Warianty tytułu
Języki publikacji
Abstrakty
Słowa kluczowe
Czasopismo
Rocznik
Tom
Strony
109-111
Opis fizyczny
Bibliogr. 22 poz.,il.
Twórcy
autor
- Instytut Podstawowych Problemów Techniki PAN
autor
- Instytut Podstawowych Problemów Techniki PAN
autor
- Politechnika Warszawska
autor
- Politechnika Warszawska
Bibliografia
- [1] Friedrich H., Schumann S.: Research for a "new age of magnesium" in the automotive industry. Journal of Materials Processing Technology, vol. 117.
- [2] Aghion E., Bronfin B., Eliezer D.: The role of the magnesium industry in protecting the environment. Journal of Materials Processing Technology, vol. 117.
- [3] Mordike B.L., Ebert T.: Magnesium. Properties - applications - potential. Material Science and Engineering. A302.
- [4] Longworth S.J.P.: The Bolting of Magnesium Components in Car Engines, Dissertation for the degree of Master of Philosophy to the Univ. of Cambridge, August 2001.
- [5] Welding Handbook, vol. 3, part 1, chapter 2: Magnesium and magnesium alloys. VIII ed., Ed.: W.R. Oates, American Welding Society.
- [6] Munitz A., Cotler C., Stern A., Kohn.: Mechanical properties and microstructure of gas tungsten arc welded magnesium AZ91D plates. Material Science and Engineering, vol. A302.
- [7] Weishait A., Galun R., Mordike L.: CO2 Laser Beam Welding of Magnesium-Based Alloys. Welding Journal, vol. 77, no.4.
- [8] Draugelales U., Schram A., Kettler C.: Joining of magnesium alloys. Materialwissenschaft und Werkstofftechnik, vol. 30, no. 10.
- [9] Dhahri M., Masse J.E., Malhieu J.F., Barreau G., Autric M.: CO2 Laser Welding of Magnesium alloys. Proc. SPIE (High-Power Lasers in Manufacturing), vol. 3888.
- [10] Zhao H., DebRoy T.: Pore Formation during Laser Beam Welding of Die-Cast Magnesium Alloy AM60B - Mechanism and Remedy. Welding Research Suppl.
- [11] Dhahri M., Masse J.E., Mathieu J.F., Barreau G., Autric M.: Laser Weldability of WE43 Magnesium Alloy for Aeronautic lndustry, Proc. LANE 2001.
- [12] Haferkamp H., Goede M., Bormann A., Cordini P.: Laser Beam Welding of Magnesium Alloys - New Possibilities using Filler Wire and Arc Welding, Proc. Lane 2001.
- [13] Sun Z., Wei J., Pan D., Tan Y. K.: A Comparative Evaluation on Microstructures in TIG and Laser Welded AZ31 Magnesium Alloy. SIMTech Technical Report, PT/01/008/JT, pp. 1-8, 2001.
- [14] Kalita W., Kołodziejczak P., Hoffman J., Mościcki T., Szymański Z.: Spawanie stopu magnezu AM20 laserem CO2. Przegląd Mechaniczny, nr. 7/8, 2003.
- [15] Kalita W., Kołodziejczak P., Hoffman J., Kolasa A.: Efekty laserowego przetapiania stopów Mg. Archiwum Odlewnictwa, nr. 317, 2003.
- [16] Kołodziejczak P., Kalita W., Kolasa A.: Spawanie stopów magnezu wiązką lasera CO2. Mat. VIII Naukowo-Techniczna Krajowa Konferencja Spawalnicza, Międzyzdroje 13-15.05.2003, 2003.
- [17] Kalita W., Kołodziejczak P., Pokhmurska H.: Welding of Mg-Based Alloy AM20 by CO2 Laser Beam, Proc. International Conference on "Laser Technologies in Welding and Materials Processing", Katsiveli, Ukraine, May 19-23.
- [18] Norm EN 1753 adopted by the Comitée Européen de Normalisation on 1 May 1997. Official Journal of the European Communities, 7.11.1998.
- [19] DITTA MUSTO SRL, Via Molise 26/28, Osteria Grande, Italy (www.dittamusto.it).
- [20] American Society for Metals Handbook, vol. 9: Metallography and Microstructures. 9th Edition, Ed.: John Newby, Oct. 1989.
- [21] Steen W. M.: Laser Material Processing. Springer Verlag, 1991.
- [22] Welding Handbook, vol. 3, part 1, chapter 2: Magnesium and magnesium alloys. VIII ed., Ed.: W.R. Oates, AWS.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.baztech-article-BTB2-0019-0062