 4
804+ 100
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Wenchun Jiang D-index placement in Engineering and Technology in 2026

The chart shows the D-index (discipline H-index) distribution of Engineering and Technology scientists ranked by Research.com in 2026. The highlighted bar marks where Wenchun Jiang sits on this spectrum.

No. of scientists
100 200 300 400
Bar chart with 78 bars. Horizontal axis: D-Index, 30 to 107+. Vertical axis: number of scientists, 0 to 426. Most scientists, 426, have 42 D-Index. The last bar groups every scientist with 107 D-Index or more. The highlighted bar, 34 D-Index, is where this scientist sits. 30 D-Index: 59 scientists 31 D-Index: 114 scientists 32 D-Index: 129 scientists 33 D-Index: 189 scientists 34 D-Index: 200 scientists 35 D-Index: 262 scientists 36 D-Index: 311 scientists 37 D-Index: 312 scientists 38 D-Index: 350 scientists 39 D-Index: 385 scientists 40 D-Index: 348 scientists 41 D-Index: 362 scientists 42 D-Index: 426 scientists 43 D-Index: 380 scientists 44 D-Index: 310 scientists 45 D-Index: 341 scientists 46 D-Index: 301 scientists 47 D-Index: 306 scientists 48 D-Index: 271 scientists 49 D-Index: 246 scientists 50 D-Index: 210 scientists 51 D-Index: 253 scientists 52 D-Index: 213 scientists 53 D-Index: 221 scientists 54 D-Index: 195 scientists 55 D-Index: 186 scientists 56 D-Index: 170 scientists 57 D-Index: 167 scientists 58 D-Index: 166 scientists 59 D-Index: 144 scientists 60 D-Index: 152 scientists 61 D-Index: 141 scientists 62 D-Index: 138 scientists 63 D-Index: 131 scientists 64 D-Index: 118 scientists 65 D-Index: 114 scientists 66 D-Index: 119 scientists 67 D-Index: 95 scientists 68 D-Index: 87 scientists 69 D-Index: 77 scientists 70 D-Index: 89 scientists 71 D-Index: 69 scientists 72 D-Index: 54 scientists 73 D-Index: 46 scientists 74 D-Index: 55 scientists 75 D-Index: 54 scientists 76 D-Index: 49 scientists 77 D-Index: 53 scientists 78 D-Index: 46 scientists 79 D-Index: 28 scientists 80 D-Index: 39 scientists 81 D-Index: 36 scientists 82 D-Index: 24 scientists 83 D-Index: 26 scientists 84 D-Index: 36 scientists 85 D-Index: 18 scientists 86 D-Index: 25 scientists 87 D-Index: 19 scientists 88 D-Index: 26 scientists 89 D-Index: 27 scientists 90 D-Index: 23 scientists 91 D-Index: 15 scientists 92 D-Index: 12 scientists 93 D-Index: 9 scientists 94 D-Index: 15 scientists 95 D-Index: 10 scientists 96 D-Index: 13 scientists 97 D-Index: 13 scientists 98 D-Index: 9 scientists 99 D-Index: 7 scientists 100 D-Index: 7 scientists 101 D-Index: 8 scientists 102 D-Index: 7 scientists 103 D-Index: 7 scientists 104 D-Index: 9 scientists 105 D-Index: 6 scientists 106 D-Index: 9 scientists 107+ D-Index: 99 scientists
30 D-Index 107+

This scientist: 34 D-Index — 7th percentile

7% of scientists in this discipline score the same or lower.

The last bar groups every scientist with 107 D-Index or more.

View D-Index distribution as a table
Number of Engineering and Technology scientists by D-index, Research.com 2026 ranking edition. Based on 9,796 ranked scientists.
D-Index Scientists This scientist
30 59
31 114
32 129
33 189
34 200 34
35 262
36 311
37 312
38 350
39 385
40 348
41 362
42 426
43 380
44 310
45 341
46 301
47 306
48 271
49 246
50 210
51 253
52 213
53 221
54 195
55 186
56 170
57 167
58 166
59 144
60 152
61 141
62 138
63 131
64 118
65 114
66 119
67 95
68 87
69 77
70 89
71 69
72 54
73 46
74 55
75 54
76 49
77 53
78 46
79 28
80 39
81 36
82 24
83 26
84 36
85 18
86 25
87 19
88 26
89 27
90 23
91 15
92 12
93 9
94 15
95 10
96 13
97 13
98 9
99 7
100 7
101 8
102 7
103 7
104 9
105 6
106 9
107+ 99
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Overview

Wenchun Jiang is affiliated with China University of Petroleum, Beijing in China and has a substantial body of research primarily in the fields of engineering and materials science. Their work spans mechanical engineering, materials chemistry, mechanics of materials, electrical and electronic engineering, and the study of metals and alloys.

