Relation between the fracture laws and the fatigue life of a surface-hardened pseudo-α titanium alloy
The laws of fracture and fatigue life of the PT-3V pseudo-α titanium alloy subjected to surface hardening using electromechanical, ultrasonic, and combined treatment are studied. Fracture mechanisms and the structures of crack nucleation and growth zones are described using the results of metallogra...
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Published in: | Russian metallurgy Metally Vol. 2016; no. 7; pp. 663 - 668 |
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Pleiades Publishing
01-07-2016
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Abstract | The laws of fracture and fatigue life of the PT-3V pseudo-α titanium alloy subjected to surface hardening using electromechanical, ultrasonic, and combined treatment are studied. Fracture mechanisms and the structures of crack nucleation and growth zones are described using the results of metallographic and fractographic analysis of samples after fatigue tests. It is shown that the existence of a thin hardened layer on the sample surface changes the crack nucleation time and the state of fracture surface in the crack nucleation zone. This surface is characterized by signs of brittle or ductile fracture, which substantially affects the fatigue life of the sample. |
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AbstractList | The laws of fracture and fatigue life of the PT-3V pseudo-α titanium alloy subjected to surface hardening using electromechanical, ultrasonic, and combined treatment are studied. Fracture mechanisms and the structures of crack nucleation and growth zones are described using the results of metallographic and fractographic analysis of samples after fatigue tests. It is shown that the existence of a thin hardened layer on the sample surface changes the crack nucleation time and the state of fracture surface in the crack nucleation zone. This surface is characterized by signs of brittle or ductile fracture, which substantially affects the fatigue life of the sample. The laws of fracture and fatigue life of the PT-3V pseudo- alpha titanium alloy subjected to surface hardening using electromechanical, ultrasonic, and combined treatment are studied. Fracture mechanisms and the structures of crack nucleation and growth zones are described using the results of metallographic and fractographic analysis of samples after fatigue tests. It is shown that the existence of a thin hardened layer on the sample surface changes the crack nucleation time and the state of fracture surface in the crack nucleation zone. This surface is characterized by signs of brittle or ductile fracture, which substantially affects the fatigue life of the sample. |
Author | Vodop’yanov, V. I. Zakharov, I. N. Bagmutov, V. P. Denisevich, D. S. |
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References | BagmutovV. P.Vodop’yanovV. I.ZakharovI. N.GorunovA. I.DenisevichD. S.Effect of intense thermomechanical treatment on the structure and properties of titanium pseudo-α alloys during electromechanical treatmentRussian Metallurgy (Metally)20139773777 BagmutovV. P.ZakharovI. N.GorunovA. I.ZakharovaE. B.DenisevichD. S.KosogorovA. V.Combined surface hardening of steel and titanium alloys using electromechanical and ultrasonic treatmentsIzv. VolgGTU, Ser. Probl. Materialovedeniya, Svarki Prochnosti v Mashinostroenii201371096871 KalachevB. A.Mal’kovA. V.Physical Foundations of the Fracture of Titanium1983MoscowMetallurgiya KhesinY. D.ShcheglovN. N.Vodop’yanovV. I.Gur’evA. V.Influence of gas-saturated layer on the corrosion-mechanical strength of titanium alloysTitanium Alloys with Special Properties1982MoscowNauka136139 BiryukovV. P.PetrovaI. M.GadolinaI. V.Effect of laser facing on the fatigue resistance characteristicsMashinostroenie Inzh. Obrazovanie201325457 FedirkoV. N.Luk’yanenkoA. G.TrushV. S.Solid-solution hardening of the surface layer in titanium alloys: I. Effect on mechanical propertiesMetalloved. Term. Obrab. Met.201472733 KholopovY. V.ZinchenkoA. G.SavinykhA. A.Nonabrasive Ultrasonic Finishing Treatment of Metals1988LeningradLDNTP GopkaloA. P.RutkovskiiA. V.MironenkoV. I.Effect of surface vacuum–plasma treatment on the resistance to static and cyclic loading of a titanium alloyProbl. Prochnosti20071100106 BagmutovV. P.ParshevS. N.DudkinaN. G.ZakharovI. N.Electromechanical Treatment: Technological and Physical Principles, Properties, Implementation2003NovosibirskNauka GoryninI. V.ChechulinB. B.Titanium in Machine Building1990MoscowMashinostroenie V. P. Bagmutov (9397_CR1) 2003 I. V. Gorynin (9397_CR2) 1990 V. P. Bagmutov (9397_CR6) 2013; 9 Y. D. Khesin (9397_CR10) 1982 V. P. Biryukov (9397_CR4) 2013; 2 B. A. Kalachev (9397_CR9) 1983 V. P. Bagmutov (9397_CR8) 2013; 7 V. N. Fedirko (9397_CR5) 2014; 7 Y. V. Kholopov (9397_CR7) 1988 A. P. Gopkalo (9397_CR3) 2007; 1 |
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Snippet | The laws of fracture and fatigue life of the PT-3V pseudo-α titanium alloy subjected to surface hardening using electromechanical, ultrasonic, and combined... The laws of fracture and fatigue life of the PT-3V pseudo- alpha titanium alloy subjected to surface hardening using electromechanical, ultrasonic, and... |
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StartPage | 663 |
SubjectTerms | Chemistry and Materials Science Crack initiation Crack propagation Fatigue life Fatigue tests Fracture mechanics Fracturing Materials Science Metallic Materials Thin films Titanium base alloys |
Title | Relation between the fracture laws and the fatigue life of a surface-hardened pseudo-α titanium alloy |
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