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Greatly enhanced cryogenic mechanical properties of short carbon fiber/polyethersulphone composites by graphene oxide coating
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Update time: 2016-03-02
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In order to employ polyethersulphone (PES) in cryogenic engineering field, its cryogenic mechanical performance should be examined and should also be improved to meet the high requirement for cryogenic engineering application. In this work, pure PES, graphene oxide (GO)/PES, short carbon fiber (SCF)/PES, GO/SCF/PES and GO-coated SCF/PES composites are prepared using the extrusion compounding and injection molding techniques. The tensile and flexural properties of these composites are systematically investigated at a typical cryogenic temperature (77 K). It is shown that the cryogenic mechanical properties are enhanced by the addition of GO, SCFs and coated-SCFs. In particular, the GO-coated SCF/PES composites display the greatly enhanced cryogenic mechanical properties with the highest values compared to other PES composites. In addition, it is exhibited that the cryogenic mechanical properties at 77 K of PES and its composites are far higher than those at room temperature (RT).

Composites Part A: Applied Science and Manufacturing

Available online 23 February 2016

 

Photographs and dimensions of tensile (left) and flexural (right) testing specimens. 

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