Jiang's research topics prominently include:

  • Welding Techniques and Residual Stresses
  • Fatigue and fracture mechanics
  • Hydrogen embrittlement and corrosion behaviors in metals
  • Advanced Welding Techniques Analysis
  • Advancements in Solid Oxide Fuel Cells
  • Fuel Cells and Related Materials
  • Surface Treatment and Residual Stress

The scientist has contributed to multiple recent papers, among which are:

  • Fatigue life prediction of 316L stainless steel weld joint including the role of residual stress and its evolution: Experimental and modelling, 2020, International Journal of Fatigue
  • Biaxial residual stress measurement by indentation energy difference method: Theoretical and experimental study, 2021, International Journal of Pressure Vessels and Piping
  • Advances in reducing hydrogen effect of pipeline steels on hydrogen-blended natural gas transportation: A systematic review of mitigation strategies, 2023, Renewable and Sustainable Energy Reviews
  • Nonhomogeneous microstructure formation and its role on tensile and fatigue performance of duplex stainless steel 2205 multi-pass weld joints, 2020, Materials Science and Engineering A
  • A primary plus secondary local PWHT method for mitigating weld residual stresses in pressure vessels, 2021, International Journal of Pressure Vessels and Piping

Jiang has collaborated frequently with multiple coauthors, including Shan-Tung Tu, Yun Luo, Xuefang Xie, Yu Wan, and Ming Song.

Their work has been published predominantly in the following venues:

  • International Journal of Pressure Vessels and Piping
  • International Journal of Hydrogen Energy
  • International Journal of Fatigue
  • Journal of Mechanical Engineering
  • SSRN Electronic Journal

Best Publications

  • Effects of low-temperature transformation and transformation-induced plasticity on weld residual stresses: Numerical study and neutron diffraction measurement

    Wenchun Jiang;Wei Chen;Wanchuck Woo;Shan-Tung Tu

  • Cyclic hardening/softening behavior of 316L stainless steel at elevated temperature including strain-rate and strain-range dependence: Experimental and damage-coupled constitutive modeling

    Xue-fang Xie;Wenchun Jiang;Jingkai Chen;Xiancheng Zhang

  • Comparison of hydrogen embrittlement susceptibility of three cathodic protected subsea pipeline steels from a point of view of hydrogen permeation

    Timing Zhang;Weimin Zhao;Tingting Li;Yujiao Zhao

  • Fatigue life of a dissimilar welded joint considering the weld residual stress: Experimental and finite element simulation

    Weiya Zhang;Wenchun Jiang;Xu Zhao;Shan-Tuang Tu

  • Using heat sink technology to decrease residual stress in 316L stainless steel welding joint: Finite element simulation

    Wenchun Jiang;Yucai Zhang;Wanchuck Woo

  • Effect of microstructure inhomogeneity on hydrogen embrittlement susceptibility of X80 welding HAZ under pressurized gaseous hydrogen

    Timing Zhang;Weimin Zhao;Qiushi Deng;Wei Jiang

  • A model to predict the relaxation of weld residual stress by cyclic load: Experimental and finite element modeling

    Xue-fang Xie;Wenchun Jiang;Yun Luo;Shugen Xu

  • Experimental to study the effect of multiple weld-repairs on microstructure, hardness and residual stress for a stainless steel clad plate

    Wenchun Jiang;Yun Luo;Guodong Zhang;Wanchuck Woo

  • Numerical simulation to study the effect of repair width on residual stresses of a stainless steel clad plate

    Wenchun Jiang;Zibai Liu;J.M. Gong;S.T. Tu

  • The effect of filler metal thickness on residual stress and creep for stainless-steel plate–fin structure

    Wenchun Jiang;Jianming Gong;Hu Chen;S.T. Tu

  • Effect of holding time on vacuum brazing for a stainless steel plate–fin structure

    Wenchun Jiang;Wenchun Jiang;J.M. Gong;S.T. Tu

  • Weld residual stresses in a thick plate considering back chipping: Neutron diffraction, contour method and finite element simulation study

    Yu Wan;Wenchun Jiang;Jian Li;Guangai Sun

  • A quantitative description on fracture toughness of steels in hydrogen gas

    Yanfei Wang;Jianming Gong;Wenchun Jiang

  • Fatigue life prediction of 316L stainless steel weld joint including the role of residual stress and its evolution: Experimental and modelling

    Wenchun Jiang;Xuefang Xie;Tianjiao Wang;Xiancheng Zhang

  • A comparison of brazed residual stress in plate–fin structure made of different stainless steel

    Wenchun Jiang;Jianming Gong;Shandong Tu;Qinshan Fan

  • Study on hydrogen enrichment in X80 steel spiral welded pipe

    Weimin Zhao;Min Yang;Timing Zhang;Qiushi Deng

  • Neutron diffraction and finite element modeling to study the weld residual stress relaxation induced by cutting

    Wenchun Jiang;Wanchuck Woo;Gyu-Baek An;Jeong-Ung Park

  • Distribution and formation mechanism of residual stress in duplex stainless steel weld joint by neutron diffraction and electron backscatter diffraction

    Yu Wan;Wenchun Jiang;Ming Song;Yalin Huang

  • Evolution of thermal stress and failure probability during reduction and re-oxidation of solid oxide fuel cell

    Yu Wang;Wenchun Jiang;Yun Luo;Yucai Zhang

  • A study of the effect of filler metal thickness on tensile strength for a stainless steel plate-fin structure by experiment and finite element method

    Wenchun Jiang;Wenchun Jiang;Jianming Gong;S.T. Tu

  • Influence of repair length on residual stress in the repair weld of a clad plate

    Wenchun Jiang;X.P. Xu;J.M. Gong;S.T. Tu

  • Effect of brazing temperature on tensile strength and microstructure for a stainless steel plate-fin structure

    Wenchun Jiang;Wenchun Jiang;Jianming Gong;S.T. Tu

Frequent Co-Authors

Shan-Tung Tu
Shan-Tung Tu East China University of Science and Technology
Fu-Zhen Xuan
Fu-Zhen Xuan East China University of Science and Technology
Christopher E Truman
Christopher E Truman University of Bristol

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