Hydrogen influence on defect structure and mechanical properties of EBM Ti-6Al-4V / R. S. Laptev, V. N. Kudiyarov, N. S. Pushilina

Уровень набора: Materials Today: ProceedingsОсновной Автор-лицо: Laptev, R. S., physicist, specialist in the field of non-destructive testing, Associate Scientist of Tomsk Polytechnic University, Assistant, Candidate of Sciences, 1987-, Roman SergeevichАльтернативный автор-лицо: Kudiyarov, V. N., physicist, Engineer of Tomsk Polytechnic University, 1990-, Victor Nikolaevich;Pushilina, N. S., physicist, associate Professor of Tomsk Polytechnic University, candidate of physico-mathematical Sciences, head of laboratory, 1984-, Natalia SergeevnaКоллективный автор (вторичный): Национальный исследовательский Томский политехнический университет, Инженерная школа ядерных технологий, Отделение экспериментальной физикиЯзык: английский.Резюме или реферат: The defect structure and mechanical properties of the samples manufactured from Ti-6Al-4V powder by electron beam melting (EBM) before and after hydrogenation was studied. It has been established that hydrogenation of EBM titanium alloy to a concentration of 470?ppm leads to the formation of titanium ?-hydride, the volume content of which is 2.2%. A further increase in the concentration of hydrogen to 650?ppm is accompanied by a slight increase in the content of the hydride phase, while the proportion of the ? phase of titanium increases (to 4.9%). When the hydrogen content is 900?ppm, the fraction of ? hydride decreases and the fraction of the beta phase decreases to 4.2%, and the formation of the hydride phase ? is observed. The introduction of hydrogen leads to a decrease in the wear and an increase in the hardness of EBM Ti-6Al-4V samples. This circumstance is due to the microstructure refinement under the action of hydrogen and the formation of secondary phase precipitates. The hydrogen content increases, the dislocation density and the concentration of hydrogen-vacancy complexes linearly increase, which indicates that hydrogen not only actively interacts with existing defects but also induces the formation of new defects..Примечания о наличии в документе библиографии/указателя: [References: 23 tit.].Аудитория: .Тематика: электронный ресурс | труды учёных ТПУ | electron beam melting | defects | titanium alloy | hydrogen | positron | электронно-лучевая плавка | дефекты | титановые сплавы | водород | позитроны Ресурсы он-лайн:Щелкните здесь для доступа в онлайн
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[References: 23 tit.]

The defect structure and mechanical properties of the samples manufactured from Ti-6Al-4V powder by electron beam melting (EBM) before and after hydrogenation was studied. It has been established that hydrogenation of EBM titanium alloy to a concentration of 470?ppm leads to the formation of titanium ?-hydride, the volume content of which is 2.2%. A further increase in the concentration of hydrogen to 650?ppm is accompanied by a slight increase in the content of the hydride phase, while the proportion of the ? phase of titanium increases (to 4.9%). When the hydrogen content is 900?ppm, the fraction of ? hydride decreases and the fraction of the beta phase decreases to 4.2%, and the formation of the hydride phase ? is observed. The introduction of hydrogen leads to a decrease in the wear and an increase in the hardness of EBM Ti-6Al-4V samples. This circumstance is due to the microstructure refinement under the action of hydrogen and the formation of secondary phase precipitates. The hydrogen content increases, the dislocation density and the concentration of hydrogen-vacancy complexes linearly increase, which indicates that hydrogen not only actively interacts with existing defects but also induces the formation of new defects.

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