Filament Wound Composite Pressure Vessels and Pipes Subject to an Internal Pressure: An Experimental and Material Characterization Study

Author:

Ellul Brian1,Camilleri Duncan2,Grech Jana1,Muscat Martin2

Affiliation:

1. Department of Mechanical Engineering, Faculty of Engineering, University of Malta, Msida MSD 2080, Malta e-mail:

2. Associate Professor Department of Mechanical Engineering, Faculty of Engineering, University of Malta, Msida MSD 2080, Malta e-mail:

Abstract

This study presents an experimental testing regime conducted on filament wound composite pressure vessels (CPVs) made up of an asymmetric and unbalanced layup (chopped strand mat (CSM)/−82.7 deg/±54.3 deg) and subject to an internal pressure. Polyester reinforced with e-glass CSM and direct roving was used. The mechanical properties of the different lamina used in the test specimens were identified through a series of standardized tests. The evolution of strain and volume changes with respect to the applied pressure loading were recorded. The results also present a characterization of identifiable first-ply failure (FPF) loads based on strain evolution and volume changes, and monitors when ultimate failure occurs.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference20 articles.

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3. Lark, R. F., 1977, “Recent Advances in Lightweight, Filament-Wound Composite Pressure Vessel Technology,” Energy Technology Conference, Houston, TX, pp. 17–49.http://ntrs.nasa.gov/archive/nasa/casi.ntrs.nasa.gov/19770026321.pdf

4. Campbell, S., 2003, “CNG Transportation Utilizing Composite Pressure Vessels,” Offshore Technology Conference, Houston, TX, pp. 1995–1998.10.4043/15297-MS

5. Thionnet, A., Bunsell, A. R., Camara, S., and Allen, D. H., 2009, “A Simplified FE2 Model of Fibre Failure and Its Consequences Applied to the Design of Composite Pressure Vessels,” ICCM-17, Edinburgh, Scotland.http://www.iccm-central.org/Proceedings/ICCM17proceedings/Themes/Applications/COMPOSITE%20PRESSURE%20VESSELS/B2.1%20Bunsell.pdf

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