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- W2966614507 abstract "The present research aims to investigate the mechanical, physical, and tribological properties of the filament wound Glass Fibre Reinforced Polymer (GFRP) composite pressure vessel as per ASTM standards. Here, the test coupons prepared from GFRP vessel are subjected to tensile, compression, flexural, and impact testing to investigate its mechanical properties. The physical properties are studied through density, ignition loss, and water absorption tests. The tribological study is carried out using the abrasive slurry erosion tester. The results obtained from the various mechanical testings are satisfactory and almost equal in strength with respect to metallic pressure vessels. In fact, the impact testing shows that the strength of the sea water treated sample increased considerably. The fractography study is conducted on the failed samples to study various mode of failure and in-depth understanding of the reasons for the failure in detail. The physical characterization elaborates the behaviour of the filament wound GFRP material under moisture environment and shows maximum 0.5% water absorption rate. The ignition loss study reveals about 95%-98% weight of ignition loss indicating perfect fibre to resin ratio and almost nil or least % of void content. The slurry erosion test results are within the expected range and maximum wear of 9.67% is recorded under extreme case. The overall study reveals that the presence of voids, non-uniform distribution of the fibre and the matrix have considerable impact on the outcomes of the mechanical properties. From the present study, we can conclude that the filament wound GFRP pressure vessel can be used in many applications since it is non-hydrophobic and better wear resistant, with several strength parameters which improved or remain unaltered under rigorous testing conditions." @default.
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- W2966614507 date "2019-08-07" @default.
- W2966614507 modified "2023-10-17" @default.
- W2966614507 title "Tribo-mechanical and physical characterization of filament wound glass/epoxy composites" @default.
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- W2966614507 doi "https://doi.org/10.1088/2053-1591/ab3685" @default.
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