JPH0361622B

This invention relates to an improved method for forming two or more coating layers on a fiber. A first coating liquid is applied by an applicator having a die (e.g. 101) that provides for the formation of a gap (e.g. 103) between the die and the first coated layer. A second die (e.g. 104) is locate...

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1. Verfasser: TAYLOR CARL RAYMOND
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creator TAYLOR CARL RAYMOND
description This invention relates to an improved method for forming two or more coating layers on a fiber. A first coating liquid is applied by an applicator having a die (e.g. 101) that provides for the formation of a gap (e.g. 103) between the die and the first coated layer. A second die (e.g. 104) is located at the exit of the first die, with the second coating liquid flowing onto the fiber through a relatively narrow clearance (e.g. 106) between the first and second dies. The clearance is formed by die surfaces perpendicular to the fiber axis. This second die also provides for a gap, (e.g. 110) so that the second layer is applied at a "free surface" at the point of contact with the first coated layer. This approach eliminates turbulence and coating nonuniformities associated with prior art multiple coating techniques.
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A second die (e.g. 104) is located at the exit of the first die, with the second coating liquid flowing onto the fiber through a relatively narrow clearance (e.g. 106) between the first and second dies. The clearance is formed by die surfaces perpendicular to the fiber axis. This second die also provides for a gap, (e.g. 110) so that the second layer is applied at a "free surface" at the point of contact with the first coated layer. 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A first coating liquid is applied by an applicator having a die (e.g. 101) that provides for the formation of a gap (e.g. 103) between the die and the first coated layer. A second die (e.g. 104) is located at the exit of the first die, with the second coating liquid flowing onto the fiber through a relatively narrow clearance (e.g. 106) between the first and second dies. The clearance is formed by die surfaces perpendicular to the fiber axis. This second die also provides for a gap, (e.g. 110) so that the second layer is applied at a "free surface" at the point of contact with the first coated layer. 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A first coating liquid is applied by an applicator having a die (e.g. 101) that provides for the formation of a gap (e.g. 103) between the die and the first coated layer. A second die (e.g. 104) is located at the exit of the first die, with the second coating liquid flowing onto the fiber through a relatively narrow clearance (e.g. 106) between the first and second dies. The clearance is formed by die surfaces perpendicular to the fiber axis. This second die also provides for a gap, (e.g. 110) so that the second layer is applied at a "free surface" at the point of contact with the first coated layer. This approach eliminates turbulence and coating nonuniformities associated with prior art multiple coating techniques.</abstract><oa>free_for_read</oa></addata></record>
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subjects AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
CHEMICAL COMPOSITION OF GLASSES, GLAZES, OR VITREOUSENAMELS
CHEMISTRY
GLASS
JOINING GLASS TO GLASS OR OTHER MATERIALS
METALLURGY
MINERAL OR SLAG WOOL
OPTICAL ELEMENTS, SYSTEMS, OR APPARATUS
OPTICS
PERFORMING OPERATIONS
PHYSICS
SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDEDFOR
SHAPING OR JOINING OF PLASTICS
SURFACE TREATMENT OF FIBRES OR FILAMENTS MADE FROM GLASS,MINERALS OR SLAGS
SURFACE TREATMENT OF GLASS
TRANSPORTING
WORKING OF PLASTICS
WORKING OF SUBSTANCES IN A PLASTIC STATE, IN GENERAL
title JPH0361622B
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