Proceedings of the ... International Conference on Offshore Mechanics and Arctic Engineering, Volume 12, Part 3American Society of Mechanical Engineers, 1993 - Arctic regions |
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Page 134
... achieved in water depths up to 10m . It was further found that modifications in the flux and wire composition were necessary to achieve wet welds of a quality that meets the ANSI / AWS D3.6-89 qualification requirements in water depths ...
... achieved in water depths up to 10m . It was further found that modifications in the flux and wire composition were necessary to achieve wet welds of a quality that meets the ANSI / AWS D3.6-89 qualification requirements in water depths ...
Page 145
... achieved in buttering technique would still be higher than mentioned in table 5 . To achieve better information on the influence of the porosity , tensile strength specimens will be investigated in future experi- ments , which require ...
... achieved in buttering technique would still be higher than mentioned in table 5 . To achieve better information on the influence of the porosity , tensile strength specimens will be investigated in future experi- ments , which require ...
Page 866
... achieved without resorting to high levels of bolt stress . Steel rings are attached by a diver using friction ... achieve im- proved bond strengths has been developed though a programme at Imperial College [ Dowling et al . , 1983 ] ...
... achieved without resorting to high levels of bolt stress . Steel rings are attached by a diver using friction ... achieve im- proved bond strengths has been developed though a programme at Imperial College [ Dowling et al . , 1983 ] ...
Contents
OFFSHORE MECHANICS AND ARCTIC ENGINEERING | 7 |
HIGH STRENGTH STEELS FOR OFFSHORE | 189 |
Weldability of NitrogenEnhanced HSLA Steels | 231 |
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alloy analysis applied argon artificial neural network ASTM austenite austenite grain bainite base metal behaviour bending CGHAZ Charpy composite pipe cooling corrosion crack propagation CTOD curve cycles developed diameter effect elastomer electrodes Engineering ASME 1993 epoxy equation experimental fabrication factor ferrite firewater firewater system flange fracture fracture mechanics GRE pipe heat input high strength steels HSLA HSLA steels hydrogen increase initial installation intumescent kJ/mm load martensite Materials Engineering ASME maximum method microstructure MIRT nitrogen nitrogen steel node notch offshore structures OMAE parameters performance predicted preheat pressure procedures PWHT range reduced S-N curves seal seawater sheave shielding gas shown in Figure simulated SINTEF specimens spool stainless steel strain surface Table Technology temperature tensile test results thickness toughness tubular joints underwater Underwater Welding values weld metal weldability welded joints weldments wet welding wide plate wire yield strength