Thermal stability of the deformed surface layer of Ti–5Al–5Mo–5V–1.5Cu–Fe titanium alloy in nitrogen-containing medium
Saved in:
| Date: | 2021 |
|---|---|
| Main Authors: | I. M. Pohreliuk, S. M. Lavrys |
| Format: | Article |
| Language: | English |
| Published: |
2021
|
| Series: | Materials Science (Physicochemical mechanics of materials) |
| Online Access: | http://jnas.nbuv.gov.ua/article/UJRN-0001233549 |
| Tags: |
Add Tag
No Tags, Be the first to tag this record!
|
| Journal Title: | Library portal of National Academy of Sciences of Ukraine | LibNAS |
Institution
Library portal of National Academy of Sciences of Ukraine | LibNASSimilar Items
Producing of high-strength titanium alloy Ti–1.5Al–6.8Mo–4.5Fe by EBM method
by: S. V. Akhonin, et al.
Published: (2018)
by: S. V. Akhonin, et al.
Published: (2018)
Effect of microstructure, deformation mode and rate on mechanical behaviour of electron-beam melted Ti-6Al-4V and Ti-1.5Al-6.8Mo-4.5Fe alloys
by: O. M. Ivasishin, et al.
Published: (2018)
by: O. M. Ivasishin, et al.
Published: (2018)
Effect of microstructure, deformation mode and rate on mechanical behaviour of electron-beam melted Ti-6Al-4V and Ti-1.5Al-6.8Mo-4.5Fe alloys
by: Ivasishin, O.M., et al.
Published: (2018)
by: Ivasishin, O.M., et al.
Published: (2018)
Structure and properties of sparsely-alloyed Ti–2. 8Al–5. 1Mo–4. 9Fe
by: V. A. Kostin, et al.
Published: (2022)
by: V. A. Kostin, et al.
Published: (2022)
Structural transformations at cooling sparsely-alloyed pseudo-β-titanium alloy Ti–2. 8Al–5. 1Mo–4. 9Fe
by: S. V. Akhonin, et al.
Published: (2021)
by: S. V. Akhonin, et al.
Published: (2021)
Influence of heat treatment on the structure and mechanical properties of sparsely-doped titanium alloy Ti–2. 8Al–5. 1Mo–4. 9Fe
by: S. V. Akhonin, et al.
Published: (2021)
by: S. V. Akhonin, et al.
Published: (2021)
Argon-arc welding of high-strength sparsely-doped pseudo-β-Titanium Alloy Ti–2. 8Al–5. 1Mo–4. 9Fe
by: S. V. Akhonin, et al.
Published: (2021)
by: S. V. Akhonin, et al.
Published: (2021)
5,6-Dihydro-(1,2,4)triazolo(1,5-s)quinazolines. Message 3. Synthesis of 2-aryl-5-trichloromethyl-5,6-dihydro(1,2,4)triazolo(1,5-s)quinazolines and their reactivity towards N-nucleophiles
by: S. V. Kholodnyak, et al.
Published: (2016)
by: S. V. Kholodnyak, et al.
Published: (2016)
Influence of the titanium on propensity of hot cracks formation and structure of Al – Cu5 alloy
by: V. H. Havryliuk, et al.
Published: (2011)
by: V. H. Havryliuk, et al.
Published: (2011)
Resistance butt welding of titanium aluminide g-TiAl with VT5 alloy
by: S. I. Kuchuk-Jatsenko, et al.
Published: (2018)
by: S. I. Kuchuk-Jatsenko, et al.
Published: (2018)
Structure and transport properties of the Fe0.5Ni0.5 composite
by: Ya. Khadzhai, et al.
Published: (2021)
by: Ya. Khadzhai, et al.
Published: (2021)
Influence of heat treatment on improvement of mechanical properties of welded joints of sparsely-doped titanium alloy Ti–2. 8Al–5. 1Mo–4. 9Fe
by: S. V. Akhonin, et al.
Published: (2022)
by: S. V. Akhonin, et al.
Published: (2022)
Двостадійний трикомпонентний синтез 6,11-діаза-1,5(2,5) -діоксазола-3(1,2)-бензенциклоундекафан-1⁴,5⁴-дикарбонітрилу
by: Мержиєвський, Д.О., et al.
Published: (2020)
by: Мержиєвський, Д.О., et al.
