US2428965A - Apparatus for painting surfaces - Google Patents

Apparatus for painting surfaces Download PDF

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Publication number
US2428965A
US2428965A US518078A US51807844A US2428965A US 2428965 A US2428965 A US 2428965A US 518078 A US518078 A US 518078A US 51807844 A US51807844 A US 51807844A US 2428965 A US2428965 A US 2428965A
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Prior art keywords
discs
shaft
perforations
wire
coloring liquid
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US518078A
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William P Frisco
Vincent A Rayburn
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AT&T Corp
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Western Electric Co Inc
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Priority to US518078A priority Critical patent/US2428965A/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C1/00Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating
    • B05C1/04Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length
    • B05C1/16Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length only at particular parts of the work
    • B05C1/165Apparatus in which liquid or other fluent material is applied to the surface of the work by contact with a member carrying the liquid or other fluent material, e.g. a porous member loaded with a liquid to be applied as a coating for applying liquid or other fluent material to work of indefinite length only at particular parts of the work using a roller or other rotating member which contacts the work along a generating line
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S118/00Coating apparatus
    • Y10S118/15Roller structure
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S118/00Coating apparatus
    • Y10S118/21Wire and cord striper

Definitions

  • collar 28 may be adjusted to vary the compression of the spring 25 and thereby control the Patented Oct. 14, 1947 2,428,965 APPARATUS FOR PAINTING SURFACES William P. Frisco, Dundalk, and Vincent A. Rayburn, Baltimore, Md., assignors to Western Electric Company, Incorporated, New York, N. Y., a corporation of New York Application January 13, 1944, Serial No. 518,078
  • An object of this invention is to provide new and improved apparatus for applying coating materials to surfaces.
  • One device embodying the invention comprises a perforated hollow shaft, a plurality of felt discs mounted upon the perforated hollow shaft, means for spacing and compressing the discs along the shaft, means for rotating the shaft, and means for supplying a coating liquid to the interior of the hollow shaft to forcethe liquid through the felt discs.
  • Fig. 1 is a side elevation of an apparatus embodying the invention with portions thereof broken away to show the internal construction thereof;
  • Fig. 2 is an enlarged vertical sectional view of the apparatusyand Fig. 3 is a transverse section taken on line 3-3 of Fig. 2.
  • standards 10- Ill (Fig. 1) having bearing passages lI-Il formed therein are secured upon a base l2 with the axes of the bearing passages ll-ll aligned.
  • a shaft I 5 having a bore 16 (Fig. 2) formed therein is rotatably secured in the passages ll-H by collars l1-l1 fastened to the shaft.
  • the shaft I5 is also provided with radial perforations l9-l9 grouped around the periphery and along the length thereof, and may be rotated through a pulley H by a belt l8 driven by a conventional power supplying device.
  • a stop 20 (Fig. 2) secured to the shaft l5 by pins 2l-2l cooperates with a collar 22 slidably urged along the shaft l5 by a compression spring 25 and a plurality of disc-like spacers 26-26 to space a plurality of felt discs 21-21 overthe groups of the perforations l9-l9.
  • a threaded collar 28 backed by a nut 29 serves as an abut- The position of the 21-21 against rotation relative thereto.
  • the stop 20 and the collar 22 are provided with annularly arranged prongs 30-30 formed on opposing faces 3l-3I thereof to secure the discs
  • the spacers 26-26 have annular cut-out portions 32- 32 (Fig. 2) formed therein adjacent to the periphery of the shaft 15, and are provided with annularly arranged prongs 33-33 for the same purpose as the annularly arranged prongs 30-30.
  • a stufiing box 35 (Fig. 1) having formed thereon a small end 36, which end 36 fits tightly into an opening 31 formed in the end of the shaft 15, is also provided with a bore 39 and an enlarged aperture 40.
  • having a flange 42 formed thereon issecured in the enlarged aperture 40 by a bronze bushing 45, a packing 46 and a. packing nut 41.
