Published April 1999 | Version v1
Journal article

An investigation of the fatigue and fracture behavior of a Nb-12Al-44Ti-1.5Mo intermetallic alloy

  • 1. Ohio State Univ., Columbus, OH (United States). Dept. of Materials Science and Engineering
  • 2. Univ. of Akron, OH (United States). Dept. of Mechanical Engineering
  • 3. General Electric Aircraft Engines, Cincinnati, OH (United States)

Description

This article presents the results of a study of the fatigue and fracture behavior of a damage-tolerant Nb-12Al-44Ti-1.5Mo alloy. This partially ordered B2 + orthorhombic intermetallic alloy is shown to have attractive combinations of room-temperature ductility (11 to 14 pct), fracture toughness (60 to 92 MPa√m), and comparable fatigue crack growth resistance to IN718, Ti-6Al-4V, and pure Nb at room temperature. The studies show that tensile deformation in the Nb-12Al-44Ti-1.5Mo alloy involves localized plastic deformation (microplasticity via slip-band formation) which initiates at stress levels that are significantly below the uniaxial yield stress (∼9.6 pct of the 0.2 pct offset yield strength (YS)). The onset of bulk yielding is shown to correspond to the spread of microplasticity completely across the gage sections of the tensile specimen. Fatigue crack initiation is also postulated to occur by the accumulation of microplasticity (coarsening of slip bands). Subsequent fatigue crack growth then occurs by the unzipping of cracks along slip bands that form ahead of the dominant crack tip. The proposed mechanism of fatigue crack growth is analogous to the unzipping crack growth mechanism that was suggested originally by Neumann for crack growth in single-crystal copper. Slower near-threshold fatigue crack growth rates at 750 C are attributed to the shielding effects of oxide-induced crack closure. The fatigue and fracture behavior are also compared to those of pure Nb and emerging high-temperature niobium-based intermetallics

Additional details

Publishing Information

Journal Title
Metallurgical and Materials Transactions. A, Physical Metallurgy and Materials Science
Journal Volume
30
Journal Issue
4
Journal Page Range
p. 1025-1038
ISSN
1073-5623
CODEN
MMTAEB

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
30038602
Subject category
S36: MATERIALS SCIENCE;
Descriptors DEI
ALUMINIUM ALLOYS; CORRELATIONS; CRACK PROPAGATION; FATIGUE; FRACTURE PROPERTIES; INTERMETALLIC COMPOUNDS; MOLYBDENUM ALLOYS; NIOBIUM ALLOYS; PLASTICITY; TITANIUM ALLOYS
Descriptors DEC
ALLOYS; MECHANICAL PROPERTIES; TRANSITION ELEMENT ALLOYS