US2022347797A1PendingUtilityA1

Hot-Formed Previously Welded Steel Part with very High Mechanical Resistance and Production Method

Assignee: ARCELORMITTALPriority: Jul 26, 2011Filed: Jul 19, 2022Published: Nov 3, 2022
Est. expiryJul 26, 2031(~5 yrs left)· nominal 20-yr term from priority
C21D 2211/008C21D 9/50C21D 2211/001B23K 35/3053C21D 2221/01B23K 35/383B23K 2103/08C23C 28/023B23K 26/60C21D 1/673C21D 9/48C21D 9/505B23K 35/0261C23C 28/021C21D 2251/02C21D 2221/02B23K 2103/50B23K 2101/34C22C 38/04C22C 38/18B32B 15/012B23K 26/32B23K 31/02B23K 35/3073Y10T403/479
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Claims

Abstract

A welded steel part with a very high mechanical strength is provided. The welded steel part is obtained by heating followed by hot forming, then cooling of at least one welded blank obtained by butt welding of at least one first and one second sheet. The at least one first and second sheets including, at least in part, a steel substrate and a pre-coating which includes an intermetallic alloy layer in contact with the steel substrate, topped by a metal alloy layer of aluminum or aluminum-based alloy. A method for the fabrication of a welded steel part and the fabrication of structural or safety parts for automotive vehicles are also provided.

Claims

exact text as granted — not AI-modified
1 - 147 . (canceled) 
     
     
         148 . A welded steel part obtained by heating in the austenitic range followed by hot forming, then cooling, of at least one welded blank obtained by butt welding of at least a first and a second sheet, the first and second sheet comprised at least in part of a steel substrate and a pre-coating including, in an area including a weld metal zone resulting from the welding operation and constituting the bond between the first and second sheets, an AlSiFe intermetallic alloy layer forming a surface of the precoating and being in direct contact with the steel substrate, wherein over at least a portion of the weld metal zone, a ratio between the carbon content of the at least a portion of the weld zone and the carbon content of the substrate of the first or second sheet, whichever has the highest carbon content Cmax, is between 1.27 and 1.59. 
     
     
         149 . The steel part recited in  claim 148 , wherein a composition of the steel substrate of at least the first or the second sheet, comprises the following elements, expressed in percent by weight:
 0.10%≤C≤0.5%;   0.5%≤Mn≤3%;   0.1%≤Si≤1%;   0.01%≤Cr≤1%;   Ti≤0.2%;   Al≤0.1%;   S≤0.05%;   P≤0.1%; and   0.0002%≤B≤0.010%,   the balance being iron and unavoidable impurities from processing.   
     
     
         150 . The steel part as recited in  claim 148 , wherein a ratio between the hardness of the welded metal zone and a hardness of the substrate of one of the first or second sheets having a higher carbon content is greater than 1.029+(0.36 C max ), whereby C max  is expressed in percent by weight. 
     
     
         151 . The steel part as recited in  claim 148 , wherein the composition of the steel substrate of at least the first or second sheet includes the following elements, expressed in percent by weight:
 0.15%≤C≤0.4%;   0.8%≤Mn≤2.3%;   0.1%≤Si≤0.35%;   0.01%≤Cr≤1%;   Ti≤0.1%;   Al≤0.1%;   S≤0.03%;   P≤0.05%; and   0.0005%≤B≤0.010%,   the balance being iron and unavoidable impurities from processing.   
     
     
         152 . The steel part as recited in  claim 148 , wherein the composition of the steel substrate of at least the first or second sheet includes the following elements, expressed in percent by weight:
 0.15%≤C≤0.25%;   0.8%≤Mn≤1.8%;   0.1%≤Si≤0.35%;   0.01%≤Cr≤0.5%;   Ti≤0.1%;   Al≤0.1%;   S≤0.05%;   P≤0.1%; and   0.0002%≤B≤0.005%,   the balance being iron and unavoidable impurities from processing.   
     
     
         153 . The steel part as recited in  claim 148 , wherein the carbon content of the weld metal zone is less than or equal to 0.35% by weight. 
     
     
         154 . The steel part as recited in  claim 148 , wherein in an area outside of the weld metal zone, the precoating incudes a metal alloy layer over the AlSiFe intermetallic alloy layer, the metal alloy layer including, expressed in percent by weight, between 8 and 11% silicon and between 2 and 4% iron, a remainder of the metal alloy layer composition consisting of aluminum and unavoidable impurities. 
     
     
         155 . The steel part as recited  claim 148 , wherein a microstructure of the weld metal zone includes no ferrite. 
     
     
         156 . The steel part as recited in  claim 148 , wherein a microstructure of the weld metal zone is martensitic. 
     
     
         157 . The steel part as recited in  claim 148 , wherein hot forming of the welded blank is performed by a hot stamping operation. 
     
     
         158 . The steel part as recited in  claim 148 , wherein the welded steel part includes a mechanical strength greater than 1230 MPa. 
     
     
         159 . The steel part as recited in  claim 154 , wherein, the metal alloy layer is not present in an area from a welded edge of the first sheet to a distance between 0.2 mm and 2.2 mm. 
     
     
         160 . The steel part as recited in  claim 159 , wherein, the metal alloy layer is not present in an area from a welded edge of the second sheet to a distance between 0.2 mm and 2.2 mm. 
     
     
         161 . The steel part recited in  claim 148 , wherein the first and second sheets have different compositions. 
     
     
         162 . The steel part recited in  claim 148 , wherein the first and second sheets have different thicknesses. 
     
     
         163 . The steel part recited in  claim 148 , wherein the first and second sheets are separated by no more than 0.1 mm during said butt welding. 
     
     
         164 . The steel part recited in  claim 148 , wherein a hardness of the weld metal is at least equal to a hardness of one of the first and second sheets.

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