Unsteady Thermal Stresses of Thermal Barrier Coatings under Cyclic Heating

被引:0
作者
Suzuki K. [1 ]
Toyokawa H. [2 ]
Saji C. [2 ]
Yamazaki Y. [3 ]
Okumura T. [4 ]
机构
[1] Faculty of Education, Niigata University, Nishi-ku, Niigata
[2] Japan Synchrotron Radiation Research Institute, Sayo-gun, Hyogo
[3] Faculty of Engineering, Chiba University, Inage-ku, Chiba
[4] Graduate School of Engineering, Chiba University, Inage-ku, Chiba
来源
Zairyo/Journal of the Society of Materials Science, Japan | 2023年 / 72卷
基金
日本学术振兴会;
关键词
Heat cycle; Synchrotron radiations; Thermal barrier coating; Unsteady thermal stress; X-ray stress measurement;
D O I
10.2472/JSMS.72.821
中图分类号
学科分类号
摘要
The thermal stresses of the thermal barrier coatings (TBCs) under cyclic heating were measured using hard synchrotron X-rays of 70 keV at the beam line BL02B1 in SPring-8. We were able to quickly measure the unsteady stresses using the CdTe pixel detector which is an area detector. The two kinds of the TBC specimens were prepared. One was made by atmosphere plasma spraying (APS) and the other was made by suspension plasma spraying (SPS). The steady thermal stresses in both the APS and SPS specimens showed the same value during the heating and cooling processes. Therefore, the steady thermal stresses were caused by the miss match of the thermal expansions. The unsteady thermal stresses were larger than the steady stresses in both the APS and the SPS specimens. The unsteady thermal stresses also include the stress caused by the temperature gradient. According to the behavior of the unsteady thermal stresses measured, the thermal stress of the APS top coat did not exceed 100 MPa due to non-elastic deformation an sliding effect of lamella structure. For the SPS specimen, it was found that the tensile and compressive stresses were relaxed due to the columnar structure. © 2023 The Society of Materials Science, Japan.
引用
收藏
页码:821 / 827
页数:6
相关论文
共 50 条
[31]   Effect of microstructure on thermal shock cracking of functionally graded thermal barrier coatings studied by burner heating test [J].
Kawasaki, A ;
Watanabe, R ;
Yuki, M ;
Nakanishi, Y ;
Onabe, H .
MATERIALS TRANSACTIONS JIM, 1996, 37 (04) :788-795
[32]   Reinforced sol-gel thermal barrier coatings and their cyclic oxidation life [J].
Pin, Lisa ;
Ansart, Florence ;
Bonino, Jean-Pierre ;
Le Maoult, Yannick ;
Vidal, Vanessa ;
Lours, Philippe .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2013, 33 (02) :269-276
[33]   Thickness-related failure behaviors of the thermal barrier coatings under thermal gradient cycling [J].
Wu, Mengmeng ;
Liu, Yuan ;
Qu, Weiwei ;
Guo, Wenqi ;
Zhang, Heng ;
Pei, Yanling ;
Li, Shusuo ;
Gong, Shengkai .
SURFACE & COATINGS TECHNOLOGY, 2023, 468
[34]   Stress simulation calculation of thermal barrier coatings under thermal-mechanical coupling conditions [J].
Liu, Delin ;
Xue, Qiqi ;
Yang, Wenhui ;
Mu, Rende ;
He, Limin ;
Tian, Jun ;
Hu, Fengxue .
CAILIAO GONGCHENG-JOURNAL OF MATERIALS ENGINEERING, 2024, 52 (07) :162-172
[35]   A novel thermal cycling test method for thermal barrier coatings under CMAS coupled condition [J].
He, Qing, 1600, Beijing Institute of Aeronautical Materials (BIAM) :92-98
[36]   Numerical Simulation of Surface Crack Propagation in Thermal Barrier Coatings Under Thermal Mismatch Stress [J].
Yu Qingmin ;
Shi Yongzhi .
RARE METAL MATERIALS AND ENGINEERING, 2018, 47 (10) :3052-3057
[37]   Modeling the Build-Up of Internal Stresses in Multilayer Thick Thermal Barrier Coatings [J].
H. Samadi ;
T. W. Coyle .
Journal of Thermal Spray Technology, 2009, 18 :996-1003
[38]   Modeling the Build-Up of Internal Stresses in Multilayer Thick Thermal Barrier Coatings [J].
Samadi, H. ;
Coyle, T. W. .
JOURNAL OF THERMAL SPRAY TECHNOLOGY, 2009, 18 (5-6) :996-1003
[39]   A parametric study of the stress state of thermal barrier coatings Part II:: cooling stresses [J].
Bäker, M ;
Rösler, J ;
Heinze, G .
ACTA MATERIALIA, 2005, 53 (02) :469-476
[40]   Experimental and Numerical Investigation of Residual Stresses in Plasma-sprayed Thermal Barrier Coatings [J].
Yang Jia-Sheng ;
Yu Jian-Hua ;
Zhong Xing-Hua ;
Zhao Hua-Yu ;
Zhou Xia-Ming ;
Tao Shun-Yan ;
Ding Chuan-Xian .
JOURNAL OF INORGANIC MATERIALS, 2013, 28 (12) :1381-1386