采用十字形试样测试分析有C涂层和无C涂层两种SiC纤维增强钛基复合材料的横向力学性能,以横向载荷作用下应力-应变曲线上的非线性拐点计算界面的强度.结果表明,有C涂层的界面横向开裂强度为53 MPa,低于无C涂层的界面开裂强度196 MPa,并且前者在横向载荷作用下沿C涂层与纤维之间开裂,而后者沿反应生成物与基体间开裂;体积分数为30%的多根纤维钛基复合材料的非线性拐点应力低于单根纤维复合材料,这主要是由于残余应力的减少引起,界面强度并没有明显变化.
参考文献
[1] | Christoph Leyens;Frank Kocian;Joachim Hausmann;Wolfgang A. Kaysser .Materials and design concepts for high performance compressor components[J].Aerospace science and technology,2003(3):201-210. |
[2] | 周义刚,杨延清.碳化硅连续纤维增强钛基复合材料的研究进展[J].金属学报,2002(z1):461-465. |
[3] | Aghdam MM.;Smith DJ.;Pavier MJ. .Micro-mechanics of off-axis loading of metal matrix composites using finite element analysis[J].International Journal of Solids and Structures,2001(22/23):3905-3925. |
[4] | Ismar H;Schroter F;Streicher F .[J].Computers & Structures,2001,79:1713. |
[5] | Hu Shoufeng .[J].Composites Science and Technology,1996,56:667. |
[6] | Dong M;Schmauder S.[J].Computational Materials Science,1996(05):53. |
[7] | Gundel D B;Mircle D B .[J].Composites Science and Technology,1998,58:1571. |
[8] | Gundel D B;Warrier S G;Miracle D B .[J].Acta Materials,1997,45(03):1275. |
[9] | Warrier S G;Gundel D B;Majumdar B S et al.[J].Scripta Materialia,1996,34(02):293. |
[10] | Carrere N.;Valle R.;Bretheau T.;Chaboche JL. .Multiscale analysis of the transverse properties of Ti-based matrix composites reinforced by SiC fibres: from the grain scale to the macroscopic scale[J].International Journal of Plasticity,2004(4-5):783-810. |
[11] | Warrier S G;Majumdar B S;Gundel D B et al.[J].Acta Materials,1997,45(08):3469. |
[12] | Feillard P .[J].Acta Materials,1996,44(02):643. |
[13] | Ramanurty U;Dary F C;Zok F W .[J].Acta Materials,1996,44(08):3397. |
[14] | Gungor S .[J].Acta Materialia,2002,50:2053. |
[15] | 杨延清,马志军,吕祥鸿,李健康,陈彦,艾云龙.SiCf/Ti-6Al-4V复合材料的界面研究[J].稀有金属材料与工程,2006(10):1516-1521. |
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%