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The FDM process parameters considered in this study includes layer thickness, air gap, raster angle, build orientation, road width and number of contours.
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The essential SLM additive manufacturing conditions for Ti 6Al 4V including layer thickness, focal offset distance and energy density, under which a near α′ martensitic structure forms in each layer and then in situ transforms into ultrafine lamellar structures, were determined.
Full factorial experiments were designed and conducted, to 1) investigate the impact of key process parameters, including layer thickness, printing speed, and infill ratio, on the energy consumption and surface roughness using one desktop printer, and 2) compare the energy consumption and surface roughness of fabricated parts using a same set of parameters on three different printers.
Parameters investigated included base layer thickness, grid aperture size, geogrid tensile strength, number of geogrid layers, and geogrid location.
Factors affecting the electrocatalytic activity of the laccase POPDA system, including the layer thickness and the pH value, are studied.
Printer specifications include a layer thickness of 16 μm, tray size of 260 × 260 × 200 mm and accuracy of 100 μm.
The effect of these factors, including temperature, layer thickness, superposition of assembly stress, and surface cleanliness and the material of the assembly parts, is also demonstrated.
The dependence of the total net cathodic current, Inet, supplied at the repassivation potential Erp (of the anodic crevice) on relevant physical parameters including water layer thickness (WL), chloride concentration ([Cl−]) and length of cathode (Lc) were investigated using a three-level, full factorial design.
Besides, the important quantities of practical interests including the boundary layer thickness, the skin friction coefficient, the Nusselt number, as well as the overall surface heat transfer rate are computed and discussed.
Finally, the finite element method is used to simulate the factors that affect the deformation of bi-stable structures independently, including the single layer thickness, stacking sequence of the laminate and the embedment of the electrothermal alloy.
The measures of severity included CFT, retinal layer thickness and foveal-to-parafoveal ratio.
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