With special attention towards the applicability to parallel computation or vectorization, a new and effective explicit computational approach for linear complementary formulations involving a conjugate gradient based projection methodology is proposed in this study for contact problems with Coulomb friction. The overall objectives are focused towards providing an explicit methodology of computation for the complete contact problem with friction. In this regard, the primary idea for solving the linear complementary formulations stems from an established search direction which is projected to a feasible region determined by the non-negative constraint condition; this direction is then applied to the Fletcher-Reeves conjugate gradient method resulting in a powerful explicit methodology which possesses high accuracy, excellent convergence characteristics, fast computational speed and is relatively simple to implement for contact problems involving Coulomb friction. Numerical test cases are also included to demonstrate the proposed methodology for contact problems with friction.
机构:
Univ Evora, Dept Phys, Colegio Luis Antonio Verney, P-7002554 Evora, Portugal
ICIST, Ottawa, ON, CanadaUniv Evora, Dept Phys, Colegio Luis Antonio Verney, P-7002554 Evora, Portugal
Areias, P.
Rabczuk, T.
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Bauhaus Univ Weimar, Inst Struct Mech, D-99423 Weimar, GermanyUniv Evora, Dept Phys, Colegio Luis Antonio Verney, P-7002554 Evora, Portugal
Rabczuk, T.
Queirs de Melo, F. J. M.
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Univ Aveiro, Dept Engn Mecan, P-3810193 Aveiro, PortugalUniv Evora, Dept Phys, Colegio Luis Antonio Verney, P-7002554 Evora, Portugal
Queirs de Melo, F. J. M.
Cesar de Sa, J.
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Univ Porto, Dept Mech Engn, Fac Engn, P-4200465 Oporto, PortugalUniv Evora, Dept Phys, Colegio Luis Antonio Verney, P-7002554 Evora, Portugal