International audienceIn advanced engineering alloys where inclusions and pores are minimized during processing, the initiation of cracks due to cyclic loading shifts to intrinsic microstructural features. Criteria for the identification of crack initiation sites, defined using elastic-plastic loading parameters and twin boundary length, have been developed and applied to experimental datasets following cyclic loading. The criteria successfully quantify the incidence of experimentally observed cracks. Statistical microstructural volume elements are defined using a convergence approach for two nickel-base superalloys, IN100 and René 88DT. The material element that captures the fatigue crack-initiating features in René 88DT is smaller than IN...
An integrated experimental, characterisation and computational crystal plasticity study of cyclic pl...
International audienceNon-metallic inclusions (NMIs) and slip bands parallel to and slightly offset ...
The simulation and design of advanced materials for fatigue resistance requires an understanding of ...
In this work stage I crack initiation in polycrystalline nickel-based superalloys is investigated by...
In this work stage I crack initiation in polycrystalline nickel-based superalloys is investigated by...
The study of fatigue in metals, and fatigue initiation specifically, lends itself to analysis via an...
Fatigue tests under high cycle fatigue loading conditions were performed for Haynes 282® superalloy ...
Fatigue is the life limiting property of polycrystalline nickel-base superalloys used in turbine dis...
Fatigue crack initiation in polycrystalline materials can be attributed to various mechanistic and m...
The study of fatigue in metals, and fatigue initiation specifically, lends itself to analysis via an...
Fatigue crack formation and early growth is significantly influenced by microstructural attributes s...
Effects of unimodal secondary γ′ size and grain orientation on fatigue crack initiation and early cr...
The fatigue behavior of the polycrystalline nickel-based superalloy René 88 DT has been investigated...
The fatigue behavior of the polycrystalline nickel-based superalloy René 88 DT has been investigated...
Gas turbine engines are an important part of power generation in modern society, especially in the f...
An integrated experimental, characterisation and computational crystal plasticity study of cyclic pl...
International audienceNon-metallic inclusions (NMIs) and slip bands parallel to and slightly offset ...
The simulation and design of advanced materials for fatigue resistance requires an understanding of ...
In this work stage I crack initiation in polycrystalline nickel-based superalloys is investigated by...
In this work stage I crack initiation in polycrystalline nickel-based superalloys is investigated by...
The study of fatigue in metals, and fatigue initiation specifically, lends itself to analysis via an...
Fatigue tests under high cycle fatigue loading conditions were performed for Haynes 282® superalloy ...
Fatigue is the life limiting property of polycrystalline nickel-base superalloys used in turbine dis...
Fatigue crack initiation in polycrystalline materials can be attributed to various mechanistic and m...
The study of fatigue in metals, and fatigue initiation specifically, lends itself to analysis via an...
Fatigue crack formation and early growth is significantly influenced by microstructural attributes s...
Effects of unimodal secondary γ′ size and grain orientation on fatigue crack initiation and early cr...
The fatigue behavior of the polycrystalline nickel-based superalloy René 88 DT has been investigated...
The fatigue behavior of the polycrystalline nickel-based superalloy René 88 DT has been investigated...
Gas turbine engines are an important part of power generation in modern society, especially in the f...
An integrated experimental, characterisation and computational crystal plasticity study of cyclic pl...
International audienceNon-metallic inclusions (NMIs) and slip bands parallel to and slightly offset ...
The simulation and design of advanced materials for fatigue resistance requires an understanding of ...