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Three criterions were considered: minimizing the speed ripple of the engine, maximizing the mechanical reactive power (mechanical impedance adaptation) and maximizing the active electric power for energy harvesting.
The purpose of this paper is to present a semi-analytic model designed to optimize tidal farm layouts by maximizing the mechanical power production.
Moreover, the optimum design maximizing the critical buckling temperature is very similar to that maximizing the mechanical buckling load obtained by Olhoff and Rasmussen (1977).
Designs for optimal bonding of TSL joints often face conflicting objectives: in general, the main source of conflict centers around minimizing the mass and maximizing the mechanical strength of the joint.
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The rotor is constructed as a self-supporting basket, with the conductors laid in a skewed fashion to minimize torque ripple and to maximize the mechanical strength.
There have also been a number of experimental studies of laminated ceramics that were conducted using the models, attempting to maximize the mechanical properties.
In addition, an optimization was carried out through a desirability function approach, in order to define the combination of process parameters that maximizes the mechanical properties and minimizes the degradation of the tire rubber.
In a systematic attempt to maximize the mechanical properties of the printed extrudate by minimizing the residual void content, this study investigates the thermal deconsolidation behaviour observed in pultruded unidirectional fibre-reinforced thermoplastic composite material when it is reheated above its melting point and exposed to ambient pressure.
In order to maximize the associated mechanical properties, heat treatment methods have been developed for producing tailored microstructures.
A tilt angle control of ±2.3° is achieved by utilizing the 4 μm buried oxide (BOX) layer thickness of an SOI wafer together with a carefully controlled pulsed low frequency deep silicon backside etch to construct precise mechanical stoppers, while maximizing the torsion beam out-of-plane stiffness for angle fixing.
By solving the relatively small eigenvalue problem defined by the corresponding 16 × 16 matrix, the spacer damper can be optimized with respect to mechanical energy dissipation by maximizing the smallest real part of its eigenvalues.
Write better and faster with AI suggestions while staying true to your unique style.
Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com