Hot-dip zn-al alloy-plated steel material with excellent bending workability and production method thereof
Abstract
A hot-dip Zn—Al alloy-plated steel material ensuring high corrosion resistance and excellent bending workability of the plating layer, and a production method thereof are provided, that is, a hot-dip Zn—Al alloy-plated steel material with excellent bending workability, having a plating layer comprising, in terms of mass %, from 25 to 85% of Al, from 0.05 to 5% of one or both of Cr and Mn, and Si in an amount of 0.5 to 10% of the Al content, with the balance being Zn and unavoidable impurities, wherein the average spangle size on the plating surface is 0.5 mm or more; and a production method thereof.
Claims
exact text as granted — not AI-modified1 . (canceled)
2 . The method for producing a hot-dip Zn—Al alloy-plated steel material according to claim 7 , wherein said plating layer comprises from more than 0.1 mass % to 5 mass % of Cr.
3 . The method for producing a hot-dip Zn—Al alloy-plated steel material according to claim 7 , wherein said plating layer further comprises from 0.1 to 5 mass % of Mg.
4 . The method for producing a hot-dip Zn—Al alloy-plated steel material according to claim 7 , which has an alloyed layer containing one or both of Cr and Mn at the interface between said plating layer and the steel material.
5 . The method for producing a hot-dip Zn—Al alloy-plated steel material according to claim 7 , wherein the average spangle size on the plating surface is 1.0 mm or more.
6 . The method for producing a hot-dip Zn—Al alloy-plated steel material according to claim 7 , wherein the average spangle size on the plating surface is 3.0 mm or more.
7 . A method for producing a hot-dip Zn—Al alloy-plated steel material with excellent bending workability, having a plating layer comprising, in terms of mass %,
Al: from 25 to 85%,
one or both of Cr and Mn: from 0.05 to 5%, and
Si: from 0.5 to 10% of the Al content,
with the balance being Zn and unavoidable impurities, wherein an average spangle size on a plating surface is 0.5 mm or more, and said method comprising dipping and thereby hot-dip plating the steel material in a plating bath comprising, in terms of mass %, from 25 to 85% of Al, from 0.05 to 5% of one or both of Cr and Mn, and Si in an amount of 0.5 to 10% of the Al content, with the balance being Zn and unavoidable impurities, cooling the plated steel material at a cooling rate of 20° C./sec or less to a temperature of completing solidification of the plating layer, and thermally insulating the steel material after solidification under the condition specified by the following formula (1):
y≧ 7.5×10 9 ×t −4.5 (1)
wherein t represents a temperature for thermally insulating the plated steel material at 100 to 250° C., and y represents a thermal insulation time (hr).
8 . The method for producing a hot-dip Zn—Al alloy-plated steel material according to claim 7 , wherein said plating bath further comprises from 0.1 to 5 mass % of Mg.
9 . The method for producing a hot-dip Zn—Al alloy plated steel material according to claim 7 , wherein the cooling rate of the plated steel material is 15° C./sec or less.
10 . The method for producing a hot-dip Zn—Al alloy plated steel material according to claim 8 , wherein the cooling rate of the plated steel material is 15° C./sec or less.Join the waitlist — get patent alerts
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