Please wait a minute...
材料研究学报  2005, Vol. 19 Issue (2): 120-124    
  论文 本期目录 | 过刊浏览 |
表面纳米化对316L不锈钢性能的影响
吕爱强1;张洋1;李瑛2;刘刚3;刘春明1
1 东北大学2 中国科学院金属研究所金属腐蚀与防护国家重点实验室3 中国科学院金属研究所沈阳材料科学国家(联合)实
引用本文:

吕爱强; 张洋; 李瑛; 刘刚; 刘春明 . 表面纳米化对316L不锈钢性能的影响[J]. 材料研究学报, 2005, 19(2): 120-124.

全文: PDF(1094 KB)  
摘要: 对316L不锈钢进行表面机械研磨处理 (SMAT),研究表面组织变化对其硬度和在0.5mol/L NaCl介质 中腐蚀性能的影响。结果表明:通过SMAT可以在316L不锈钢表面制备出纳米结构层,随着处理时间的增 加,表面纳米晶组织逐渐由单一的奥氏体相过渡到奥氏体与马氏体两相共存;表面纳米化和马氏体相变能 够明显地提高316L不锈钢的表层硬度,使表面粗糙度略有下降; 表面机械研磨处理降低了316L不锈钢在 0.5mol/L NaCl腐蚀介质中的耐蚀性能。因为316L不锈钢表面纳米晶组织容易钝化,形成的钝化膜不稳定,提高了溶解速度。
关键词 金属材料表面机械研磨316L不锈钢    
Key words
收稿日期: 1900-01-01     
1 D.Bancroft,E.Peterson,S.Minshall,Polymorphism of iron at high pressure,Journal of Applied Physics.,27(3), 291(1956)
2 A.B.Sawaoka,T.Akashi,Very high pressure sintering of shock synthesized wurtzite type boron nitride powders.In: R.A.Graham,A.B.Sawaok,High Pressure Explosive Pro- esedings of Ceramics,(Traps.Tech.Publ.,1987) p.119
3 Yu.M.Riabininm,Certain experiments on dynamic com- pression of substances,Soviet Phys.Tech.,Phys.,1, 2575(1956)
4 YANG Shiyuan,JIN Xiaogang,DONG Yubin,CHEN Qifeng,WANG Jisheng,Recover device of samples treated under high-pressure by quasi-spherical shock wave load- ing,Explosion and Shock Waves,21(2),38(2001) (杨世源,金孝刚,董玉斌,陈其丰,王基生,准球面冲击波高压回收装置的研究,爆炸与冲击,21(2),38(2001))
5 N.Naresh,Thadhani,Shock-induced chemical reactions and synthesis of materials,Progress in Materials Science., 37,117(1993)
6 J.G.Bednorz,K.A.Muller,Possible high-Tc superconduc- tors in the Ba-La-Cu-O system,Z.Phys.,B64,189(1986)
7 B.Morosin,R.A.Graham,E.L.Venturini,D.S.Ginley, W.F.Hammetter,Shock Waves in Condensed Matter- 1987,edited by S.C.Schmidt and N.C.Holmes,(Elsevier, Amsterdam,1988)p.439
8 Z.Iqbal,Superconducting properties and microstructure of shock synthesized high-Tc cuprates,in:Progress Of 2nd World Congress on Superconductivity (Houston,Texas, 1990)
9 Z.Iqbal,N.N.Thadhani,Shock Waves and High Strain Rate Phenomena in Materials,edited by M.A.,Meyers, L.E.Murr,K.P.Staudhammer,(Marcel Dekker,1991) p.821
10 Y.Horie,D.E.P.Hoy,I.Simonsen,R.A.Graham, B.Morosin,Shock-wave synthesis of titanium alu- minides,in:Shock Waves in Condensed Matter,edited by Y.H.Gupta (New York,Plenum Press,1986) p.749
11 L.H.Yu,M.A.Meyers,N.N.Thadhani,Reaction-assisted shock consolidation of RSR Ti-A1 alloys,J.Mat.Res., 5(2),302(1990)
12 B.R.Krueger,T.Jr.Vreeland,Correlation of shock initiated and thermally initiated chemical reactions in a 1:1 atomic ratio nickel-silicon mixture,J.Appl.Phys.,70(10), 5362(1991)
13 L.H.Yu,M.A.Meyers,Shock-induced consolidation and synthesis of silicides,J.Matls.Sci.,26,601(1991)
14 Kakoli Das,Amit Bandyopadhyay,Y.M.Gupta.Shock wave synthesis of titanium silicide (Ti_5Si_3)[A],in:Shock Compression of Condensed Matter,edited by M.D.Fnr- nish,Y.M.Gupta,J.W.Forbes,(Portland,Oregon:AIP Conference Proceedings 706,2003) p.1094
15 LIAO Qilong,YANG Shiyuan,CAI Lingcang,ZHOU Dali, YIN Guangfu,ZHENG Changqiong,Synthesis of hydrox- yapatite powder by shock wave treatment method,Chi- nese Journal of High Pressure Physics,16(4),49(2002) (廖其龙,杨世源,蔡灵仓,周大利,尹光福,郑昌琼,用冲击波合成法制备羟基磷灰石粉体,高压物理学报,16(4),49(2002))
