Low-alloy and high-strength steel plate for anticorrosion, and production method thereof
A technology of high-strength steel plates and production methods, applied in the field of metallurgy, can solve problems such as shortages and restrictions on the development of national economic construction, and achieve the effects of good organization, excellent resistance to hydrogen sulfide corrosion, and improved purity
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Embodiment 1
[0042] The thickness of the low-alloy high-strength steel plate for corrosion resistance in this example is 75 mm, and its chemical composition and mass percentage are: C: 0.08%, Si: 0.40%, Mn: 0.70%, P: 0.010%, S: 0.003%, Al: 0.40%, Cr: 2.25%, Mo: 0.43%, Cu: 0.01%, Ni: 0.01%, and the balance is Fe and unavoidable impurities.
[0043] The production method of the corrosion-resistant low-alloy high-strength steel plate in this embodiment includes smelting, continuous casting, heating, rolling and heat treatment processes, and the specific process steps are as follows:
[0044] (1) Smelting process: The molten steel is first smelted in the primary smelting furnace, and then sent to the LF refining furnace for refining. The amount of slag is increased and the slag is flowed multiple times. 3.5kg / t molten steel for aluminum wire and 2kg / t molten steel for Si-Ca wire are fed in the middle, the vacuum degree is 66Pa during vacuum treatment, and the vacuum holding time is 25min;
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Embodiment 2
[0053] The thickness of the corrosion-resistant low-alloy high-strength steel plate in this example is 65mm, and its chemical composition and mass percentage are: C: 0.08%, Si: 0.33%, Mn: 0.73%, P: 0.010%, S: 0.003%, Al: 0.41%, Cr: 2.26%, Mo: 0.41%, Cu: 0.01%, Ni: 0.01%, and the balance is Fe and unavoidable impurities.
[0054] The production method of the corrosion-resistant low-alloy high-strength steel plate in this embodiment includes smelting, continuous casting, heating, rolling and heat treatment processes, and the specific process steps are as follows:
[0055] (1) Smelting process: The molten steel is first smelted in the primary smelting furnace, and then sent to the LF refining furnace for refining. The amount of slag is increased and the slag is flowed multiple times. 3.0kg / t molten steel for aluminum wire and 1.8kg / t molten steel for Si-Ca wire are fed in the middle, the vacuum degree is 65Pa during vacuum treatment, and the vacuum holding time is 25min;
[0056...
Embodiment 3
[0064] The thickness of the low-alloy high-strength steel plate for corrosion resistance in this example is 30 mm, and its chemical composition and mass percentage are: C: 0.07%, Si: 0.38%, Mn: 0.75%, P: 0.010%, S: 0.003%, Al: 0.40%, Cr: 2.20%, Mo: 0.43%, Cu: 0.01%, Ni: 0.01%, and the balance is Fe and unavoidable impurities.
[0065] The production method of the corrosion-resistant low-alloy high-strength steel plate in this embodiment includes smelting, continuous casting, heating, rolling and heat treatment processes, and the specific process steps are as follows:
[0066] (1) Smelting process: The molten steel is first smelted in the primary smelting furnace, and then sent to the LF refining furnace for refining. The amount of slag is increased and the slag is flowed multiple times. 3.5kg / t molten steel for aluminum wire and 1.6kg / t molten steel for Si-Ca wire are fed in the middle, the vacuum degree is 65Pa during vacuum treatment, and the vacuum holding time is 25min;
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