345 MPa level anti-seismic fire-resistant and weather-resistant steel and preparing method thereof
A fire-resistant and weather-resistant, Q345B technology, applied in the field of steel rolling, can solve the problems of increasing the difficulty of construction and maintenance, increasing the anti-corrosion measures, increasing the thickness of the steel, etc., so as to reduce the construction cost and maintenance cost, reduce the construction process, and improve the earthquake resistance. performance effect
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[0022] The preparation method of the 345MPa grade earthquake-resistant, refractory and weather-resistant steel of the present invention includes heating, dephosphorization, high-temperature rough rolling, high-temperature finish rolling, cooling and medium-temperature coiling processes, specifically including:
[0023] The heating process refers to: sending the steel billet whose chemical composition meets the requirements into the heating furnace, heating it to 1250~1300°C and releasing it for use; the chemical composition meeting the requirements means that the chemical composition of the steel billet is calculated by weight percentage: C: 0.04% ~0.12%, Si: 0.20%~0.40%, Mn: 0.7%~1.6%, P: 0.015%~0.040%, Cu: 0.25%~0.34%, Mo: 0.35%~0.50%, Ti: 0.025%~0.045 %, S≤0.015%, Als: 0.015%~0.050%, N≤0.004%; and Ti: Mo=0.07~0.1, Ti: C=0.4~0.6, P+Cu: 0.3%~0.4%; Cep ≤0.38, Pcm≤0.24; the rest is Fe and unavoidable impurities.
[0024] The dephosphorization process refers to: spraying 15-25M...
Embodiment 1
[0036] The chemical composition of the billet is calculated by weight percentage: C: 0.05%, Si: 0.40%, Mn: 0.70%, P: 0.040%, Cu: 0.26%, Mo: 0.36%, Ti: 0.026%, S: 0.015%, Als: 0.015%, N: 0.004%; Ti: Mo=0.07~0.1, Ti: C=0.4~0.6, P+Cu: 0.3%~0.4%; the rest is Fe and unavoidable impurities.
[0037] The steel billet with a thickness of 200mm and a chemical composition that meets the requirements is sent into the heating furnace for heating. The heating is divided into a heating section and an equal temperature section. Stay in the uniform temperature section for 45 minutes, and the total residence time in the heating furnace is controlled at 240 minutes, and the steel billet is heated to 1290 ° C and released from the furnace for use. Next, spray 20MPa high-pressure water for 15s on the steel slab heated out of the furnace to remove the scale on each surface. Send the dephosphorized steel slab into the rolling mill for 4-6 passes of rough rolling, the rolling start temperature is 1...
Embodiment 2
[0040] The chemical composition of the billet is calculated by weight percentage: C: 0.09%, Si: 0.36%, Mn: 0.95%, P: 0.021%, Cu: 0.33%, Mo: 0.48%, Ti: 0.035%, S: 0.007%, Als: 0.036%, N: 0.003%; Ti: Mo=0.07~0.1, Ti: C=0.4~0.6, P+Cu: 0.3%~0.4%; the rest is Fe and unavoidable impurities.
[0041] Send the steel billet with a thickness of 200mm and meet the requirements of the chemical composition into the heating furnace for heating. The heating is divided into a heating section and an equal temperature section. Stay in the uniform temperature section for 45 minutes, and the total residence time in the heating furnace is controlled at 250 minutes, and the steel billet is heated to 1280 ° C and released from the furnace for later use. Next, spray 20MPa high-pressure water for 15s on the steel slab heated out of the furnace to remove the scale on each surface. Send the dephosphorized steel slab into the rolling mill for 4-6 passes of rough rolling, the rolling start temperature is...
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