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A STUDY ON THE ULTIMATE LOAD BEARING CAPACITY OF CARBON FIBRE REINFORCED POLYMER TENSEGRITY SYSTEM IN A SUSPEN DOME
Structural stability is one ofthe major factorsconsidered for structural design. The integrity of carbon fiberreinforced polymer as a tensegrity system in a suspendome is investigated by employing a computational model with a span of 93m.ANSYS software was employed for the investigation. The load-displacement curve of the structure was studied to understand the ultimate load bearing capacity in comparison with steel cableusing Newton-Raphson and arc length methods. Parameters such as nodal displacement, stresses on the single reticulated layer and internal forces of thetension members that influencethe structures integrity were considered. Results show that despite the antistrophic nature of carbon fiberreinforced polymer it possessessimilar characteristics as steel cables.
A STUDY ON THE ULTIMATE LOAD BEARING CAPACITY OF CARBON FIBRE REINFORCED POLYMER TENSEGRITY SYSTEM IN A SUSPEN DOME
Structural stability is one ofthe major factorsconsidered for structural design. The integrity of carbon fiberreinforced polymer as a tensegrity system in a suspendome is investigated by employing a computational model with a span of 93m.ANSYS software was employed for the investigation. The load-displacement curve of the structure was studied to understand the ultimate load bearing capacity in comparison with steel cableusing Newton-Raphson and arc length methods. Parameters such as nodal displacement, stresses on the single reticulated layer and internal forces of thetension members that influencethe structures integrity were considered. Results show that despite the antistrophic nature of carbon fiberreinforced polymer it possessessimilar characteristics as steel cables.
A STUDY ON THE ULTIMATE LOAD BEARING CAPACITY OF CARBON FIBRE REINFORCED POLYMER TENSEGRITY SYSTEM IN A SUSPEN DOME
IfeOlorunOlofin (Autor:in) / Ronggui Liu (Autor:in)
2019
Aufsatz (Zeitschrift)
Elektronische Ressource
Unbekannt
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