欢迎登录材料期刊网

材料期刊网

高级检索

表面纳米化(SNC)技术是近几年备受人们关注的新技术,它可以显著提高材料的力学性能和物理化学性能.目前关于金属材料表面纳米化的制备原理、方法,以及晶粒细化机制的研究很多,从这些方面对表面纳米化技术以及机制进行简单阐述,并详细介绍了目前纯铝、纯铜、纯钛以及304不锈钢的表面纳米化机制的研究现状.

参考文献

[1] 刘刚,雍兴平,卢柯.金属材料表面纳米化的研究现状[J].中国表面工程,2001(03):1-5.
[2] Lu K;Lu J .Surface nanocrystallization of metallic materials presentation of the concept behind a new approach[J].Journal of Materials Science and Technology,1999,15(03):193.
[3] 张聪慧,刘研蕊,兰新哲.钛合金表面高能喷丸纳米化后的组织与性能[J].热加工工艺,2006(02):5-7.
[4] 刘刚,周蕾.工程金属材料的表面纳米化技术(一)[J].纳米科技,2006(01):56-60.
[5] 丛志新,王宇.浅析表面自身纳米化及其应用进展[J].热处理技术与装备,2008(01):10-14.
[6] 张聪惠,兰新哲,赵西成,刘研蕊.金属材料表面纳米化研究现状[J].铸造技术,2006(08):882-884.
[7] 欧信兵,张津.强烈塑性变形表面纳米化的研究现状[J].表面技术,2008(03):60-64.
[8] Roland T;Retraint D;Lu K;Lu J .Fatigue life improvement through surface nanostructuring of stainless steel by means of surface mechanical attrition treatment[J].Scripta materialia,2006(11):1949-1954.
[9] Tao N R;Sui M L;Lu J .Surface nanocrystallization of iron induced by ultrasonic shot penning[J].Nanostructured Materials,1999,11(04):433.
[10] Masahide Sato;Nobuhiro Tsuji;Yoritoshi Minamino;Yuichiro Koizumi .Formation of nanocrystalline surface layers in various metallic materials by near surface severe plastic deformation[J].Science and technology of advanced materials,2004(1/2):145-152.
[11] 熊天英,王吉孝,金花子,李铁藩,王佳杰.0Cr18Ni9Ti钢焊接接头表面纳米化及接头抗H2S应力腐蚀性能的研究[J].材料保护,2005(01):13-16.
[12] Fan X M;Zhou B S;Zhu L et al.Surface nanocrystallization of low carbon steel induced by circulation rolling plastic deformation[J].Materials Science Forum,2005,475-479:133.
[13] Mordyuk B N;Prokopenko G I .Fatigue life improvement of titanium by novel ultrasonically assisted technique[J].MATERIALS SCIENCE & ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING,2006,437:396.
[14] Bohdan N Mordyuk;Georgiy I Prokopenko .Ultrasonic impact peening for the surface properties' management[J].Journal of Sound and Vibration,2007,308:855.
[15] 胡国雄,盛光敏,韩靖.塑性变形诱发表面自纳米化的研究及其应用[J].材料导报,2007(04):117-121,125.
[16] H. W. Zhang;Z. K. Hei;G. Liu;J. Lu;K. Lu .Formation of nanostructured surface layer on AISI 304 stainless steel by means of surface mechanical attrition treatment[J].Acta materialia,2003(7):1871-1881.
[17] Zhu K Y;Vassel A;Brisset F et al.Nanostructure formation mechanism of a-titanium using SMAT[J].ACTA MATERIALIA,2004,52(14):4101.
[18] Wu X;Tao N;Hong Y et al.γ→ε martensite transformation and twinning deformation in fcc cobalt during surface mechanical attrition treatment[J].Scripta Materialia,2005,52(07):547.
[19] 徐滨士.纳米表面工程[M].北京:化学工业出版社,2003
[20] Tao N R;Wang Z B;Tong W P et al.An investigation of surface nanocrystllation mechanism in Fe induced by surface mechanical attrition treatment[J].ACTA MATERIALIA,2002,50:4603.
