Assessment of the Hot Cracking Susceptibility of the Inconel 617 Nickel-Based Alloy

材料科学 因科镍合金 焊接性 冶金 开裂 焊接 共晶体系 合金 脆性 复合材料
作者
Janusz Adamiec,Natalia Konieczna
出处
期刊:Archives of Metallurgy and Materials [De Gruyter Open]
卷期号:: 241-248 被引量:3
标识
DOI:10.24425/amm.2021.134781
摘要

INCONEL 617 NICKEL-BASED ALLOYNickel alloys, despite their good strength properties at high temperature, are characterized by limited weldability due to their susceptibility to hot cracking.So far, theories describing the causes of hot cracking have focused on the presence of impurities in the form of sulphur and phosphorus.These elements form low-melting eutectic mixtures that cause discontinuities, most frequently along solid solution grain boundaries, under the influence of welding deformations.Progress in metallurgy has effectively reduced the presence of sulphur and phosphorus compounds in the material, however, the phenomenon of hot cracking continues to be the main problem during the welding of nickel-based alloys.It was determined that nickel-based alloys, including Inconel 617, show a tendency towards hot cracking within the high-temperature brittleness range (HTBR).There is no information on any structural changes occurring in the HTBR.Moreover, the literature indicates no correlations between material-related factors connected with structural changes and the amount of energy delivered into the material during welding.This article presents identification of correlations between these factors contributes to the exploration of the mechanism of hot cracking in solid-solution strengthened alloys with an addition of cobalt (e.g.Inconel 617).The article was ended with development of hot cracking model for Ni-Cr-Mo-Co alloys.
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