The Toughness of High-Strength Steel Weld Metals

焊接 材料科学 钨极气体保护焊 保护气体 冶金 气体保护金属极电弧焊 热影响区 韧性 电弧焊 焊条电弧焊 复合材料 氧化物 埋弧焊
作者
TAO DAI,Zhili Feng,Douglas Kyle,S. A. David,Katherine Sebeck,Demetrios A. Tzelepis,Katherine Vieau,MATTHEW ROGERS,MATTHEW ROGERS
出处
期刊:Welding Journal [American Welding Society]
卷期号:101 (2): 67-84 被引量:7
标识
DOI:10.29391/2022.101.006
摘要

Low-temperature phase transformation (LTPT) welding consumables are a new class of welding wires developed to mitigate hydrogen-induced cracking in the welding of high-strength steels without preheating or postweld heat treatment. LTPT weld metals have a high strength, but their toughness needs further investigation. LTPT weld metals predominately contain a martensite microstructure, which is necessary to achieve high strength; however, martensitic weld metals containing oxide inclusions have relatively poor toughness. Three welding processes — gas metal arc welding (GMAW), gas tungsten arc welding (GTAW), and hot wire GTAW — were investigated. Optical microscopy, scanning electron microscopes, and transmission electron microscopes were employed for characterization. The role of the shielding gas in the formation of oxide inclusions in LTPT weld metals was investigated. The formation of oxide inclusions in the weld metals was related to the CO2 in the shielding gas. When 100% Ar or a pure inert shielding gas mixture was used for all three welding processes, oxide inclusions were greatly reduced, and the weld metal toughness improved considerably, matching the base metal toughness. The mechanism by which inclusions promote fracture propagation in the weld metal was proposed.
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