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Most researchers restrict the aim of their studies to the analysis of composite materials with uniform or linear grading profiles.
The electrochemical measurements show that the capacitance of the as-prepared amorphous manganese oxide electrode materials with uniform nonspherical hollow interiors is connects with their specific surface area.
Two TO schemes that use asymptotic homogenization (AH) for the calculation of the mechanical properties are proposed for lattice materials with uniform and graded relative density respectively.
Thermal and elastic fields in materials with uniform microstructure are compared with those of materials containing distinguishable clusters of circular or elliptic shape.
A variety of amorphous manganese oxide electrode materials with uniform nonspherical hollow interiors are prepared via sacrificial template-engaged redox etching of the corresponding shape-controlled Cu2O nanocrystals in KMnO4 aqueous solution at room temperature.
These effects are relevant to many engineering problems in which the presence of cavities embedded in a heterogeneous and anisotropic polycrystalline matrix must be accounted for, and for which standard polycrystalline models of incompressible plasticity, or dilatational plasticity formulations for voided materials with uniform properties of the matrix, have been proven to be insufficient.
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A dense La0.75Fe3CoSb12 thermoelectric material with uniform grain sizes was synthesized by melt-annealing-Spark plasma sintering (SPS).
By using this alumina sol as precursor, an alumina material with uniform mesoporous distribution was formed after calcination at 550°C without adding any templates or other organic additives.
Based upon the closed-cell Gaussian-Random field scheme in conjunction with the Halpin-Tsai micromechanical modelling, the mechanical properties of the porous material with uniform and three different functionally graded patterns of porosity dispersion reinforced with GPLs are extracted.
The Lm of a given order was higher than that of the next lower order, but lower than that of the next higher order, indicating that the evolution of the watershed followed the laws of erosion acting on homogeneous geologic material with uniform weathering-erosion characteristics.
AMS is a material with uniform pore size similar to zeolites.
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