METHOD FOR PRODUCING ARC-WELDED Zn-Al-Mg ALLOY COATED STEEL PLATE STRUCTURAL MEMBER
A method for producing an arc-welded Zn—Al—Mg alloy coated steel plate structural member excellent in liquid metal embrittlement cracking resistance is provided. The method contains a step of joining steel members by gas-shielded arc-welding to produce a welded structural member, at least one of the steel members to be used is a hot dip Zn—Al—Mg alloy coated steel plate member, and the shield gas contains an Ar gas, a He gas or an Ar—He mixed gas as a base gas with a CO 2 concentration controlled in a range of from 0 to 7% by volume.
1 . A method for producing an arc-welded Zn—Al—Mg alloy coated steel plate structural member excellent in liquid metal embrittlement cracking resistance, the method comprising a step of joining steel members by gas-shielded arc-welding to produce a welded structural member, at least one of the steel members to be used being a hot dip Zn—Al—Mg alloy coated steel plate member, and the shield gas containing an Ar gas, a He gas or an Ar—He mixed gas as a base gas with a CO 2 concentration controlled in a range of from 0 to 7% by volume.
2 . The method for producing an arc-welded Zn—Al—Mg alloy coated plated steel plate structural member excellent in liquid metal embrittlement cracking resistance according to claim 1 , wherein the hot dip Zn—Al—Mg alloy coated steel plate has a coated that contains: from 1.0 to 22.0% by mass of Al; from 0.05 to 10.0% by mass of Mg; from 0 to 0.10% by mass of Ti; from 0 to 0.05% by mass of B; from 0 to 2.0% by mass of Si; from 0 to 2.5% by mass of Fe; the balance of Zn; and unavoidable impurities.
3 . The method for producing an arc-welded Zn—Al—Mg alloy coated steel plate structural member excellent in liquid metal embrittlement cracking resistance according to claim 1 , wherein the hot dip Zn—Al—Mg alloy coated steel plate has a coating weigh of from 20 to 250 g/m 2 per one surface.