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Analytical solutions to predict the fatigue notch factors (FNFs) of rough specimen are derived.
The point method (PM) and line method (LM) of the theory of critical distance (TCD) are employed to derive analytical expressions to predict the fatigue notch factors (FNFs) of rough specimen.
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Neither the 900 μm2 scan areas nor the corresponding AFM roughness profiles showed any well-defined differences between ceramic and titanium for smooth and rough specimens (Fig. 2a).
The carbon steel (X52) sample dipped in the inhibitor solutions has apparently smooth surface when compared with that of rough corroded specimen immersed in HCl alone.
The design of the system along with experimental results on smooth and rough micro-specimens is presented.
In this paper we describe a two-wavelength micro-interferometric setup for 3-D surface profile characterization of smooth as well as rough micro-specimens.
I wait months for these sharp, rough-skinned specimens, eating so many that my teeth protest against the sudden acid bath.
The roughness values of rough and medium ceramic specimens (1.32 μm/0.49 μm) were significantly lower than those of titanium specimens (2.98 μm/0.83 μm; p < 0.01 for both comparisons).
A comparison of rough and smooth specimens did not show any differences in staphylococcal adhesion (p > 0.05 for all comparisons).
The differences in R a between rough, medium, and smooth specimens were statistically significant for ceramic as well as for titanium (p < 0.01 for all comparisons).
The surface of CAD-DLC-coated specimen was rougher than that of EN-coated specimen due to the globular particles deposited by CAD process.
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