16 LIU Jianjun,TAN Hua,XU Kang,HE Hongliang,Shock synthesis of zinc ferrite and its photocatalytic activity, Chinese Journal of High Pressure Physics,11(2),90(1997) (刘建军,谭华,徐康,贺红亮,纳米铁酸锌的冲击波合成及它的光催化活性,高压物理学报,11(2),90(1997))
17 WANG Junxia,YANG Shiyuan,HE Hongliang,LIANG Xiaofeng,ZHANG Baoshu,LIU Wei,Structure and prop- erties of Pb(Zr_(0.95)Ti_(0.05))O_3 powder synthesized by shock- wave technique,Journal of The Chinese Ceramic Society, 33(6),18(2005) (王军霞,杨世源,贺红亮,梁晓峰,张宝述,刘伟,冲击波合成Pb(Zr_(0.95)Ti_(0.05))O_3粉体的结构和特性,硅酸盐学报,33(6),18(2005))
18 JIA Ligai,XIONG Dalyu,Mechanism of titanium car- bide synthesis by shock-wave,Nonferrous Metals,53(4), 1(2001) (贾丽改,熊代余,冲击波方法合成TiC机理的研究,有色金属,53(4),1(2001))
19 YANG Shiyuan,JIN Xiaogang,LI Jufen,WANG Junxia, Preparation of nanometer crystallite of TiO_2 by shock waves technology,Chinese Journal of Materials Research, 19(2),189(2005) (杨世源,金孝刚,李菊芬,王军霞,利用冲击波技术制备TiO_2纳米晶,材料研究学报,19(2),189(2005))
20 P.S.DeCarli,J.C.Jamieson,Formation of diamond by ex- plosive shock,Science,133,1821(1961)
21 T.Sekine,He Hongliang,T.Kobayashi,Shock-induced transformation ofβ-Si_3N_4 to a high-pressure cubic-spinel phase,Applied Physics Letters,76,3706(2000)
22 B.Morosin,E.L.Venturini,R.A.Graham,High-pressure shock modification and synthesis of superconducting ce- ramic cxides,Synthetic Matals,33,185(1989)
23 E.M.Kuznetsova,L.A.Reznichenko,O.N.Razumovskaya, Shockwave activation of high-temperature ferroelectric powders,Technical Physics Letters,26(9),767(2000)
24 LIU Jianjun,YU Yingchun,LI Yingjun,HE Hongliang, TAN Hua,XU Kang,Shock activation of titanium oxide and its photocatalytic activity ,Chinese Journal of High Pressure Physics,18(2),138(1999) (刘建军,于迎春,李英骏,贺红亮,谭华,徐康,TiO_2的冲击波活化及其光催化活性,高压物理学报,13(2),138(1999))
25 LIAO Qilong,YANG Shiyuan,CAI Lingcang,ZHENG Changqiong,Shock-activating and sintering of hydrox- yapatite agglomerate,Chinese Journal of High Pressure Physics,17((3),9(2003) (廖其龙,杨世源,蔡灵仓,郑昌琼,羟基磷灰石团聚体的冲击波活化与烧结研究,高压物理学报,17(3),9(2003))
26 LIU Li,HAN Junwan,Shock activation and modification of PZT 95/5 piezoceamics,Chinese Journal of High Pres- sure Physics,10(3),199(1996) (刘利,韩钧万,PZT-95/5压电陶瓷的冲击波活化改性研究,高压物理学报,10(3),199(1996))
27 R.Ward,N.N.Thadhani,P.A.Persson,Shock compres- sion of high-performance ceramics,in: Metal and Ce- ramic Matrix Composites:Procession,Modelling and Me- chanical Behavior,edited by R.B.Bhagat,A.H.Clauer, P.Kumnr,A.M.Ritter,(TMS,Warrendale,Pennsylvania, 1990) p.193
28 P.A.Persson,R.Ward,N.N.Thadhani,Shock-induced re- action synthesis (SRS) assisted compaction of ceramics,in: Shock Wave in Condensed Matter,edited by S.C.Schmidt and N.C.Holmes,(North-Holland Publishers,1990) p.539
29 F.Grignon,D.Benson,K.S.Vecchio,M.A.Meyers,Explo- sive welding of aluminum to aluminum:analysis,com- putations and experiments,in: Shock Compression of Condensed Matter,edited by M.D.Fnrnish,Y.M.Gupta, J.W.Forbes,(Portland,Oregon:AIP Conference Proceed- ings 706,2003) p.1098
30 D.Meuken,E.P.Carton,Explosive welding and cladding, in:Shock Compression of Condensed Matter,edited by M.D.Fnrnish,Y.M.Gupta,J.W.Forbes,(Portland,Ore- gon:AIP Conference Proceedings 706,2003) p.1110
[1] 毛建军, 富童, 潘虎成, 滕常青, 张伟, 谢东升, 吴璐. AlNbMoZrB系难熔高熵合金的Kr离子辐照损伤行为[J]. 材料研究学报, 2023, 37(9): 641-648.
