研究了多层喷射沉积SiCP/Al-8.5Fe-1.3V-1.7Si复合材料通过挤压后再轧制以及模压致密后再轧制的显微组织特点及其室温力学性能.通过金相显微镜、X射线衍射仪、扫描电镜和透射电镜观察在加工过程中复合材料的显微组织,分析显微组织密度对室温力学性能的影响.结果表明:通过挤压后再轧制以及模压后再轧制的SiCp/Al-8.5Fe-1.3V-1.7Si复合材料具有突出的室温性能,其中通过挤压后轧制板材的室温抗拉强度(σb)达555 MPa,模压后轧制得到的板材室温抗拉强度(σb)达620 MPa;分析认为其突出的室温性能主要得益于复合材料中的颗粒状SiC的颗粒增强以及材料中弥散析出的Al13(Fe, V)3Si相、喷射沉积工艺得到基体材料的细小晶粒(约800 nm)、通过大量变形形成晶粒内和晶界附近的位错缠结以及喷射原始颗粒边界氧化皮的破碎而产生的强化.
参考文献
[1] | Skinner D J;Bye R L;Raybould D;Brown A M .Dispersion strengthened Al-Fe-V-Si alloys[J].Scripta Metallurgical et Materialia,1986,20(06):867-872. |
[2] | Kim I S;Kim N J;Nam S W .Temperature dependence of the optimum particle size for the dislocation detachment controlled creep of Al-Fe-V-Si/SiCp composite[J].Scripta Metallurgical et Materialia,1995,32(11):813-1814. |
[3] | (C)adek J;Kucha(r)orá K;Zhu S J .High temperature creep behaviour of an Al-8.5Fe-1.3V-1.7Si alloy reinforced with silicon carbide particulates[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2000,A283(1-2):172-180. |
[4] | Cadek J.;Kucharova K.;Zhu SJ. .Creep behaviour of an Al-8.5Fe-1.3V-1.7Si-15SiC(p) composite at temperatures ranging from 873 to 948 K[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2002(1/2):283-290. |
[5] | Zhu S J;Peng L M;Ma Z Y;Bi J Wang F G Wang Z G .High temperature creep behavior of SiC whisker-reinforced Al-Fe-V-Si composite[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1996,A215(1-2):120-124. |
[6] | 马宗义;宁小光;潘进;李吉红,吕毓雄,毕敬 .晶须增强Al-8.5Fe-1.3V-1.7Si 复合材料及晶须增强效果的评价[J].金属学报,1994,30(09):420-426. |
[7] | Peng L M;Zhu S J;MA Z Y;Bi J Wang F G Chen H R Northwood D O .High temperature creep deformation of Al18B4O33 whisker-reinforced 8009 Al composite[J].Materials Science and Engineering,1999,A265(1-2):63-70. |
[8] | X. C. TONG;A. K. GHOSH .Fabrication of in situ TiC reinforced aluminum matrix composites[J].Journal of Materials Science,2001(16):4059-4069. |
[9] | 孙玉峰,沈宁福,熊柏青,张永安,袁新.TiC对喷射沉积Al-8Fe-1.3V-1.7Si合金显微组织和性能的影响[J].中国有色金属学报,2001(z2):54-59. |
[10] | 胡敦芫,黄赞军,杨滨,崔华,张济山,熊柏青,朱宝宏,张永安.TiC 颗粒增强喷射沉积Al-Fe-V-Si合金的组织及力学性能[J].矿冶,2002(04):59-62. |
[11] | Carre(n)o F;Gonzales-Doncel G;Ruano OA .High temperature deformation behavior of an Al-Fe-V-Si alloy[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1993,A164(1-2):216-219. |
[12] | Carre(n)o F;Ruano O A .Separated contribution of particles and matrix on the creep behavior of dispersion strengthened materials[J].Acta Materialia,1998,46(01):159-167. |
[13] | Zhu SJ;Ma ZY;Bi J;Chen HR;Wang FG;Peng LM .High temperature creep deformation of an Al-Fe-V-Si alloy[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,1999(1):25-33. |
[14] | Ma Z Y;Tjong S C .High-temperature creep behavior of SiC particulate reinforced Al-Fe-V-Si alloy composite[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,2000,278(1-2):5-15. |
[15] | Lloyd D J .Particle reinforced aluminium and magnesium matrix composites[J].International Materials Reviews,1994,39(01):1-23. |
[16] | Hambleton R.;Rainforth WM.;Jones H. .Effect of allay composition and reinforcement with silicon carbide on the microstructure and mechanical properties of three silicide dispersion strengthened aluminium alloys[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2001(0):524-528. |
[17] | Carre(n)o F;Torralba M;Eddahbi M;Ruano O A .Elevated temperature creep behavior of three rapidly solidified Al-Fe-Si materials containing Cr,Mn or Mo[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1997,A230(1-2):116-123. |
[18] | S. HARIPRASAD;S. M. L. SASTRY;K. L. JERINA .DEFORMATION BEHAVIOR OF A RAPIDLY SOLIDIFIED FINE GRAINED Al-8.5/100 Fe-1.2/100 V-1.7/100 Si ALLOY[J].Acta materialia,1996(1):383-389. |
[19] | 曹明盛.物理冶金基础[M].北京:冶金工业出版社,1985 |
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%