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Fracture toughness of laser stake welds in shipbuilding industry

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A new technology of stake welding with the use of high power lasers was developed in the framework of EU research program "Advanced Welding for Closed Structures". This technology enable welding from outside of closed profiles due to high penetration of laser beam into the material. More than 650 static, fracture toughness and fatigue tests were performed during the research program to investigate strength of such welds. In this paper, investigations of static strength and fracture toughness are presented, results of fatigue testing will be reported elsewhere. As the result of the tensile and bend tests, very good strength and ductility of fusion zone (FZ) and heat-affected zone (HAZ) were found. Also the fracture toughness in lowered temperature was found to be satisfactory. Both traditional impact (Charpy) test and modern methods of measuring the crack tip opening displacement (CTOD) were utilised, and their results in the form of tearing energy per unit surface were compared. Also fatigue crack growth rate (FCGR) tests were performed at the constant DK value, the crack was propagating in the direction transversal to the weld midline. This technique allowed the observation of FCGR variations in different zones of the welded joint.
Rocznik
Strony
135--151
Opis fizyczny
Bibliogr. 13 poz., il., tab., wykr.
Twórcy
autor
  • Institute of Fundamental Technological Research Poland
autor
  • Helsinki University of Technology, Espoo Finland
Bibliografia
  • 1. Laser welding in ship construction, Classification Societies' Guidelines for the Approval of CO2-Laser Welding, 1996.
  • 2. IIW fatigue design recommendations, XHI-1539-95/XV-845-95, 1995.
  • 3. J. F. LANCASTER, Metallurgy of welding, Chapman & Hall, London, UK 1993.
  • 4. Welding – electron and laser-beam welded joints. Guidance on quality levels for imperfections, ISO 13919, part 1: Steel, 9 p., 1996.
  • 5. Guide for inspection of ship hull welds, IACS Recommendation No. 20, 1988.
  • 6. Test specimens and mechanical testing procedures for materials, IACS Req. 1984/Rev 1 1995.
  • 7. Normal and higher strength hull structural steels, IACS Req. Rev. 2/1979, v 2.1, 1995.
  • 8. Test methods for tension testing of metallic materials [Metric], ASTM E 8M-97, Annual Book of ASTM Standards, vol. 03.01, 1997.
  • 9. Test methods for notched bar impact testing of metallic materials, ASTM E 23-96, Annual Book of ASTM Standards, vol. 03.01, 1997.
  • 10. Test method for guided bend test for ductility of welds, ASTM E 190-92, Annual Book of ASTM Standards, vol. 03.01, 1997.
  • 11. Standard method for crack-tip opening displacement (CTOD) fracture toughness measurement, ASTM E 1290-93, Annual Book of ASTM Standards, vol. 03.01, 1997.
  • 12. Standard test method for measurement of fatigue crack growth rates, ASTM E 647-95a, Annual Book of ASTM Standards, vol. 03.01, 1997.
  • 13. P. KUJALA, G. SOCHA, K. KOLI and T. TIVONEN, Characteristics of stake laser welded joints, Acta Universitatis Lappeenrantaensis, 84, 1, 120–133, 1999.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPB2-0003-0003
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