2019
DOI: 10.3390/ma12213570
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Transformation Pathway upon Heating of Metastable β Titanium Alloy Ti-15Mo Investigated by Neutron Diffraction

Abstract: A transformation pathway during thermal treatment of metastable β Ti-15Mo alloy was investigated by in situ neutron diffraction. The evolution of individual phases α, β, and ω was investigated during linear heating with two heating rates of 1.9 ∘normalC/min and 5 ∘normalC/min and during aging at 450 ∘normalC. The results showed that with a sufficient heating rate (5 ∘normalC/min in this case), the ω phase dissolves before the α phase forms. On the other hand, for the slower heating rate of 1.9 ∘normalC/min, a … Show more

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Cited by 13 publications
(3 citation statements)
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“…At room temperature, both materials consist of a mixture of β+ωath phases (although small α content was observed in the HPT-deformed condition) as proved in several studies of the non-deformed material [9,27,40,41]. During linear heating, the content of ωath phase decreases in both conditions which is manifested by decreasing intensity of the {112}ω peak in Figure 1 [49].…”
Section: Discussionmentioning
confidence: 58%
See 1 more Smart Citation
“…At room temperature, both materials consist of a mixture of β+ωath phases (although small α content was observed in the HPT-deformed condition) as proved in several studies of the non-deformed material [9,27,40,41]. During linear heating, the content of ωath phase decreases in both conditions which is manifested by decreasing intensity of the {112}ω peak in Figure 1 [49].…”
Section: Discussionmentioning
confidence: 58%
“…The evolution of phase fractions evaluated from the Rietveld fit for the non-deformed and the HPT-deformed condition is shown in Figure 4(a) and (b), respectively. The evolution of phase content in Ti15Mo alloy during heating has been studied in several previous studies [22,26,27,40,41]. Initial decrease of content of ωath phase is followed by significant increase of content of ω isothermal (ωiso) reaching a maximum at around 450 °C.…”
Section: In-situ High Energy Synchrotron X-ray Diffractionmentioning
confidence: 99%
“…Literatür incelendiğinde, mikro yapının tasarlanmasında işlem sıcaklığının, süresinin, yaşlandırma işlem sıcaklığına ısıtma hızının ve yaşlandırma işlem basamaklarının (dubleks yaşlandırma gibi) oldukça etkili olduğu görülmüştür [2]. Ti-15Mo alaşımının yaşlandırma sıcaklığına 5°C/dk gibi bir ısıtma hızıyla ısıtıldığı çalışmada, ω fazının α fazı oluşmadan önce çözüldüğünü gözlemlenmiştir [6]. Öte yandan, daha yavaş bir ısıtma hızı olan 1,9°C/dk gibi bir ısıtma hızında ise α ve ω fazlarının bir arada oluştuğu bir sıcaklık aralığı tespit edilmiştir.…”
Section: Introductionunclassified