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Effect of η Phase on Mechanical Properties of the Iron-based Superalloy Using Shear Punch Testing

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TLDR
In this article, the shear deformation behavior of A286 Iron-based superalloy was studied with an emphasis on the influence of η phase on shear strength.
Abstract
In this paper, the shear deformation behavior of A286 Iron-based superalloy was studied with an emphasis on the influence of η phase on shear strength. The η (Ni3Ti) phase precipitates at high temperature heat treatment or during services at the expense of gamma prime phase. According to the microstructural features, no evidences of η phase were found at 650 and 720°C. η phase precipitated at 780 and 840°C and the amount of it increased with an increase the time and temperature. Because of using the alloy as fasteners, investigation of shear properties and the influence of η phase on it are indispensable. The shear strength of the alloy with different volume fractions of η was examined. It was found that, with an increase of η volume fraction, the ultimate shear strength decreases. The shear punch fracture surfaces were also examined by the scanning electron microscopy. The fracture surfaces of sheared samples indicated that low and high volume fraction of η phase result in interior cracks and grain boundary decohesion, respectively. In fact, the fracture of weak grain boundary films (η phase) produces this kind of decohesive cracking.

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Journal ArticleDOI

Cast Structure in Alloy A286, an Iron-Nickel Based Superalloy

TL;DR: The structure and segregation of a continuously cast iron-nickel based superalloy were investigated in this article, where the microporosity was measured from the surface to the center and theoretical conditions for pore formation were investigated.
Journal ArticleDOI

Hot deformation characteristics and microstructure evolution of electroslag remelted 15Cr-22Ni-1Nb austenitic heat-resistant steel

TL;DR: In this paper, a strain-compensated modified constitutive model is established to predict dynamic recrystallization volume fraction, which is capable of accurately predicting the flow behaviors of the steel.
Journal ArticleDOI

The Role of η Phase on the Strength of A286 Superalloy with Different Ti/Al Ratios

TL;DR: In this paper, the relationship between η phase and Ti/Al ratios of A286 superalloy with its tensile properties was evaluated, and the cellular η-phase enhanced the room temperature tensile strength of the super alloy by providing a barrier to grain boundary sliding.
Journal ArticleDOI

Microstructure and mechanical properties of medium-entropy alloys with a high-density η-D024 phase

TL;DR: In this article , the precipitation behavior of the Ni3Ti η phase in a non-equimolar CoCrNiTi MEA was investigated, which adopts a face-centered cubic (FCC) matrix upon Ni3Ni η-phase precipitation.
Journal ArticleDOI

Effect of Annealing Temperature on Punching Shear Strength of Nb-A286 Superalloy

TL;DR: In this paper, the effects of cold rolling and subsequent annealing on the microstructure and shear response of A286 superalloy were investigated, and the fracture surface analysis showed the occurrence of softening phenomenon in the temperature range of 900-950°C as a result of either partial or full recrystallization.
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