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We describe multi-material (more than two materials) interface reconstruction methods for 3D meshes of generalized polyhedra.
Material interfaces were assumed to be fully bonded.
h Corresponding EDX and EELS results showing the change in elemental composition across the material interfaces.
Various mechanisms are observed which are owing to different switching materials, the anode/switching material interface, and different deposition methods.
Electron microscopy images prove no microstructural cracks or defects at any of the hetero material interfaces.
These factors depend on prosthesis design, namely on material, interface conditions and shape.
The FRP-to-parent material interfaces are modelled with a rigid-linear softening bond slip law.
Material interfaces are omnipresent in the real-world structures and devices.
The geometry of material interfaces and cracks is described by the LSM.
The conditions for shock formation at a material interface are provided.
The issues of derivative operator ordering and boundary conditions at material interfaces are examined in detail.
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