An Assessment of the High-Temperature Oxidation Resistance of Selected Thermal Sprayed High Entropy Alloy Coatings

被引:31
作者
Zhang, Xiao [1 ]
Zhang, Nannan [1 ]
Xing, Bowei [1 ]
Yin, Shuo [2 ]
机构
[1] Shenyang Univ Technol, Dept Mat Sci & Engn, Shenyang 110870, Liaoning, Peoples R China
[2] Univ Dublin, Trinity Coll Dublin, Dept Mech Mfg & Biomed Engn, Parsons Bldg, Dublin 2, Ireland
关键词
coatings; high entropy alloys (HEAs); microstructure; oxidation resistance; thermal spray; BARRIER COATINGS; BOND-COAT; TGO GROWTH; MECHANICAL-PROPERTIES; SHOCK RESISTANCE; INTERFACE UNDULATION; ISOTHERMAL OXIDATION; CRACK-PROPAGATION; ADHESION STRENGTH; DIFFUSION BARRIER;
D O I
10.1007/s11666-022-01352-w
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Due to the unique rules of elemental composition, the high entropy alloys (HEAs) possess excellent properties such as wear resistance and corrosion resistance. Combining HEAs with advanced thermal spray technology can provide new ideas and solutions to the problems encountered in the development of surface engineering. Researchers found that HEA coatings showed excellent potential in the field of high-temperature oxidation resistance. Based on this, this paper reviews the recent research achievements on the oxidation resistance of thermal sprayed HEA coatings. The effects of alloying elemental composition, microstructure and phase composition on the oxidation resistance of HEA coatings are compared and discussed. Subsequently, the research progress of HEA coatings in terms of oxidation resistance is summarized. The idea of optimizing the oxidation resistance of HEA coatings is proposed. The ultimate objective of this paper to promote the application of HEA coatings in the field of high-temperature protection.
引用
收藏
页码:1386 / 1403
页数:18
相关论文
共 104 条
[1]   Microstructure, Tensile Adhesion Strength and Thermal Shock Resistance of TBCs with Different Flame-Sprayed Bond Coat Materials Onto BMI Polyimide Matrix Composite [J].
Abedi, H. R. ;
Salehi, M. ;
Shafyei, A. .
JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2017, 26 (07) :1669-1684
[2]   Thermal oxidation characteristics of Fex(CoCrMnNi)100-x medium and high-entropy alloys [J].
Agustianingrum, Maya Putri ;
Latief, Fahamsyah Hamdan ;
Park, Nokeun ;
Lee, Unhae .
INTERMETALLICS, 2020, 120
[3]   Refurbishment of thermally degraded diffusion Pt-aluminide (PtAl) bond coat on a Ni-base superalloy [J].
Alam, Md Zafir ;
Sarkar, Surjendu B. ;
Das, Dipak K. .
SURFACE & COATINGS TECHNOLOGY, 2018, 354 :101-111
[4]   Isothermal oxidation and TGO growth behaviors of YAG/YSZ double-ceramic-layer thermal barrier coatings [J].
An, Guosheng ;
Li, Wensheng ;
Feng, Li ;
Cheng, Bo ;
Wang, Zhiping ;
Li, Ziyu ;
Zhang, Yi .
CERAMICS INTERNATIONAL, 2021, 47 (17) :24320-24330
[5]   Understanding the microstructural evolution of high entropy alloy coatings manufactured by atmospheric plasma spray processing [J].
Anupam, Ameey ;
Kottada, Ravi Sankar ;
Kashyap, Sanjay ;
Meghwal, Ashok ;
Murty, B. S. ;
Berndt, C. C. ;
Ang, A. S. M. .
APPLIED SURFACE SCIENCE, 2020, 505
[6]   First report on cold-sprayed AlCoCrFeNi high-entropy alloy and its isothermal oxidation [J].
Anupam, Ameey ;
Kumar, S. ;
Chavan, Naveen M. ;
Murty, Budaraju Srinivasa ;
Kottada, Ravi Sankar .
JOURNAL OF MATERIALS RESEARCH, 2019, 34 (05) :796-806
[7]   A review on laser cladding of high-entropy alloys, their recent trends and potential applications [J].
Arif, Zia Ullah ;
Khalid, Muhammad Yasir ;
Rehman, Ehtsham Ur ;
Ullah, Sibghat ;
Atif, Muhammad ;
Tariq, Ali .
JOURNAL OF MANUFACTURING PROCESSES, 2021, 68 :225-273
[8]   Cold spraying - A materials perspective [J].
Assadi, H. ;
Kreye, H. ;
Gaertner, F. ;
Klassen, T. .
ACTA MATERIALIA, 2016, 116 :382-407
[9]   Investigation on wear mechanisms of PVD coatings for form taps in threading of Al-Si alloy [J].
Barooah, Rohan Kumar ;
Paiva, Jose Mario ;
Arif, A. F. M. ;
Rawal, Sushant ;
Bose, Bipasha ;
Veldhuis, S. C. .
WEAR, 2021, 464
[10]   Development of a FeCrMnBC-based economical wear and corrosion resistant coating [J].
Bobzin, Kirsten ;
Zhao, Lidong ;
Oete, Mehmet ;
Koenigstein, Tim .
SURFACE & COATINGS TECHNOLOGY, 2019, 362 :12-20