Inicio  /  Coatings  /  Vol: 10 Par: 8 (2020)  /  Artículo
ARTÍCULO
TITULO

Research Progress of Failure Mechanism of Thermal Barrier Coatings at High Temperature via Finite Element Method

Zhong-Chao Hu    
Bin Liu    
Liang Wang    
Yu-Hang Cui    
Yan-Wei Wang    
Yu-Duo Ma    
Wen-Wei Sun and Yong Yang    

Resumen

In the past decades, the durability of thermal barrier coatings (TBCs) has been extensively studied. The majority of researches emphasized the problem of oxidation, corrosion, and erosion induced by foreign object damage (FOD). TBCs with low thermal conductivity are usually coated on the hot-section components of the aircraft engine. The main composition of the TBCs is top-coat, which is usually regarded as a wear-resistant and heat-insulating layer, and it will significantly improve the working temperature of the hot-section components of the aircraft engine. The application of TBCs are serviced under a complex and rigid environment. The external parts of the TBCs are subjected to high-temperature and high-pressure loading, and the inner parts of the TBCs have a large thermal stress due to the different physical properties between the adjacent layers of the TBCs. To improve the heat efficiency of the hot-section components of aircraft engines, the working temperature of the TBCs should be improved further, which will result in the failure mechanism becoming more and more complicated for TBCs; thus, the current study is focusing on reviewing the failure mechanism of the TBCs when they are serviced under the actual high temperature conditions. Finite element simulation is an important method to study the failure mechanism of the TBCs, especially under some extremely rigid environments, which the experimental method cannot realize. In this paper, the research progress of the failure mechanism of TBCs at high temperature via finite element modeling is systematically reviewed.

 Artículos similares

       
 
Sojeong Roh, Trong Danh Nguyen and Jun Seop Lee    
Radio Frequency Identification (RFID) technology, capable of wirelessly processing large amounts of information, is gaining attention with the advancement of IoT technology. RFID systems can be utilized as Wireless Sensor Network (WSN) technology by intr... ver más
Revista: Applied Sciences

 
Ying Wang, Yahan Shi, Xiaofeng Xu and Yunjie Zhu    
With the continuous advancement of the economy, the issues of resource scarcity and environmental damage are becoming increasingly severe. For example, in terms of water resources, the problems of environmental pollution and ecological imbalance in the w... ver más
Revista: Water

 
Jiju Guo, Wengeng Cao, Guohui Lang, Qifa Sun, Tian Nan, Xiangzhi Li, Yu Ren and Zeyan Li    
The presence of high concentrations of geogenic arsenic (As) in groundwater poses a serious threat to the health of millions of individuals globally. This paper examines the research progress of groundwater with high concentrations of geogenic As through... ver más
Revista: Water

 
Liushuai Cao, Yanyan Pan, Gang Gao, Linjie Li and Decheng Wan    
Wakes produced by underwater vehicles, particularly submarines, in density-stratified fluids play a pivotal role across military, academic, and engineering domains. In comparison to homogeneous fluid environments, wakes in stratified flows exhibit distin... ver más

 
Juraj Tomá?ik, Márton Zsoldos, Lubica Oravcová, Michaela Lifková, Gabriela Pavleová, Martin Strunga and Andrej Thurzo    
In the age of artificial intelligence (AI), technological progress is changing established workflows and enabling some basic routines to be updated. In dentistry, the patient?s face is a crucial part of treatment planning, although it has always been dif... ver más
Revista: AI