  • is connected to a suitable source of coloring liquid maintained under pressure by a pump or other suitable means (not shown).
  • the packing nut 41 may be threaded farther into or out of the enlarged aperture 40 to place the packing 46 under a greater or lesser compression if so desired.
  • a housing 52 having aligned apertures 55-55 (Fig. 2) formed therein through which the shaft I5 passes is positioned on the base 12 and encloses the felt discs 21-21.
  • a pair of guides 56-56 having U-shaped apertures 51-51 are mounted on the top of the ends of the housing 52 in such a manner that the bottoms of the U-shaped apertures 51-51 are positioned along a line directly over the centers of and slightly below the upper peripheries of the felt discs 21-21.
  • Splash guards 58-58 are secured to the shaft I5 adjacent to the apertures 55-55.
  • a plurality of grooved rollers 59-59 serve to retain the lower periphery of an insulated wire 60 in the bottoms of the U-shaped apertures 51-51 and against the peripheries of the felt discs 21-21 as the wire 60 is drawn from a conventional continuous insulating and vulcanizing machine (not shown) by any suitable wire advancing means, such as a capstan.
  • the insulated wire 60 is formed by passing one or more conductors through an insulating and-vulcanizing machine (not shown) in which a layer of insulation is applied to the wires and vulcanized by heat and pressure.
  • the insulated wire 60 is continuously drawn by a capstan (not shown) from the continuous insulating and vulcanizing machine between the grooved rollers 59-59, through the U-shaped apertures 51-51 and over the upper pe- 3 ripheries of the felt discs 2121.
  • a capstan not shown
  • the shaft l5 and the discs are rotated by the belt 18 through the pulley l4, and thus the under surface of the wire 60 is brushed by the felt discs 21-21.
  • the coloring liquid is forced under pressure through the tube 4!, the bore 39, the bore Hi, the perforations Iii-l9, the cut-out portions 32-32, and through the felt discs 21-21 to saturate the discs.
  • the discs 21-21 filter out any coarse particles contained in the coloring liquid and the portion of the coloring liquid passing to the outer peripheries of the discs 2121 contains no undesirably coarse particles.
  • the coloring liquid may be composed of ink, paint, dye or other suitable coloring materials.
  • the liquid is applied to the under surface of the insulated wire 60 by the rotating discs 21-21 which are in mutual tangential contact with the wire a the wire is drawn thereacross.
  • the entire peripheries of the felt discs 21-21 are continuously brushed against the bottom of the wire 60 as the discs are rotated. This prevents any caking of the coloring liquid upon the peripheries of the discs which remain soft, pliable and porous.
  • the flow of the coloring liquid to all portions of the outer peripheries of the discs is uniform and the application of the coloring liquid to the wire is in a thin line of constant width. Since the insulated wire 60 is drawn directly from the continuous insulating and vulcanizing machine, the insulation thereof is quite warm as it passes over the discs 21-21, and the coloring liquid applied thereto in the form of a thin line will be quickly dried, by the heat stored in the conductor and will not be smeared.
  • the pressure placed upon the coloring liquid may be raised to increase the flow of the coloring liquid through the discs 21-21.
  • the coloring liquid may be applied to the wire 60 in the same quantity per unit length thereof as could be applied by previously known coating apparatus when the wire was drawn through that apparatus at a slower rate of speed.
  • the pressure upon the coloring liquid may be decreased to lessen .the flow of the liquid when the wire 60 is drawn through the apparatus at a slower rate of speed.
  • any drops of the coloring liquid 66 falling from the discs 2121 will be collected in the housing :2 and the guards 58-58 will rops from being thrown thro h 55 55.
  • the apertures Spacers similar tothe spacers 26-26 but of a. different thicknessfrom that of the spacers 26-26 may be substituted for those spacers for positioning the discs 21-21 at different positions along the shaft l5.
  • the porosit of the felt discs 21-21 may be closely controlled by controlling the compression of the spring 25 by varying the positions of the collar 28 and the nut 29.
