高级检索

ISSN1001-3806CN51-1125/TN 网站地图

留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

激光熔覆金属陶瓷涂层开裂的机理及防止措施

赵亚凡 陈传忠

引用本文:
Citation:

激光熔覆金属陶瓷涂层开裂的机理及防止措施

    作者简介: 赵亚凡(1973- ),女,博士研究生,主要从事材料表面激光强化与改性研究..
  • 中图分类号: TG174;TG665

Mechanism of the deformation and preventive measures of the cracks in metal ceramics cladding layer

  • CLC number: TG174;TG665

  • 摘要: 在总结国内外激光熔覆金属陶瓷涂层开裂研究现状的基础上,分析了裂纹的形成机理,从激光处理工艺和参数选择、熔覆层成分及基体形状的设计等方面阐述了裂纹行为的影响因素及相应的防止措施,最后展望了其发展前景.
  • [1]

    MCPHERSON R A.Review of microstructure and properties of plasma sprayed ceramic coatings[J].Surface and Coatings Technology,1999,39(40):173~182.
    [2]

    LIU Y,MAZUMDER J,SHIBATA K.Microstructural study of the interface in laser-clad Ni-Al bronze on Al alloy AA33 and its relation to cracking[J].Metallurgical and Materials Transactions,1995,A26(8):1519~1533.
    [3]

    CARVALHO P A.Laser alloying of Zinc with aluminum:solidification structures[J].Surface Coating Technology,1997,91(12):158~166.
    [4]

    CHEN J,YANG H O,LI Y M et al.The research on two kinds ofcracking behavior and mechanism of cladding in rapid laser forming process[J].Applied Laser,2002,22(3):300~304(in Chinese).
    [5]

    WANG X L,QI H B.Study on crack control of layer during laser cladding sealing surface of petrochemical valves[J].Laser Technology,2002,26(5):359~363(in Chinese).
    [6]

    SINGH J,MAZUNDER J.Microstrcture and wear properties of laserclad Fe-Mn-C alloys[J].Metallurgical Transactions,1987,18(5):313~318.
    [7]

    LUAN J F.Effect of processing factors on crack ration of laser clad layer[J].Material Science and Engineering,2002,20(3):349~353(in Chinese).
    [8]

    XIE Ch Sh,WANG A H,HUANG K J.Formation of cracks on laser cladded cast iron surface[J].Iron and Steel,1994,29(8):48~51(in Chinese).
    [9]

    CHEN Ch Zh,WANG D G,LEI T Q.Strcture characteristic of laser clad ceramic and its composite coatings[J].Laser Technology,2001,25(6):401~405(in Chinese).
    [10]

    ZHOU X B,De HOSSON J T M.A reaction coating on aluminium alloys by laser processing[J].Scripta Metallurgica et Materialia,1993,28(10):219~224.
    [11]

    CHEN Ch Zh,LEI T Q,BAO Q H et al.Problems and the improving measures in laser remelting of plasma sprayed ceramic coatings[J].Materials Science and Technology,2002,10(4):431~435(in Chinese).
    [12]

    McDONALD G,HPENDRICKS R C.Effect of thermal cycling onZrO2-Y2O3thermal barrier coatings[J].Thin Solid Films,1980,73(10):491~496.
    [13]

    PILOZ M.Residual stress induced by laser coatings:phenomenological analysis and predictions[J].Material Science,1992,27(2):120~124.
    [14]

    ZHU B L,HU M L,CHENG L et al.Research statns of cracking in laser cladding layer[J].Heat Treatment of Metals,2000,25(7):1~4(in Chinese).
    [15]

    PAI B C.Role of magnesium in casdt aluminum alloy matrix composites[J].Material Science,1995,30(6):1903~1911.
    [16]

    WU X W,ZENG X Y,ZHU P D et al.Cracking tendency of laser cladding Ni-based WC composite coatings[J].Chinese Journal of Lasers,1997,24(6):570~576(in Chinese).
    [17]

    CHEN Ch Zh,WANG H Zh,CAO H H et al.Properties of brittleness and abrasion of laser cladded Al2O3-NiCrAl composite ceramic coatings[J].Chinese Journal of Lasers,1999,25(9):841~846(in Chinese).
    [18]

    CHEN Ch Zh,CAO H H,LEI T Q et al.Structure and properties of laser cladded Al2O3-CoCrAlY composite ceramic coatings on W18Cr4V steel[J].Journal of the Chinese Ceramic Society,1999,27(4):445~451(in Chinese).
    [19]

    LIU Q B,ZHU W D,CHEN J.A methodof improving laser cladding Fe-based alloy coating on high temperature alloy[J].Journal of Guizhou University of Technology,2000,29(5):56~59(in Chinese).
    [20]

    GREZEV A N,SAFONOV A N.Cracking and microstructure of laser depositedchromium-boron-nickle alloy[J].Welding International,1987,22(1):50.
    [21]

    SONG W L,ZHU P D,GAN C H et al.Effects of crystallizing orientation on crack direction and cracking sensitivity in laser cladded layers[J].Chinese Journal of Lasers,1995,22(4):309~312(in Chinese).
    [22]

    ZHANG Y M.Finite element analysis of a thermally loaded interface crack in a ceramic coating[J].Engineering Fracture Mechanics,1998,59(2):203~214.
    [23]

    WANG Zh,LI C,MENG X P et al.Microstructure and propertionsoflnsitu TiC pariculate reinforeed Al-Si alloy composite[J].Acta Metallurgica Sinica,1994,30(1):39~44.
    [24]

    ZHOU X B,De HOSSON J T M.A reaction coating on alwminium alloy by laser processing[J].Scripta Metallurgica,1993,28(9):219~231.
    [25]

