US2021362472A1PendingUtilityA1

Steel sheet for hot press formed member having excellent painting adhesion and post-painting corrosion resistance, and method for manufacturing same

Assignee: POSCOPriority: Jun 1, 2017Filed: Aug 5, 2021Published: Nov 25, 2021
Est. expiryJun 1, 2037(~10.9 yrs left)· nominal 20-yr term from priority
Y10T428/12951Y10T428/12479B32B 5/20B32B 5/18B21D 37/16C22C 38/008C22C 38/60C22C 38/40C23C 28/322C22C 30/00B32B 15/18B21D 22/02C22C 21/00C22C 38/54C21D 6/008C23C 28/321C22C 38/28C23C 2/04B21D 35/005B32B 15/012B32B 15/04C23C 30/005C22C 38/02C23C 2/12C23C 26/00C22C 38/001C22C 38/46C22C 38/08C22C 38/16B21D 22/022B21D 35/00C23C 2/40C22C 38/38C22C 38/20C22F 1/04C22C 38/12Y10T428/12958B32B 15/013B32B 15/011Y10T428/12972Y10T428/12757C22C 38/48C22C 38/06C22C 38/22C22F 1/002C22C 38/04C22C 38/14C22C 38/32C22C 38/42Y10T428/12979C22C 38/44C22C 38/24C23C 28/023B32B 15/01C22C 38/26C22C 38/002C22C 38/18B32B 15/043Y10T428/12799C21D 9/46C23C 2/06C23C 30/00C22C 38/50C21D 6/005C23F 17/00C22C 38/58Y10T428/12993C23C 2/26C23C 2/28C23C 2/29C21D 9/52C21D 1/26
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Claims

Abstract

Provided is a steel sheet for a hot press formed member having excellent painting adhesion and post-painting corrosion resistance, and a method for manufacturing the same. A steel sheet for hot press forming according to one aspect of the present invention comprises a base steel sheet and a plated layer formed on a surface of the base steel sheet, wherein the ratio of an area occupied by pores to the entire area of a surface layer portion may be 10% or more in a cross section of the surface layer portion observed when the plated layer is cut in a thickness direction thereof.

Claims

exact text as granted — not AI-modified
1 . A steel sheet for a hot press formed member having excellent painting adhesion and post-painting corrosion resistance, comprising:
 a base steel sheet; and   a plated layer formed on a surface of the base steel sheet,   wherein a ratio of an area occupied by pores to an entire area of a surface layer portion is 10% or more in a cross-section of the surface layer portion observed when the plated layer is cut in a thickness direction thereof, and   wherein the composition of the base steel sheet further comprises, by wt %, one or more among a sum of one or more selected from a group consisting of Cr, Mo, and W: 0.01 to 4.0%, a sum of one or more selected from a group consisting of Ti, Nb, Zr, and V: 0.001 to 0.4%, Cu+Ni: 0.005 to 2.0%, Sb+Sn: 0.001 to 1.0%, and B: 0.0001 to 0.01%.   
     
     
         2 . The steel sheet for the hot press formed member having excellent painting adhesion and post-painting corrosion resistance of  claim 1 , wherein a ratio of an area occupied by pores to an entire area of a surface layer portion is 15% or more in a cross-section of the surface layer portion observed when the plated layer is cut in a thickness direction thereof. 
     
     
         3 . The steel sheet for the hot press formed member having excellent painting adhesion and post-painting corrosion resistance of  claim 1 , wherein the plated layer is an aluminum alloy plated layer. 
     
     
         4 . The steel sheet for the hot press formed member having excellent painting adhesion and post-painting corrosion resistance of  claim 3 , wherein the aluminum alloy plated layer has an average content of Fe of 30 wt % or more. 
     
     
         5 . The steel sheet for the hot press formed member having excellent painting adhesion and post-painting corrosion resistance of  claim 3 , wherein the aluminum alloy plated layer has an average content of Fe of 40 wt % or more. 
     
     
         6 . The steel sheet for the hot press formed member having excellent painting adhesion and post-painting corrosion resistance of  claim 1 , wherein the base steel sheet has a composition including, by wt %, carbon (C): 0.04 to 0.5%, silicon (Si): 0.01 to 2%, manganese (Mn): 0.01 to 10%, aluminum (Al): 0.001 to 1.0%, phosphorus (P): 0.05% or less, sulfur (S): 0.02% or less, nitrogen (N): 0.02% or less, and a balance of iron (Fe) and inevitable impurities. 
     
     
         7 . A manufacturing method of a steel sheet for a hot press formed member having excellent painting adhesion and post-painting corrosion resistance, comprising operations of:
 aluminum plating a surface of a base steel sheet and coiling to obtain an aluminum plated steel sheet;   annealing the aluminum plated steel sheet to obtain an aluminum alloy plated steel sheet; and   cooling the aluminum alloy plated steel sheet,   wherein an amount of the aluminum plating is 30 to 200 g/m 2  based on one side of the steel sheet,   coiling tension is 0.5 to 5 kg/mm 2  during coiling,   the annealing is performed for 30 minutes to 50 hours in a heating temperature range of 550 to 750° C. in a batch annealing furnace,   when heating is performed from room temperature to the heating temperature during the annealing, an average temperature increase rate is 20 to 100° C./h, and a temperature increase rate in a section from the heating temperature −50° C. to the heating temperature is 1 to 15° C./h, and   a difference between an atmosphere temperature and a temperature of the steel sheet in the batch annealing furnace is 5 to 80° C.   
     
     
         8 . The manufacturing method of the steel sheet for the hot press formed member having excellent painting adhesion and post-painting corrosion resistance of  claim 7 , wherein the base steel sheet has a composition including, by wt %, carbon (C): 0.04 to 0.5%, silicon (Si): 0.01 to 2%, manganese (Mn): 0.01 to 10%, aluminum (Al): 0.001 to 1.0%, phosphorus (P): 0.05% or less, sulfur (S): 0.02% or less, nitrogen (N): 0.02% or less, and a balance of iron (Fe) and inevitable impurities. 
     
     
         9 . The manufacturing method of the steel sheet for the hot press formed member having excellent painting adhesion and post-painting corrosion resistance of  claim 8 , wherein the composition of the base steel sheet further comprises, by wt %, one or more among a sum of one or more selected from a group consisting of Cr, Mo, and W: 0.01 to 4.0%, a sum of one or more selected from a group consisting of Ti, Nb, Zr, and V: 0.001 to 0.4%, Cu+Ni: 0.005 to 2.0%, Sb+Sn: 0.001 to 1.0%, and B: 0.0001 to 0.01%.

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