CA2114971C

Coating apparatus, method of coating glass, compounds and compositions for coating glass and coated glass substrates

Abstract

An apparatus for coating a glass ribbon has an exhaust on each side of a coating unit at different distances therefrom. With this arrangement, portions of the ribbon upstream and downstream of the coating unit are exposed to coating vapors from the coating unit for different periods of time. A coating mixture includes tin containing precursors and a silicon containing precursor. The silicon containing precursor has the structural formula (see formula I) where R1 is a group which does not have an oxygen available to form a peroxide, R2 is a functional group giving the silicon containing precursor the ability to be easily converted to silicon oxide coating, R3 is a bridging group to provide for multiple silicon atoms and R4 completes the bonding on the foundation silicon atom. An accelerant e.g. a phosphorus containing precursor may be used with the metal containing precursors to increase the deposition rate of the coating. The coating deposited on the glass has regions of continuously varying weight percent of silicon oxide and tin oxide as the distance from the glass-coating interface increases, with the surface of the coating farthest from the glass-coating interface being predominantly tin oxide. The regions within the coating provide the coating with different indices of refraction to eliminate iridescence resulting from increased thickness of the tin oxide at the outer coating surface and to provide the coated glass article with a neutral color. When phosphorus is used as the accelerant, the percent of crystallinity is reduced and approaches 0, thereby reducing or eliminating the coating haze.

CA2114971C, drawing sheet 1
Sheet 1 of 7

Term

Term ended

Expired 4 February 2014, 12.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

68 claims: 11 independent, 57 dependent

  1. 1
    CLAIMS 1. A method of coating a moving substrate to provide a coating having a continuously varying chemical composition as the distance from the substrate increases, comprising the steps of:directing a vapor coating composition onto the surface of the substrate at a first position;thereafter moving a first portion of the vapor coating composition along a first region of the substrate surface in a first direction and a second portion of the vapor coating composition along a second region of the substrate surface in a second direction opposite to the first direction, and maintaining the first portion of the coating composition on the first region of the substrate surface for a longer period of time than the second portion of the vapor coating composition on the second region of the substrate surface in order to coat the substrate with the coating having the continuously varying chemical composition as the distance from the substrate increases.
  2. 12
    A transparent substrate having an amorphous coating thereon composed of one or more mixed metal oxides and having up to 15 atomic percent of an element dispersed therethrough selected from the group consisting of phosphorus, aluminum and boron wherein the mixed metal oxide itself excludes phosphorus, aluminum and boron.
  3. 13
    A transparent substrate having an amorphous coating thereon composed of mixed metal oxides with regions in the coating of continuously varying ratio of the metal oxides with the substantial absence of strata of a fixed ratio of the metal oxides and up to 15 atomic percent of an element dispersed therethrough selected from the group consisting of phosphorus, aluminum, and boron. 21)4971
  4. 29
    A silicon-containing precursor for a coating composition defined by the following structural formula:R2 R3-S1-O-R1 R< wherein Rt is selected from a group of radicals not having an oxygen available to form a peroxide bond, R2 is a functional group giving the silicon-containing precursor the ability to be easily converted to a silicon oxide coating by providing that the bond between R2 and the silicon atom is easily thermally broken and is selected from the group consisting of hydrogen, halogen, alkenyl, substituted alkenyl, α-halogenated alkyl, perhalogenated alkyl, alkynyl and substituted alkynyl, R3 is a bridging group to make multiple silicon atom molecules and R3 does not contain oxygen, and R4 completes the bonding structure. 2,14971
  5. 40
    A silicon-containing precursor for a coating composition defined by the following structural formula:R2 R3-Si-O-R, R4 wherein Rb R2 and R3 are as defined in claim 29, and R4 is selected from the group consisting of alkyl or substituted alkyl radicals having from 1 to 10 carbon atoms;alkenyl or substituted alkenyl radicals having from 2 to 10 carbon atoms;alkynyl or substituted alkynyl radicals having from 2 to 10 carbon atoms;and aryl or aralkyl or substituted aryl or aralkyl radicals having from 6 to 11 carbon atoms;hydrogen;halogen;a-halogenated alkyl or perhalogenated alkyl radicals and substituted derivatives having from 1 to 10 carbon atoms, and alkynyl or substituted alkynyl having from 2 to 10 carbon atoms;-CN;OCN;and phosphine, alkylphosphines, and dialkylphosphines, wherein the alkyl radical has from 1 to 10 carbon atoms.
  6. 52
    A coating composition according to claims 38, 39 or 50, wherein the coating composition is a vapor coating composition.
  7. 53
    A coating apparatus, comprising:means for directing a vapor toward a glass surface;a first exhaust means spaced from said vapor directing means on one side thereof;a second exhaust means spaced from said vapor directing means on the other side thereof and in alignment with said vapor directing means and said first exhaust means, and means for positioning said first and second exhaust means and said directing means relative to one another such that the distance between said first exhaust means and said vapor directing means is defined as x and the distance between the second exhaust means and said vapor directing means is defined as ”y wherein the values of ”x and y D are different.
  8. 55
    A coating apparatus comprising:means comprising a nozzle for directing a vapor toward a substrate wherein the nozzle has an opening;a first exhaust means having an opening spaced from said vapor directing means on one side thereof;a second exhaust means having an opening spaced from said vapor directing means on the other side thereof and in alignment with said vapor directing means, and means for positioning said first and second exhaust means, and said vapor directing means relative to the substrate surface such that the surface of said opening of said vapor directing means and said opening of said first exhaust means is at a spaced distance different than the spaced distance between the opening of said second exhaust means and the substrate.
  9. 56
    A coating apparatus comprising:means for directing a vapor toward a substrate;a first exhaust means spaced from said vapor directing means on one side thereof;a second exhaust means spaced from said vapor directing means on the other side thereof and in alignment with said vapor directing means and said first exhaust means;and means for controlling flow volume capacity of said vapor directing means and said first and second exhaust means such that the flow volume capacity of said vapor directing means is different than that of at least one of said exhaust means.
  10. 61
    The silicon-containing precursor of claims 32 and 45, wherein R3 is selected from the group consisting of:-S-;-N-R5 wherein R5 is an alkyl or substituted alkyl radical having from 1 to 4 carbon I atoms;-N-;-P-H;Ό ''-i -P-R5 wherein R5 is as defined above;-P-;and where n is 1 to 4.
  11. 62
    The silicon-containing precursor of claims 32 and 45, wherein R3 is selected from the group consisting of:-S-;-N-CH2CH3 or -N-CH2CH2CH3;-N-: -P-H;-P-CH2CH3 or -P-CH2CH2CH3;and -P-.