Mechanical behaviour of aluminium-lithium alloys

NE Prasad, AA Gokhale, PR Rao - Sadhana, 2003 - Springer
Aluminium-lithium alloys hold promise of providing a breakthrough response to the crying
need for lightweight alloys for use as structurals in aerospace applications. Considerable …

Microstructural extremes and the transition from fatigue crack initiation to small crack growth in a polycrystalline nickel-base superalloy

J Miao, TM Pollock, JW Jones - Acta Materialia, 2012 - Elsevier
The fatigue behavior of the nickel-base superalloy René 88 DT has been investigated at
room temperature with fully reversed loading in an ultrasonic fatigue apparatus operating at …

[PDF][PDF] Fatigue behavior in nickel-based superalloys: A literature review

L Garimella, PK Liaw, DL Klarstrom - Jom, 1997 - academia.edu
Superalloys are alloys developed for elevated-temperature service; the term was first used
shortly after World War II to describe a group of alloys developed for use in …

A crystal plasticity-based micromechanical model for precipitate shearing: Application to cyclic softening of polycrystalline Ni-based superalloys

S Chaudhary, B Sudhalkar, N Pai, M Palit… - International Journal of …, 2025 - Elsevier
Cyclic deformation of polycrystalline Ni-based superalloys leads to cyclic hardening
followed by softening, in terms of the mechanical response. A micromechanical constitutive …

Stress response and microstructural evolution of nickel-based superalloys during low cycle fatigue: Physics-based modelling of cyclic hardening and softening

FD León-Cázares, F Monni, T Jackson… - International Journal of …, 2020 - Elsevier
Low cycle fatigue is one of the main life limiting factors in gas turbine discs. The plastic
deformation behaviour that leads to crack initiation is not fully understood, and …

Fatigue strength of Inconel 718 at elevated temperatures

Kawagoishi, Chen, Nisitani - Fatigue & Fracture of Engineering …, 2000 - Wiley Online Library
The strength of Inconel 718 under rotary bending fatigue is investigated at room
temperature, 300, 500 and 600° C in air. It is found that in the long‐life region, the fatigue …

Low cycle fatigue behavior of a multiphase microalloyed medium carbon steel: comparison between ferrite–pearlite and quenched and tempered microstructures

S Sankaran, VS Sarma, KA Padmanabhan - Materials Science and …, 2003 - Elsevier
In an attempt to improve fatigue and fracture resistance, a multiphase (ferrite–bainite–
martensite) microstructure was developed in a V-bearing medium carbon microalloyed steel …

Low cycle fatigue behavior of Ti alloy IMI 834 at room temperature

N Singh, V Singh - Materials Science and Engineering: A, 2002 - Elsevier
Low cycle fatigue behavior of the Ti alloy IMI 834 was studied, for a bimodal microstructure
with≈ 14 vol.% primary α (αp) in the matrix of transformed β, at different total strain …

Cyclic deformation and fatigue behaviour of 7Mo–0.5 N superaustenitic stainless steel—stress–strain relations and fatigue life

S Heino, B Karlsson - Acta materialia, 2001 - Elsevier
The cyclic deformation characteristics and fatigue behaviour of a superaustenitic stainless
steel with composition Fe–25Cr–22Ni–7.6 Mo–3Mn–0.46 N (wt%) have been investigated …

Effects of temperature and strain range on fatigue cracking behavior in Hastelloy X

HU Hong, IS Kim, BG Choi, HW Jeong, CY Jo - Materials Letters, 2008 - Elsevier
The low cycle fatigue tests of Ni-base superalloy Hastelloy X have been carried out in the
temperature range of 650–870° C with various total strain ranges. A change of slope in the …