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It is of big interest to test the behavior of high viscosity liquids injection through hydraulic atomizers designed for water atomization because these atomizers are and could be used to atomize fluids more viscous than water.
CuCr and CuCrZr alloy powders were produced by water atomization and consolidated by warm extrusion.
Water atomization can be used to produce wide range of particle size, shape and particle size distribution of metal powder efficiently by varying operating variables which include design parameters, process parameters and thermophysical properties of metal and water.
Both rapidly solidified powders, produced via spinning water atomization process, and cast billets were extruded at 573, 623 and 673 K to optimize the processing conditions for obtaining better mechanical response.
Open image in new window Fig. 10 SEM images showing characteristic morphologies of stainless steel powders produced by: (a) gas atomization; (b) water atomization [41].
Metal powders are produced in different methods, such as water atomization, gas atomization, plasma rotating electrode and electrolytic method, which has a diverse effect on defect formation [53, 54, 55].
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Many authors studied water and gasoline atomization.
Atomization in water yields irregularly shaped particles that can be pressed to a higher initial, or "green," strength and density than can the spherical particles formed by atomizing with an inert gas.
High values of temperature and pressure at stagnation point impart the substantial kinetic energy to the flow, which provides the atomization of water droplets into mist spray.
The following paper presents results of studies on the atomization process of water in pressure-swirl atomizers with different shapes of orifice using a laser diffraction technique.
This approach involved first dissolving the drug in molten Gelucire 44/14 followed by atomization into cold water.
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