This paper further develops the conventional Weibull/weakest-link model by incorporating the within-fiber diameter variation. This is necessary for fibers with considerable geometrical irregularities, such as the wool and other animal fibers. The strength of wool fibers has been verified to follow this modified Weibull/weakest-link distribution. In addition, the modified Weibull model can predict the gauge length effect more accurately than the conventional model
This thesis describes a new model of the behaviour of staple fibre yarns under longitudinal extensio...
The jute fiber is one of the strongest lignocellulosic fibers with applications ranging from simple ...
SUMMARY: Si-Zr-C-O ceramic fibers were evaluated for deriving the Weibull parameters of high accura...
This work investigates the tensile behaviour of non-uniform fibres and fibrous composites. Wool fibr...
The application of Weibull theory to the analysis of experimental data obtained from the tensile tes...
There is growing evidence that the standard Weibull strength distribution is not always accurate for...
It is shown that tensile strength of cellulose fibers with the same length follow Weibull distributi...
International audienceFibre properties are used for estimating the damage and strength behaviour of ...
The maximum strain experienced by the thinnest segment of a non-uniform fiber governs fiber breakage...
This study demonstrates the effect of weak-link scaling on the tensile strength of bamboo fibers. Th...
Environmental aspects and economical advantages are motivating the use of natural fiber as reinforce...
Fiber irregularities are inherent to textile fibers, natural fibers in particular. This series of pa...
In this paper, the effect of fiber dimensional irregularities on the tensile behavior of fiber bundl...
To further our study of the linear tensile behavior of irregular fibers, in this paper we examine th...
The large scatter observed in the fracture strengths of coir fibres ranging in length from 0·001 m t...
This thesis describes a new model of the behaviour of staple fibre yarns under longitudinal extensio...
The jute fiber is one of the strongest lignocellulosic fibers with applications ranging from simple ...
SUMMARY: Si-Zr-C-O ceramic fibers were evaluated for deriving the Weibull parameters of high accura...
This work investigates the tensile behaviour of non-uniform fibres and fibrous composites. Wool fibr...
The application of Weibull theory to the analysis of experimental data obtained from the tensile tes...
There is growing evidence that the standard Weibull strength distribution is not always accurate for...
It is shown that tensile strength of cellulose fibers with the same length follow Weibull distributi...
International audienceFibre properties are used for estimating the damage and strength behaviour of ...
The maximum strain experienced by the thinnest segment of a non-uniform fiber governs fiber breakage...
This study demonstrates the effect of weak-link scaling on the tensile strength of bamboo fibers. Th...
Environmental aspects and economical advantages are motivating the use of natural fiber as reinforce...
Fiber irregularities are inherent to textile fibers, natural fibers in particular. This series of pa...
In this paper, the effect of fiber dimensional irregularities on the tensile behavior of fiber bundl...
To further our study of the linear tensile behavior of irregular fibers, in this paper we examine th...
The large scatter observed in the fracture strengths of coir fibres ranging in length from 0·001 m t...
This thesis describes a new model of the behaviour of staple fibre yarns under longitudinal extensio...
The jute fiber is one of the strongest lignocellulosic fibers with applications ranging from simple ...
SUMMARY: Si-Zr-C-O ceramic fibers were evaluated for deriving the Weibull parameters of high accura...