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A material interpolation scheme is proposed for material property representation among air, permanent magnet, and iron materials.
In this method, a new material interpolation scheme for poroelastic materials based on the density approach is also proposed.
In this paper, a new BESO method is developed based on the sensitivity number computation utilizing an alternative material interpolation scheme.
Based on a material interpolation scheme with multiple materials, the sensitivity of the dynamic compliance with respect to the design variables on the two scales is analyzed.
To compensate for the imperfection of traditional bi-directional evolutionary structural optimization, material interpolation scheme and sensitivity filter functions are introduced.
Based on the material interpolation scheme of the solid isotropic material with penalization (SIMP), the sensitivity of the mean compliance of the composite macrostructure with respect to design variables on two scales, i.e., macro and micro scales, is derived.
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Material interpolation schemes are investigated and coupled with the presented approach.
Two material interpolation schemes controlling spurious buckling modes for the single material are modified for the present multi-material problem.
Second, the Uniform Multiphase Materials Interpolation (UMMI) scheme and the Rational Approximation of Material Properties (RAMP) scheme are combined to parameterize material properties (e.g., the elasticity matrix and GTSC).
This model eliminates the need for a material interpolation or phase mixing scheme.
Existing material interpolation, penalization, and filtering schemes have been extended to accommodate any number of anisotropic materials.
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