This paper outlines a science-based explanation of damage and reliability of critical components and structures within the second law of thermodynamics. The approach relies on the fundamentals of irreversible thermodynamics, specifically the concept of entropy generation as an index of degradation and damage in materials. All damage mechanisms share a common feature, namely energy dissipation. Dissipation, a fundamental measure for irreversibility in a thermodynamic treatment of non-equilibrium processes, is quantified by entropy generation. An entropic-based damage approach to reliability and integrity characterization is presented and supported by experimental validation. Using this theorem, which relates entropy generation to dissipative...
Material degradation occurs as a result of irreversible dissipative processes and forces. Various fo...
Damage mechanics describes thedegradation process that takes place in materials and structures. Trad...
Fatigue damage is an irreversible progression which can be represented by the entropy increase, and ...
This dissertation demonstrates an explanation of damage and reliability of critical components and s...
This paper presents the entropic damage indicators for metallic material fatigue processes obtained ...
This paper presents a scientific basis for the description of the causes of damage within an irrever...
This paper presents a scientific basis for the description of the causes of damage within an irrever...
AbstractThis paper presents an experimental approach to fatigue damage in metals based on thermodyna...
In this paper we describe the potential of employing the concept of thermodynamic entropy generation...
Traditionally fatigue, fracture, damage mechanics are predictions are based on empirical curve fitti...
Although assumed to be identical, manufactured components always present some variability in their p...
AbstractThis paper presents an experimental approach to fatigue damage in metals based on thermodyna...
ABSTRACT: The entropy production is a non-negative quantity based on irreversible thermodynamics and...
Material degradation occurs as a result of irreversible dissipative processes and forces. Various fo...
Manufacture transforms raw materials into finished components. Ageing and degradation of components,...
Material degradation occurs as a result of irreversible dissipative processes and forces. Various fo...
Damage mechanics describes thedegradation process that takes place in materials and structures. Trad...
Fatigue damage is an irreversible progression which can be represented by the entropy increase, and ...
This dissertation demonstrates an explanation of damage and reliability of critical components and s...
This paper presents the entropic damage indicators for metallic material fatigue processes obtained ...
This paper presents a scientific basis for the description of the causes of damage within an irrever...
This paper presents a scientific basis for the description of the causes of damage within an irrever...
AbstractThis paper presents an experimental approach to fatigue damage in metals based on thermodyna...
In this paper we describe the potential of employing the concept of thermodynamic entropy generation...
Traditionally fatigue, fracture, damage mechanics are predictions are based on empirical curve fitti...
Although assumed to be identical, manufactured components always present some variability in their p...
AbstractThis paper presents an experimental approach to fatigue damage in metals based on thermodyna...
ABSTRACT: The entropy production is a non-negative quantity based on irreversible thermodynamics and...
Material degradation occurs as a result of irreversible dissipative processes and forces. Various fo...
Manufacture transforms raw materials into finished components. Ageing and degradation of components,...
Material degradation occurs as a result of irreversible dissipative processes and forces. Various fo...
Damage mechanics describes thedegradation process that takes place in materials and structures. Trad...
Fatigue damage is an irreversible progression which can be represented by the entropy increase, and ...