[21] 邹途祥 .纯铝的晶粒细化机制及动态力学性能的研究[D].太原理工大学,2008.
[22] 胡国雄 .金属材料表面自纳米化工艺、表征及机理研究[D].重庆大学,2007.
[23] 刘刚,莫成刚,武保林,左良.钢铁材料的表面纳米化[J].钢铁研究学报,2011(08):1-10,30.
[24] 韩靖,盛光敏,胡国雄.高能喷丸0Cr18Ni9Ti不锈钢自纳米化机理[J].中南大学学报(自然科学版),2009(03):644-649.
[25] Liu G;Wang S C;Lu K et al.Low carbon steel with nanostructured surface layer induced by high-energy shot peering[J].Scripta Materialia,2001,44:1791.
[26] Wu X L;Tao N R;Lu K et al.Microstructure and evolution of mechanically-induced ultrafine grain in surface layer of A-alloy subjected to USSP[J].ACTA MATERIALIA,2002,50:2075.
[27] Liu G;Lu J;Lu K .Surface nanocrystallization of 316L stainless steel induced by ultrasonic shot peering[J].Material Science and Engineering,2000,A286:91.
[28] WEI Yueguang,ZHU Chen,WU Xiaolei.Micro-scale mechanics of the surface-nanocrystalline Al-alloy material[J].中国科学G辑(英文版),2004(01):86-100.
[29] 胡兰青,李茂林,王科,刘刚,卫英慧,许并社.铝合金表面纳米化处理及显微结构特征[J].中国有色金属学报,2004(12):2016-2020.
[30] 胡兰青,李茂林,卫英慧,许并社.铝合金高能喷丸表层纳米化的TEM观察[J].电子显微学报,2004(04):386-386.
[31] 丛洪涛;孙秀魁;徐坚 等.纳米晶Al的制备及拉伸性能[J].材料研究学报,1998,12(06):645.
[32] 雍兴平,刘刚,吕坚,卢柯.低碳钢表面纳米化处理及结构特征[J].金属学报,2002(02):157-160.
[33] Yong Xingping;Liu Gang;Lu Ke .Characteration and properties of nanostructured surface layer in a low carbon steel subjected to SMA[J].Journal of Materials Science and Technology,2003,19(01):1.
[34] 曹扬,陈光,颜银标.钢铁材料表面自身纳米晶化及其应用前景[J].钢铁研究学报,2005(02):1-6.
[35] Xingping YONG,李建萍.表面机械研磨低碳钢的纳米表层的特征与性能[J].国外金属加工,2003(04):4-8.
[36] 冯淦,石连捷,吕坚,卢柯.低碳钢超声喷丸表面纳米化的研究[J].金属学报,2000(03):300-303.
[37] 张聪惠,何晓梅.表面机械研磨工业纯钛表面纳米化研究[J].稀有金属,2009(06):769-773.
[38] 葛利玲,袁战伟,井晓天,卢正欣.纯钛(TA2)表面纳米化及其热稳定性研究[J].稀有金属材料与工程,2011(07):1239-1242.
[39] 王科,太原理工大学材料科学与工程学院,刘刚,许并社,吕坚,卢柯.表面机械研磨处理纯铜的表面纳米化[C].全国第三届纳米材料和技术应用会议论文集,2003:651-654.
[40] X. Z. Liao;Y. H. Zhao;Y. T. Zhu;R. Z. Valiev;D. V. Gunderov .Grain-size effect on the deformation mechanisms of nanostructured copper processed by high-pressure torsion[J].Journal of Applied Physics,2004(1):636-640.
[41] 张洪旺,刘刚,黑祖昆,吕坚,卢柯.表面机械研磨诱导AISI 304不锈钢表层纳米化Ⅱ.晶粒细化机理[J].金属学报,2003(04):347-350.
[42] Lu K;Lu J .Nanostructured surface layer on metallic materials induced by surface mechanical attrition treatment[J].Material Science and Engineering,2004,375-377:38.
[43] Nairong Tao;Hongwang Zhang;Jian Lu;Ke Lu .Development of Nanostructures in Metallic Materials with Low Stacking Fault Energies During Surface Mechanical Attrition Treatment (SMAT)[J].Materials transactions,2003(10):1919-1925.
[44] 吕爱强,刘刚,刘春明.机械研磨诱导316L不锈钢表层组织的演变[J].金属学报,2004(09):943-947.
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:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%