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The ratio of the transverse strain to the longitudinal strain is called Poisson's ratio.
This lateral shrinkage constitutes a transverse strain that is equal to the change in the width divided by the original width.
The transverse strain is monitored with a specially designed video extensometer.
Transverse strain E22 is particularly dominant which is related to the matrix cracking as the fatigue failure mode.
The fundamental effects of transverse strain is evaluated for most of the considered analyses.
Consequently, the modelled transverse strain response depends on a wide variety of structural and mechanical parameters.
In particular, measurements were made of the phase shift between axial strain and transverse strain.
The transverse strain of the carbon fibers was analyzed using a 2-D FEM model.
Axial and transverse strain measurements were made along each fibre in the composite as the load was progressively increased using a small X-ray spot size.
The transverse strain behavior is linked to discrete deformation mechanisms of the fibrous mat structure including fiber alignment, fiber bending, and network consolidation.
The paper presents construction and performance of cantilever micro-dilatometer designed to directly monitor transverse strain in electroactive polymer (EAP) specimens actuated by high voltage (HV) stimuli.
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