MLchartDataset catalogue

Patent · US6169266B1 · B1 · US

Etching of multi-layered coated surfaces to add graphic and text elements to an article

(11) Publication number
US6169266B1
(21) Application number
09/048,017
(22) Filing date
1998-03-25
(30) Priority date
1998-03-25
(43) Publication date
2001-01-02
(45) Date of grant
2001-01-02
(51) IPC
B41M 5/24
(52) CPC
  • B41M Printing, duplicating, marking, or copying processes; colour printing: 5/24, 5/34
(73) Assignee
Xircom Inc
(72) Inventors
James G. Hughes
(54) Title
Etching of multi-layered coated surfaces to add graphic and text elements to an article
(57) Abstract

A system and method for incorporating graphic and text elements on a surface of an article by employing an ablative etching device, such as a laser etcher, that is capable of etching the elements into a coating on the article's surface having at least two layers of material. The ablative etching device etches into the coating layers to a depth that removes the material of the outermost, exposed layer, but which leaves intact at least a portion of the depth of an underlying layer. As a result the graphics and text take on the color of the particular underlying layer exposed by the etching process. By making the colors of the underlying layer or layers contrast the color of the outermost, exposed layer, the graphics and text elements become readily readable against the background color of the outermost layer. Further, the graphic and text elements can be formed as an array having individual holes etched into the coating layers, as well as un-etched locations. By alternating the color exhibited by adjacent locations in the array, it can be made to appear to a viewer that the associated graphic and text elements are a color different from the colors actually exhibited by the adjacent array locations. The shade of the color associated with a portion of the graphic and text elements can also be made to appear lighter or darker to a viewer.

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Claims (34)

