a comparative evaluation of welding consumables for dissimilar welds between 310 austenitic stainless steel and inconel 657

Authors

h. naffakh

m. shamanian

f. ashrafizadeh

abstract

the current work was carried out to characterize welding of aisi 310 austenitic stainless steel to inconel 657 nickel-chromium superalloy. the welds were produced using four types of filler materials; the nickel-based corresponding to inconel 82, inconel a, inconel 617 and austenitic stainless steels 310. of the two joints involved, this paper describes the choice of welding consumables for the joint. the comparative evaluation was based on hot cracking tests (varestraint test) and estimation of mechanical properties. while inconel a exhibited the highest resistance to solidification cracking, the inconel 617 filler material also showed moderate resistance and in addition, the latter was superior from the mechanical properties view-points. it was concluded that for the joint between inconel 657 and 310 ss, the inconel a filler material offered the best compromise.

Upgrade to premium to download articles

Sign up to access the full text

Already have an account?login

similar resources

A Comparative Evaluation of Welding Consumables for Dissimilar Welds between 310 Austenitic Stainless Steel and Inconel 657

The current work was carried out to characterize welding of AISI 310 austenitic stainless steel to Inconel 657 nickel-chromium superalloy. The welds were produced using four types of filler materials; the nickel-based corresponding to Inconel 82, Inconel A, Inconel 617 and austenitic stainless steels 310. Of the two joints involved, this paper describes the choice of welding consumables for the...

full text

Interface and Heat-affected Zone Features of Dissimilar Welds between AISI 310 Austenitic Stainless Steel and Inconel 657

The aim of this paper is to characterize welding of AISI 310 austenitic stainless steel to Inconel 657 for use in oil-refining industries. The welds were produced using four types of filler materials; nickel-based alloys designated as Inconel 82, A, 617, and 310 SS. The interfaces and heat-affected zones were characterized by optical and scanning electron microscopy. Interfaces on the two sides...

full text

AN EVALUATION OF THERMAL STABILITY IN DISSIMILAR WELDS BETWEEN 310 STAINLESS STEEL AND ALLOY 657

Abstract: The investigation is carried out to characterize welding of AISI 310 austenitic stainless steel to Inconel 657 nickel-chromium superalloy. The welds were produced using four types of filler materials: the nickel-based corresponding to Inconel 82, Inconel A, Inconel 617 and austenitic stainless steel 310. This paper describes the effects of aging treatment on the joint. The compara...

full text

interface and heat-affected zone features of dissimilar welds between aisi 310 austenitic stainless steel and inconel 657

the aim of this paper is to characterize welding of aisi 310 austenitic stainless steel to inconel 657 for use in oil-refining industries. the welds were produced using four types of filler materials; nickel-based alloys designated as inconel 82, a, 617, and 310 ss. the interfaces and heat-affected zones were characterized by optical and scanning electron microscopy. interfaces on the two sides...

full text

Investigation of microstructures and mechanical properties of dissimilar welds between Incoloy 825 and 316 stainless steel

In this study, microstructural features and mechanical properties of Incoloy 825-316L stainless steel dissimilar joints have been investigated. For this purpose, pulsed gas tungsten arc welding method was employed and 316L, Inconel 82 and Inconel 625 alloys were used as filler metal. First, specimens were cut. Pulsed gas tungsten arc welding was performed using peak and base currents of 220 A a...

full text

Investigation of microstructures and mechanical properties of dissimilar welds between Incoloy 825 and 316 stainless steel

In this study, microstructural features and mechanical properties of Incoloy 825-316L stainless steel dissimilar joints have been investigated. For this purpose, pulsed gas tungsten arc welding method was employed and 316L, Inconel 82 and Inconel 625 alloys were used as filler metal. First, specimens were cut. Pulsed gas tungsten arc welding was performed using peak and base currents of 220 A a...

full text

My Resources

Save resource for easier access later


Journal title:
international journal of iron & steel society of iran

Publisher: iron & steel society of iran

ISSN 1735-4145

volume 4

issue 1 2007

Hosted on Doprax cloud platform doprax.com

copyright © 2015-2023