研究了Ni和Ti的添加对真空热压烧结方法制备的Al2O3-Ti(C,N)陶瓷基复合材料的显微组织和力学性能的影响.发现添加Ni和Ti的复合材料主要由Al2O3、Ti(C,N)和Ni组成,没有发现存在金属Ti.Ti由于非常活泼,在热压烧结过程中可能与石墨模具产生的含C气氛反应生成TiC,或与高温下Ti(C,N)的少量分解产生的N2气氛反应生成TiN,这有利于减少复合材料中的气孔.适量添加Ni可通过液相烧结促进复合材料的致密化,提高复合材料的相对密度,并能通过产生裂纹偏转和裂纹桥联提高复合材料的断裂韧性.热压温度为1550℃、等摩尔比的Ni和Ti混合粉末添加量为5vol%时,Al2O3-Ti(C,N)-Ni-Ti复合材料的相对密度为99.6%,硬度为21GPa,抗弯强度为818MPa,断裂韧性为8.1 MPa·m1/2.
参考文献
[1] | 郭景坤.中国先进陶瓷研究及其展望.材料研究学报,1997,11(6):594-599. |
[2] | Borsa C E,Ferreira H S,Kiminami R H G A.Liquid phase sintering of Al2O3/SiC nanocomposites.Journal of the European Ceramic Society,1999,19(5):615-621. |
[3] | Davis J B,Marshall D B,Oka K S,et al.Ceramic composites for thermal protection systems.J.Composites:Part A,1999,30(4):483-484. |
[4] | Duan R,Zhang C,Kuntz J D,et al.Processing and microstructure of high-pressure consolidated ceramic nanocomposites.Sripta Materialia,2004,51(12):1135-1139. |
[5] | Ettmayer P,Kolaska H,Lengauer W,et al.Ti(C,N) cermetsmetallurgy and properties.Int.J.Refract.Met.Hard Mater.,1995,13(6):343-351. |
[6] | Terao R,Tatami J,Meguro T,et al.Fracture behavior of AIN ceramics with rare earth oxides.Journal of the European Ceramic Society,2002,22(7):1051-1059. |
[7] | Sampad K B,Frank L R.Gas pressure sintering of silicon nitride powder coated with Al2O3 and TiO2.J.Am.Ceram.Soc.,2003,86(2):212-214. |
[8] | Santos C,Strecker K,Baldacim S A,et al.Mechanical properties improvement related to the isothermal holding time in Si3N4 ceramics sintered with an alternative additive.International Journal of Refractory Metals and Hard Materials,2003,21(5/6):245-250. |
[9] | Aslan E.Experimental investigation of cutting tool performance in high speed cutting of hardened X210 Cr12 cold-work tool steel (62HRC).J.Mater Design,2005; 26(1):21-27. |
[10] | Brown I W M,Owers W R.Fabrication,microstructure and properties of Fe-TiC ceramic-metal composites.Curr Appl.Phys.,2004,4(2/3/4):171-174. |
[11] | Tai W P,Watanabe T.Preparation and mechanical properties of Al2O3 reinforced by submicrometer Co particles.J.Mater.Sci.,1998,33(24):5795-5801. |
[12] | Zhang D,Zhang L M,Fu Z Y,et al.Differential sintering of Al2O3/ZrO2-Ni composite,during pulse electric current sintering.Ceramics International,2006,32(3):241-247. |
[13] | Ahn S Y,Kang S.Effect of WC particle size on microstructure and rim composition in the Ti(C0.7N0.3)-WC-Ni system.Scripta Mater.,2006,55(11):1015-1018. |
[14] | Oh S T,Sando M,Nihara K.Mechanical and magnetic properties of Ni-Co dispersed Al2O3 nanoeomposites.J.Mater.Sci.,2001,36(7):1817-1821. |
[15] | Manoj Kumar B V,Basu B.Mechanisms of material removal during high temperature fretting of TiCN-Ni based cermets.International Journal of Refractory Metals.,2008,26(6):504-513. |
[16] | Cheng Y,Zheng Y F.Characterization of TiN,TiC and TiCN coatings on Ti-50.6at% Ni alloy deposited by PⅢ and deposition technique.Surface & Coating Technology,2007,201(9/10/11):4909-4912. |
[17] | Mas-Guindal M J,Benko E,Rodriguez M A.Nanostructurcd metastable cermets of Ti-Al2O3 through activated SHS reaction.Journal of Alloys and Compounds,2008,454(1/2):352-358. |
[18] | Xiu Z M,Laeng J,Sun X D,et al.Phase formation of Al2O3/Ti(C,N)-NiTi composite.Journal of Alloys and Compounds,2008,458(1/2):398-404. |
[19] | Xiong J,Zhang Y K,Shen B L,et al.The Preparing and performance of superfine TiCN cermet.Powder Metall.Technol,2004,220):164-167. |
[20] | Liu W J,Xiong W H,Zheng Y,et al.Microstructure and cutting performance of Ti(C,N)-based cermets heat-treated in nitrogen.Rare Metals,2007,26(4):352-358. |
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