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The beam sectional properties are evaluated using a finite element based cross section analysis tool which is able to account for effects stemming from material anisotropy and inhomogeneity in sections of arbitrary geometry.
Bending, tensile strength tests, and cross section analysis were conducted on the composite samples.
We determined the size of the protrusions by cross section analysis.
Microstructural analyses consisted of Scanning Electron Microscopy (SEM), X-ray diffraction (XRD) and focused ion beam (FIB) cross section analysis.
For cross section analysis, the samples were fractured in liquid nitrogen in order to have distinct view of the membrane's selective layer section.
Figure 3b shows the flake cross section, analysis of which shows a significant sag in the central flake, that resembles a dried leaf.
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In order to assess the sectional strength, the cross-section analysis technique described in the companion paper is utilized in this paper for analysis of steel reinforced concrete (RC) and steel-concrete composite (SCC) sections.
Hence, this cross-section analysis provides the simple but unique algorithm for the design approach.
Strength interaction diagrams are common tools for reinforced concrete (RC) cross-section analysis and design.
A cross-section analysis is performed to compute the structural properties of the blade.
A model for fiber fracture is proposed based on fiber cross-section analysis.
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