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The technique of refining molten ferronickel is a topic for specialists, [17] and because of ore content variability the processes might even need to be tailored by source: for example the Larco process of Greek ores. [18] "The main reason for adding nickel in ferrous alloys is to promote an austenitic microstructure. Nickel generally increases ...
The history of ferrous metallurgy in the Indian subcontinent began in the 2nd millennium BC. Archaeological sites in the Gangetic plains have yielded iron implements dated between 1800 and 1200 BC. [24] By the early 13th century BC, iron smelting was practiced on a large scale in India. [24]
In 1998, the Ukrainian Association of Ferroalloy Manufacturers (UkrFA) was established, which included the plant. [5] In September 2005, the plant began production of ferrosilicoaluminum (composed of 15–20% aluminum and 50–70% silicon), which was mastered on the furnace No. 1, which previously produced ferrosilicon.
Ferroaluminum (FeAl) is a ferroalloy, consisting of iron and aluminium.The metal usually consists of 40% to 60% aluminium. Applications of ferroaluminum include the deoxidation of steel, [1] hardfacing applications, reducing agent, thermite reactions, AlNiCo magnets, and alloying additions to welding wires and fluxes. [2]
Hogan, William T. Economic History of the Iron and Steel Industry in the United States (5 vol 1971) monumental detail; Ingham, John N. The Iron Barons: A Social Analysis of an American Urban Elite, 1874-1965 (1978) Krass, Peter. Carnegie (2002). ISBN 0-471-38630-8. Livesay, Harold C. Andrew Carnegie and the Rise of Big Business, 2nd Edition (1999).
An iron–nickel alloy or nickel–iron alloy, abbreviated FeNi or NiFe, is a group of alloys consisting primarily of the elements nickel (Ni) and iron (Fe). It is the main constituent of the "iron" planetary cores and iron meteorites.
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