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This paper discusses the theoretical basis for composite optimization of synthetic fiber reinforced cement that leads to maximum tensile ductility while minimizing the content of the expensive fiber component of fiber cement products.
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Using a combination of average and center-average type conditions, we presented a semilocal convergence analysis for the method (GNA) to approximate a solution or a fixed point of a convex composite optimization problem in the setting of finite dimensional spaces.
In this paper, we introduce a modified proximal gradient algorithm with outer perturbations in Hilbert space and prove that the algorithm converges strongly to a solution of the composite optimization problem.
The purpose of this paper is identification of risk areas of wind turbine blades and composite structural optimization of their structure in areas exposed to combined loading, using finite element analysis.
The formation of this nano-composite and optimization of the process parameters led to an approximately two-fold increase in the strength, without loss in ductility, due to the dispersion of the graphene in aluminium.
A 25−1 fractional factorial design for screening, and a central composite design for optimization of significant variables, was applied during development of the extraction method.
Overall, the graphene-hydrogel-conducting polymer composite structure enables optimization of various properties by synergistically integrating the electrochemical and mechanical properties of graphene and the PEDOT PSS, with the biocompatibility and micropatterning of the soft hydrogel matrix.
The simplicity of the "explicit" local buckling solution of elastically restrained composite plates facilitates analysis, design, and optimization of composite structures.
The novel PS algorithm combined with the modified repair strategy outperforms the studied GA methods for constrained stacking sequence optimization of composite laminate both in computational performance and finding the optimal objective value with high reliability.
Although fatigue behavior of composites has been studied extensively, little attention was paid to optimization of composites under fatigue.
This paper presents the cost optimization of composite floor trusses.
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