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Original Articles

Welding materials: Current state and development tendencies

Pages 905-917 | Published online: 08 Jul 2010

References

  • Doria J G: ‘Welding consumables: Market Trends’. European Welding Association Istanbul 20 2001 .
  • Tikhonov A: ‘World war of steel makers’. Izvestiya 2002 ( 169 ) 6 .
  • Ignatchenko P V and Bugai A I: ‘Current state of production of welding materials at the threshold of a new millenium: Arc welding. Materials and quality at the start of the 21st Century’. Publ Orel 2001 81 –83.
  • Nassau L V: ‘Export report stick electrodes 2000’. Stick electrodes. European Welding Association Istanbul 2001 9 .
  • The Japan Welding News for the World . Autumn issue. 2001 5 (17) 10 .
  • Morrison W B: ‘Past and future development of HSLA steels’. The 4 th Int. Conf. HSLA' steels 2001′'. Metallurgical Industry Press Xi'an 2000 11 –19.
  • Gorynin I V et al : ‘Prospects and problems of material science in the development of materials and welding technologies in the construction of unique ice-resistant platforms’. In: ‘Current material science, 21st Century,’. Pokhodin I K (ed). Publ Naukova dumka Kiev 1998 84 –94.
  • Yurioka N: ‘Hydrogen assisted cracking in C–Mn and low alloy steel weldments’. International Materials Reviews 1990 35 (4) 217 –249.
  • Yurioka N: ‘Predictive methods for prevention and control of hydrogen assisted cold cracking’. IIW Doc. IX-1938-99 16 .
  • Maroef I et al : ‘Hydrogen cracking of welded components of high strength steel’. In: ‘Welding and allied technologies in the 21st Century’. Publ E O Paton Electric Welding Institute Kiev 1998 166 –176.
  • Pokhodnya I K: ‘Problems of welding high strength low alloy steels’. In: ‘Current material science, 21st Century,’. Publ Naukova dumka Kiev 1998 31 –69.
  • Shvachko V I et al : ‘The evaluation methods of HLSA steels susceptibility to hydrogen embrittlement’. HSLA Steels' 2000. Publ Metallurgy Industry Press Beijing 2000 453 –458.
  • Gedeon S A and Eagar T W: ‘Assessing hydrogen-assisted cracking fracture modes in high-strength steel weldments’. Welding Journal 1990 ( 6 ) 213 .
  • Gedeon S A and Eagar T W: ‘Thermomechanical analysis of hydrogen absorption in welding’. Welding Journal 1990 ( 7 ) 264 .
  • Pokhodnya I K et al : ‘Role of temperature in hydrogen cracking of structural steels and welded joints’. Avt Svarka 2000 ( 2 ) 3 –8.
  • Shvachko V I: ‘Hydrogen embrittlement of welded joints in structural steels’. Author's abstract of a dissertation for the title of doctor of physico–mathematical sciences, Khar'kov Physico–Technical Insitute of Khar'kov 2002 35 .
  • Stepanyuk S M: ‘Hydrogen embrittleness in welding high chromium low alloy steels’. Author's abstract of a dissertation for the title of doctor of physico–mathematical sciences, E O Paton Kiev 2001 18 .
  • Park Y D et al : ‘Retained austenite as a hydrogen trap in steels welds’. Welding Journal 2002 ( 2 ) 19 –35.
  • Abson D J: ‘Microstructure and mechanical properties of vertical-up C-Mn-Ni steel semi-automatic weld metal’. Welding Int. Research Report 1987 ( 7 ) 1 –30.
  • Baryshnikov A P et al : ‘Welding of high strength cold resisting steels in shielding gases with copper electrodes’. Advanced Materials and Technologies 1996 ( 2 ) 207 –220.
  • Malyshevsky V A et al : ‘Welding materials and technology of welding high strength steels’. Voprosy Materialovedeniya 1999 ( 3 ) 69 –77.
  • Gezha V V et al : ‘Methods of increasing welding and technological characteristics of electrodes with basic coatings designed for welding high strength and cold resisting steels’. Voprosy Materialovedeniya 2000 ( 1 ) 69 –77.
  • Pokhodnya I K: ‘Metallurgiya of welding, current state and problems’. In: ‘Welding and allied technologies in the 21st Century’. E O Paton Electric Welding Institute Kiev 1998 227 –245.
  • Pokhodnya I K: ‘Gases in welding joints’. Publ Mashinostroenie Moscow 1972 256 .
  • Frumin I I: ‘Automatic hard facing’. Publ Metallurgizdat Khar'kov 1961 421 .
  • Voitkevich V: ‘Welding Fumes’. Abington Publishing Special Report. Abington Publishing 1995 110 .
  • Yavdoshchin I R and Pokhodnya I K: ‘Formation of welding fumes in fusion welding and its labour safety evaluation’. In: ‘Protection of the environment, health and safety in welding production’. Publ Astroprint Odessa 2002 38 –56.
  • Pokhodin I K (ed): ‘Flux-cored wires for electric arc welding’, a catalogue-handbook. Publ Naukova dumka Kiev 1980 180 .
  • Altemuhle B: ‘The use of rutile cored wires for welding high strength steel in crane fabrication’. Svetsaren 2000 ( 1 ) 33 –36.
  • Ferree S E and Sierdzinski M S: ‘Stainless steel metal cored wires for welding automotive exhaust systems’. Svetsaren 2000 ( 3 ) 15 –18.