  • the filtering actions of the discs 2121 may be varied for use with coloring liquids having different compositions.
  • felt discs similar in shape to the discs 21-21, but the texture of which may be much finer or coarser, may be substituted for the discs 2121 to more or less thoroughly filter the coloring liquid. Consequently, any type of coloring liquids ranging from dyes to paints may be employed successfully in apparatus embodying the invention.
  • an apparatus for coating articles a base, standards mounted on the base, journals supported by the standards, a shaft having an axial passage formed therein and also being provided with holes leading from the passage to the external surface of the shaft, means for rotating said shaft, a plurality of absorbent discs mounted coaxially upon the shaft and disposed over the holes in the shaft, a plurality of movable spacer plates mounted on the shaft between the said discs for spacing the discs along the shaft, means for applying pressure to the spacer plates to compress the absorbent discs to hold them in predetermined alignment, guides for guiding a wire to be coated against the periphery of the aligned discs while the discs are rotated at right angles to the path of travel of the wire, and means for supplying continuously a coloring liquid under pressure to the passage.
  • a base a plurality of standards mounted on the base, a plurality of journals supported in alignment by the standards, a shaft having a passage formed therein and also being provided with a plurality of holes leading from the passage to the external surface of the shaft, a plurality of absorbent discs on the shaft extending radially therefrom and disposed over the holes, a plurality of spacer plates mounted on the shaft in between the said discs for keeping the discs apart and in alignment with the said holes, adjustable means for resiliently compressing the absorbent discs, means for rotating the shaft and the discs thereon, means for guiding wire to be coated against the periphery of the discs, and means for supplying coloring liquid under pressure to the passage.
  • a plurality of discs of a liquid carrying material a shaft having a passage partly therethrough and also being provided with a plurality of holes formed therein leading from the passage transversely through the shaft to the exterior thereof under and adjacent to the central portion of the discs for supplying a coloring liquid to the discs, means on the shaft for holding the discs relatively stiff and in a predetermined alignment and so formed as to facilitate the flow of the coloring liquid thereto, means for applying a pressure to said discs, means for regulating the pressure applied by the pressure applying means, means for rotating the shaft and the discs thereon, means for guiding a wire across the peripheries of the discs parallel to the axis of rotation of the shaft so as to be contacted and marked thereby, and means for supplying a coloring liquid under pressure to the passage.
  • a hollow shaft having perforations connecting the interior and exterior portions thereof, an absorbent disc positioned on said shaft over said perforations, resilient means for compressing said disc, means movable axially of the shaft for adjusting said resilient compressing means to vary the compression of said disc, and means for continuously supplying a coating fluid to the disc through the perforations in the hollow shaft.
  • a hollow shaft having a plurality of perforations connecting the interior and exterior portions thereof, said perforations being spaced in groups along the length of the shaft, a plurality of absorbent discs, :3. plurality of spacer plates, said absorbent discs and spacer plates being mounted alternately on the hollow shaft, resilient means cooperating with said spacer plates for compressing and positioning said discs over the groups of perforations, and means for regulating the compressing action of the last mentioned means.
  • a hollow shaft having a plurality of perforations connecting the interior and exterior portions thereof, said perforations being spaced in groups along the length of the shaft, a plurality of absorbent discs, a plurality of movable spacer plates for spacing said discs on the shaft over the groups of perforations, means for applying a predetermined pressure to said discs, through said movable spacer plates, means for rotating said shaft and said discs therewith, means for guiding a wire along a path parallel to the axis of the shaft, means for pressing such a wire against the peripheries of the discs, and means for supplying a coloring liquid under pressure to the interior portion of said shaft.
  • a hollow shaft having a plurality of spaced annular groups of perforations in the side-walls thereof, a plurality of absorbent discs positioned on the shaft, a plurality of spacer plates positioned between the discs for positioning the discs overthe groups of perforations, resilient means for compressing the discs between the spacer plates, means for rotating the shaft and the discs, means for guiding a wire over the discs, and means for supplying a coloring liquid to the interior of the hollow shaft.