  1. A system for incorporating graphic and text elements on a surface of an article, comprising: a coating having a plurality of layers of material covering the surface of the article upon which the graphic and text elements are to be incorporated, said layers comprising an outermost, exposed layer, and at least two underlying layers formed of materials having a color different from one another; and an ablative etching device capable of etching the graphic and text elements into the at least two layers of material to a depth that completely removes the material of the outermost, exposed layer in substantially all areas etched but which leaves intact at least a portion of the thickness of an underlying layer in substantially all the etched areas; and wherein the ablative etching device etches an array of individual holes into the layers to form the graphic and text elements, wherein each hole is etched to a depth that results in the hole exhibiting a color corresponding to the color of the particular layer to which or into which the hole extends; at least one of said plurality of layers has a color that makes the colors exhibited by the array of holes appear one of (i) lighter or (ii) darker to a viewer.
  2. The system of claim 1, wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the graphic and text elements are readily readable.
  3. The system of claim 1, wherein the graphic elements comprise optically scanable bar codes, and wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the bar codes can be accurately scanned.
  4. The system of claim 1, wherein the ablative etching device comprises a laser etching device that etches the graphic and text elements into the at least two layers of material using a laser beam.
  5. The system of claim 1, wherein each underlying layer is formed of a material having a different color.
  6. The system of claim 1 wherein the material respectively forming each layer is one of (i) paint, or (ii) ink.
  7. The system of claim 1 wherein the thickness of each layer is within a range of about 13 to 15 μm.
  8. The system of claim 1 wherein the material respectively forming each layer comprises ink applied using a lithographic process.
  9. The system of claim 1, wherein the outermost, exposed layer extends beyond the surface of the article upon which the graphic and text elements are to be incorporated so as to coat at least an additional portion of the article.
  10. The system of claim 1, wherein at least two of the at least two underlying layers comprise material that imparts a different primary color to those layers.
  11. The system of claim 10, wherein the holes in the array are sized so as to have a diameter not exceeding about 0.005 inches and are grouped in a density of no less than about 90,000 holes per square inch in the etched regions of the layers, thereby causing the graphic and text elements to seem to a viewer as having an apparent color different from the colors exhibited by adjacent holes of the array.
  12. The system of claim 11, wherein the primary colors are selected from a group comprising yellow, magenta, and cyan, such that adjacent holes in the array exhibiting the colors yellow and magenta, respectively, will appear to a viewer as red, adjacent holes in the array exhibiting the colors yellow and cyan, respectively, will appear to a viewer as green, and adjacent holes in the array exhibiting the colors magenta and cyan, respectively, will appear to a viewer as blue.
  13. The system of claim 11, wherein the outermost, exposed layer is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by causing the ablative etching device to refrain from etching into the layers at uniformly intermixed areas throughout the array in the portion of the etched areas to be lightened in shade, said intermixed non-etched areas having a size approximately equal to a cross-sectional diameter of the holes.
  14. The system of claim 13, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade.
  15. The system of claim 11, wherein the outermost, exposed layer is made of a material that gives the layer a black color, and wherein the shade of the apparent color is darkened by causing the ablative etching device to refrain from etching into the layers at uniformly intermixed areas throughout the array in the portion of the etched areas to be darkened in shade, said intermixed non-etched areas having a size approximately equal to a cross-sectional diameter of the holes.
  16. The system of claim 15, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.
  17. The system of claim 11, wherein one of the underlying layers is made of a material that gives the layer a black color, and wherein the shade of the apparent color in at least a portion of the etched areas is darkened by using the ablative etching device to uniformly intermix holes extending to or into the underlying layer having a black color throughout the array in the portion of the etched areas to be darkened in shade.
  18. The system of claim 17, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the black color is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.
  19. The system of claim 11, wherein one of the underlying layers is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by using the ablative etching device to uniformly intermix holes extending to or into the underlying layer having a white color throughout the array in the portion of the etched areas to be lightened in shade.
  20. The system of claim 19, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the white color is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade.
  21. A method of incorporating graphic and text elements on a surface of an article, comprising the steps of: coating the surface of the article upon which the graphic and text elements are to be incorporated, said coating having a plurality of layers of material comprising an outermost, exposed layer, and at least two underlying layers formed of materials having a different color from one another; and etching the graphic and text elements into the layers of material using an ablative etching device to form an array of individual holes etched into the layers, wherein each hole is etched to a depth that results in the hole exhibiting a color corresponding to the color of the particular layer to which or into which the hole extends, and wherein at least one of said pluarlity of layers has a color that makes the colors exhibited by the array of holes appear one of (i) lighter or (ii) darker to a viewer.
  22. The method of claim 21, wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the graphic and text elements are readily readable.
  23. The method of claim 21, wherein the graphic elements comprise optically scanable bar codes, and wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the bar codes can be accurately scanned.
  24. The method of claim 18, wherein at least two of the underlying layers comprises material that imparts a different primary color to that layer.
  25. The method of claim 4, wherein the holes in the array are sized so as to have a diameter not exceeding about 0.005 inches and are grouped in a density of no less than about 90,000 holes per square inch in the etched regions of the layers, thereby causing the graphic and text elements to seem to a viewer as having an apparent color different from the colors exhibited by adjacent holes of the array.
  26. The method of claim 25, wherein the primary colors are selected from a group comprising yellow, magenta, and cyan, such that adjacent holes in the array exhibiting the colors yellow and magenta, respectively, will appear to a viewer as red, adjacent holes in the array exhibiting the colors yellow and cyan, respectively, will appear to a viewer as green, and adjacent holes in the array exhibiting the colors magenta and cyan, respectively, will appear to a viewer as blue.
  27. The method of claim 25, wherein the outermost, exposed layer is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by a step of uniformly intermixing non-etched areas having a size approximately equal to a cross-sectional diameter of the holes throughout the portion of the etched areas to be lightened in shade.
  28. The method of claim 27, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade.
  29. The method of claim 25, wherein the outermost, exposed layer is made of a material that gives the layer a black color, and wherein the shade of the apparent color is darkened by a step of uniformly intermixing non-etched areas having a size approximately equal to a cross-sectional diameter of the holes throughout a portion of the array to be darkened in shade.
  30. The method of claim 29, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.
  31. The method of claim 25, wherein one of the underlying layers is made of a material that gives the layer a black color, and wherein the shade of the apparent color in at least a portion of the etched areas is darkened by a step of uniformly intermixing holes extending to or into the underlying layer having a black color throughout the portion of the etched areas to be darkened in shade.
  32. The method of claim 31, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the black color is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.
  33. The method of claim 25, wherein one of the underlying layers is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by a step of uniformly intermixing holes extending to or into the underlying layer having a white color throughout the portion of the etched areas to be lightened in shade.
  34. The method of claim 33, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the white color is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade.

