Hot-rolled steel belt used for Q235-level anti-seismic structure and preparation method of hot-rolled steel belt
A technology for anti-seismic structures and steel strips, applied in the field of hot-rolled steel strips for Q235 anti-seismic structures and its preparation, can solve the problems of poor adaptability of equipment and processes, low yield ratio, high alloy cost, etc., and achieve low alloy cost, low cost, etc. Yield ratio, effect of narrow strength fluctuation range
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[0032] The production process of the above-mentioned hot-rolled steel strip for Q235-grade anti-seismic structure is as follows: desulfurization of molten iron → converter smelting combined blowing → deoxidation and alloying → small platform behind the furnace to feed Al wire → LF refining heating → continuous casting →Slab heating→High pressure water descaling→Rough rolling→Hot coil box coiling→Finish rolling→Laminar cooling→Coiling→Packing and storage, including the following steps:
[0033] a. Slab heating: heat the slab at 1160-1200°C for 160-320 minutes; not only ensure that the slab is fully heated, chemical elements are fully dissolved, but also prevent abnormal growth of austenite grains;
[0034] b. Rough rolling: the slab heated in step a is rolled for 5 or 7 passes, and the deformation of each pass is ≥ 20%. The rolling line is full-length and fully descaled during rolling; the thickness of the finished product is different, The thickness of the intermediate billet ...
Embodiment 1
[0045] 11.75mm thick Q235KZ anti-seismic structural steel adopts the C-Mn steel composition route, and the steel billet is obtained through molten iron pretreatment, converter smelting, LF heating furnace refining, and continuous casting. The specific chemical composition weight percentage is: C 0.15%; Si 0.12% ; Mn 0.15%; P 0.02%; S 0.01%; billet reheating temperature is 1185°C, reheating time is 288min; , 30%, 30%, the thickness of the intermediate billet is 31mm; the finish rolling is 6-stand hot continuous rolling, and the reduction rates of each pass are 33%, 30%, 0, 21%, 0, 10%, and the final rolling temperature After finishing rolling, it is cooled to 600°C at a cooling rate of 19°C / s by means of sparse cooling.
[0046] After testing, the mechanical properties of the Q235KZ anti-seismic steel produced in this example are: Rel: 273MPa, Rm: 421MPa, A: 32.5%, Rel / Rm: 0.65, Charpy impact energy at 0°C: 133J, yield platform length: 2.6% , the metallographic structure is po...
Embodiment 2
[0048] 7.5mm thick Q235KZ anti-seismic structural steel adopts the C-Mn steel composition route, and the billet is obtained through molten iron pretreatment, converter smelting, LF heating furnace refining, and continuous casting. The specific chemical composition weight percentage is: C 0.15%; Si 0.13% ; Mn 0.19%; P 0.014%; S 0.012%; billet reheating temperature is 1190 ℃, reheating time is 308min; , 30%, 30%, the thickness of the intermediate billet is 33mm; the finishing rolling is 6-stand hot continuous rolling, and the reduction rates of each pass are 34%, 30%, 0, 22%, 0, 10%, and the final rolling temperature After finishing rolling, it is cooled to 605°C at a cooling rate of 17°C / s by means of sparse cooling.
[0049] After testing, the mechanical properties of the Q235KZ anti-seismic steel produced in this example are: Rel: 313MPa, Rm: 461MPa, A: 35.0%, Rel / Rm: 0.68, Charpy impact energy at 0°C: 142J, yield platform length: 2.4% , the metallographic structure is polyg...
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