Science Explorer Interactive view Map

High-Temperature Coating Behaviors

High-Temperature Coating Behaviors is a research topic within Aerospace Engineering. Science Explorer counts 34k research works in it since 1950. 39.1% of them reached the world's top 10% most cited for their field and year.

This cluster of papers focuses on advancements in thermal barrier coatings for gas turbine engines, covering topics such as cold spray deposition, high-temperature corrosion, plasma spraying, rare-earth zirconates, oxidation behavior, bonding mechanisms, microstructural evolution, and thermal conductivity. The research aims to improve the durability and efficiency of thermal barrier coatings in high-temperature environments.

  • Thermal Barrier Coatings
  • Gas Turbine Engines
  • Cold Spray Deposition
  • High-Temperature Corrosion
  • Plasma Spraying
  • Rare-Earth Zirconates
  • Oxidation Behavior
  • Bonding Mechanisms
  • Microstructural Evolution
  • Thermal Conductivity
Research works
34k
fractional, since 1950
In the world top 10%
13k
per year above
Top-10% rate
39.1%
share of its works in the world top 10%
Growth, 2013–17 → 2018–22
+61%
the tick is no change

Which countries lead High-Temperature Coating Behaviors research?

By volume, China and India publish the most (4.5k and 623 works in 2022–2025).

By volume, 2022–2025

  1. 1 China 4.5k works
  2. 2 India 623 works
  3. 3 United States 574 works
  4. 4 Russia 277 works
  5. 5 Germany 237 works
  6. 6 Japan 226 works
  7. 7 South Korea 189 works
  8. 8 France 177 works
  9. 9 Canada 155 works
  10. 10 Iran 147 works

How concentrated that is

The same countries as shares of everything the list above accounts for. A node where two countries do two thirds of the work and one spread evenly across twelve read alike as a ranking and not at all alike here.

China: 63.2%India: 8.8%United States: 8.1%Russia: 3.9%6 others listed: 16.0%63%largest
China4,480 · 63.2%India623 · 8.8%United States574 · 8.1%Russia277 · 3.9%6 others listed1,132 · 16.0%

Shares of the rows listed above, not of the whole node.

Which institutions lead High-Temperature Coating Behaviors research?

By volume in 2022–2025, University of Science and Technology Beijing publishes the most High-Temperature Coating Behaviors research, followed by Chinese Academy of Sciences and Northwestern Polytechnical University.

Who are the leading researchers in High-Temperature Coating Behaviors?

The most-cited researchers publishing on High-Temperature Coating Behaviors include Akihisa Inoue, Dierk Raabe and Paul K. Chu.

  1. 1 Akihisa Inoue Japan 4.7k citations
  2. 2 Dierk Raabe Germany 4.5k citations
  3. 3 Paul K. Chu Hong Kong 3.7k citations
  4. 4 A.G. Evans United States 3.2k citations
  5. 5 Terence G. Langdon United States 3k citations
  6. 6 Hong Li China 3k citations

Ranked by citations received across their whole record, among researchers with at least three works on this topic.

Where is High-Temperature Coating Behaviors research done?

The largest centres of High-Temperature Coating Behaviors research in 2022–2025 are Beijing (China), Xi'an (China), Shanghai (China) and Shenyang (China). Among places with at least 20 works in it, it is an unusually large share of all research in Ma'anshan City and Changwon.

Largest cities, 2022–2025

  1. 1 Beijing China 793 works
  2. 2 Xi'an China 410 works
  3. 3 Shanghai China 240 works
  4. 4 Shenyang China 202 works
  5. 5 Harbin China 181 works
  6. 6 Nanjing China 164 works
  7. 7 Changsha China 155 works
  8. 8 Wuhan China 143 works
  9. 9 Guangzhou China 137 works
  10. 10 Chengdu China 133 works

Where it is the local speciality

  1. Ma'anshan CityCN · 29.1 works19×
  2. ChangwonKR · 21.3 works18×
← less than its size predictsmore →

Location quotient: how much more of its research is in High-Temperature Coating Behaviors than the world average.

See High-Temperature Coating Behaviors on the map

Where is the best place to study High-Temperature Coating Behaviors?

Among universities, judged by research, Bartin University, Xi'an Jiaotong University and Northeastern University score highest, combining excellence, specialisation, size, growth and international reach. Research strength is one signal when choosing where to study; it does not measure teaching.

0%50%100%mean 50.86%fractional works in this node (log) →share in the world top 10% →Bartin University: 8, 79.3%Xi'an Jiaotong University: 122, 45.0%Northeastern University: 107, 36.3%Harbin Engineering University: 39, 46.3%Northwestern Polytechnical University: 134, 42.8%Kunming University of Science and Technology: 44, 55.6%City University of Hong Kong: 29, 48.8%Xiangtan University: 30, 57.0%Concordia University: 16, 63.6%University of Science and Technology Beijing: 151, 33.9%Bartin UniversityHarbin Engineering U…Xi'an Jiaotong Unive…Northeastern Univers…
above the meannear itbelow it

One dot per university in the table below. The upper left is the interesting corner: small places doing unusually strong work.

#UniversityScoreTop 10%SpecialisationWorksGrowth
1 Bartin UniversityTürkiye 69.379.3%10.1×8 +162.8%
2 Xi'an Jiaotong UniversityChina 68.345.0%9.2×122 +101.7%
3 Northeastern UniversityChina 68.136.3%14.8×107 +141.0%
4 Harbin Engineering UniversityChina 66.346.3%9.2×39 +209.8%
5 Northwestern Polytechnical UniversityChina 66.242.8%14.2×134 +35.9%
6 Kunming University of Science and TechnologyChina 64.955.6%9.3×44 +101.3%
7 City University of Hong KongHong Kong 63.148.8%6.1×29 +424.3%
8 Xiangtan UniversityChina 62.857.0%14.8×30 +64.0%
9 Concordia UniversityCanada 62.263.6%6.6×16 +195.1%
10 University of Science and Technology BeijingChina 61.833.9%23.4×151 +11.5%

Universities only. Score blends excellence (30%), specialisation (25%), size (20%), growth (15%) and international reach (10%), 2015–2022; growth compares 2010–14 with 2015–19.

Is High-Temperature Coating Behaviors research growing?

Output in 2018–2022 was 61% higher than in 2013–2017, peaking in 2025. The fastest-growing topics are High-Temperature Coating Behaviors.

19801990200020102020
grewheldshrank

The same series as a ribbon — one cell per year, darker for more. The line above answers how much; this answers when.

Which topics inside it are moving

Growth and decline on one axis around a shared zero. Two lists side by side hide the thing that matters: whether the growth dwarfs the decline, or the other way round.