Systems and processes for making a poly(vinyl acetal) resin with enhanced particle transport and recovery
US-2016347884-A1 · Dec 1, 2016 · US
US9162891B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9162891-B2 |
| Application number | US-201213702710-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 21, 2012 |
| Priority date | May 9, 2011 |
| Publication date | Oct 20, 2015 |
| Grant date | Oct 20, 2015 |
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An apparatus for manufacturing a carbon nanostructure and a method for manufacturing a carbon nanostructure that can achieve an increase in length and shape stabilization of the carbon nanostructure can be obtained. A manufacturing apparatus for a carbon nanostructure includes a catalyst member on which a carbon nanostructure is grown, a source gas supply unit and a source gas supply pipe, a coil, and a heater. The source gas supply unit and the source gas supply pipe supply the catalyst member with carbon for forming the carbon nanotube. The coil applies a gradient magnetic field (e.g., a cusped magnetic field indicated by magnetic flux line whose magnetic field strength gradually increases from one surface of the catalyst member to the other surface opposite to the one surface. The heater heats the catalyst member.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for manufacturing a carbon nanostructure, comprising: a catalyst member on which a carbon nanostructure is grown; a raw material supply unit for supplying one surface of said catalyst member with carbon along a direction intersecting with the one surface of said catalyst member for forming said carbon nanostructure; a magnetic field producing member for applying a gradient magnetic field whose magnetic field strength gradually increases from one surface of said catalyst member to the other surface opposite to said one surface; and a heating member for heating said catalyst member. 2. The apparatus for manufacturing a carbon nanostructure according to claim 1 , further comprising a raw material chamber connected to at least a part of said one surface of said catalyst member and having an inner wall portion formed by at least a part of said one surface of said catalyst member, wherein said raw material supply unit supplies said raw material chamber with a source gas containing said carbon. 3. The apparatus for manufacturing a carbon nanostructure according to claim 1 , wherein, assuming that an axis extending from said one surface to said other surface of said catalyst member is a central axis, said magnetic field producing member includes two coils aligned in a direction along said central axis and arranged around said central axis. 4. A method for manufacturing a carbon nanostructure, comprising the steps of: preparing a catalyst member on which a carbon nanostructure is grown; and growing said carbon nanostructure on said catalyst member by supplying carbon to one surface of said catalyst member along a direction intersecting with the one surface of said catalyst member while heating said catalyst member, wherein in the step of growing said carbon nanostructure, a gradient magnetic field whose magnetic field strength gradually increases from one surface of said catalyst member to the other surface opposite to said one surface is applied, wherein in the step of growing said carbon nanostructure, assuming that an axis extending from said one surface to said other surface of said catalyst member is a central axis, said gradient magnetic field is formed by a cusped magnetic field produced by two coils aligned in a direction along said central axis and arranged around said central axis. 5. The method for manufacturing a carbon nanostructure according to claim 4 , wherein in the step of growing said carbon nanostructure, said carbon is supplied to said one surface of said catalyst member, and said carbon nanostructure is grown on said other surface of said catalyst member.
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