TY - JOUR
T1 - A modified single edge V-notched beam method for evaluating surface fracture toughness of thermal barrier coatings
AU - Bai, Haoran
AU - Wang, Zhanyu
AU - Luo, Sangyu
AU - Qu, Zhaoliang
AU - Fang, Daining
N1 - Publisher Copyright:
© 2023, The Author(s).
PY - 2023/5
Y1 - 2023/5
N2 - The surface fracture toughness is an important mechanical parameter for studying the failure behavior of air plasma sprayed (APS) thermal barrier coatings (TBCs). As APS TBCs are typical multilayer porous ceramic materials, the direct applications of the traditional single edge notched beam (SENB) method that ignores those typical structural characters may cause errors. To measure the surface fracture toughness more accurately, the effects of multilayer and porous characters on the fracture toughness of APS TBCs should be considered. In this paper, a modified single edge V-notched beam (MSEVNB) method with typical structural characters is developed. According to the finite element analysis (FEA), the geometry factor of the multilayer structure is recalculated. Owing to the narrower V-notches, a more accurate critical fracture stress is obtained. Based on the Griffith energy balance, the reduction of the crack surface caused by micro-defects is corrected. The MSEVNB method can measure the surface fracture toughness more accurately than the SENB method.
AB - The surface fracture toughness is an important mechanical parameter for studying the failure behavior of air plasma sprayed (APS) thermal barrier coatings (TBCs). As APS TBCs are typical multilayer porous ceramic materials, the direct applications of the traditional single edge notched beam (SENB) method that ignores those typical structural characters may cause errors. To measure the surface fracture toughness more accurately, the effects of multilayer and porous characters on the fracture toughness of APS TBCs should be considered. In this paper, a modified single edge V-notched beam (MSEVNB) method with typical structural characters is developed. According to the finite element analysis (FEA), the geometry factor of the multilayer structure is recalculated. Owing to the narrower V-notches, a more accurate critical fracture stress is obtained. Based on the Griffith energy balance, the reduction of the crack surface caused by micro-defects is corrected. The MSEVNB method can measure the surface fracture toughness more accurately than the SENB method.
KW - O341
KW - O346.1
KW - micro-defect
KW - modified single edge V-notched beam (MSEVNB) method
KW - multilayer structure
KW - surface fracture toughness
KW - thermal barrier coating (TBC)
UR - http://www.scopus.com/inward/record.url?scp=85156142005&partnerID=8YFLogxK
U2 - 10.1007/s10483-023-3001-6
DO - 10.1007/s10483-023-3001-6
M3 - Article
AN - SCOPUS:85156142005
SN - 0253-4827
VL - 44
SP - 693
EP - 710
JO - Applied Mathematics and Mechanics (English Edition)
JF - Applied Mathematics and Mechanics (English Edition)
IS - 5
ER -