WO0102496A2

Light-transmitting and/or coated article with removable protective coating and methods of making the same

Abstract

A method and coating are provided for temporarily protecting a substrate or article during shipping, handling or storage by applying a removable protective coating over at least a portion of the substrate. The substrate may be flat or curved and may have zero, one or more functional coatings. A plurality of substrates with the protective coating of the invention may be arranged in a shipping container so that the protective coating reduces the possibility of damage to the substrate or optional functional coating. In one embodiment, the protective coating is the evaporation or reaction product of an aqueous coating composition containing a polyvinyl alcohol polymer which may be subsequently removed by aqueous washing, thermal decomposition or combustion. In another embodiment, the protective coating is formed by sputtering a substantially carbon coating onto the substrate. The carbon coating is subsequently removed by combustion. The protective coating may have identification materials, such as colorants or fragrance materials, such that different types of substrates and/or functional coatings can be distinguished from each other. Additionally, the temporary protective coating can improve the heating of a functionally coated glass substrate.

WO0102496A2, drawing sheet 1
Sheet 1 of 4

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

68 claims: 12 independent, 56 dependent

  1. 1
    What is claimed is:1. A coated article, comprising: a substrate having a first surface;a functional coating deposited over at least a portion of the first surface;and a removable protective coating deposited over at least a portion of the functional coating, wherein the functional coating is selected from the group consisting of single layer and multiple layer coatings, and wherein the removable protective coating is essentially free of spacer material when the functional coating is a single layer metal oxide.
  2. 26
    A coated article, comprising:a flat glass substrate having a first surface;and a removable protective coating deposited over at least a portion of the first surface, wherein the protective coating has a thickness of less than about 50 microns and is deposited from a coating composition that is essentially free of spacer material.
  3. 28
    A coating composition for forming a removable protective coating over a substrate having a silver containing functional coating, the coating composition comprising:a film-forming material;and a substantially halide free biocide.
  4. 29
    A method of protecting a substrate from mechanical damage, comprising the steps of:providing a substrate having a first surface with a functional coating over at least a portion of the first surface;depositing a liquid coating composition over at least a portion of the functional coating, the coating composition comprising a film-forming material;and forming a removable protective coating from the coating composition, wherein the functional coating is selected from the group consisting of single layer and multiple layer coatings, wherein the functional coating comprises one or more metals, non-metals, semi-metals, semiconductors, or alloys, compounds, composites, combinations, and blends thereof, and wherein the removable protective coating is essentially free of spacer material when the functional coating is a single layer metal oxide.
  5. 33
    A method of identifying selected substrates, comprising the steps of:forming a removable protective coating of a different selected color or appearance or fragrance on different substrates to distinguish the different substrates.
  6. 35
    A coated article, comprising:a substrate having a surface;and a removable substantially carbon protective coating deposited over at least a portion of the substrate.
  7. 43
    A method of protecting a substrate, comprising tne steps of:providing a substrate;and applying a substantially carbon protective coating over at least a portion of the substrate.
  8. 52
    A method of preparing a shipping container of flat or curved sheet substrates, comprising the steps of:providing a plurality of sheet substrates, each substrate having a first surface, applying a removable protective coating over at least a portion of the first surface of at least a portion of the substrates;and arranging the substrates m a shipping container such that at least one protective coating is located between at least one pair of adjacent substrates.
  9. 55
    A method of fabricating an article, comprising the steps of:receiving a shipping container having a plurality of substrates, each substrate having a first surface with a removable protective coating located on the first surface of at least a portion of the substrates and with the suostrates positioned such that at least one protective coating is located between at least one adjacent pair of substrates;and removing the protective coating material from at least one of the substrates .
  10. 60
    In a shipping container having a plurality of adjacent substrates with each substrate having a first surface, the improvement comprising:applying a removable protective coating over at least a portion of the. first surface of at least one substrate such that at least one protective coating is located between at least one pair of adjacent substrates.
  11. 62
    A method of protecting a substrate from mechanical damage, comprising the steps of:providing a flat glass substrate;and depositing a removable protective coating over at least a portion of the substrate, wherein the protective coating has a thickness of less than about 50 microns and is deposited from a coating composition that is essentially free of spacer material.
  12. 64
    A method of promoting uniform heating of a substrate having a functional coating, comprising the steps of:applying a removable, high emissivity coating over at least a portion of the substrate before heating;and heating the substrate such that the high emissivity coating combusts or thermally decomposes during heating.