Deposit by friction surfacing and its applications

被引:40
作者
de Macedoa M.L.K. [1 ]
Pinheiro G.A. [2 ]
dos Santos J.F. [2 ]
Strohaecker T.R. [1 ]
机构
[1] Physical Metallurgy Laboratory, Department of Metallurgy, Federal University of Rio Grande do Sul, Porto Alegre, Rio Grande do Sul
[2] GKSS Forschungszentrum GmbH, Institute for Materials Research, Solid State Joining Processes (WMP), D-21502 Geesthacht
关键词
Cladding; Coating; Deposition; Friction; Repair; Welding; Worn;
D O I
10.1080/09507110902844535
中图分类号
学科分类号
摘要
This work will present the state of the art of deposition by means of the friction surfacing process, the influences of the deposition parameters and some applications of the process. In second part, some results for a study being conducted with deposition of three different consumable rods (materials for ABNT 8620, ABNT 4140, and AISI310 steel rods) in a substrata of ABNT 1070 carbon steel will be presented, using as deposit parameters a rotational rod speed of 3500 rpm, traverse speeds of 8.5-17 mm/s, and axial pressure of 1.03 and 1.38 MPa. The deposits were characterized by visual analysis, macrograph analysis, micrograph analysis, micro hardness profile, and push-off test. The results so far were considered to be satisfactory, showing that the technique can be employed to repair surfaces of components in high carbon steels and for deposition of similar and dissimilar materials. However, the optimum parameters for the process must still be studied. © 2010 Taylor & Francis.
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页码:422 / 431
页数:9
相关论文
共 17 条
  • [1] Welding Handbook - Welding Processes - Part 2, (1998)
  • [2] Nicholas E.D., Friction Processing Technologies, (1963)
  • [3] van Kalken A., Friction Surfacing of Stainless Steel On Mild Steel With a Robot [master's Thesis], Delft University of Technology, (2001)
  • [4] Thomas W.M., An introduction to friction surfacing, 3, 49, pp. 261-277, (1985)
  • [5] Batchelor A.W., Jana S., Koh C.P., Tan C.S., The effect of metal type and multi layering on friction surfacing, J Mater Process Technol, 57, 1, pp. 172-181, (1996)
  • [6] Bedford G.M., Friction surfacing for wear applications, Metals Mater, 6, 11, pp. 702-705, (1990)
  • [7] Nicholas E.D., Thomas W.M., Metal deposition by friction welding, Weld J, pp. 17-27, (1986)
  • [8] Nicholas E.D., Friction surfacing, Metals Handbook, 6, pp. 321-323, (1993)
  • [9] Bedford G.M., Vitanov V.I., Voutchkov I.I., On the thermo mechanical events during friction surfacing of high speed steels, Surf Coat Technol, 141, pp. 34-39, (2001)
  • [10] Shinoda T., Li Q., Katoh Y., Yashiro T., Effect of process parameters during friction coating on properties of non-dilution coating layers, Surf Eng, 14, 3, pp. 211-216, (1998)