Description

1. Technical Field

This invention relates to a system and method of incorporating graphic and text elements on a surface of an article, and particularly to such a system and method that incorporates the graphic and text elements via etching of a multi-layered coated surface of the article.

2. Background Art

The marking of products using both graphics and text is a common process employed by almost every manufacturer. This marking is used to provide a user with information related to brand names, product specifications, safety warnings, and much more. One common method of marking products is to adhere a pre-printed label having the desired information onto an appropriate surface of the product. Another common method involves painting or inking the information onto a surface of the product using a direct printing process, such as screen process printing (often referred to as silk-screening), pad printing, or some form of lithographic printing. While these latter processes for directly printing information on a product vary greatly in their details, all involve the use of a reusable component that contains the graphics and text to be printed on the product. For example, screen process printing employs a screen having mesh covered openings in the configuration of the desired graphics and text. The screen is placed on the surface to be printed and paint or ink is forced through the mesh covered openings to form the graphics and text on the article.

Both labeling and direct printing processes work well in many applications, but there are drawbacks. For example, labels can be susceptible to peeling or unauthorized removal.

Citations (21)

  • US4323755A
  • JPS5914993A
  • JPS60261573A
  • FR2575115A1
  • FR2575114A1
  • US4727235A
  • US4877480A
  • JPS63205291A
  • JPS63209889A
  • EP0383956A1
  • JPH01267092A
  • US4970600A
  • US5061341A
  • US5603796A
  • US5477023A
  • DE4419197A1
  • US5338396A
  • US5460757A
  • EP0771677A1
  • EP0802064A1
  • US6007929A
Record as JSON
{
  "publication_number": "US6169266B1",
  "country": "US",
  "kind": "B1",
  "title": "Etching of multi-layered coated surfaces to add graphic and text elements to an article",
  "abstract": "A system and method for incorporating graphic and text elements on a surface of an article by employing an ablative etching device, such as a laser etcher, that is capable of etching the elements into a coating on the article's surface having at least two layers of material. The ablative etching device etches into the coating layers to a depth that removes the material of the outermost, exposed layer, but which leaves intact at least a portion of the depth of an underlying layer. As a result the graphics and text take on the color of the particular underlying layer exposed by the etching process. By making the colors of the underlying layer or layers contrast the color of the outermost, exposed layer, the graphics and text elements become readily readable against the background color of the outermost layer. Further, the graphic and text elements can be formed as an array having individual holes etched into the coating layers, as well as un-etched locations. By alternating the color exhibited by adjacent locations in the array, it can be made to appear to a viewer that the associated graphic and text elements are a color different from the colors actually exhibited by the adjacent array locations. The shade of the color associated with a portion of the graphic and text elements can also be made to appear lighter or darker to a viewer.",
  "claims": [
    "1. A system for incorporating graphic and text elements on a surface of an article, comprising: a coating having a plurality of layers of material covering the surface of the article upon which the graphic and text elements are to be incorporated, said layers comprising an outermost, exposed layer, and at least two underlying layers formed of materials having a color different from one another; and an ablative etching device capable of etching the graphic and text elements into the at least two layers of material to a depth that completely removes the material of the outermost, exposed layer in substantially all areas etched but which leaves intact at least a portion of the thickness of an underlying layer in substantially all the etched areas; and wherein the ablative etching device etches an array of individual holes into the layers to form the graphic and text elements, wherein each hole is etched to a depth that results in the hole exhibiting a color corresponding to the color of the particular layer to which or into which the hole extends; at least one of said plurality of layers has a color that makes the colors exhibited by the array of holes appear one of (i) lighter or (ii) darker to a viewer.",
    "2. The system of claim 1, wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the graphic and text elements are readily readable.",
    "3. The system of claim 1, wherein the graphic elements comprise optically scanable bar codes, and wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the bar codes can be accurately scanned.",
    "4. The system of claim 1, wherein the ablative etching device comprises a laser etching device that etches the graphic and text elements into the at least two layers of material using a laser beam.",
    "5. The system of claim 1, wherein each underlying layer is formed of a material having a different color.",