  • a, hollow shaft having a plurality of annular groups of perforations in the side-walls thereof, said groups of perforations being spaced along the length of the shaft, a plurality of absorbent discs positioned on the shaft, means for positioning the discs over the groups of perforations, resilient means for compressing the discs, means for adjusting the resilient means to vary the compression of the discs, means for rotating the shaft and the discs, and means for supplying a coloring liquid to the interior of the hollow shaft.
  • a hollow member having a plurality of annular groups of perforations, said groups of perforations being spaced along the length of the member, a plurality of porous material discs positioned on the member,
  • means for positioning the discs over the groups of perforations means cooperating with the positioning means for compressing the discs, means for rotating the member and the discs, means for guiding a strand over the discs in a path parallel to the axis of rotation of the discs, and means for supplying a coloring liquidto the interior of the hollow member to apply the fluid continuously to the strand.
  • a hollow rotary shaft In an apparatus for applying a continuous stripe throughout the length of a rapidly moving insulated electrical conductor, a hollow rotary shaft, a plurality of perforations spaced along the shaft providing passages for a marking fluid placed under pressure in the shaft, marking discs of absorbent material spaced on the shaft over the perforations and adapted to rotate with the shaft, means for guiding a conductor over the discs, means for compressing the discs to control the porosity thereof to vary the flow of marking fluid therethrough, and means for adjusting the compressing means to obtain a continuous flow .of marking fluid through the discs to give a uniform stripe along the length of the insulated conductor according to the speed of the conductor passing the marking disc.

Description

Oct. 14, 1947. w. P. FRISCO ET AL 2,428,965
APPARATUS FOR PAINTING SURFACES Fil ed Jan. 13, 1944 F/aZ . INVENTORS W. F? FRISCO l/A. RAVBURN ATTORNEY ment for the spring 25.
collar 28 may be adjusted to vary the compression of the spring 25 and thereby control the Patented Oct. 14, 1947 2,428,965 APPARATUS FOR PAINTING SURFACES William P. Frisco, Dundalk, and Vincent A. Rayburn, Baltimore, Md., assignors to Western Electric Company, Incorporated, New York, N. Y., a corporation of New York Application January 13, 1944, Serial No. 518,078
Claims.
An object of this invention is to provide new and improved apparatus for applying coating materials to surfaces.
One device embodying the invention comprises a perforated hollow shaft, a plurality of felt discs mounted upon the perforated hollow shaft, means for spacing and compressing the discs along the shaft, means for rotating the shaft, and means for supplying a coating liquid to the interior of the hollow shaft to forcethe liquid through the felt discs.
-A. complete understanding of the invention may be obtained from the following detailed description of a specific embodiment thereof, when readain conjunction with the appended drawings; in .which:
Fig. 1 is a side elevation of an apparatus embodying the invention with portions thereof broken away to show the internal construction thereof;
Fig. 2 is an enlarged vertical sectional view of the apparatusyand Fig. 3 is a transverse section taken on line 3-3 of Fig. 2.
Referring now to the drawings, standards 10- Ill (Fig. 1) having bearing passages lI-Il formed therein are secured upon a base l2 with the axes of the bearing passages ll-ll aligned. A shaft I 5 having a bore 16 (Fig. 2) formed therein is rotatably secured in the passages ll-H by collars l1-l1 fastened to the shaft. The shaft I5 is also provided with radial perforations l9-l9 grouped around the periphery and along the length thereof, and may be rotated through a pulley H by a belt l8 driven by a conventional power supplying device.
A stop 20 (Fig. 2) secured to the shaft l5 by pins 2l-2l cooperates with a collar 22 slidably urged along the shaft l5 by a compression spring 25 and a plurality of disc-like spacers 26-26 to space a plurality of felt discs 21-21 overthe groups of the perforations l9-l9. A threaded collar 28 backed by a nut 29 serves as an abut- The position of the 21-21 against rotation relative thereto.
compression of the felt discs 21-21 as desired. The stop 20 and the collar 22 are provided with annularly arranged prongs 30-30 formed on opposing faces 3l-3I thereof to secure the discs The spacers 26-26 have annular cut-out portions 32- 32 (Fig. 2) formed therein adjacent to the periphery of the shaft 15, and are provided with annularly arranged prongs 33-33 for the same purpose as the annularly arranged prongs 30-30.
