Effects of Different Wire Drawing Routes on Grain Boundary Character Distribution, Microtexture, δ-Phase Precipitation, Grain Size and Room Temperature Mechanical Behavior of Alloy 718
Author:
Affiliation:
1. Universidade Federal do Rio de Janeiro, Brasil
2. Instituto Militar de Engenharia, Brasil
3. Universidade Federal do Rio Grande do Sul, Brasil
4. Centro Federal de Educação Tecnológica Celso Suckow da Fonseca, Brasil
Publisher
FapUNIFESP (SciELO)
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Link
http://www.scielo.br/pdf/mr/v23n3/1516-1439-mr-23-3-e20200131.pdf
Reference39 articles.
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2. Improving creep resistance of nickel-based superalloy Inconel 718 by tailoring gamma double prime variants;Zhang H;Scr Mater,2019
3. Multiscale modeling of the mechanical behavior of IN718 superalloy based on micropillar compression and computational homogenization;Cruzado A;Acta Mater,2015
4. Surface characteristics and fatigue behavior of shot peened Inconel 718;Klotz T;Int J Fatigue,2018
5. Hydrogen-assisted failure in Ni-based superalloy 718 studied under in situ hydrogen charging: the role of localized deformation in crack propagation;Tarzimoghadam Z;Acta Mater,2017
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1. Arc-based directed energy deposited Inconel 718: role of heat treatments on high-temperature tensile behavior;Materials Research Letters;2023-12-28
2. Effect of annealing twins, strain-recrystallization processing and δ-phase fraction on microtexture and evaluation of mechanical properties of nickel-based superalloy 718;Materials Science and Engineering: A;2023-08
3. In situ interlayer hot forging arc-based directed energy deposition of Inconel® 625: process development and microstructure effects;Additive Manufacturing;2023-03
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