[2] 宋莉芳, 闫佳豪, 张佃康, 薛程, 夏慧芸, 牛艳辉. 碱金属掺杂MIL125CO2 吸附性能[J]. 材料研究学报, 2023, 37(9): 649-654.
[3] 赵政翔, 廖露海, 徐芳泓, 张威, 李静媛. 超级奥氏体不锈钢24Cr-22Ni-7Mo-0.4N的热变形行为及其组织演变[J]. 材料研究学报, 2023, 37(9): 655-667.
[4] 邵鸿媚, 崔勇, 徐文迪, 张伟, 申晓毅, 翟玉春. 空心球形AlOOH的无模板水热制备和吸附性能[J]. 材料研究学报, 2023, 37(9): 675-684.
[5] 幸定琴, 涂坚, 罗森, 周志明. C含量对VCoNi中熵合金微观组织和性能的影响[J]. 材料研究学报, 2023, 37(9): 685-696.
[6] 欧阳康昕, 周达, 杨宇帆, 张磊. LPSOMg-Y-Er-Ni合金的组织和拉伸性能[J]. 材料研究学报, 2023, 37(9): 697-705.
[7] 徐利君, 郑策, 冯小辉, 黄秋燕, 李应举, 杨院生. 定向再结晶对热轧态Cu71Al18Mn11合金的组织和超弹性性能的影响[J]. 材料研究学报, 2023, 37(8): 571-580.
[8] 熊诗琪, 刘恩泽, 谭政, 宁礼奎, 佟健, 郑志, 李海英. 固溶处理对一种低偏析高温合金组织的影响[J]. 材料研究学报, 2023, 37(8): 603-613.
[9] 刘继浩, 迟宏宵, 武会宾, 马党参, 周健, 徐辉霞. 喷射成形M3高速钢热处理过程中组织的演变和硬度偏低问题[J]. 材料研究学报, 2023, 37(8): 625-632.
[10] 由宝栋, 朱明伟, 杨鹏举, 何杰. 合金相分离制备多孔金属材料的研究进展[J]. 材料研究学报, 2023, 37(8): 561-570.
[11] 任富彦, 欧阳二明. g-C3N4 改性Bi2O3 对盐酸四环素的光催化降解[J]. 材料研究学报, 2023, 37(8): 633-640.
[12] 王昊, 崔君军, 赵明久. 镍基高温合金GH3536带箔材的再结晶与晶粒长大行为[J]. 材料研究学报, 2023, 37(7): 535-542.
[13] 刘明珠, 樊娆, 张萧宇, 马泽元, 梁城洋, 曹颖, 耿仕通, 李玲. SnO2 作散射层的光阳极膜厚对量子点染料敏化太阳能电池光电性能的影响[J]. 材料研究学报, 2023, 37(7): 554-560.
[14] 秦鹤勇, 李振团, 赵光普, 张文云, 张晓敏. 固溶温度对GH4742合金力学性能及γ' 相的影响[J]. 材料研究学报, 2023, 37(7): 502-510.
[15] 刘天福, 张滨, 张均锋, 徐强, 宋竹满, 张广平. 缺口应力集中系数对TC4 ELI合金低周疲劳性能的影响[J]. 材料研究学报, 2023, 37(7): 511-522.