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
Main Authors: Bagmutov, V. P., Vodop’yanov, V. I., Zakharov, I. N., Denisevich, D. S.
Format: Journal Article
Language:English
Published: Moscow 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.
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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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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