Method for manufacturing a welded component with very high mechanical characteristics from a coated lamination sheet
Plate consisting of a steel substrate ( 1 ) and a precoat ( 2 ) consisting of a layer of intermetallic alloy ( 3 ) in contact with said substrate, topped by a layer of metal alloy ( 4 ), characterized in that, on at least one precoated face of said plate, an area ( 6 ) situated at the periphery of said plate has said metal alloy layer removed.
1. A method of fabricating a precoated steel plate, the method comprising:
(A) coating a steel plate by dipping the steel plate in a molten bath to obtain a precoat upon the steel plate, wherein the precoat consists of (i) an intermetallic alloy layer and (ii) a metal alloy layer, wherein the intermetallic alloy layer (i) is topped by the metal alloy layer (ii); and
(B) on at least one face of the plate, removing the metal alloy layer (ii) in an area at a periphery of the plate having a width from 0.2 to 2.2 mm, while leaving at least part of the intermetallic alloy layer (i) in the area,
wherein the metal alloy layer (ii) is removed while leaving all of the intermetallic alloy layer (i) in the area and the metal alloy layer remains in an area outside the periphery of the plate.
2. A method of fabricating a precoated steel plate, the method comprising:
(A) coating a steel plate by dipping the steel plate in a molten bath to obtain a precoat upon the steel plate, wherein the precoat consists of (i) an intermetallic alloy layer and (ii) a metal alloy layer, wherein the intermetallic alloy layer (i) is topped by the metal alloy layer (ii); and
(B) on at least one face of the plate, removing the metal alloy layer (ii) in an area at a periphery of the plate having a width from 0.2 to 2.2 mm, while leaving at least part of the intermetallic alloy layer (i) in the area and leaving the metal alloy layer in an area outside the periphery of the plate,
wherein the metal alloy layer (ii) has a lower hardness than the intermetallic alloy layer (i), the metal alloy layer (ii) is removed by means of a brushing operation and the removal is a function of the hardness.