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Microstructural features of dissimilar welds between 316LN austenitic stainless steel and alloy 800

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TLDR
In this article, the weld fusion zones and the interfaces with the base materials were characterised in detail using light and transmission electron microscopy, showing that the stainless steel weld metals solidified dendritically, while the 16-8-2 (16%Cr-8%Ni-2%Mo) weld metal showed a predominantly cellular substructure.
Abstract
For joining type 316LN austenitic stainless steel to modified 9Cr–1Mo steel for power plant application, a trimetallic configuration using an insert piece (such as alloy 800) of intermediate thermal coefficient of expansion (CTE) has been sometimes suggested for bridging the wide gap in CTE between the two steels. Two joints are thus involved and this paper is concerned with the weld between 316LN and alloy 800. These welds were produced using three types of filler materials: austenitic stainless steels corresponding to 316, 16Cr–8Ni–2Mo, and the nickel-base Inconel 182 1 . The weld fusion zones and the interfaces with the base materials were characterised in detail using light and transmission electron microscopy. The 316 and Inconel 182 weld metals solidified dendritically, while the 16–8–2 (16%Cr–8%Ni–2%Mo) weld metal showed a predominantly cellular substructure. The Inconel weld metal contained a large number of inclusions when deposited from flux-coated electrodes, but was relatively inclusion-free under inert gas-shielded welding. Long-term elevated-temperature aging of the weld metals resulted in embrittling sigma phase precipitation in the austenitic stainless steel weld metals, but the nickel-base welds showed no visible precipitation, demonstrating their superior metallurgical stability for high-temperature service.

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Sulphide stress cracking behaviour of the dissimilar metal welded joint of X60 pipeline steel and Inconel 625 alloy

TL;DR: In this article, the authors investigated the sulphide stress cracking behavior of the dissimilar metal welded joint of X60 pipeline steel and Inconel 625 alloy in H 2 S environment using constant load testing, weight loss testing and finite element analysis.
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Role of heat-treatment and filler on structure-property relationship of dissimilar welded joint of P22 and F69 steel

TL;DR: In this article, the microstructural features and mechanical behavior of the dissimilar welded joint (DWJ) of lean duplex A 182 F 69 steel and 2.25Cr-1Mo (P22) steel were investigated.
Journal ArticleDOI

Microstructural studies and impact toughness of dissimilar weldments between AISI 316 L and AH36 steels by FCAW

TL;DR: In this paper, the authors investigated the effects of shielding gas composition on microstructure, impact toughness, and microhardness distribution of transition zone between AH36 steel and weld metal of joined material.
Journal ArticleDOI

Investigations on metallurgical and mechanical properties of CO2 laser beam welded Alloy 825

TL;DR: In this article, an attempt is made to join nickel-based alloy 825 by employing CO2 laser beam welding, and a successful full penetration weld joint of a 5'mm thick plate is achieved with a very low heat input of 120'J-mm−1.
Journal ArticleDOI

Effect of mechanical mismatch on fracture mechanical behavior of SA 508 – Alloy 52 narrow gap dissimilar metal weld

TL;DR: In this article, the fracture properties of a modern narrow-gap welding (NGW) DMW between the RPV nozzles and safe-ends connected to the main coolant pipes are investigated.
References
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Book

Welding Metallurgy of Stainless Steels

TL;DR: In this article, the importance of the Constitution diagram for the understanding of Welding Phenomena is discussed, and a detailed description of the Welding and post-weld surface treatment of Fabrications and Welded Components made from Austenitic Stainless Steels is given.
Journal ArticleDOI

A comparative evaluation of welding consumables for dissimilar welds between 316LN austenitic stainless steel and Alloy 800

TL;DR: In this article, a trimetallic joint involving modified 9Cr-1Mo steel and 316LN austenitic stainless steel as the base materials and Alloy 800 as the intermediate piece was investigated.
Journal ArticleDOI

Solidification Structures and Properties of Fusion Welds

TL;DR: In this paper, a wide range of fundamental knowledge of solidification processes is applied to the study of fusion-weld solidification, including inoculants, stimulated surface nucleation, dynamic grain refinement, and arc modulation.
Journal ArticleDOI

Investigation of boundaries and structures in dissimilar metal welds

TL;DR: In this paper, a ternary system composed of a pure iron substrate and a 70Ni-30Cu filler metal was used to determine the nature and evolution of boundaries and structure in dissimilar metal welds.
Journal ArticleDOI

Solidification sequences in stainless steel dissimilar alloy welds

TL;DR: In this article, a series of laser and gas tungsten arc welds traversing stainless steels of different chemical compositions has been studied, to elucidate the role of austenite or ferrite nucleation and cooling rate on solidification behaviour.
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