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- W1039026098 abstract "Structural steels, in the form of plates and sections, are produced in the hot-rolled condition and, in many respects, the underlying metallurgy is essentially similar to that involved in the strip grades. Precipitation strengthening reactions are of major importance in the production of high-strength structural steels, particularly those involving the carbides or nitrides of elements such as niobium, vanadium, and titanium.A major feature of most forms of construction in structural steels is the high level of welding employed and the requirement for high-integrity welds. Welding began to replace riveting as the principal joining process in the 1940s but, at that time, structural steels were characterized by high carbon contents and were therefore prone to cold cracking. Structural steels have therefore undergone very significant changes, each change producing a substantial improvement in an important property such as strength, toughness, or weldability. Aspects such as improved cleanness and inclusion shape control are adopted, leading to improvements in fabrication and service performance. These factors, coupled with very favorable cost comparisons, mean that structural steels have remained virtually unchallenged by competitive materials, other than reinforced concrete, in most of their traditional applications." @default.
- W1039026098 created "2016-06-24" @default.
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- W1039026098 date "1998-01-01" @default.
- W1039026098 modified "2023-09-27" @default.
- W1039026098 title "Low-carbon structural steels" @default.
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- W1039026098 doi "https://doi.org/10.1016/b978-075063757-2/50002-0" @default.
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