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- W2009017839 abstract "Abstract Hydro-dynamic action can generate very high pressure inside the passage of particular shapes through which a fluid is flowing. A common situation is when the fluid is flowing through a converging surface (such as a journal bearing). The magnitude of this hydro-dynamic pressure is dependent on the viscosity of the fluid, the geometrical configuration of the confined passage and the relative speed of the solid surface. The effect of such action is less apparent for thin oil type fluids. Experimentally, it has been observed that when a solid wire is pulled through a stepped or conical bore passage that is filled with a viscous fluid (such as polymer melt) then the pressure generated is so high that the outer casing may rupture if the wall thickness is not large enough. Furthermore, if the casing is very strong, the rod may suffer permanent deformation if it is not made of a very hard material. The main objective of this study is to compare the performance of a complex geometry pressure unit to those of a simple tapered and a stepped parallel bore pressure unit in terms of pressure distribution, maximum pressure and axial stress and how the geometrical configuration of the unit affects the results. Results are presented in relation to the stainless steel and copper wires used for the experimental work." @default.
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- W2009017839 date "1998-05-01" @default.
- W2009017839 modified "2023-09-24" @default.
- W2009017839 title "Hydro-dynamic pressure distribution in tapered, stepped parallel bore and complex geometry pressure units: experimental results" @default.
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- W2009017839 doi "https://doi.org/10.1016/s0924-0136(97)00431-7" @default.
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