2023
DOI: 10.3390/ma16145109
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The Effect of the Forging Process on the Microstructure and Mechanical Properties of a New Low-Cost Ti-5Al-1.5Mo-1.8Fe Alloy

Abstract: This paper presents results on the microstructure and mechanical properties of a new low-cost titanium alloy Ti-5Al-1.5Mo-1.8Fe after different forging processes. The β phase transformation temperature of this alloy was 950 °C. In this study, the forging temperatures were designed at 920 °C and 980 °C, and the deformation degree ranged from 20% to 60%, with an interval of 20%. This study investigated the impact of the equiaxed α phase and shape of the lamellar microstructure on the tensile characteristics and … Show more

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“…The role that the deformation route has upon the deformed part microstructure and properties is considered in the literature. Hu et al [13] were considering deformation and its impact upon microstructure and mechanical property for a novel titanium alloy Ti-5Al-1.5Mo-1.8Fe. They concluded that alloys with bimodal microstructure display improved plasticity capacity than a lamellar microstructure.…”
Section: Introductionmentioning
confidence: 99%
“…The role that the deformation route has upon the deformed part microstructure and properties is considered in the literature. Hu et al [13] were considering deformation and its impact upon microstructure and mechanical property for a novel titanium alloy Ti-5Al-1.5Mo-1.8Fe. They concluded that alloys with bimodal microstructure display improved plasticity capacity than a lamellar microstructure.…”
Section: Introductionmentioning
confidence: 99%