    ZHANG S,ZHANG Ch H,WANG M C et al.The wear property of Ti-based composite produced by laser cladding[J].Journal of Metall-urgica,2001,37(3):315~320(in Chinese).
    [26]

    SONG W L,ZHU P D,ZHANG J et al.The effects of expansion coefficient of laser cladding layer on cracking sensitivity[J].Journal of Huazhong University of Science and Technology,1999,27(1):42~44(in Chinese).
  • [1] 李玉红 . A3钢表面激光熔覆金属陶瓷TiC-B4C-SiC-Co材料研究. 激光技术, 2003, 27(5): 396-397,399.
    [2] 晁明举余菊美梁二军袁斌 . Nb2O5对铁基合金激光熔覆层裂纹敏感性的影响. 激光技术, 2005, 29(6): 568-571.
    [3] 陈顺高张晓明郑启池李瑞峰 . CeO2对激光熔覆Ni60合金涂层组织及性能的影响. 激光技术, 2017, 41(6): 904-908. doi: 10.7510/jgjs.issn.1001-3806.2017.06.027
    [4] 李胜胡乾午曾晓雁 . 激光熔覆专用铁基合金粉末的研究进展. 激光技术, 2004, 28(6): 591-594.
    [5] 李镭昌魏昕 . 激光熔覆复合涂层WC对裂纹产生机理影响研究. 激光技术, 2023, 47(1): 52-58. doi: 10.7510/jgjs.issn.1001-3806.2023.01.008
    [6] 黄海博孙文磊 . Ni60激光熔覆工艺参量对涂层裂纹及厚度的影响. 激光技术, 2021, 45(6): 788-793. doi: 10.7510/jgjs.issn.1001-3806.2021.06.019
    [7] 杜亮亮高向东张南峰季玉坤 . 激光焊接裂纹磁光成像频域特征分析. 激光技术, 2020, 44(2): 226-231. doi: 10.7510/jgjs.issn.1001-3806.2020.02.016
    [8] 刘鹏良孙文磊黄勇 . 温度梯度对激光熔覆层裂纹产生的影响. 激光技术, 2019, 43(3): 392-396. doi: 10.7510/jgjs.issn.1001-3806.2019.03.019
    [9] 王梦瑶朱海红祁婷张虎曾晓雁 . 选区激光熔化成形Al-Si合金及其裂纹形成机制研究. 激光技术, 2016, 40(2): 219-222. doi: 10.7510/jgjs.issn.1001-3806.2016.02.014
    [10] 杜利平梁二军陈长青雒江涛 . CeO2对镍基碳化钨激光熔覆层性能的影响. 激光技术, 2002, 26(5): 354-356.
    [11] 杜亮亮高向东周晓虎王春草 . 旋转磁场激励下激光焊接裂纹磁光成像规律研究. 激光技术, 2018, 42(6): 780-784. doi: 10.7510/jgjs.issn.1001-3806.2018.06.010
    [12] 姜铃珍刘海疆李成江邹立勋耿完桢 . 用激光全息法研究Ⅰ型裂纹尖端附近横向应变. 激光技术, 1994, 18(2): 106-109.
    [13] 刘志勤张洪欣王开富郑克全 . 激光熔覆金属陶瓷复合合金层的组织与性能研究. 激光技术, 1998, 22(1): 46-49.
    [14] 姬生钦李鹏曾晓雁 . 激光熔覆直接制造金属零件的组织及力学性能分析. 激光技术, 2006, 30(2): 130-132,160.
    [15] 王新林漆海滨石世宏 . 激光熔覆石化阀门密封面熔覆层裂纹控制的研究. 激光技术, 2002, 26(5): 359-363.
    [16] 陈传忠王佃刚雷廷权 . 激光熔覆陶瓷及其复合涂层的组织特征. 激光技术, 2001, 25(6): 401-405.
    [17] 陈传忠王佃刚张亮雷廷权 . 激光熔覆陶瓷及其复合涂层的材料体系. 激光技术, 2002, 26(2): 123-125128.
    [18] 王迎春李飞群李延民丁健君李建国周尧和 . 激光熔覆原位合成制备生物陶瓷涂层. 激光技术, 2004, 28(6): 572-574.
    [19] 魏仑陈庆华龙晋明李建国蔡英文 . 激光熔覆原位自生复相陶瓷颗粒增强涂层. 激光技术, 2002, 26(4): 246-249.
    [20] 项东许斌刘科高 . W6Mo5Cr4V2激光熔覆陶瓷涂层显微组织及性能分析. 激光技术, 2003, 27(5): 434-436.
  • 加载中
计量
  • 文章访问数:  2681
  • HTML全文浏览量:  504
  • PDF下载量:  588
  • 被引次数: 0
出版历程
  • 收稿日期:  2004-11-08
  • 录用日期:  2005-02-24
  • 刊出日期:  2006-01-25

激光熔覆金属陶瓷涂层开裂的机理及防止措施

    作者简介: 赵亚凡(1973- ),女,博士研究生,主要从事材料表面激光强化与改性研究.
  • 1. 山东大学, 材料科学与工程学院, 济南, 250061;
  • 2. 山东建筑工程学院, 济南, 250014

摘要: 在总结国内外激光熔覆金属陶瓷涂层开裂研究现状的基础上,分析了裂纹的形成机理,从激光处理工艺和参数选择、熔覆层成分及基体形状的设计等方面阐述了裂纹行为的影响因素及相应的防止措施,最后展望了其发展前景.

English Abstract

参考文献 (26)

目录

    /

    返回文章
    返回