A stufiing box 35 (Fig. 1) having formed thereon a small end 36, which end 36 fits tightly into an opening 31 formed in the end of the shaft 15, is also provided with a bore 39 and an enlarged aperture 40. A tube 4| having a flange 42 formed thereon issecured in the enlarged aperture 40 by a bronze bushing 45, a packing 46 and a. packing nut 41. The tube 4| is connected to a suitable source of coloring liquid maintained under pressure by a pump or other suitable means (not shown). The packing nut 41 may be threaded farther into or out of the enlarged aperture 40 to place the packing 46 under a greater or lesser compression if so desired.
A housing 52 having aligned apertures 55-55 (Fig. 2) formed therein through which the shaft I5 passes is positioned on the base 12 and encloses the felt discs 21-21. A pair of guides 56-56 having U-shaped apertures 51-51 are mounted on the top of the ends of the housing 52 in such a manner that the bottoms of the U-shaped apertures 51-51 are positioned along a line directly over the centers of and slightly below the upper peripheries of the felt discs 21-21. Splash guards 58-58 are secured to the shaft I5 adjacent to the apertures 55-55.
A plurality of grooved rollers 59-59 (Fig. 1) serve to retain the lower periphery of an insulated wire 60 in the bottoms of the U-shaped apertures 51-51 and against the peripheries of the felt discs 21-21 as the wire 60 is drawn from a conventional continuous insulating and vulcanizing machine (not shown) by any suitable wire advancing means, such as a capstan. The insulated wire 60 is formed by passing one or more conductors through an insulating and-vulcanizing machine (not shown) in which a layer of insulation is applied to the wires and vulcanized by heat and pressure.
In the operation of the device described hereinabove, the insulated wire 60 is continuously drawn by a capstan (not shown) from the continuous insulating and vulcanizing machine between the grooved rollers 59-59, through the U-shaped apertures 51-51 and over the upper pe- 3 ripheries of the felt discs 2121. As the insulated wire 60 is drawn across the discs 21-21 in contact therewith, the shaft l5 and the discs are rotated by the belt 18 through the pulley l4, and thus the under surface of the wire 60 is brushed by the felt discs 21-21. Meanwhile, the coloring liquid is forced under pressure through the tube 4!, the bore 39, the bore Hi, the perforations Iii-l9, the cut-out portions 32-32, and through the felt discs 21-21 to saturate the discs. The discs 21-21 filter out any coarse particles contained in the coloring liquid and the portion of the coloring liquid passing to the outer peripheries of the discs 2121 contains no undesirably coarse particles. The coloring liquid may be composed of ink, paint, dye or other suitable coloring materials. The liquid is applied to the under surface of the insulated wire 60 by the rotating discs 21-21 which are in mutual tangential contact with the wire a the wire is drawn thereacross. The entire peripheries of the felt discs 21-21 are continuously brushed against the bottom of the wire 60 as the discs are rotated. This prevents any caking of the coloring liquid upon the peripheries of the discs which remain soft, pliable and porous. Thus, the flow of the coloring liquid to all portions of the outer peripheries of the discs is uniform and the application of the coloring liquid to the wire is in a thin line of constant width. Since the insulated wire 60 is drawn directly from the continuous insulating and vulcanizing machine, the insulation thereof is quite warm as it passes over the discs 21-21, and the coloring liquid applied thereto in the form of a thin line will be quickly dried, by the heat stored in the conductor and will not be smeared.