    "6. The system of claim 1 wherein the material respectively forming each layer is one of (i) paint, or (ii) ink.",
    "7. The system of claim 1 wherein the thickness of each layer is within a range of about 13 to 15 μm.",
    "8. The system of claim 1 wherein the material respectively forming each layer comprises ink applied using a lithographic process.",
    "9. The system of claim 1, wherein the outermost, exposed layer extends beyond the surface of the article upon which the graphic and text elements are to be incorporated so as to coat at least an additional portion of the article.",
    "10. The system of claim 1, wherein at least two of the at least two underlying layers comprise material that imparts a different primary color to those layers.",
    "11. The system of claim 10, wherein the holes in the array are sized so as to have a diameter not exceeding about 0.005 inches and are grouped in a density of no less than about 90,000 holes per square inch in the etched regions of the layers, thereby causing the graphic and text elements to seem to a viewer as having an apparent color different from the colors exhibited by adjacent holes of the array.",
    "12. The system of claim 11, wherein the primary colors are selected from a group comprising yellow, magenta, and cyan, such that adjacent holes in the array exhibiting the colors yellow and magenta, respectively, will appear to a viewer as red, adjacent holes in the array exhibiting the colors yellow and cyan, respectively, will appear to a viewer as green, and adjacent holes in the array exhibiting the colors magenta and cyan, respectively, will appear to a viewer as blue.",
    "13. The system of claim 11, wherein the outermost, exposed layer is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by causing the ablative etching device to refrain from etching into the layers at uniformly intermixed areas throughout the array in the portion of the etched areas to be lightened in shade, said intermixed non-etched areas having a size approximately equal to a cross-sectional diameter of the holes.",
    "14. The system of claim 13, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade.",
    "15. The system of claim 11, wherein the outermost, exposed layer is made of a material that gives the layer a black color, and wherein the shade of the apparent color is darkened by causing the ablative etching device to refrain from etching into the layers at uniformly intermixed areas throughout the array in the portion of the etched areas to be darkened in shade, said intermixed non-etched areas having a size approximately equal to a cross-sectional diameter of the holes.",
    "16. The system of claim 15, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.",
    "17. The system of claim 11, wherein one of the underlying layers is made of a material that gives the layer a black color, and wherein the shade of the apparent color in at least a portion of the etched areas is darkened by using the ablative etching device to uniformly intermix holes extending to or into the underlying layer having a black color throughout the array in the portion of the etched areas to be darkened in shade.",
    "18. The system of claim 17, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the black color is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.",
    "19. The system of claim 11, wherein one of the underlying layers is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by using the ablative etching device to uniformly intermix holes extending to or into the underlying layer having a white color throughout the array in the portion of the etched areas to be lightened in shade.",
    "20. The system of claim 19, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the white color is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade.",
    "21. A method of incorporating graphic and text elements on a surface of an article, comprising the steps of: coating the surface of the article upon which the graphic and text elements are to be incorporated, said coating having a plurality of layers of material comprising an outermost, exposed layer, and at least two underlying layers formed of materials having a different color from one another; and etching the graphic and text elements into the layers of material using an ablative etching device to form an array of individual holes etched into the layers, wherein each hole is etched to a depth that results in the hole exhibiting a color corresponding to the color of the particular layer to which or into which the hole extends, and wherein at least one of said pluarlity of layers has a color that makes the colors exhibited by the array of holes appear one of (i) lighter or (ii) darker to a viewer.",
    "22. The method of claim 21, wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the graphic and text elements are readily readable.",
    "23. The method of claim 21, wherein the graphic elements comprise optically scanable bar codes, and wherein material forming the outermost, exposed layer has a color that contrasts that of all underlying layers to the extent that the bar codes can be accurately scanned.",
    "24. The method of claim 18, wherein at least two of the underlying layers comprises material that imparts a different primary color to that layer.",
