2008
DOI: 10.1016/j.msea.2007.09.008
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Microstructure evolution during dynamic recrystallization of hot deformed superalloy 718

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Cited by 190 publications
(77 citation statements)
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“…The number of parameters is reduced when isothermal hot forging is performed. The literature gives many results for INCONEL 718 behaviour during a single pass hot deformation in the super-δ-solvus domain [1][2][3][4][5][6][7]. In the case of the super-δ-solvus domain, two papers only refer to multipass hot deformation [8][9]: the first study [8] was realized with an initial grain size of 250 µm (1200°C / 7 hours) much larger than the present grain size.…”
Section: Figure 1: Forging Domain Of Inconel 718mentioning
confidence: 99%
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“…The number of parameters is reduced when isothermal hot forging is performed. The literature gives many results for INCONEL 718 behaviour during a single pass hot deformation in the super-δ-solvus domain [1][2][3][4][5][6][7]. In the case of the super-δ-solvus domain, two papers only refer to multipass hot deformation [8][9]: the first study [8] was realized with an initial grain size of 250 µm (1200°C / 7 hours) much larger than the present grain size.…”
Section: Figure 1: Forging Domain Of Inconel 718mentioning
confidence: 99%
“…For INCONEL 718, the dynamic recrystallization mechanism was characterized as a discontinuous process (see for instance, Wang et al [2]). Some authors [3][4] report a necklace dynamic recrystallization process, depending on the deformation rate and the temperature compatible with a discontinuous behaviour of the dynamic recrystallization.…”
Section: Figure 1: Forging Domain Of Inconel 718mentioning
confidence: 99%
“…Higher grain-boundary mobility results in the nucleation of the twins, which act as the main activate nucleation mechanism of DRX for nickelbased superalloys deformed at higher temperatures. This accelerates the bulging and the separation of bulged parts from the original grains 8 . The amount of twin boundaries increases with increased strain.…”
Section: Microstructurementioning
confidence: 99%
“…A laminação a quente é um processo de deformação primária bastante eficiente, em que a variação de temperatura durante o procedimento pode intervir na distribuição de tensões e deformações alterando a microestrutura do material. A caracterização microestrutural e o comportamento recristalizado da liga 718 deformada a quente têm sido estudado para se obter um melhor controle do processamento termomecânico e desempenho do material [5]. Outra forma de processamento para melhorar as propriedades mecânicas da liga 718 é através da distribuição característica dos contornos de grão, conhecida como engenharia de contorno de grão.…”
Section: Introductionunclassified
“…Os CSLs gerados pelo processamento da engenharia de contorno de grão para ligas com baixa energia de falha de empilhamento são Ʃ3 n (Ʃ3, Ʃ9 e Ʃ27), com maclas de recozimento coerentes e incoerentes, sendo o Ʃ3 um contorno de grande contribuição para melhoria das propriedades devido a sua baixa energia [6,7]. Alguns autores [5,8] compararam o efeito de diferentes parâmetros de processamento termomecânico, na laminação a frio associada a engenharia de contorno grão da liga 718. Desta forma, o objetivo desse trabalho é investigar o efeito de duas diferentes rotas de processamento termomecânico, laminação a quente e engenharia de contorno de grão, a fim de melhorar as propriedades mecânicas do material.…”
Section: Introductionunclassified