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Exact(9)
The main objelasticof the propertiesofsthey the influence of material nonhomogeneity on the buckling resistaree of the grassumedyer for various crack positoons, coating thicknesses and different orthotropic FGMs.
Both spatial and temporal periods in this dynamic material are assumed to be the same order of magnitude.
Modest extrapolation of improved plasma physics as well as technology development such as superconducting magnet, blanket and reduced activation material are assumed.
Thermal and mechanical properties of the functionally graded material are assumed to be temperature independent and continuously vary in the radial direction of the panel.
The nuclide migration properties of the buffer material are assumed to be the same (PNC, Development and Management of the Technical Knowledge Base for the Geological Disposal of HLW, Supporting Report 2: "Repository" Engineering Technology).
Layers with the same thickness and material are assumed to be laminated in the upward direction (+z direction) while the fiber angle is measured counterclockwise from the x-axis.
Similar(51)
The material is assumed to be cylindrically orthotropic.
The material is assumed to be elastic-perfectly plastic.
The added material is assumed not to be prestressed.
The material is assumed as orthotropic and linearly elastic.
The shaft material is assumed to be elastic perfectly plastic.
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