  • Blome K: ‘Filarc PZ 6105R. The robot-friendly cored wire’. Svetsaren 2000 ( 1 ) 22 –24.
  • Farrow N and Studholme S: ‘Submerged arc welding with fused flux and basic cored wire for low-temperature applications’. Svetsaren 2000 ( 1 ) 33 –36.
  • ‘Fabshield 2125’. Welding Journal 1990 ( 7 ) 45 –46.
  • Shlepakov V N et al : ‘Flux-cored wires with a new generation for welding in shielding gases’. In: ‘Arc welding. Materials and quality at the start of the 21st Century’. Publ Orel 2001 57 –59.
  • Naumeiko S M: ‘Regulating the welding and technological properties of flux-cored wires using the results of physico-chemical properties of slags’. In: ‘Arc welding. materials and quality at the start of the 21st Century’. Publ Orel 2001 102 –106.
  • Baranov A V: ‘Problems of production and experience with the application into production of conditons of flux-cored wires of small diameter’. In: Arc welding. materials and quality at the start of the 21st Century'. Publ Orel 2001 62 –63.
  • Moisov L P and Isaenko P R: ‘PPT-13 self-shielding flux-cored wire’. In: Arc welding. materials and quality at the start of the 21st Century'. Publ Orel 2001 61 .
  • Shlepakov V N: ‘Automated equipment for production of flux-cored wires’. In: Arc welding. materials and quality at the start of the 21st Century'. Publ Orel 2001 64 –67.
  • Pokhodnya I K et al : ‘ANO-TM electrodes for welding offshore stationary platforms’. Tekhnologiya Sudostroeniya 1990 ( 9 ) 77 –79.
  • Yavdoshchin I R: ‘New electrodes developed at the E O Paton Electric Welding Institute for welding structures of low carbon and low alloy steels’. In: ‘Current state and prospects of development of welding steels in CRS countries’. Publ Moscow 1998 135 –137.
  • Marchenko A E and Skorina N V: ‘E70-E85 type electrodes for welding high strength cold resistant steels’. In: ‘Current state and prospects of development of welding steels in CRS countries’. Publ Moscow 1998 28 –33.
  • Lobanov L M et al : ‘Economically alloyed electrodes E70-E85 for welding high strength cold resistant steels’. In: ‘Current state and prospects of development of welding steels in CRS countries’. Publ Moscow 1998 28 –29.
  • Malyshevsky V A et al : ‘Electrodes for welding structures operating at low temperatures, and the need for improvement of their technological properties’. In: ‘Current state and prospects of development of welding steels in CRS countries’. Publ Moscow 1998 175 –176.
  • Frumin I I et al : ‘Low silicon fluxes for automatic welding and surfacing’. Avt Svarka 1956 ( 1 ) 10 –12.
  • Lyubavsky K V: ‘Metallurgy of fusion welding, a welding handbook’. Sokolova E V (ed). Publ Mashgiz Moscow 1960 1 51 –138.
  • B E Paton (ed): ‘Welding fluxes and slags’. Publ Naukova dumka Kiev 1974 164 .
  • Podgaetsky V V and Kuz'menko V G: ‘Welding slags’. Publ Naukova dumka Kiev 1988 252 .
  • Potapov N N: ‘Current state and prospects of development of flux production’. Svar Proiz 1997 ( 9 ) 34 –36.
  • Goncharov I A et al : ‘A flux restricting the hydrogen content of welded joints’. In: ‘Current state and prospects of development of welding steels in CRS countries’. Publ Moscow 1988 164 –167.
  • Goncharov I A et al : ‘A new approach to preventing porosity in welding under fused fluxes’. In: ‘Current state and prospects of development of welding steels in CRS countries’. Publ Moscow 1988 191 .
  • Kuz'menko V G: ‘Thermodynamic and structural assets of the composition of fluxes for electric welding’. Author's abstract of the dissertation for the title of candidate of doctor of technical sciences, E O Paton Electric Welding Institute Kiev 2002 33 .
  • Goncharov I A: ‘Development of low-hydrogen welding fluxes of magnesium-silicate type’. Author's abstract of the dissertation for the title of candidate of doctor of sciences, E O Paton Electric Welding Institute Kiev 2002 18 .
  • Pokhodnya I K: ‘Welding and light processes at the Essen Exhibition. Welding materials’. Avt Svarka 2002 ( 1 ) 29 –32.
  • Pokhodnya I K et al : ‘The results of comparative tests of fused and ceramic fluxes using in welding 12KhN2MDF steel’. Avt Svarka 1987 ( 11 ) 61 –64,68.
  • Pokhodnya I K and Golovko V V: ‘Fluxes for welding low alloy high strength steels developed at E O Paton Electric Welding Institute’. Svarshchik 1999 ( 1 ) 8 –9.
  • Baranov A V et al : ‘Agglomerated fluxes for automatic welding of high strength and cold resistant steel and technology of production developed by Prometei at the Scientific Research Institute of Composite Materials: Arc welding, materials and quality at the start of the 21st Century’. Publ Orel 2001 109 –110.
  • Lakomsky V I: ‘Plasma arc remelting’. B E Paton (ed) Publ Tekhnika Kiev 1974 336 .

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