This paper introduces the latest research and development of the Linear Matching Method (LMM) on the creep fatigue damage assessment of components subjected to high temperature and cyclic load conditions. The method varies from existing rule-based approaches in both the ASME Boiler and Pressure Vessel Code (NH) and the UK R5 high temperature assessment procedure, where the creep behavior/creep damage and cyclic plastic response /fatigue damage are analyzed separately. In support to these the extended Direct Steady Cycle Analysis (eDSCA) has been proposed to provide a more accurate description of the potentially dangerous interaction between creep and cyclic plasticity during the load cycle, and hence is able to accurately address creep enha...
This paper presents a creep-fatigue life assessment of a cruciform weldment made of the steel AISI t...
In this paper, the extended Direct Steady Cyclic Analysis method (eDSCA) within the Linear Matching ...
A number of methods for predicting the creep-fatigue life of P91 steel are presented and discussed. ...
This paper introduces the latest research and development of the Linear Matching Method (LMM) on the...
This paper presents a novel direct method, within the Linear Matching Method (LMM) framework, for th...
This paper describes a new Linear Matching Method (LMM) technique for the direct evaluation of cycli...
This paper describes a new extension of the Linear Matching Method (LMM) for the direct evaluation o...
The accurate assessment of creep-fatigue interaction is an important issue for industrial components...
As the energy demand increases the power industry has to enhance both efficiency and environmental s...
This paper extends the previous Linear Matching Method (LMM) to allow for the evaluation of plastic,...
In this paper, the extended Direct Steady Cyclic Analysis method (eDSCA) within the Linear Matching ...
Creep-fatigue and creep-ratcheting life assessment of an SS304 weldolet considering full creep-cycli...
This paper presents a creep-fatigue life assessment of a typical hydrogenation reactor made of 2.25C...
In an accompanying paper, the application of the linear matching method to the high temperature life...
With the development of nuclear engineering, there is an increasing demand for structural integrity ...
This paper presents a creep-fatigue life assessment of a cruciform weldment made of the steel AISI t...
In this paper, the extended Direct Steady Cyclic Analysis method (eDSCA) within the Linear Matching ...
A number of methods for predicting the creep-fatigue life of P91 steel are presented and discussed. ...
This paper introduces the latest research and development of the Linear Matching Method (LMM) on the...
This paper presents a novel direct method, within the Linear Matching Method (LMM) framework, for th...
This paper describes a new Linear Matching Method (LMM) technique for the direct evaluation of cycli...
This paper describes a new extension of the Linear Matching Method (LMM) for the direct evaluation o...
The accurate assessment of creep-fatigue interaction is an important issue for industrial components...
As the energy demand increases the power industry has to enhance both efficiency and environmental s...
This paper extends the previous Linear Matching Method (LMM) to allow for the evaluation of plastic,...
In this paper, the extended Direct Steady Cyclic Analysis method (eDSCA) within the Linear Matching ...
Creep-fatigue and creep-ratcheting life assessment of an SS304 weldolet considering full creep-cycli...
This paper presents a creep-fatigue life assessment of a typical hydrogenation reactor made of 2.25C...
In an accompanying paper, the application of the linear matching method to the high temperature life...
With the development of nuclear engineering, there is an increasing demand for structural integrity ...
This paper presents a creep-fatigue life assessment of a cruciform weldment made of the steel AISI t...
In this paper, the extended Direct Steady Cyclic Analysis method (eDSCA) within the Linear Matching ...
A number of methods for predicting the creep-fatigue life of P91 steel are presented and discussed. ...