A new superalloy, ATI 718Plus alloy (718Plus), has been developed to have a 55\ub0C higher temperature capability over the traditionally used alloy 718, while maintaining favourable processing characteristics and intrinsic raw material costs. The fatigue and dwell fatigue behaviour of four microstructural variations of 718Plus are evaluated and compared with Waspaloy: standard heat treated condition (HT1), standard heat treated condition with thermal exposure at 732\ub0C (1350\ub0F) for 1000 h (HT2), fine grain condition with a modified d phase (HT3) and fine grain overaged through modified heat treatment (HT4). Fatigue crack growth rate tests were performed at 649\ub0C (1200\ub0F) and 704\ub0C (1300\ub0F) under constant amplitude loading a...
The microstructure and fatigue performance of three sub-solvus heat treated nickel based disc supera...
Alloy 230 is a nickel-based superalloy that is a candidate material for heat exchangers in very high...
This project was initiated to further develop the understanding of high temperature fatigue and cree...
ATI 718Plus\uae alloy is a new, cast and wrought, Ni-base superalloy with a maximum use temperature ...
Four microstructural variants of ATI 718Plus\uae Alloy (718Plus) are produced via modified heat trea...
ATI Allvac has recently developed Allvac\uae 718Plus\u2122 (718Plus), a new class of nickel-base sup...
Fatigue crack growth rate (FCGR) and dwell-FCGR tests were conducted at 704C\ub0 in a vacuum environ...
It is well known that the introduction of sustained tensile loads during high-temperaturefatigue (dw...
In this study, the old and well-known alloy 718 is compared with the newly developed ATI (R) 718Plus...
It is well known that the introduction of sustained tensile loads during high-temperature fatigue (d...
AbstractThe influence of microstructure on the dwell fatigue crack growth behaviour of an advanced n...
The effect of short-term thermal exposure on microstructure and dwell-fatigue resistance of Ni-base ...
Alloy 718 is a precipitation hardening nickel base superalloy which was developed to provide high cr...
Alloy 718 is a precipitation hardening nickel base superalloy which was developed to provide high cr...
In this paper, the high cycle fatigue performance of solid solution state and aged Inconel 718 super...
The microstructure and fatigue performance of three sub-solvus heat treated nickel based disc supera...
Alloy 230 is a nickel-based superalloy that is a candidate material for heat exchangers in very high...
This project was initiated to further develop the understanding of high temperature fatigue and cree...
ATI 718Plus\uae alloy is a new, cast and wrought, Ni-base superalloy with a maximum use temperature ...
Four microstructural variants of ATI 718Plus\uae Alloy (718Plus) are produced via modified heat trea...
ATI Allvac has recently developed Allvac\uae 718Plus\u2122 (718Plus), a new class of nickel-base sup...
Fatigue crack growth rate (FCGR) and dwell-FCGR tests were conducted at 704C\ub0 in a vacuum environ...
It is well known that the introduction of sustained tensile loads during high-temperaturefatigue (dw...
In this study, the old and well-known alloy 718 is compared with the newly developed ATI (R) 718Plus...
It is well known that the introduction of sustained tensile loads during high-temperature fatigue (d...
AbstractThe influence of microstructure on the dwell fatigue crack growth behaviour of an advanced n...
The effect of short-term thermal exposure on microstructure and dwell-fatigue resistance of Ni-base ...
Alloy 718 is a precipitation hardening nickel base superalloy which was developed to provide high cr...
Alloy 718 is a precipitation hardening nickel base superalloy which was developed to provide high cr...
In this paper, the high cycle fatigue performance of solid solution state and aged Inconel 718 super...
The microstructure and fatigue performance of three sub-solvus heat treated nickel based disc supera...
Alloy 230 is a nickel-based superalloy that is a candidate material for heat exchangers in very high...
This project was initiated to further develop the understanding of high temperature fatigue and cree...