Published: (2020)
Hydrogen generation by hydrolysis of magnesium hydride composites with additions of ZrNi0,5Al1,5 and graphite
by: O. P. Kononiuk, et al.
Published: (2024)
by: O. P. Kononiuk, et al.
Published: (2024)
Физико-механические свойства сплавов 54,6Ni–11Fe–30Cr–3,5Nb–0,5Ti–0,4C и 58Ni–11Fe–30Cr–0,5Nb–0,5Ti в области низких температур
by: Семеренко, Ю.А., et al.
Published: (2018)
by: Семеренко, Ю.А., et al.
Published: (2018)
СИНТЕЗ 4-ГЕТАРИЛ-2-(ДИХЛОРОМЕТИЛ)-ПІРАЗОЛО[1,5-а][1,3,5]ТРИАЗИНІВ
by: Velihina, Yevgeniia, et al.
Published: (2020)
by: Velihina, Yevgeniia, et al.
Published: (2020)
Electronic transport and optical properties of Mo0.5W0.5Te2 single crystal
by: V. V. Marchenkov, et al.
Published: (2019)
by: V. V. Marchenkov, et al.
Published: (2019)
Synthesis and structure of complex phosphates Na3,5MII 0,5Fe1,5(PO4)3 (MII — Mg, Ni), obtained under condition of the crystallization of multicomponent self-fluxes
by: Yu. Strutynska, et al.
Published: (2021)
by: Yu. Strutynska, et al.
Published: (2021)
Synthesis and evaluation of the antiviral activity of 2-(dichloromethyl)pyrazolo|1,5-a||1,3,5|triazines
by: Ye. S. Velihina, et al.
Published: (2019)
by: Ye. S. Velihina, et al.
Published: (2019)
Синтез 7-арил-6,7-дигідротетразоло[1,5-a]піримідин-5(4H)-онів
by: Svitlichna, N. V., et al.
Published: (2014)
by: Svitlichna, N. V., et al.
Published: (2014)
Synthesis and N-alkylation of diethyl 4,7-dihydroazolo |1,5-a| pyrimidin-5,6-dicarboxylates
by: M. O. Kolosov, et al.
Published: (2015)
by: M. O. Kolosov, et al.
Published: (2015)
Interplay of hopping conductivity and superconductivity in magnetic superconductor RuSr2(Eu1.5Ce0.5)Cu2O10–δ
by: Yu. Beliayev, et al.
Published: (2020)
by: Yu. Beliayev, et al.
Published: (2020)
5,6-Дигідро-[1,2,4]триазоло[1,5-с]хіназоліни. Повідомлення 3. Синтез 5-трихлорометил- 2-арил-5,6-дигідро-[1,2,4]триазоло[1,5-с]хіназолінів і їх реакційна здатність по відношенню до N-нуклеофілів
by: Kholodnyak, S. V., et al.
Published: (2016)
by: Kholodnyak, S. V., et al.
Published: (2016)
5,6-Dihydro-|1,2,4|triazolo|1,5-s|quinazolines. Message 4. Spirocompounds with |1,2,4|triazolo|1,5-c|quinazolines moieties. The synthesis and spectral characteristics
by: S. V. Kholodnyak, et al.
Published: (2016)
by: S. V. Kholodnyak, et al.
Published: (2016)
Галогенирование 5-амино- и 5-оксопроизводных имидазо[4,5-b]пиридина
by: Смоляр, Н.Н., et al.
Published: (2006)
by: Смоляр, Н.Н., et al.
Published: (2006)
Influence of the Third Element on the Rate of Cellular Decomposition in Cu—5.69 at.% Ti Alloy
by: T. S. Hatsenko, et al.
Published: (2014)
by: T. S. Hatsenko, et al.
Published: (2014)
Синтез та N-алкілування діетил 4,7-дигідроазоло[1,5-a]піримідин-5,6-дикарбоксилатів
by: Kolosov, M. O., et al.
Published: (2015)
by: Kolosov, M. O., et al.
Published: (2015)
Mechanical properties of high-entropy alloy Al0.5CoCrCuFeNi in the different structural state in the temperature range 0.5–300 K
by: E. D. Tabachnikova, et al.
Published: (2017)
by: E. D. Tabachnikova, et al.
Published: (2017)
About the low-temperature attenuation of longitudinal ultrasound in Zr52.5Ti5Cu17.9Ni14.6Al10 bulk metallic glass
by: S. A. Bakaj, et al.
