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A theoretical model is developed for the stress analysis in adhesive-bonded single-lap joints under tension, for which the two adherends could have different thicknesses and consist of different materials.
The CZTSSe thin-films deposited by sputtering method have different thicknesses in the NaF layer: 0 (a), 15 (b), and 30 nm (c).
Since the samples might have different thicknesses, we performed this analysis on each of them individually.
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The two adherends of the joints may have different thickness and materials, and the adhesive layer may be flexible or brittle.
In this experiment, two SL examples have different thickness of InSb-like IF.
It is quite common that some areas have different thickness owing to irregularity of the shape.
For AsN2604, in which the 10 QWs have different thickness, the energy levels are listed for the 3.8 and 11 nm only.
It is well known that different areas of articular cartilage have different thickness, material properties, and likely cellular environments, and by using a geographic control on the same section, we hoped to minimize this variability.
Films having different thicknesses were characterized by photocurrent spectroscopy (PCS) and electrochemical impedance spectroscopy (EIS).
All multilayer coatings had a same total thickness of about 2.5 μm, and the TiSiN layer had a fixed thickness and the Ag layer had different thicknesses.
Films having different thicknesses were fabricated by an electrophoretic deposition technique (EPD) and sensitized using different concentrations of a N719 dye solution.
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