Background—The creep-fatigue properties of stainless steel 316 are of interest because of the wide use of this material in demanding service environments, such as the nuclear industry. Need—A number of models exist to describe creep-fatigue behaviours, but they are limited by the need to obtain specialized coefficients from a large number of experiments, which are time-consuming and expensive. Also, they do not generalise to other situations of temperature and frequency. There is a need for improved formulations for creep-fatigue, with coefficients that determinable directly from the existing and simple creep-fatigue tests and creep rupture tests. Outcomes—A unified creep-fatigue equation is proposed, based on an extension of the Cof...
Design codes, such as RCC-MRx and ASME III NH, for generation IV nuclear reactors use interaction di...
Abstract: Stainless steel has widely been used in various industrial fields because it has high corr...
Components of engineering structures that operate at high temperatures, such as jet engines, pressur...
Background—The creep-fatigue properties of stainless steel 316 are of interest because of the wide u...
Background—The creep-fatigue properties of stainless steel 316 are of interest because of the wide u...
AbstractThe austenitic stainless steel 316 is of current interest as structural material for the fut...
Creep-fatigue damage is caused by reversed loading at elevated temperature, which presents the inter...
The phenomena of creep and fatigue have each been thoroughly studied. More recently, attempts have ...
Background: Creep-fatigue phenomena are complex and difficult to model in ways that are useful from ...
Background: Creep-fatigue damage occurs under cyclic loading at elevated temperature. The existing ...
It is important to be able to predict the creep life of materials used in power plants and in aeroen...
Effects of dwell times and temperature on creep-fatigue behavior of stainless steels have been exami...
This paper describes a novel modelling process for creep crack growth prediction of a 316 stainless ...
Design codes, such as RCC-MRx and ASME III NH, for generation IV nuclear reactors use interaction di...
The cumulative creep-fatigue damage behavior of 316 stainless steel at 1500 F was experimentally est...
Design codes, such as RCC-MRx and ASME III NH, for generation IV nuclear reactors use interaction di...
Abstract: Stainless steel has widely been used in various industrial fields because it has high corr...
Components of engineering structures that operate at high temperatures, such as jet engines, pressur...
Background—The creep-fatigue properties of stainless steel 316 are of interest because of the wide u...
Background—The creep-fatigue properties of stainless steel 316 are of interest because of the wide u...
AbstractThe austenitic stainless steel 316 is of current interest as structural material for the fut...
Creep-fatigue damage is caused by reversed loading at elevated temperature, which presents the inter...
The phenomena of creep and fatigue have each been thoroughly studied. More recently, attempts have ...
Background: Creep-fatigue phenomena are complex and difficult to model in ways that are useful from ...
Background: Creep-fatigue damage occurs under cyclic loading at elevated temperature. The existing ...
It is important to be able to predict the creep life of materials used in power plants and in aeroen...
Effects of dwell times and temperature on creep-fatigue behavior of stainless steels have been exami...
This paper describes a novel modelling process for creep crack growth prediction of a 316 stainless ...
Design codes, such as RCC-MRx and ASME III NH, for generation IV nuclear reactors use interaction di...
The cumulative creep-fatigue damage behavior of 316 stainless steel at 1500 F was experimentally est...
Design codes, such as RCC-MRx and ASME III NH, for generation IV nuclear reactors use interaction di...
Abstract: Stainless steel has widely been used in various industrial fields because it has high corr...
Components of engineering structures that operate at high temperatures, such as jet engines, pressur...