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Expressions for the adhesive stresses and ERR are given in terms of geometrical dimensions and material properties, combined with integration constants obtained numerically via the multi-segment analysis method.
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The latest advanced methods include identification of material properties combining laboratory tests and inversion analyses with computers modelling using sophisticated algorithms.
The objective of this study was to develop a model to predict the viscoelastic material functions of a vinyl ester (VE) polymer with variations in its experimentally obtained material properties under combined isothermal and mechanical loading.
A microwave-absorbing structure is a multifunctional composite composed of lossy materials, to obtain optimal electromagnetic properties combined with structural load-bearing capability.
A lot of properties combined in one material, zirconia.
This new genre of surface disinfectant exhibits powerful residual bactericidal properties combined with good materials compatibility.
This approach allows for the indirect determination of the particle's in situ material properties by combining the experimentally determined composite and matrix properties and finite element (FE) models for predicting the corresponding composite properties, then backing out the effective in situ particle properties.
Among the most highly potential are heterogeneous materials that consist of several phases with distinguished properties combined together.
For their part, ceramic-polymer composite materials allow obtaining a biodegradable material, with good mechanical strength, osteoinductive, osteoconductive, and conformability properties combining the properties of each material family.
Finite element models (FEM) of a flat claw (FC), a contracted claw (CC), and a laminitic claw (LC) were designed from native claw specimens to combine material properties and altered claw geometry for stress analysis.
Its assembly can be modified in different ways to combine material properties with different morphological structures for diverse applications ranging from tissue engineering to nanocomposite fabrication; however, electrospun nanofibers are generally deposited as a randomly oriented mat on a flat collector that limits their applications.
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