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Casting method for improved infinite chilled alloy cast iron steel roll

An infinitely chilled, alloyed cast iron technology, applied in the field of roll manufacturing, can solve the problems of low alloy content, slow cooling rate of molten iron, roll graphite, and coarse carbides, etc., to achieve high wear resistance and thermal crack resistance, improve the use of longevity, ensuring uniform results

Active Publication Date: 2020-08-11
ANSTEEL HEAVY MACHINERY CO LTD
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, due to the low alloy content, the slow cooling rate of molten iron, and the lack of good inoculation treatment, it often leads to shortcomings such as graphite and coarse carbides in the roll.
[0003] In recent years, although there have been reports on the production and development of the improved infinite chilled alloy cast iron roll at home and abroad, it has not been implemented and popularized in actual production. At present, there is still a lack of an easy implementation that can guarantee a relatively Casting method of large section steel roll with high product qualification rate and excellent rolling performance

Method used

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  • Casting method for improved infinite chilled alloy cast iron steel roll
  • Casting method for improved infinite chilled alloy cast iron steel roll
  • Casting method for improved infinite chilled alloy cast iron steel roll

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Embodiment Construction

[0025] A method for casting an improved infinitely chilled alloy cast iron shaped steel roll according to the present invention, comprising:

[0026] 1) The chemical composition of cast iron steel rolls is calculated by weight percentage: C 3.00% ~ 3.50%, Si 1.05% ~ 1.65%, Mn 0.40% ~ 0.80%, P < 0.10%, S < 0.03%, Ni 1.50% ~ 2.00 %, Cr 0.25%~0.65%, Mo 0.25%~0.65%; the rest is Fe and unavoidable impurities;

[0027] 2) Before pouring, the molten iron is spheroidized once and inoculated three times to obtain a finely dispersed carbide structure; the details are as follows:

[0028] When the molten iron comes out of the furnace, first add silicon barium inoculant of 0.1% to 0.6% of the weight of the molten iron at the bottom of the sealed bag, react for 1 to 10 minutes, remove the molten iron slag, and perform pressure-added magnesium spheroidization treatment. 0.05% to 0.15%; add magnesium under pressure for 8 to 15 minutes, remove the molten iron slag, add 0.1% to 0.6% of the we...

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Abstract

The invention relates to a casting method for an improved infinite chilled alloy cast iron steel roll. The chemical components of the cast iron steel roll comprise, by weight percentage, 3.00%-3.50% of C, 1.05%-1.65% of Si, 0.40%-0.80% of Mn, being less than 0.10% of P, being less than 0.03% of S, 1.50-2.00% of Ni, 0.25%-0.65% of Cr, 0.25%-0.65% of Mo, and the balance Fe and inevitable impurities.Before pouring, primary nodularization and third inoculation treatment is carried out on molten iron, annealing treatment is carried out on castings after unpacking, and casting stress is eliminated.The cast iron steel roll has higher abrasion resistance and hot tearing resistance, thus the service life of the roll is effectively prolonged.

Description

technical field [0001] The invention relates to the technical field of roll manufacturing, in particular to an improved casting method for infinitely chilled alloy cast iron shaped steel rolls. Background technique [0002] Since the rolls for rolling profiled steel often need to have a deep pass, when most roll factories produce rolls for rolling large cast iron profiled steels, they usually use sand hanging on the inner wall of the cold profile, and the low-alloy molten iron is cast directly after being spheroidized by adding magnesium once. The pouring method can not only ensure the minimum hardness drop, but also prevent the roll from breaking or cracking under the action of chilling. However, due to the low alloy content, the slow cooling rate of molten iron, and the lack of good inoculation treatment, it often leads to shortcomings such as graphite and coarse carbides in the roll. [0003] In recent years, although there have been reports on the production and develop...

Claims

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Application Information

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IPC IPC(8): C22C37/10C22C37/08C22C33/10C21D1/26C21D9/38
CPCC21D1/26C21D9/38C22C33/10C22C37/08C22C37/10
Inventor 董羲桦王素红张建东孙景惠王淞彦杨作平
Owner ANSTEEL HEAVY MACHINERY CO LTD
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