    "25. The method of claim 4, wherein the holes in the array are sized so as to have a diameter not exceeding about 0.005 inches and are grouped in a density of no less than about 90,000 holes per square inch in the etched regions of the layers, thereby causing the graphic and text elements to seem to a viewer as having an apparent color different from the colors exhibited by adjacent holes of the array.",
    "26. The method of claim 25, wherein the primary colors are selected from a group comprising yellow, magenta, and cyan, such that adjacent holes in the array exhibiting the colors yellow and magenta, respectively, will appear to a viewer as red, adjacent holes in the array exhibiting the colors yellow and cyan, respectively, will appear to a viewer as green, and adjacent holes in the array exhibiting the colors magenta and cyan, respectively, will appear to a viewer as blue.",
    "27. The method of claim 25, wherein the outermost, exposed layer is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by a step of uniformly intermixing non-etched areas having a size approximately equal to a cross-sectional diameter of the holes throughout the portion of the etched areas to be lightened in shade.",
    "28. The method of claim 27, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade.",
    "29. The method of claim 25, wherein the outermost, exposed layer is made of a material that gives the layer a black color, and wherein the shade of the apparent color is darkened by a step of uniformly intermixing non-etched areas having a size approximately equal to a cross-sectional diameter of the holes throughout a portion of the array to be darkened in shade.",
    "30. The method of claim 29, wherein a density of the uniformly intermixed non-etched areas is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.",
    "31. The method of claim 25, wherein one of the underlying layers is made of a material that gives the layer a black color, and wherein the shade of the apparent color in at least a portion of the etched areas is darkened by a step of uniformly intermixing holes extending to or into the underlying layer having a black color throughout the portion of the etched areas to be darkened in shade.",
    "32. The method of claim 31, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the black color is determinative of the degree to which the shade of the apparent color is darkened in that the higher the density, the darker the shade.",
    "33. The method of claim 25, wherein one of the underlying layers is made of a material that gives the layer a white color, and wherein the shade of the apparent color in at least a portion of the etched areas is lightened by a step of uniformly intermixing holes extending to or into the underlying layer having a white color throughout the portion of the etched areas to be lightened in shade.",
    "34. The method of claim 33, wherein a density of the uniformly intermixed holes extending to or into the underlying layer having the white color is determinative of the degree to which the shade of the apparent color is lightened in that the higher the density, the lighter the shade."
  ],
  "description_excerpt": "1. Technical Field\n\nThis invention relates to a system and method of incorporating graphic and text elements on a surface of an article, and particularly to such a system and method that incorporates the graphic and text elements via etching of a multi-layered coated surface of the article.\n\n2. Background Art\n\nThe marking of products using both graphics and text is a common process employed by almost every manufacturer. This marking is used to provide a user with information related to brand names, product specifications, safety warnings, and much more. One common method of marking products is to adhere a pre-printed label having the desired information onto an appropriate surface of the product. Another common method involves painting or inking the information onto a surface of the product using a direct printing process, such as screen process printing (often referred to as silk-screening), pad printing, or some form of lithographic printing. While these latter processes for directly printing information on a product vary greatly in their details, all involve the use of a reusable component that contains the graphics and text to be printed on the product. For example, screen process printing employs a screen having mesh covered openings in the configuration of the desired graphics and text. The screen is placed on the surface to be printed and paint or ink is forced through the mesh covered openings to form the graphics and text on the article.\n\nBoth labeling and direct printing processes work well in many applications, but there are drawbacks. For example, labels can be susceptible to peeling or unauthorized removal.",
  "cpc": [
    "B41M 5/24",
    "B41M 5/34"
  ],
  "ipc": [
    "B41M 5/24"
  ],
  "assignees": [
    "Xircom Inc"
  ],
  "inventors": [
    "James G. Hughes"
  ],
  "filing_date": "1998-03-25",
  "publication_date": "2001-01-02",
  "grant_date": "2001-01-02",
  "priority_date": "1998-03-25",
  "application_number": "US-4801798-A",
  "family_id": "21952311",
  "cited_by_count": 106,
  "citations": [
    "US4323755A",
    "JPS5914993A",
    "JPS60261573A",
    "FR2575115A1",
    "FR2575114A1",
    "US4727235A",
    "US4877480A",
    "JPS63205291A",
    "JPS63209889A",
    "EP0383956A1",
    "JPH01267092A",
    "US4970600A",
    "US5061341A",
    "US5603796A",
    "US5477023A",
    "DE4419197A1",
    "US5338396A",
    "US5460757A",
    "EP0771677A1",
    "EP0802064A1",
    "US6007929A"
  ]
}

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