Niobium-titanium-boron microalloy high-strength gas protecting welding wire

A gas-shielded welding wire and micro-alloy technology, applied in welding medium, welding equipment, welding equipment, etc., can solve the problems that the impact toughness cannot meet the use requirements, there is no commercial gas-shielded welding wire, and the variety of gas-shielded welding wire is single, etc., to achieve Uniform and stable weld metal performance, beautiful shape, and stable welding arc

Inactive Publication Date: 2005-08-17
YANSHAN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the variety of gas shielded welding wire is single, so far, there is no mature 800MPa commercial gas shielded welding wire
Japanese patent P2000-218391A discloses a gas shielded welding wire, the weld metal of the welding wire has good low temperature impact toughness, but the disadvantage is that the tensile strength cannot reach 800MPa
Although the tensile strength of the deposited metal has reached 800M

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Example Embodiment

[0021] Embodiment: select low S, P steel scrap raw materials, adopt 0.2 ton electric furnace to carry out welding wire steel smelting. During the smelting process, attention should be paid to controlling the gas content in the steel and the order of alloy addition. The chemical composition of welding wire steel is (wt%): C 0.065, Mn 1.82, Si 0.58, S 0.0062, P 0.014, Ni1.42, Ti 0.18, Mo 0.32, B 0.0078, Nb 0.024. After smelting, the welding wire steel is processed into welding wire with a specification of Φ1.2mm through rolling, drawing, surface copper plating and other processes.

[0022] The welding wire of the present invention adopts mixed gas (80% Ar+20% CO 2 ) protection to weld the deposited metal test plate, and then evaluate the mechanical properties of the deposited metal and the process performance of the welding wire. The welding specifications are: welding current 230-270A, welding voltage 23-25, welding speed 21.5cm / min, gas flow 18L / min, welding line energy 17.2...

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PUM

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Abstract

The gas protected Nb-Ti-B micro alloy weld filament contains C 0.04-0.15 wt%, Mn 1.00-2.00 wt%, Si 0.30-1.20 wt%, Ni 0.60-1.80 wt%, Ti 0.08-0.20 wt%, Mo 0.10-0.80 wt%, Nb 0.01-0.05 wt%, B 0.002-0.012 wt%, S not more than 0.10 wt% and P not more than 0.20 wt%, except Fe and inevitable impurity. Under the protection of mixed gas of Ar and CO2 and proper welding technological parameter and interlayer temperature, the weld seam metal can reach tensile strength over 800 MPa and impact power at -30 deg.c higher than 100 J. When used in multilayer welding, the weld seam metal has excellent structure and performance homogeneity, and the weld filament has excellent technological performance. The present invention may be used widely for welding low alloy high strength steel in engineering machinery, railway bridge, marine facility, high pressure container, etc.

Description

technical field [0001] The invention relates to a niobium-titanium-boron microalloy high-strength gas shielded welding wire. The wire uses M21 mixed gas (80% Ar+20% CO 2 ) during shielded welding, the welding wire has good process performance, has the advantages of stable welding arc, small spatter, beautiful shape, and is suitable for all-position welding. At the same time, under the conditions of proper control of welding process parameters and interlayer temperature, the yield strength of the weld metal is ≥690MPa, the tensile strength is ≥800MPa, and the impact energy at -30°C is A kv ≥100J, suitable for gas shielded arc welding of 800MPa low-alloy high-strength structural steel. Background technique [0002] At present, in the design and production process of important large-scale welded structures of marine ships, construction machinery, and oil pipelines, in order to reduce dead weight, reduce energy consumption, and improve service life, structural steel plates wit...

Claims

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Application Information

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IPC IPC(8): B23K9/16B23K35/30
Inventor 王青峰陈大伟
Owner YANSHAN UNIV
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