If the wire 60 is drawn through the apparatus at a faster rate of speed, the pressure placed upon the coloring liquid may be raised to increase the flow of the coloring liquid through the discs 21-21. Thus, the coloring liquid may be applied to the wire 60 in the same quantity per unit length thereof as could be applied by previously known coating apparatus when the wire was drawn through that apparatus at a slower rate of speed. Conversely, the pressure upon the coloring liquid may be decreased to lessen .the flow of the liquid when the wire 60 is drawn through the apparatus at a slower rate of speed.
Any drops of the coloring liquid 66 falling from the discs 2121 will be collected in the housing :2 and the guards 58-58 will rops from being thrown thro h 55 55. ug the apertures Spacers similar tothe spacers 26-26 but of a. different thicknessfrom that of the spacers 26-26 may be substituted for those spacers for positioning the discs 21-21 at different positions along the shaft l5.
The porosit of the felt discs 21-21 may be closely controlled by controlling the compression of the spring 25 by varying the positions of the collar 28 and the nut 29. Thus, the filtering actions of the discs 2121 may be varied for use with coloring liquids having different compositions. Also felt discs similar in shape to the discs 21-21, but the texture of which may be much finer or coarser, may be substituted for the discs 2121 to more or less thoroughly filter the coloring liquid. Consequently, any type of coloring liquids ranging from dyes to paints may be employed successfully in apparatus embodying the invention.
What is claimed is:
prevent any such 1. In an apparatus for coating articles, a base, standards mounted on the base, journals supported by the standards, a shaft having an axial passage formed therein and also being provided with holes leading from the passage to the external surface of the shaft, means for rotating said shaft, a plurality of absorbent discs mounted coaxially upon the shaft and disposed over the holes in the shaft, a plurality of movable spacer plates mounted on the shaft between the said discs for spacing the discs along the shaft, means for applying pressure to the spacer plates to compress the absorbent discs to hold them in predetermined alignment, guides for guiding a wire to be coated against the periphery of the aligned discs while the discs are rotated at right angles to the path of travel of the wire, and means for supplying continuously a coloring liquid under pressure to the passage.
2. In an apparatus for coating articles, a base, a plurality of standards mounted on the base, a plurality of journals supported in alignment by the standards, a shaft having a passage formed therein and also being provided with a plurality of holes leading from the passage to the external surface of the shaft, a plurality of absorbent discs on the shaft extending radially therefrom and disposed over the holes, a plurality of spacer plates mounted on the shaft in between the said discs for keeping the discs apart and in alignment with the said holes, adjustable means for resiliently compressing the absorbent discs, means for rotating the shaft and the discs thereon, means for guiding wire to be coated against the periphery of the discs, and means for supplying coloring liquid under pressure to the passage.
3. In an apparatus for coating articles, a plurality of discs of a liquid carrying material, a shaft having a passage partly therethrough and also being provided with a plurality of holes formed therein leading from the passage transversely through the shaft to the exterior thereof under and adjacent to the central portion of the discs for supplying a coloring liquid to the discs, means on the shaft for holding the discs relatively stiff and in a predetermined alignment and so formed as to facilitate the flow of the coloring liquid thereto, means for applying a pressure to said discs, means for regulating the pressure applied by the pressure applying means, means for rotating the shaft and the discs thereon, means for guiding a wire across the peripheries of the discs parallel to the axis of rotation of the shaft so as to be contacted and marked thereby, and means for supplying a coloring liquid under pressure to the passage.
4. In a coating apparatus, a hollow shaft having perforations connecting the interior and exterior portions thereof, an absorbent disc positioned on said shaft over said perforations, resilient means for compressing said disc, means movable axially of the shaft for adjusting said resilient compressing means to vary the compression of said disc, and means for continuously supplying a coating fluid to the disc through the perforations in the hollow shaft.
5. In a coating apparatus, a hollow shaft having a plurality of perforations connecting the interior and exterior portions thereof, said perforations being spaced in groups along the length of the shaft, a plurality of absorbent discs, :3. plurality of spacer plates, said absorbent discs and spacer plates being mounted alternately on the hollow shaft, resilient means cooperating with said spacer plates for compressing and positioning said discs over the groups of perforations, and means for regulating the compressing action of the last mentioned means.
