A kind of hot-rolled wire rod for ultra-low carbon steel fiber and its production method
A hot-rolled wire rod and ultra-low carbon steel technology, applied in the field of metallurgy, can solve problems such as mechanical properties, drawing ability and specification restrictions, and achieve the effects of achieving strength and good plasticity, increasing selectivity, and reducing procurement costs
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Embodiment 1
[0025] In this example, the hot-rolled wire rod for ultra-low carbon steel fibers has the following chemical composition and mass percentage: C: 0.002%, Si: 0.01%, Mn: 0.05%, P: 0.005%, S: 0.010%, Alt : 0.03%, Ti: 0.10%, the rest is iron and unavoidable impurities; the specification is Φ7.0mm.
[0026] The production method of the hot-rolled wire rod for ultra-low carbon steel fibers in this embodiment includes continuous casting, blanking and heating, rolling, spinning, and cooling processes. The specific process steps are as follows:
[0027] (1) Continuous casting process: After molten iron desulfurization treatment, top-bottom combined blowing converter smelting, LF furnace refining and RH vacuum refining, molten steel is continuously cast into billets. The chemical composition and mass percentage of billets are: C: 0.002%, Si: 0.01%, Mn: 0.05%, P: 0.005%, S: 0.010%, Alt: 0.03%, Ti: 0.10%, and the rest are iron and unavoidable impurities;
[0028] (2) Blooming and heating...
Embodiment 2
[0034] The hot-rolled wire rod for ultra-low carbon steel fibers in this example has the following chemical composition and mass percentage: C: 0.010%, Si: 0.03%, Mn: 0.20%, P: 0.020%, S: 0.020%, Alt : 0.02%, Ti: 0.12%, the rest is iron and unavoidable impurities; the specification is Φ7.0mm.
[0035] The production method of the hot-rolled wire rod for ultra-low carbon steel fibers in this embodiment includes continuous casting, blanking and heating, rolling, spinning, and cooling processes. The specific process steps are as follows:
[0036] (1) Continuous casting process: After molten iron desulfurization treatment, top-bottom combined blowing converter smelting, LF furnace refining and RH vacuum refining, molten steel is continuously cast into billets. The chemical composition and mass percentage of billets are: C: 0.010%, Si: 0.03%, Mn: 0.20%, P: 0.020%, S: 0.020%, Alt: 0.02%, Ti: 0.12%, and the rest are iron and unavoidable impurities;
[0037](2) Billet opening and hea...
Embodiment 3
[0043] The hot-rolled wire rod for ultra-low carbon steel fibers in this example has the following chemical composition and mass percentage: C: 0.008%, Si: 0.02%, Mn: 0.15%, P: 0.015%, S: 0.015%, Alt : 0.04%, Ti: 0.05%, the rest is iron and unavoidable impurities; the specification is Φ7.0mm.
[0044] The production method of the hot-rolled wire rod for ultra-low carbon steel fibers in this embodiment includes continuous casting, blanking and heating, rolling, spinning, and cooling processes. The specific process steps are as follows:
[0045] (1) Continuous casting process: After molten iron desulfurization treatment, top-bottom combined blowing converter smelting, LF furnace refining and RH vacuum refining, molten steel is continuously cast into billets. The chemical composition and mass percentage of billets are: C: 0.008%, Si: 0.02%, Mn: 0.15%, P: 0.015%, S: 0.015%, Alt: 0.04%, Ti: 0.05%, and the rest are iron and unavoidable impurities;
[0046] (2) Blooming and heating ...
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