共 26 条
- [1] Xue Z., Guo H., Gong S., Et al., Novel ceramic materials for thermal barrier coatings, Journal of Aeronautical Materials, 38, 2, pp. 10-20, (2018)
- [2] Han Z., Zhang H., Wang Z., Et al., Effect of interfacial characteristics of TGO on residual stress of thermal barrier coatings, Transactions of the China Welding Institution, 33, 12, pp. 33-36, (2012)
- [3] Zhang Y., Zhang Y., Sun X., Et al., Development status of thermal barrier coatings, Materials Protection, 37, 6, pp. 26-29, (2004)
- [4] Padture N.P., Gell M., Jordan E.H., Thermal barrier coatings for gas-turbine engine applications, Science, 296, 5566, pp. 280-284, (2002)
- [5] Evans A.G., Mumm D.R., Hutchinson J.W., Et al., Mechanisms controlling the durability of thermal barrier coatings, Progress in Materials Science, 46, 5, pp. 505-553, (2001)
- [6] Zhou Y., Liu Q., Yang L., Et al., Failure mechanism and life prediction of thermal barrier coatings, Acta Mechanica Solida Sinica, 31, 5, pp. 504-531, (2010)
- [7] Bhatnagar H., Ghosh S., Walter M.E., A parametric study of damage initiation and propagation in EB-PVD thermal barrier coatings, Mechanics of Materials, 42, 1, pp. 96-107, (2010)
- [8] Caliez M., Chaboche J.L., Feyel F., Et al., Numerical simulation of EBPVD thermal barrier coatings spallation, Acta Materialia, 51, 4, pp. 1133-1141, (2003)
- [9] Soulignac R., Maurel V., Remy L., Et al., Cohesive zone modelling of thermal barrier coatings interfacial properties based on three-dimensional observations and mechanical testing, Surface & Coatings Technology, 237, pp. 95-104, (2013)
- [10] Hille T.S., Nijdam T.J., Suiker A.S.J., Et al., Damage growth triggered by interface irregularities in thermal barrier coatings, Acta Materialia, 57, 9, pp. 2624-2630, (2009)