6. In a coating apparatus, a hollow shaft having a plurality of perforations connecting the interior and exterior portions thereof, said perforations being spaced in groups along the length of the shaft, a plurality of absorbent discs, a plurality of movable spacer plates for spacing said discs on the shaft over the groups of perforations, means for applying a predetermined pressure to said discs, through said movable spacer plates, means for rotating said shaft and said discs therewith, means for guiding a wire along a path parallel to the axis of the shaft, means for pressing such a wire against the peripheries of the discs, and means for supplying a coloring liquid under pressure to the interior portion of said shaft.
7. In a coating-apparatus, a hollow shaft having a plurality of spaced annular groups of perforations in the side-walls thereof, a plurality of absorbent discs positioned on the shaft, a plurality of spacer plates positioned between the discs for positioning the discs overthe groups of perforations, resilient means for compressing the discs between the spacer plates, means for rotating the shaft and the discs, means for guiding a wire over the discs, and means for supplying a coloring liquid to the interior of the hollow shaft.
8. In a coating apparatus, a, hollow shaft having a plurality of annular groups of perforations in the side-walls thereof, said groups of perforations being spaced along the length of the shaft, a plurality of absorbent discs positioned on the shaft, means for positioning the discs over the groups of perforations, resilient means for compressing the discs, means for adjusting the resilient means to vary the compression of the discs, means for rotating the shaft and the discs, and means for supplying a coloring liquid to the interior of the hollow shaft.
9. In a coating apparatus, a hollow member having a plurality of annular groups of perforations, said groups of perforations being spaced along the length of the member, a plurality of porous material discs positioned on the member,
means for positioning the discs over the groups of perforations, means cooperating with the positioning means for compressing the discs, means for rotating the member and the discs, means for guiding a strand over the discs in a path parallel to the axis of rotation of the discs, and means for supplying a coloring liquidto the interior of the hollow member to apply the fluid continuously to the strand.
10, In an apparatus for applying a continuous stripe throughout the length of a rapidly moving insulated electrical conductor, a hollow rotary shaft, a plurality of perforations spaced along the shaft providing passages for a marking fluid placed under pressure in the shaft, marking discs of absorbent material spaced on the shaft over the perforations and adapted to rotate with the shaft, means for guiding a conductor over the discs, means for compressing the discs to control the porosity thereof to vary the flow of marking fluid therethrough, and means for adjusting the compressing means to obtain a continuous flow .of marking fluid through the discs to give a uniform stripe along the length of the insulated conductor according to the speed of the conductor passing the marking disc.
WILLIAM P. FRISCO. VINCENT A. RAYBURN.
REFERENCES CITED The following references are of record in the file of this patent:
UNITED STATES PATENTS
US518078A 1944-01-13 1944-01-13 Apparatus for painting surfaces Expired - Lifetime US2428965A (en)

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Cited By (17)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2541301A (en) * 1948-07-22 1951-02-13 Keenline Equipment Corp Roller lubricator for the surface of conveyer belts
US2663257A (en) * 1951-03-22 1953-12-22 Ncr Co Printing wheel device
US3107182A (en) * 1960-08-02 1963-10-15 Scandia Packaging Mach Adhesive applying mechanism
US3152011A (en) * 1960-02-08 1964-10-06 Gerard George System for application for glue and adhesives
US3237277A (en) * 1965-04-08 1966-03-01 Lowe Paper Co Coating device
US3509850A (en) * 1966-09-13 1970-05-05 Chester J Geating Machine for circumferential color coding
US3889633A (en) * 1974-05-08 1975-06-17 Formulabs Ind Inks Inc Apparatus for applying one or more stripes to conductors
US4089254A (en) * 1974-12-20 1978-05-16 General Electric Company Strip material feed roller assembly
US4619842A (en) * 1985-03-28 1986-10-28 At&T Technologies, Inc. Methods of and apparatus for marking elongated strand material
US5151306A (en) * 1990-11-26 1992-09-29 At&T Bell Laboratories Methods of coating elongated strand material
US5230618A (en) * 1992-02-24 1993-07-27 Bricmanage, Inc. Insulated furnace roller
US5951450A (en) * 1997-09-22 1999-09-14 Chen; Ming-Yu Shaft roller
US6235117B1 (en) * 1998-11-06 2001-05-22 Eamon P. McDonald Squeegee roll for thin sheet handling system
US6530246B1 (en) * 1997-12-24 2003-03-11 Joachim Hausmann Method and device for fiber impregnation
US20150190854A1 (en) * 2013-04-15 2015-07-09 Toyota Shatai Kabushiki Kaisha Roll forming device
US9718080B1 (en) 2016-05-06 2017-08-01 RADCO Infusion Technologies, LLC Linear substrate infusion compartment
US11098445B2 (en) 2016-05-06 2021-08-24 Anderson Group, Ltd. Continuous linear substrate infusion

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US1207386A (en) * 1916-04-25 1916-12-05 Tollef Tollefsen Painting-machine.
