为考察TiB2含量对微波烧结TiB2/Cu复合材料组织和磨损性能的影响,采用微波烧结技术制备了含TiB2体积分数不同的TiB2/Cu复合材料.测试了试样的密度和显微硬度,分析了试样的组织.应用摩擦磨损试验机测试了试样在不同载荷下的磨损性能,并应用扫描电镜(配能谱仪)观察和分析了试样磨损面形貌和成分.结果表明:随TiB2含量增加,试样中孪晶数量减少;晶粒反而随TiB2含量增加而增大,其长大方式是晶界绕过团聚颗粒后进行合并而长大;试样的耐磨性能随TiB2含量增加而显著提高,其主要的磨损机制也由粘着磨损逐渐向磨粒磨损转变.
参考文献
[1] | 刘德宝,崔春翔.AlNp/Cu复合材料的热学性能[J].机械工程材料,2006(06):58-62. |
[2] | Tjong S C;Lau K C .Tribological behaviour of SiC particle-reinforced copper matrix composites[J].Materials Letters,2000,43(5-6):274-280. |
[3] | 王耐艳,涂江平,杨友志,齐卫笑,刘芙,张孝彬,卢焕明,刘茂森.原位反应纳米TiB2/Cu复合材料的制备和微结构[J].中国有色金属学报,2002(01):151-154. |
[4] | Dae-Hwan Kwon;Thuy Dang Nguyen;Dina Dudina;Jong-Won Kum;Pyuck-Pa Choi;Ji-Soon Kim;Young-Soon Kwon .Thermal Stability and Properties of Cu-TiB2 Nanocomposites Prepared by Combustion Synthesis and Spark-Plasma Sintering[J].Materials Science Forum,2007(26):1517-1520. |
[5] | Mingxing Guo;Kun Shen;Mingpu Wang .Relationship between microstructure, properties and reaction conditions for Cu-TiB_2 alloys prepared by in situ reaction[J].Acta materialia,2009(15):4568-4579. |
[6] | Wong WLE;Karthik S;Gupta M .Development of hybrid Mg/Al2O3 composites with improved properties using microwave assisted rapid sintering route[J].Journal of Materials Science,2005(13):3395-3402. |
[7] | S.C. Tjong;K.C. Lau .Properties and abrasive wear of TiB2/Al-4%Cu composites produced by hot isostatic pressing[J].Composites science and technology,1999(13):2005-2013. |
[8] | Tu J P;Rong W;Guo S Y et al.Dry sliding wear behavior of in situ Cu-TiB2 nanocomposites against medium carbon steel[J].Wear,2003,255(7-12):832-835. |
[9] | J. P. Tu;L. Meng;M. S. Liu .Friction and wear behavior of Cu-Fe{sub}3Al powder metallurgical composites in dry sliding[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,1998(1):72-79. |
[10] | Kyung Tae Kim;Seung Il Cha;Soon Hyung Hong .Hardness and wear resistance of carbon nanotube reinforced Cu matrix nanocomposites[J].Materials Science & Engineering. A, Structural Materials: Properties, Microstructure and Processing,2007(1/2):46-50. |
[11] | 张剑平;张萌;艾云龙 .微波烧结Cu-TiB2复合材料的组织与性能[J].东北大学学报(自然科学版),2010,31(z1):321-324. |
[12] | Aravindan S;Ruban V;Krishnamurthy R .Sintering of copper by microwave hybrid heating[J].European Congress and Exgibition on Powder Metallurgy(Euro PM 2003),2003,3:1020-1022. |
[13] | K. Rajkumar;S. Aravindan .Microwave sintering of copper-graphite composites[J].Journal of Materials Processing Technology,2009(15/16):5601-5605. |
[14] | Bykov YV.;Eremeev AG.;Rybakov KI.;Semenov VE.;Sorokin AA. Gusev SA.;Egorov SV. .Evidence for microwave enhanced mass transport in the annealing of nanoporous alumina membranes[J].Journal of Materials Science,2001(1):131-136. |
[15] | Zhipeng Xie .Densification and grain growth of alumina by microwave processing[J].Materials Letters,1998(4/5):215-220. |
[16] | P.K. Deshpande;R.Y. Lin .Wear resistance of WC particle reinforced copper matrix composites and the effect of porosity[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2006(1/2):137-145. |
[17] | Lee Tae-woo;Shin Chan-soo;Kang Kae-myung .Microstructural study on the wear behavior of Cu-TiB2 compposites for electrical contact materials[J].Solid State Phenomena,2007,124-126:255-258. |
[18] | 冉旭,刘勇兵,包晓军,耿素梅.石墨对C/Cu复合材料微观组织及摩擦磨损性能的影响[J].材料热处理学报,2007(02):12-16. |
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