A Heating Process for Avoiding Surface Defects of Steel Plate
A heating process and defect technology, applied in the direction of manufacturing tools, heat treatment furnaces, heat treatment equipment, etc., can solve the problem of unsuitable heating and soaking temperature, furnace entry temperature rolling material surface defects, surface temperature control The understanding and attention of heating process control Insufficient degree and other problems, to achieve the effect of easy removal, good energy saving, and improved high temperature plasticity
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Embodiment 1
[0045] A steel factory adopts the slab hot delivery, hot charging and heating process of the present invention for 230mm×1300mm ultra-low carbon interstitial-free steel, i.e., IF steel. ℃ into the heating furnace. The heating time of the slab in the heating furnace is controlled at 240 minutes. The temperature at the end of the second addition stage is greater than 1160 °C, and the temperature of the furnace is less than 1220 °C. The thickness of the steel plate after rolling is 0.2-0.4mm, and there are no surface defects such as slag inclusions and cracks on the surface of the steel plate. Compared with the cold-charged furnace continuous casting slab, adopting the process of the invention can save 40% of energy and increase the qualified rate of the steel plate by 0.24%.
Embodiment 2
[0047] A steel factory adopts the slab hot delivery hot charging and heating process of the present invention for 230mm×950mm low-carbon tinplate steel. ℃ into the heating furnace. The heating time of the slab in the heating furnace is controlled at 245 minutes. The temperature at the end of the second addition stage is greater than 1150 °C, and the temperature of the furnace is less than 1200 °C. The thickness of the steel plate after rolling is 0.3-0.6mm, and there are no surface defects such as slag inclusions and cracks on the surface of the steel plate. Compared with the cold-charged continuous casting slab, the process of the invention can save 38% of energy and increase the qualified rate of the steel plate by 0.21%.
Embodiment 3
[0049] A steel factory adopts the slab hot delivery hot charging and heating process of the present invention for 230mm×1200mm high carbon tool steel 65Mn. The 65Mn steel continuous casting secondary cooling process adopts a weak cooling process. During transportation, a heat preservation cover is added for heat preservation, and the slab is cut After 3 hours, transfer to the heating furnace. Before loading into the heating furnace, the surface temperature of the slab is ≥750°C (Ar3 temperature). The heating time of the slab in the heating furnace is controlled at 260 minutes. Slowly increase the temperature in the adding and soaking section, control the temperature at the end of the first adding section to be less than 1090°C, control the end temperature of the second adding section to be less than 1170°C, and control the temperature at the end of the second adding section to be less than 1220°C. The thickness of the steel plate after rolling is 6.0mm, and there are no surface...
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