Wear behavior of iron boride coating on AISI 4140
详细信息    查看全文
  • 作者:S. Osman Yilmaz ; Tanju Teker ; Selçuk Karataş
  • 刊名:Protection of Metals and Physical Chemistry of Surfaces
  • 出版年:2016
  • 出版时间:January 2016
  • 年:2016
  • 卷:52
  • 期:1
  • 页码:119-127
  • 全文大小:2,098 KB
  • 参考文献:1.Sinha, A.K., ASM Handbook, Materials Park, OH: ASM Int., 1997, p. 437.
    2.Yu, L.G., Khor, K.A., and Sundararajan, G., Surf. Coat., 2002, vol. 157, p. 226.CrossRef
    3.Han, J.G., Yoon, J.S., Choi, B.H., and Choi, I.S., Surf. Coat., 1995, vol. 76, p. 437.CrossRef
    4.Yιlmaz, S.O., Ozenbaş, M., and Yaz, M., Mater. Manuf., 2011, vol. 26, p. 722.CrossRef
    5.Galvanetto, E., Borgioli, F., Bacci, T., and Pradelli, G., Wear, 2006, vol. 260, p. 825.CrossRef
    6.Rodríguez Cabeo, E., Laudien, G., Biemer, S., et al., Surf. Coat., 1999, vol. 116, p. 229.CrossRef
    7.Martini, C., Palombarini, G., Poli, G., and Prandstraller, D., Wear, 2004, vol. 256, p. 608.CrossRef
    8.Brakman, C.M., Gommers, A.W.J., and Mittemeijer, E.J., J. Mater., 1989, vol. 4, p. 1354.
    9.Jain, V. and Sundararajan, G., Surf. Coat., 2002, vol. 149, p. 21.CrossRef
    10.Badini, C., Gianoglio, C., and Pradelli, G., Surf. Coat., 1987, vol. 30, p. 157.CrossRef
    11.Kulka, M. and Pertek, A., Appl. Surf., 2003, vol. 214, p. 161.CrossRef
    12.Yan, P.X., Wei, Z.Q., Wen, X.L., et al., Appl. Surf., 2002, vol. 195, p. 74.CrossRef
    13.Maragoudakis, N.E., Stergioudis, G., Omar, H., et al., Mater. Lett., 2002, vol. 57, p. 949.CrossRef
    14.Glukhov, V.P., et al., Met. Ceram., 1969, vol. 4, p. 278.CrossRef
    15.Selçuk, B., Ipek, R., Karamis, M.B., et al., J. Mater., 2003, vol. 141, p. 189.
    16.Teker, T., Karataş, S., and Y@lmaz, S.O., J. Optoelectron., 2013, vol. 15, p. 284.
    17.Winter, H.G., Esser, L., Könen, V., et al., J. Nucl., 1989, vol. 162, p. 713.CrossRef
    18.Yιlmaz, S.O., Surf. Coat., 2005, vol. 194, p. 175.CrossRef
    19.Teker, T., Karataş, S., and Yιlmaz, O., Prot. Met., 2014, vol. 50, no. 1, p. 94.
    20.Ravikiran, A. and Surappa, M.K., Wear, 1997, vol. 206, p. 33.CrossRef
    21.Wang, Y., Lei, T., and Liu, J., Wear, 1999, vol. 231, p. 1.CrossRef
    22.Martini, C., Palombarini, G., Poli, G., and Prandstraller, D., Wear, 2004, vol. 256, p. 608.CrossRef
    23.Pirso, J., Viljus, M., and Letunovitš, S., Wear, 2006, vol. 26, p. 815.CrossRef
    24.Ezugwu, E.O., Da Silva, R.B., Bonney, J., and Machado, Á.R., Tribol. Trans., 2005, vol. 48, p. 18.CrossRef
    25.Ezugwu, E.O., Wang, Z.M., and Machado, Á.R., Tribol. Trans., 2000, vol. 43, p. 263.CrossRef
  • 作者单位:S. Osman Yilmaz (1)
    Tanju Teker (2)
    Selçuk Karataş (3)

    1. Namιk Kemal University, Mechanical Engineering Science, Tekirdağ/Çorlu, Turkey
    2. Adιyaman University, Faculty of Engineering, Department of Materials Engineering, 02040, Adιyaman, Turkey
    3. Firat University, Faculty of Engineering, Department of Materials and Metallurgical Engineering, 23119, Elazιg, Turkey
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Tribology, Corrosion and Coatings
    Materials Science
    Metallic Materials
    Inorganic Chemistry
    Industrial Chemistry and Chemical Engineering
    Characterization and Evaluation Materials
  • 出版者:MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC.
  • ISSN:2070-206X
文摘
A new paste technique was established for making boronising coatings. This method gave iron boride coatings a unique wear and tear property something that was tested as a microstructural feature. The coats were acquired from obtained by transmission of boron molecules from ferrobor concentrates to steel surface. Boronising parameters were applied at temperatures between 1023 and 1248 K temperatures at time range 2–8 h. This process led to enhancement in the coat layer, thickness and microstructure. To assess the durability and strength of the resultant element, a tribometer in block-on-ring configuration was used with a pairing of 20, 40 and 60 Newton’s at sliding speeds of 0.2–1.85 ms–1. It was found that, the coats made at temperatures of 1173–1223 K for 8 h lasted as long as the coat existed. Once they coat got off, residues of the same brought body abrasion. If time taken to boronize was reduced to 4–6 h at temperatures of between 1073 and 1173 K, then wear of the coat became oxidative with no trace of cracks. The article is published in the original.
NGLC 2004-2010.National Geological Library of China All Rights Reserved.
Add:29 Xueyuan Rd,Haidian District,Beijing,PRC. Mail Add: 8324 mailbox 100083
For exchange or info please contact us via email.