依据双材料模型分析高温合金氧化膜的应力状态,确定了氧化膜弯曲剥落的最大挠度与氧化膜压应力间关系.利用界面断裂力学理论,建立了高温合金氧化膜剥落的弯曲图.镍基高温合金氧化表面剥落的Al2O3氧化膜,在界面粗糙度参数λ为0.3-0.4,临界弯曲指数∏c为1和临界粘附性指数∑c为1.15时,弯曲剥落特性与实验结果相符.高温合金氧化膜的弯曲图合理解释了氧化膜的弯曲剥落过程.
参考文献
[1] | Lowell C E, Barrett C A, Palmer R W, Auping J V, Pobst H B. Oxid Met, 1991, 36:81 |
[2] | Smialek J L. JOM, 2000, 1:22 |
[3] | Chan K S. Metall Mater Trans, 1997, A28:411 |
[4] | Chan K S, Cheruvu N S, Leverant G R. J Eng Gas Turb Power, 1998, 120:609 |
[5] | Chan K S, Cheruvu N S, Leverant G R. J Eng Gas Turb Power, 1999, 121:484 |
[6] | Lei M K, Yang F J, Luo P, Zhu X P. J Chin Soc Corros Prot, 2002, 22:65(雷明凯,杨辅军,罗鹏,朱小鹏.中国腐蚀与防护学报,2002,22:65) |
[7] | Evans H E, Lobb R C. Corros Sci, 1984, 24:209 |
[8] | Hutchinson J W, Thouless M D, Liniger E G. Acta Metall Mater, 1992, 40:295 |
[9] | Wang J S, Evans A G. Acta Mater, 1998, 46:4993 |
[10] | Evans A G, Hutchinson J W. Int J Solids Struct, 1984,20:455 |
[11] | Suo Z, Hutchinson J W. Int J Fract, 1990, 43:1 |
[12] | Hutchinson J W, Suo Z. Adv Appl Mech, 1992, 29:63 |
[13] | Evans A G, Hutchinson J W. Acta Metall Mater, 1995,43:2507 |
[14] | Qian Y H, Li M S, Zhang Y M. Corros Sci Prot Technol,2003, 15:90(钱余海,李美栓,张亚明.腐蚀科学与防护技术,2003,15:90) |
[15] | Hutchinson J W, Mear M E, Rice J R. J Appl Mech, 1987,54:828 |
[16] | Christensen J R, Lipkin D M, Clarke D R. Acta Mater,1996, 44:3813 |
[17] | Wang J S, Evans A G. Acta Mater, 1999, 47:699 |
[18] | Tolpygo V K, Clarke D R. Mater Sci Eng, 2000, A278:151 |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%