Heat Treatment of Welded Steel StructuresWoodhead Publishing, 31 oct 1996 - 128 páginas An updated, revised and expanded version of Professor Burdekin's earlier work of the same title, this book explains this branch of thermal engineering in clear, practical terms. It concentrates on steels - the most predominant engineering media - and is essential reading for all those involved in the study or practice of welding high performance steel structures. |
Índice
The welding process and its effects | 1 |
Types of heat treatment | 9 |
Postweld heat treatment | 16 |
Noncompliance in heat treatment practice | 48 |
Methods of heat treatment | 55 |
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Términos y frases comunes
½ Mo 25 mm thick achieve alloy steels Applies above 400 Arc energy as-welded ASME VIII austenitic steels butt welds C-Mn steels C/hr divided carbon equivalent carbon-manganese steels codes combined thickness component courtesy Cooperheat UK Cr ½ Cr-½ Mo divided by thickness effects electrical resistance embrittlement ensure fabrication ferritic steels fracture toughness furnace heat affected zone heat treatment temperature heated band width Heated Zone heaters hot zone hydrogen cracking insulation interpass temperature localised PWHT low-alloy Low-alloy steels Mandatory for thickness metallurgical microstructures Mo steels nomogram normalising occur parent material perature pipe pipework plate post-heat post-weld heat treatment precipitation preheat temperature pressure vessels rapid cooling reduce relief heat treatments Requirements for localised residual stresses soak temperature specified stress corrosion stress relief heat structure susceptible temperature gradients temperature range tempering tensile stress thermal mass thermocouple tion ture wall thickness weld procedure welded joint welding process weldment