Characteristics of the stress intensity factor of a circumferential crack in a cylinder under radial temperature distribution, which can be regarded as linear, were investigated systematically. The simplified method previously developed by the authors enabled our systematical approach. The investigation was conducted to comprehend the previously reported fact on the stress intensity factor. That is, the stress intensity factor under a given linear temperature distribution tends to decrease monotonously as the crack becomes longer than a specific value. It was shown that this tendency was a fundamental characteristic of the stress intensity factor for the problem and it was concluded that the cause of this was moment redistribution due to th...
In this paper we analyze the stress intensity factor (SIF) of an inner-surface circumferential crack...
In this paper we analyze the stress intensity factor (SIF) of an inner-surface circumferential crack...
In this paper, mode I stress intensity factors (SIFs) are calculated numerically by finite element s...
Transient stress intensity factor of an axisymmetric circumferential crack in a finite-length, thin-...
Transient stress intensity factor of an axisymmetric circumferential crack in a finite-length, thin-...
A simplified equation to directly calculate the stress intensity factor of an arbitrarily located ci...
A simplified equation to directly calculate the stress intensity factor of an arbitrarily located ci...
Closed form stress intensity factor of an arbitrarily located inner-surface circumferential crack in...
Closed form stress intensity factor of an arbitrarily located inner-surface circumferential crack in...
In this paper, the stress intensity factor for a inner circumferential surface crack in a hollow cyl...
In this paper, the stress intensity factor for a inner circumferential surface crack in a hollow cy...
The normalized stress intensity factor (SIF) range of an inner-surface circumferential crack in a th...
The normalized stress intensity factor (SIF) range of an inner-surface circumferential crack in a th...
This paper presents a crack arrest depth analysis under cyclic thermal shock for an inner-surface ci...
The axisymmetric problem of a circumferentially cracked transversely isotropic hollow cylinder under...
In this paper we analyze the stress intensity factor (SIF) of an inner-surface circumferential crack...
In this paper we analyze the stress intensity factor (SIF) of an inner-surface circumferential crack...
In this paper, mode I stress intensity factors (SIFs) are calculated numerically by finite element s...
Transient stress intensity factor of an axisymmetric circumferential crack in a finite-length, thin-...
Transient stress intensity factor of an axisymmetric circumferential crack in a finite-length, thin-...
A simplified equation to directly calculate the stress intensity factor of an arbitrarily located ci...
A simplified equation to directly calculate the stress intensity factor of an arbitrarily located ci...
Closed form stress intensity factor of an arbitrarily located inner-surface circumferential crack in...
Closed form stress intensity factor of an arbitrarily located inner-surface circumferential crack in...
In this paper, the stress intensity factor for a inner circumferential surface crack in a hollow cyl...
In this paper, the stress intensity factor for a inner circumferential surface crack in a hollow cy...
The normalized stress intensity factor (SIF) range of an inner-surface circumferential crack in a th...
The normalized stress intensity factor (SIF) range of an inner-surface circumferential crack in a th...
This paper presents a crack arrest depth analysis under cyclic thermal shock for an inner-surface ci...
The axisymmetric problem of a circumferentially cracked transversely isotropic hollow cylinder under...
In this paper we analyze the stress intensity factor (SIF) of an inner-surface circumferential crack...
In this paper we analyze the stress intensity factor (SIF) of an inner-surface circumferential crack...
In this paper, mode I stress intensity factors (SIFs) are calculated numerically by finite element s...