US2025341013A1PendingUtilityA1
Plated steel sheet for hot press forming, having excellent plating quality, steel sheet and manufacturing method therefor
Est. expiryJun 10, 2042(~15.9 yrs left)· nominal 20-yr term from priority
C25D 21/02C22C 38/06C22C 38/04C22C 38/02C22C 38/32C22C 38/34C22C 38/38C23C 2/40C23C 2/06C25D 7/0614C25D 3/20C25D 9/06C25D 9/04C25D 5/50C23C 28/025C23C 28/345C23C 2/02C23C 2/28C23C 2/0222C23C 28/3225C23C 28/02C23C 28/00
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Claims
Abstract
The steel sheet for plating according to an aspect of the present invention has a GDS profile of an Mn element and a GDS profile of an Si element, which are observed from the surface to the depth, sequentially including a maximum point and a minimum point, wherein a difference of converted concentration of Mn is 10% or more, and a difference of converted concentration of Si is 10% or more.
Claims
exact text as granted — not AI-modified1 - 11 . canceled
12 . A steel sheet comprising, by weight %:
0. 1 to 4% of Mn, 0.001 to 2% of Si, 0.02 to 0.6% of C, 0.001 to 1% of Al, 0.05% or less of P, 0.02% or less of S, 1% or less of Cr, 0.01% or less of B, with a balance of Fe and inevitable impurities, wherein each of a GDS profile of an Mn element and a GDS profile of an Si element, observed from a surface thereof in a depth direction, sequentially includes a maximum point and a minimum point, a difference between a value obtained by dividing a Mn concentration at the maximum point in the GDS profile of the Mn element by a Mn concentration of a base material, and a value obtained by dividing a Mn concentration at the minimum point in the GDS profile of the Mn element by the Mn concentration of the base material (a difference of converted concentration of Mn) is 10% or more, a difference between a value obtained by dividing a Si concentration at the maximum point in the GDS profile of the Si element by a Si concentration of a base material, and a value obtained by dividing a Si concentration at the minimum point in the GDS profile of the Si element by the Si concentration of the base material (a difference of converted concentration of Si) is 10% or more, wherein when no minimum points appear within 5 um in depth, a point at a depth of 5 μm is considered to be a point at which the minimum point appears.
13 . The steel sheet of claim 12 , wherein the steel sheet includes a base steel sheet and an Fe plating layer formed on a surface of the base steel sheet, and the surface is a surface of the Fe plating layer.
14 . The steel sheet of claim 12 , wherein the difference of converted concentration of Mn is 15% or more, and the difference of converted concentration of Si is 15% or more.
15 . The steel sheet of claim 12 , wherein a depth at which the maximum point is formed is 0.05 to 1.0 μm.
16 . A method for manufacturing a steel sheet for plating, comprising:
preparing a base steel sheet including, by weight %:
0. 1 to 4% of Mn, 0.001 to 2% of Si, 0.02 to 0.6% of C, 0.001 to 1% of Al, 0.05% or less of P, 0.02% or less of S, 1% or less of Cr, 0.01% or less of B, with a balance of Fe and inevitable impurities,
performing electroplating on the base steel sheet with an electroplating solution to form an Fe plating layer including 5 to 50 wt % of oxygen; and annealing the base steel sheet on which the Fe plating layer is formed by maintaining at a temperature range of 600 to 950° C. for 5 to 120 minutes in an annealing furnace with 1 to 70% H 2 -remaining N 2 gas atmosphere, controlled at a dew point lower than −20° C.
17 . The method for manufacturing a steel sheet for plating of claim 16 wherein an adhesion amount of the Fe plating layer is 0.5 to 3 g/m 2 .
18 . The method for manufacturing a steel sheet for plating of claim 16 , wherein the electroplating solution includes a complexing agent, and the complexing agent is at least one selected from alanine, glycine, serine, threonine, arginine, glutamine, glutamic acid and glycylglycine.
19 . The method for manufacturing a steel sheet for plating of claim 16 , wherein the electroplating solution includes ferrous ions and ferric ions, the ferric ions have a ratio of 5 to 60 wt % relative to total iron ions, and a total concentration of the iron ions is 1 to 80 g per 1 L of the electroplating solution.
20 . The method for manufacturing a steel sheet for plating of claim 16 , wherein the electroplating is performed under conditions of a solution temperature of 80° C. or lower and a current density of 3 to 120 A/dm 2 .Join the waitlist — get patent alerts
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