Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/105444
Title: Computational analysis of FRP tapered utility poles
Authors: Stewart, Christian
Muscat, Martin
Camilleri, Duncan
Ellul Grech, Brian
Keywords: Fibrous composites -- Design and construction
Glass-reinforced plastics
Glass fibers
Poles (Engineering) -- Design and construction
Winding machines
Issue Date: 2022
Publisher: EUROSIS-ETI
Citation: Stewart C., Muscat M., Camilleri D., Ellul B. (2022). Computational analysis of FRP tapered utility poles. EUROSIS, Ireland. 59–73.
Abstract: Utility poles are fabricated from glass fibre-reinforced polymers (GFRP) using filament winding (FW). Available codes of standards do not provide guidance on how both the structural performance and manufacturing efficiency of GFRP poles can be improved. This paper uses a computational approach to investigate which pole design parameters improve these issues. Through a parametric study, it was determined that both the winding time and amount of material used in the FW process to fully enclose a pole are reduced when winding the fibres closer to the hoop direction. Using a more tapered mandrel and a wider comb reduced the amount of material and winding time required, respectively. The material overlap was reduced by using lower winding angles (i.e. closer to pole axis) and narrower comb widths. However, although such procedural settings enhance the manufacturing efficiency, they can be detrimental to the structural performance. This paper demonstrates how a trade-off between structural performance and manufacturing cost can be achieved by the pole designer.
URI: https://www.um.edu.mt/library/oar/handle/123456789/105444
Appears in Collections:Scholarly Works - FacEngME

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