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The paper describes the basic analytical approach for truss beams, compares this new design with the state-of-art truss used in NASA's solar sail development work, and provides analyses of novel applications enabled by the mast design.
The novel failure prediction approach for truss structures utilises a ductile metallic damage model with triaxial stress state dependence and results in very good agreement of deformation patterns, predicted failure strain and failure location.
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New approaches for fabricating truss cellular cores using pultruded unidirectional fiber-reinforced composite rods and yarns are described.
In this paper an approach to robust topology optimization for truss structures with material and loading uncertainties, and discrete design variables, is investigated.
In particular, the DBO approach is found to be suitable for truss topology design since the method allows member areas to have cross-sectional areas equal to zero exactly.
This study describes a nonlinear truss modelling approach for a reinforced concrete (RC) wall strengthened with carbon fibre-reinforced polymers (CFRP) subjected to a lateral displacement load test.
A multi-parameter optimization approach for a lightweight FRP composite triangular truss under nonlinear structural response constraints is presented in this paper.
The main goal of this paper is to develop a novel approach for vibration control on a piezoelectric rotating truss structure.
For Truss, cancellation would combine fiscal prudence with serious political gain.
This paper presents a genetic programming approach for simultaneous optimization of sizing and topology of truss structures.
Then, the form-finding method is embedded into an iterative approach for designing a mesh reflector considering the elasticity of the supporting rim truss.
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CEO of Professional Science Editing for Scientists @ prosciediting.com