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Jet mill

About: Jet mill is a research topic. Over the lifetime, 803 publications have been published within this topic receiving 5686 citations.


Papers
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Patent
28 Apr 1983
TL;DR: In this paper, a magnetic dispersion which can be applied to a non-magnetic base to produce a recording medium is prepared by dispersing a magnetically anisotropic material in a polymer binder and in an organic solvent by a method wherein the magnetically ionized material is worked in a jet mill before and/or during dispersing.
Abstract: not available for EP0093966Abstract of corresponding document: US4619777A magnetic dispersion which can be applied to a non-magnetic base to produce a recording medium is prepared by dispersing a magnetically anisotropic material in a polymer binder and in an organic solvent by a method wherein the magnetically anisotropic material is worked in a jet mill before and/or during dispersing.

1 citations

Patent
04 Sep 2008
TL;DR: In this paper, the authors provided a charged powder for circuit formation capable of filling conductive metal particles densely in a wiring pattern, and a multilayer wiring board using the same solution.
Abstract: PROBLEM TO BE SOLVED: To provide a charged powder for circuit formation capable of filling conductive metal particles densely in a wiring pattern, and a multilayer wiring board using the same SOLUTION: The charged powder 10 for circuit formation is composed in such a manner that a first conductive metal powder 11, a second conductive metal powder 12 of which average particle diameter is smaller than that of the first conductive metal powder 11, a charge control agent 13, and an adhesion enhancing agent 14 are uniformly dispersed in a hot-melt resin 15 Spherical copper particles which are the first conductive metal powder 11 having an average particle diameter of 08 μm, spherical copper particles which are the second conductive metal powder 12 having average particle diameter of 04 μm, azo-series metal dye which is the charge control agent 13, silica which is the adhesion enhancing agent 14, and a styrene-acryl copolymer which is the hot-melt resin 15 are mixed at the ratio of 30:50:1:1:18 by weight The mixture is then kneaded with a kneader by a hot-melt kneading, coarsely ground with a cutter mill, and finely ground with a jet mill The charged powder 10 for circuit formation having average particle diameter is 80 μm is acquired by air stream classification COPYRIGHT: (C)2008,JPO&INPIT

1 citations

Patent
07 Mar 1982

1 citations

Patent
23 Apr 1999
TL;DR: In this article, the problem of uniformly mixing a plurality of kinds of powder with different density difference, while grinding them efficiently without any risk of oxidizing powder, and to miniaturize a system and to enable the system to be maintained easily is addressed.
Abstract: PROBLEM TO BE SOLVED: To uniformly mix a plurality of kinds of powder with different density difference, while grinding them efficiently without any risk of oxidizing powder, and to miniaturize a system and to enable the system to be maintained easily. SOLUTION: Uranium oxide powder, plutonium oxide powder, and a dry collection powder obtained by grinding uranium/plutonium mixed oxide sintered body are weighed to obtain a specific plutonium contents, the powders are roughly mixed by a mixer, the mixed powder is finely ground by a jet mill 16 and at the same time is uniformly mixed, the uniformly mixed powder is discharged from the jet mill 16 with compression air, and 90% or more of the discharged powder is separated from air by a first-stage cyclone 18 and is collected.

1 citations

Patent
29 Jan 1979
TL;DR: In this article, the authors used a jet mill to pulverize a solid resin into finely divided powder using a jet filter, and then collected the resin in a scrubber through which water containing a surfactant is passed.
Abstract: PURPOSE:To obtain an aqueous resin dispersion, by pulverizing a solid resin into finely divided powder using a jet mill, and by collectign the resin in a scrubber through which water containing a surfactant is passed.

1 citations


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Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202118
202035
201928
201831
201723
201623