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The shear viscosity of carbon fibre suspension and its application for fibre length measurement (2015)
Journal Article
Jiang, G., Turner, T. A., & Pickering, S. J. (2016). The shear viscosity of carbon fibre suspension and its application for fibre length measurement. Rheologica Acta, 55(1), 1-10. https://doi.org/10.1007/s00397-015-0890-7

The viscosity of short carbon fibre suspensions in glycerol aqueous solution was measured using a bespoke vane-in-cup viscometer, where the carbon fibre has an aspect ratio from 450 to 2209. In the semi-concentrated regime, nL3 ranging from 20 to 440... Read More about The shear viscosity of carbon fibre suspension and its application for fibre length measurement.

Recycling supercapacitors based on shredding and mild thermal treatment (2015)
Journal Article
Jiang, G., & Pickering, S. J. (2016). Recycling supercapacitors based on shredding and mild thermal treatment. Waste Management, 48, 465-470. https://doi.org/10.1016/j.wasman.2015.10.027

Supercapacitors are widely used in electric and hybrid vehicles, wind farm and low-power equipment due to their high specific power density and huge number of charge–discharge cycles. Waste supercapacitors should be recycled according to EU directive... Read More about Recycling supercapacitors based on shredding and mild thermal treatment.

Structure–property relationship of recycled carbon fibres revealed by pyrolysis recycling process (2015)
Journal Article
Jiang, G., & Pickering, S. J. (2015). Structure–property relationship of recycled carbon fibres revealed by pyrolysis recycling process. Journal of Materials Science, 51(4), 1949-1958. https://doi.org/10.1007/s10853-015-9502-2

The structure-property relationship for recycled carbon fibres is investigated by characterisation of the structure changes induced by the pyrolysis recycling process. Two important factors influencing the properties of recycled carbon fibres are ide... Read More about Structure–property relationship of recycled carbon fibres revealed by pyrolysis recycling process.