Method of preparing superhydrophobic asphalt
US-12151983-B2 · Nov 26, 2024 · US
US9708701B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9708701-B2 |
| Application number | US-201113577924-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 16, 2011 |
| Priority date | Feb 16, 2010 |
| Publication date | Jul 18, 2017 |
| Grant date | Jul 18, 2017 |
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A device for metal coating of fibers, for example ceramic fibers, by a liquid process, the device including a crucible containing a liquid metal bath through which a fiber is drawn to be coated with the metal, and a cooling system positioned downstream from the metal bath to solidify the metal sheath created around the fiber by capillarity. The cooling system includes at least one nozzle for ejecting a compressed gas towards the coated fiber, and the system is sized such as to solidify the metal on the periphery of the coated fiber over a length of no more than 200 mm.
Opening claim text (preview).
The invention claimed is: 1. A device for metal coating of fibers by liquid means, comprising: a crucible containing a liquid metal bath through which a fiber is drawn to be coated with the metal; a cooling system positioned downstream from the liquid metal bath to solidify a metal sheath created around the fiber by capillarity, wherein the cooling system comprises at least one tube comprising an oblique lateral face oriented toward the fiber, on the downstream side of said tube relative to the motion of the fiber, and a nozzle provided in said face which is oriented toward the fiber, for ejecting a compressed gas shaped to eject the gas in a direction making an angle of less than 30° with a travel direction of the coated fiber and positioned at a distance of less than 5 mm from the liquid metal bath, and wherein the system is sized to solidify the metal on the periphery of the coated fiber over a length of no more than 200 mm. 2. The device as claimed in claim 1 , wherein the cooling system comprises two series of tubes each bearing at least one nozzle, the tubes being placed face to face, on either side of the coated fiber as the coated fiber emerges from the liquid metal. 3. The device as claimed in claim 2 , wherein the at least one nozzle has a shape of a slit made in the tube extending perpendicular to the travel direction of the coated fiber. 4. The device as claimed in claim 1 , further comprising a mobile roller configured to shift the fiber so that the fiber passes through the liquid metal bath or not, wherein the cooling system is positioned along the coated fiber, between the liquid metal bath and the mobile roller. 5. The device as claimed in claim 4 , wherein the cooling system comprises two series of tubes each bearing at least one nozzle for ejecting a compressed gas, the series being positioned on either side of the coated fiber as the coated fiber emerges from the liquid metal bath, along two planes parallel to one another and parallel to the coated fiber, so that the coated fiber can move between these planes, under action of the mobile roller to enter into or emerge from the liquid metal bath. 6. The device as claimed in claim 1 , wherein the travel direction of the fiber is a vertical direction. 7. The device as claimed in claim 1 , wherein each tube has a substantially hexagonal shape in cross section and bear six lateral faces. 8. A device for metal coating of fibers by liquid means, comprising: a crucible containing a liquid metal bath through which a fiber is drawn to be coated with the metal; a cooling system positioned downstream from the liquid metal bath to solidify a metal sheath created around the fiber by capillarity, wherein the cooling system comprises at least one tube having a substantially hexagonal shape in cross section, and at least one nozzle oriented toward the fiber and provided on an oblique lateral side of said hexagonal tube at a downstream side of said tube relative to the motion of the fiber, for ejecting a compressed gas shaped to eject the gas in a direction making an angle of less than 30° with a travel direction of the coated fiber and positioned at a distance of less than 5 mm from the liquid metal bath, and wherein the system is sized to solidify the metal on the periphery of the coated fiber over a length of no more than 200 mm.
Coating or impregnation · CPC title
characterised by the fibres or filaments · CPC title
Wires; Tubes · CPC title
characterised by the material treated · CPC title
at least one coating being a metal · CPC title
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