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The effects of curvature, lamination, material property, thickness as well as their interactions are investigated in detail.
Sources of these saliencies can be various, for instance the saturation of the machine by the main flux, the slotting, lamination material anisotropy as well as eccentricity.
A variety of examples are considered for different loading conditions, lamination, material properties etc. in order to evaluate the capability of the present modal.
The effects of curvature, lamination, material property, thickness, and different types of loads as well as their interactions are also investigated in detail.
Important numerical results presented include sensitivity of the predicted response quantities of interest to lamination, material property, thickness effects and inplane end constraint as well as their interactions.
Important numerical results presented include sensitivity of the predicted response quantities of interest to lamination, material property, thickness effects and end clamping as well as their interactions.
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A systematic parametric study is also performed regarding the effects of the boundary conditions, lamination schemes, material and geometrical parameters.
The effects of important parameters such as lamination scheme, material property, thickness effects as well as their interactions are investigated in detail.
Meanwhile, a systematic parameter investigation is performed regarding the influences of elastic restraint parameters, lamination schemes, material properties, geometry parameters and loading types.
Hitherto unavailable important numerical results presented include sensitivity of the predicted response quantities of interest to lamination, lamina material property, and thickness effects, as well as their interactions.
A systematic parametric study is also performed regarding the effects of shear deformation and inertia rotary, deepness term, boundary conditions, lamination schemes, material and geometrical parameters.
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