The role of oxygen in enhanced fatigue cracking in an advanced Ni-based superalloy for turbine disc application has been evaluated in fatigue crack initiation and propagation stages along with static oxidation tests. It is found that the grain boundary oxide intrusion has a layered structure. The microstructure- and deformation-dependent grain boundary oxidation dominates the fatigue crack initiation and early propagation processes. As the crack propagates, this contribution arising from oxidation damage may gradually be overtaken by dynamic embrittlement processes until the mechanical damage outstrips the oxygen-related damage, resulting in a transition from intergranular to transgranular crack propagation.</p
Under high temperature and stress (as in the front of the crack tip) oxygen can diffuse to the grain...
Ni-base superalloys have for decades been studied with regard to environmentally influenced intergra...
The combined effects of environment (oxidation) and mechanical load (fatigue) that control crack pro...
The role of oxygen in enhanced fatigue cracking in an advanced Ni-based superalloy for turbine disc ...
Powder metallurgy Ni-based superalloys are widely used for aeroengine turbine disc application due t...
Effects of oxygen-related damage (i.e. oxidation and dynamic embrittlement) on fatigue crack propaga...
Powder metallurgy Ni-based superalloys are widely used for aeroengine turbine disc application due t...
Fatigue tests have been conducted on an advanced disc Ni-based superalloy [low solvus, high refracto...
Oxygen induced crack growth is a serious concern for the performance of Ni-base superalloys. These a...
The present paper summarizes experimental work to identify the mechanisms of dwell-time cracking dur...
The present paper summarizes experimental work to identify the mechanisms of dwell-time cracking dur...
Oxygen induced crack growth is a serious concern for the performance of Ni-base superalloys. These a...
Fatigue crack initiation and propagation behaviour in subsolvus heat treated turbine disc alloy N18 ...
Ni-base superalloys have for decades been studied with regard to environmentally influenced intergra...
Advanced microscopy characterisation and numerical modelling have been carried out to investigate ox...
Under high temperature and stress (as in the front of the crack tip) oxygen can diffuse to the grain...
Ni-base superalloys have for decades been studied with regard to environmentally influenced intergra...
The combined effects of environment (oxidation) and mechanical load (fatigue) that control crack pro...
The role of oxygen in enhanced fatigue cracking in an advanced Ni-based superalloy for turbine disc ...
Powder metallurgy Ni-based superalloys are widely used for aeroengine turbine disc application due t...
Effects of oxygen-related damage (i.e. oxidation and dynamic embrittlement) on fatigue crack propaga...
Powder metallurgy Ni-based superalloys are widely used for aeroengine turbine disc application due t...
Fatigue tests have been conducted on an advanced disc Ni-based superalloy [low solvus, high refracto...
Oxygen induced crack growth is a serious concern for the performance of Ni-base superalloys. These a...
The present paper summarizes experimental work to identify the mechanisms of dwell-time cracking dur...
The present paper summarizes experimental work to identify the mechanisms of dwell-time cracking dur...
Oxygen induced crack growth is a serious concern for the performance of Ni-base superalloys. These a...
Fatigue crack initiation and propagation behaviour in subsolvus heat treated turbine disc alloy N18 ...
Ni-base superalloys have for decades been studied with regard to environmentally influenced intergra...
Advanced microscopy characterisation and numerical modelling have been carried out to investigate ox...
Under high temperature and stress (as in the front of the crack tip) oxygen can diffuse to the grain...
Ni-base superalloys have for decades been studied with regard to environmentally influenced intergra...
The combined effects of environment (oxidation) and mechanical load (fatigue) that control crack pro...