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The results provide a better understanding of the behavior of composite tubes under internal pressure thereby making possible to improve design practices used in industry.
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This article discusses important aspects of the design of composite tubes manufactured by filament winding.
The joining of composite tube sections is best achieved using adhesive bonding.
For the long term use of the interference joint the viscoelastic behavior of the composite tube was also considered through the analytical model.
The results of a large experimental campaign concerning the mechanical behavior of SiC/SiC composites tubes under uniaxial and biaxial loadings (both tension torsion and tension-internal pressure) are presented.
Previously, this test set-up was employed to determine interlaminar fracture behavior of composite laminates [27].
This behavior of composite material is very similar to the hygric behavior of the same material.
Fig. 7. Thermal demagnetization behavior of composite IRMs imparted along three orthogonal directions.
Only Pluronic F127, a composition of composite hydrogel, was remained in the HK micelles, which would not affect in vitro release behavior of composite hydrogel.
An experimental investigation of the long-term creep behavior of fiber reinforced polymeric composite tubes subjected to flexural loading was performed.
In this paper, modal behaviors of composite thin-walled lenticular tubes (CTLTs) in free vibration and cantilever vibration are performed by comparing experimental with numerical outcome.
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