Secondary refining, also known as secondary metallurgy, refers to any post - steelmaking process carried out at a distinct station before casting and hot metal desulfurization. It excludes the normal alloying practices that occur in the furnace or at the ladle during tapping. However, this definition is not uniformly adopted, as many also incorporate operations at the tundish and electromagnetic stirring in the mold, among others.
The purposes of secondary refining are diverse, encompassing temperature homogenization or adjustment, chemical adjustments for elements such as carbon, sulfur, phosphorus, and oxygen, precise alloying, inclusion control, degassing, and more. Correspondingly, the equipment and processes involved are equally varied. Secondary refining processes can be carried out at atmospheric pressure or under a vacuum, with or without heating, and may involve the injection of solids and/or gases as well as stirring. For carbon steels alone, there are as many as nine different vacuum processes available on the market.
A ladle furnace is employed to relieve the primary melter of the majority of secondary refining operations. Its primary functions are as follows:
In addition to the primary functions, a ladle furnace can also perform the following secondary functions:
The porous plug in a ladle furnace is designed to provide gas stirring of the molten metal, promoting homogenization. Normal stirring operations are carried out by percolating argon gas through a purge plug arrangement located at the bottom of the ladle. In case the plug circuit in the ladle is temporarily inoperable, a top lance mechanism serves as a backup means for bath stirring. The gas supply connection to the ladle is automatically established when the ladle is placed on the transfer car.
During heating and alloying operations at the ladle furnace, fumes and particulates are generated. These emissions exit the water - cooled ladle roof through various openings. They are then captured (entrained) by ambient air drawn into a lateral draft type fume collection hood mounted on supporting structures above the ladle roof. The ladle roof typically features a water - cooled design with a refractory center or delta section. It is configured to coordinate with existing ladles so that when in the operating (fully lowered) position, it completely covers the top portion of the ladle, effectively containing the emissions.
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