Difference between revisions of "Spiral Jet Mills"
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[[File:Spiral_jet_mill.jpg|thumb|right|Spiral flow jet mill]] | [[File:Spiral_jet_mill.jpg|thumb|right|Spiral flow jet mill]] | ||
'''Spiral jet mills''' are a type of air [[Micronizers|microniser]] suitable for grinding hard and soft materials (of up to a hardness of 10 Mohs) and producing powders generally in the range of 1 to 20 microns. Material is fed into a high-speed vortex, within the shallow grinding chamber, which is created by introducing high-energy air jets through a series of specialist nozzles. Material is ground through attrition within the vortex and is drawn through the central fixed [[Classifiers|classifier]] once particles are small enough. The principal applications for this [[Mills|mill]] type lie in the field of pharmaceuticals and allied products, as well as speciality chemicals where sterile and contamination-free operation is essential. | |||
'''Spiral jet mills''' are a type of air microniser suitable for grinding hard and soft materials (of up to a hardness of 10 Mohs) and producing powders generally in the range of 1 to 20 microns. Material is fed into a high-speed vortex, within the shallow grinding chamber, which is created by introducing high-energy air jets through a series of specialist nozzles. Material is ground through attrition within the vortex and is drawn through the central fixed classifier once particles are small enough. The principal applications for this mill type lie in the field of pharmaceuticals and allied products, as well as speciality chemicals where sterile and contamination-free operation is essential. |
Latest revision as of 09:10, 12 March 2012
Spiral jet mills are a type of air microniser suitable for grinding hard and soft materials (of up to a hardness of 10 Mohs) and producing powders generally in the range of 1 to 20 microns. Material is fed into a high-speed vortex, within the shallow grinding chamber, which is created by introducing high-energy air jets through a series of specialist nozzles. Material is ground through attrition within the vortex and is drawn through the central fixed classifier once particles are small enough. The principal applications for this mill type lie in the field of pharmaceuticals and allied products, as well as speciality chemicals where sterile and contamination-free operation is essential.