Published: (2012)
by: S. A. Bakaj, et al.
Published: (2012)
Magnetic state features of Mn1.4Fe0.6P0.5As0.5
by: M. Budzinski, et al.
Published: (2019)
by: M. Budzinski, et al.
Published: (2019)
5,6-Дигідро-[1,2,4]триазоло[1,5-с]хіназоліни. Повідомлення 4. Спіропохідні з [1,2,4]триазоло[1,5-с]хіназоліновим фрагментом. синтез та спектральні характеристики
by: Kholodnyak, S. V., et al.
Published: (2016)
by: Kholodnyak, S. V., et al.
Published: (2016)
The pressure effect on magnetic properties of YNi5, LaNi5 and CeNi5 compounds
by: G. E. Grechnev, et al.
Published: (2011)
by: G. E. Grechnev, et al.
Published: (2011)
Локалізація сайтів 5'-CG-3' , 5'-CNG-3' , 5'-GC-3' та 5'-GNC-3' у послідовностях мікроРНК
by: Галицький, В.А., et al.
Published: (2011)
by: Галицький, В.А., et al.
Published: (2011)
Дифузійне фазоутворення в нанорозмірних шаруватих плівкових композиціях Pt(15 нм)/Fe(15 нм) і (Pt(7,5 нм)/Fe(7,5 нм))₂ на підкладках SiO₂(100 нм)/Si(001)
by: Макогон, Ю.Н., et al.
Published: (2014)
by: Макогон, Ю.Н., et al.
Published: (2014)
Investigation of the electrical properties of systems Li0. 5–uNayLa0. 5TiO3 and Li0. 5–yNayLa0. 5•/Nb,Ta/2O6
by: S. D. Kobylianska, et al.
Published: (2013)
by: S. D. Kobylianska, et al.
Published: (2013)
Synthesis and properties of nanoparticles based on S/Fe3O4, S/Fe3-xCrxO4, S/Li0.5Fe1.5CrO4 – anode materials for lithium-ion batteries
by: S. M. Malovanyy, et al.
Published: (2017)
by: S. M. Malovanyy, et al.
Published: (2017)
Спектрофотометрические стандарты 6.5—8.5 звездной величины
by: Пантелеев, С.К.
Published: (1986)
by: Пантелеев, С.К.
Published: (1986)
5,6-Dihydro-(1,2,4) triazolo (1,5-s) quinazolines. Message 2. (5+1)-Cyclocondensation of (2-(3-aryl-1H-1,2,4-triazol-5-yl)phenyl) amines with aliphatic and aromatic ketones
by: S. V. Kholodnyak, et al.
Published: (2016)
by: S. V. Kholodnyak, et al.
Published: (2016)
Синтез та хімічні властивості 5-арил-4,7-дигідро-1,2,4-триазоло[1,5-a]піримідинів
by: Ліпсон, В.В., et al.
Published: (2011)
by: Ліпсон, В.В., et al.
Published: (2011)
Diffusive Phase Formation in the Nanosize Layer-by-Layer Film Compositions of Pt(15 nm)/Fe(15 nm) and (Pt(7.5 nm)/Fe(7.5 nm))2 on a SiO2(100 nm)/Si(001) Substrate
by: Yu. N. Makohon, et al.
Published: (2014)
by: Yu. N. Makohon, et al.
Published: (2014)
Similar Items
-
Producing of high-strength titanium alloy Ti–1.5Al–6.8Mo–4.5Fe by EBM method
by: S. V. Akhonin, et al.
Published: (2018) -
Effect of microstructure, deformation mode and rate on mechanical behaviour of electron-beam melted Ti-6Al-4V and Ti-1.5Al-6.8Mo-4.5Fe alloys
by: O. M. Ivasishin, et al.
Published: (2018) -
Effect of microstructure, deformation mode and rate on mechanical behaviour of electron-beam melted Ti-6Al-4V and Ti-1.5Al-6.8Mo-4.5Fe alloys
by: Ivasishin, O.M., et al.
Published: (2018) -
Structure and properties of sparsely-alloyed Ti–2. 8Al–5. 1Mo–4. 9Fe
by: V. A. Kostin, et al.
Published: (2022) -
Structural transformations at cooling sparsely-alloyed pseudo-β-titanium alloy Ti–2. 8Al–5. 1Mo–4. 9Fe
by: S. V. Akhonin, et al.
Published: (2021)