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SAW surfacing of low-alloyed steel with super-ferrite additional material

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Purpose: of these researches was to investigate influence of heat input in SAW surfacing of low-alloyed steel with super-ferrite filler material on quality of deposits. Design/methodology/approach: the quality of single and multilayer, stringer beads was assessed by metallographic examinations, stresses measurements and hardness tests. Findings: due to the fact that it was used at automated surfacing stand, the analysis of properties of the deposits was performed for single and multilayer, stringer beads. Research limitations/implications: for complete information about tested deposits it is needed to compare deposits properties with other technologies of super-ferrite deposits surfacing. Practical implications: results of this paper is an optimal range of parameters for surfacing of single and multilayer, stringer beads of super-ferrite layers. Originality/value: the researches (macro- and micro-observations, hardness tests, stresses distribution tests) were provided for surfacing of single and multilayer, stringer beads, and the results were compared. The influence of heat input on layers properties and theirs structure was defined.
Słowa kluczowe
Rocznik
Strony
184--191
Opis fizyczny
Bibliogr. 15 poz., rys., tabl.
Twórcy
autor
autor
autor
autor
  • Welding Department, Silesian University of Technology, ul. Konarskiego 18a, 44-100 Gliwice, Poland, tomasz.kik@polsl.pl
Bibliografia
  • [1] A. B. Chid, Welding GAP Control Using Infrared Sensing, Report of the Materials Research and Education Centre, July 20, 2001.
  • [2] Y. S. Tarng, S. C. Juang, C. H. Chang, The use of grey-based Taguchi methods to determine submerged arc welding process parameters in hardfacing, Journal of Materials Processing Technology 128/1-3 (2002) 1-6.
  • [3] J. Grum, R. Kejžar, J. M. Slabe, Submerged arc surfacing of Ni–Co–Mo alloys similar to maraging steels on a structural steel, Journal of Materials Processing Technology 155-156 (2004) 2011-2018.
  • [4] Shan-Ping Lua, Oh-Yang Kwon, Tae-Bum Kima, Kwon-Hu Kima, Microstructure and wear property of Fe–Mn–Cr–Mo– V alloy cladding by submerged arc welding, Journal of Materials Processing Technology 147/2 (2004) 191-196.
  • [5] H. L. Tsai, Y. S. Tarng, C. M. Tseng, Optimization of submerged arc welding process parameters in hardfacing, International Journal of Advanced Manufacturing Technology 12/6 (1996) 387-462.
  • [6] A. Patnaik, S. Biswas, S. S. Mahapatra, An evolutionary approach to parameter optimisation of submerged arc welding in the hardfacing process, International Journal of Manufacturing Research 2/4 (2007) 462-483.
  • [7] N. A. Fleck, Ö. Grong, G. R. Edwards, D. K. Matlock, The role of filler metal wire and flux composition in submerged arc weld metal transformation kinetics, Welding Journal 65/5 (1986) 113-121.
  • [8] N. Murugan, R. S. Parmar, S. K. Sud, Effect of Submerged arc Process Variables on Dilution and Bead Geometry in Single Wire Surfacing, Journal of Materials Processing Technology 37/1-4 (1993) 767-780.
  • [9] R. Bendikiene, B. Petras Ambroza, C. Lina Kavaliauskiene, Formation of High Wear Resistance Surface Layers using Metals Powder, International Journal of Mechanics 17/1 (2007) 6-9.
  • [10] R. Paschold, Submerged-arc strip cladding of continuous casting rollers using OK Band 11.82 and OK Flux 10.07, Svetsaren 1 (2001) 17-19.
  • [11] J. Tusek, M. Suban, High-productivity multiple-wire submerged-arc welding and cladding with metal-powder addition, Journal of Materials Processing Technology 133/1-2 (2003) 207-213.
  • [12] J. T. Busby, M. C. Hash, G. S. Was, The relationship between hardness and yield stress in irradiated austenitic and ferritic steels, Journal of Nuclear Materials 336/2-3 (2005) 267-278.
  • [13] G. M. Reddy, T. Mohandas, Explorative studies on grain refinement of ferritic stainless steel welds, Journal of Materials Science Letters 20/8 (2001) 721-723.
  • [14] A. M. Kliauga, M. Pohl, C. Cordier-Robert, J. Foct, Phase transformations in a super ferritic stainless steel containing 28% Cr after nitrogen ion implantation, Journal of Materials Science 34/16 (1999) 3833-4093.
  • [15] N. J. E. Dowling, H. Kim, J-N. Kim, S-K. Ahn, Y-D. Lee, Corrosion and toughness of experimental and commercial super ferritic stainless steels, Corrosion 55/8 (1999) 743-755.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BOS2-0020-0101
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