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Cited By (23)

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US2541301A (en) * 1948-07-22 1951-02-13 Keenline Equipment Corp Roller lubricator for the surface of conveyer belts
US2663257A (en) * 1951-03-22 1953-12-22 Ncr Co Printing wheel device
US3152011A (en) * 1960-02-08 1964-10-06 Gerard George System for application for glue and adhesives
US3107182A (en) * 1960-08-02 1963-10-15 Scandia Packaging Mach Adhesive applying mechanism
US3237277A (en) * 1965-04-08 1966-03-01 Lowe Paper Co Coating device
US3509850A (en) * 1966-09-13 1970-05-05 Chester J Geating Machine for circumferential color coding
US3889633A (en) * 1974-05-08 1975-06-17 Formulabs Ind Inks Inc Apparatus for applying one or more stripes to conductors
US4089254A (en) * 1974-12-20 1978-05-16 General Electric Company Strip material feed roller assembly
US4619842A (en) * 1985-03-28 1986-10-28 At&T Technologies, Inc. Methods of and apparatus for marking elongated strand material
US5151306A (en) * 1990-11-26 1992-09-29 At&T Bell Laboratories Methods of coating elongated strand material
US5230618A (en) * 1992-02-24 1993-07-27 Bricmanage, Inc. Insulated furnace roller
WO1993016820A1 (en) * 1992-02-24 1993-09-02 Bricmanage, Inc. Improvement in an insulated furnace roller and method of manufacture
US5341568A (en) * 1992-02-24 1994-08-30 Bricmanage, Inc. Insulated furnace roller and method of manufacture
US5951450A (en) * 1997-09-22 1999-09-14 Chen; Ming-Yu Shaft roller
US6530246B1 (en) * 1997-12-24 2003-03-11 Joachim Hausmann Method and device for fiber impregnation
US6235117B1 (en) * 1998-11-06 2001-05-22 Eamon P. McDonald Squeegee roll for thin sheet handling system
US20150190854A1 (en) * 2013-04-15 2015-07-09 Toyota Shatai Kabushiki Kaisha Roll forming device
US9561532B2 (en) * 2013-04-15 2017-02-07 Toyota Shatai Kabushiki Kaisha Roll forming device
US9718080B1 (en) 2016-05-06 2017-08-01 RADCO Infusion Technologies, LLC Linear substrate infusion compartment
US11033923B2 (en) 2016-05-06 2021-06-15 RADCO Infusion Technologies, LLC Linear substrate processing compartment
US11098445B2 (en) 2016-05-06 2021-08-24 Anderson Group, Ltd. Continuous linear substrate infusion
US11298719B2 (en) 2016-05-06 2022-04-12 Southwire Company, Llc Device for modifying a linear substrate
US11359332B2 (en) 2016-05-06 2022-06-14 Anderson Group, Ltd. Continuous linear substrate infusion

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