Nova Patents
EP0233003A1

Coated glass.

Abstract

Bent and/or toughened silver coated glass having high light transmission and low emissivity is produced by depositing layers of additional metal over, or both under and over, the silver layer. When the additional metal is used over the silver layer, it is selected from aluminium, titanium, zinc and tantalum. When the additional metal is used both under and over the silver, it is selected from aluminium, titanium, zinc, tantalum and zirconium. The additional metal is used in an amount such that the light transmission of the coated glass increases on bending and/or toughening. The bent and/or toughened coated glass is useful for architectural glazing and as vehicle windows.

EP0233003A1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 23 January 2007, 19.7 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

36 claims: 29 independent, 7 dependent

  1. 1
    A process for the production of a bent and/or toughened silver coated glass substrate which comprises subjecting a glass substrate with a coating comprising a silver layer 5 nm to 30 nm thick, a layer of additional metal selected from aluminium, titanium, zinc and tantalum over the silver layer, and an anti-reflection metal oxide layer over said layer of addition metal to a bending and/or toughening cycle in which it is heated to a temperature above the softening point of the glass, whereby the coated glass develops an increased light transmission during the bending and/or toughening cycle.
  2. 2
    A process for the production of a bent and/or toughened silver coated glass substrate which comprises subjecting a glass substrate with a coating comprising a layer of additional metal selected from aluminium, titanium, zinc, tantalum and zirconium over the substrate, a silver layer 5 nm to 30 nm thick over said layer of additional metal, a further layer of additional metal selected from aluminium, titanium, zinc, tantalum and zirconium over the silver layer, and an anti-reflection metal oxide layer over said further layer of additional metal to a bending and/or toughening cycle in which it is heated to a temperature above the softening point of the glass, whereby the coated glass develops an increased light transmission during the bending and/or toughening cycle.
  3. 4
    A process according to any one of the preceding claims wherein the coated glass develops an increased light transmission of at least 80% of the light transmission of the uncoated glass during the bending and/or toughening cycle.
  4. 5
    A process according to any of the preceding claims which comprises heating a coated soda lime silica glass substrate in air at a temperature in the range 570°C to 620°C, allowing it to sag in a mold of desired curvature, and annealing the bent glass.
  5. 6
    A process according to any of claims 1 to 4 which comprises heating a coated soda lime silica glass substrate in air at a temperature in the range 600°C to 670°C, optionally bending the glass and rapidly cooling the glass to toughen it.
  6. 8
    A process according to any of the preceding claims wherein the amount of additional metal used is regulated in accordance with the temperature to which the glass is heated and the duration of the heating cycle employed in the bending and/or toughening cycle, to maximise the light transmission of the toughened and/or bent product.
  7. 9
    A process according to any of the preceding claims wherein the total amount of said additional metal present is such that the light transmission of the coated glass increases by at least 10% of its original value on bending and/or toughening.
  8. 10
    A process according to any of the preceding claims wherein the total amount of additional metal is sufficient to provide a single metal layer having a thickness in the range 4 nm to 15 nm.
  9. 11
    A process according to any of claims 1 and 3 to 10 as dependent on claim 1 wherein the additional metal is aluminium or zinc.
  10. 12
    A process according to any of claims 2 and 3 to 10 as dependent on claim 1 wherein the additional metal is aluminium, zinc or titanium.
  11. 13
    A process according to any of the preceding claims wherein the additional metal is aluminium in an amount equivalent to a layer 5 nm to 10 nm thick.
  12. 14
    A process according to any of the preceding claims wherein the silver layer has a thickness of 5 nm to 20 nm.
  13. 15
    A process according to any of the preceding claims wherein the total thickness of any metal oxide layers overlying the silver layer after bending and/or toughening of the glass is from 20 nm to 60 nm.
  14. 16
    A process according to any of the preceding claims wherein a layer or layers of metal oxide is provided between the glass and the silver layer.
  15. 18
    A coated glass substrate with a coating comprising a silver layer 5 nm to 30 nm thick, a layer of additional metal selected from aluminium, titanium, zinc and tantalum over the silver layer, and an anti-reflection metal oxide layer over said additional metal which coated glass substrate, when subjected to a bending and/or toughening cycle in which the glass is heated in air to a temperature above the softening temperature of the glass, develops an increased light transmission.
  16. 19
    A coated glass substrate with a coating comprising a layer of additional metal selected from aluminium, titanium, zinc, tantalum and zirconium, a silver layer 5 nm to 30 nm thick over the layer of additional metal, a further layer of additional metal selected from aluminium, titanium, zinc, tantalum and zirconium over the silver layer, and an anti-reflection metal oxide layer over said further layer of additional metal which coated glass substrate, when subjected to a bending and/or toughening cycle in which the glass is heated in air to a temperature above the softening temperature of the glass, develops an increased light transmission.
  17. 21
    A coated glass substrate according to any of claims 18 to 20 which develops an increased light transmission of at least 80% of the light transmission of the base glass during the bending and/or toughening cycle.
  18. 22
    A coated glass substrate according to any of claims 18 to 21 wherein the total amount of said additional metal present is such that the light transmission of the coated glass increases by at least 10% of its original value on bending and/or toughening in air.
  19. 23
    A coated glass substrate according to any of claims 18 to 22 wherein the total amount of additional metal is sufficient to provide a single metal layer having a thickness in the range 4 nm to 15 nm.
  20. 24
    A coated glass substrate according to any of claims 18 and 20 to 23 as dependent on claim 18 wherein the additional metal is aluminium or zinc.
  21. 25
    A coated glass substrate according to any of claims 19 and 20 to 23 as dependent on claim 19 wherein the additional metal is aluminium, zinc or titanium.
  22. 26
    A coated glass substrate according to any of claims 18 to 25 wherein the additional metal is aluminium in an amount equivalent to a layer 5 nm to 10 nm thick.
  23. 27
    A coated glass substrate according to any of claims 18 to 26 wherein the silver layer has a thickness of 5 nm to 20 nm.
  24. 28
    A coated glass substrate according to any of claims 18 to 27 wherein the total thickness of any metal oxide layers overlying the silver layer after bending and/or toughening of the glass is from 20nm to 60nm.
  25. 29
    A coated glass substrate according to any of claims 18 to 28 wherein a layer or layers of metal oxide is provided between the glass and the silver layer.
  26. 31
    A bent and/or toughened silver-coated glass substrate having a light transmission of at least 80% of that of the uncoated glass the coating comprising an anti-reflection metal oxide layer, an oxidised layer of metal selected from aluminium, titanium, tantalum and zirconium over the anti-reflection layer, a silver layer 5 nm to 30 nm thick over said oxidised metal layer, a further oxidised layer of metal selected from aluminium, titanium, tantalum and zirconium over said silver layer, and an overlying anti-reflection metal oxide layer, the said two layers of oxidised metal having a combined total thickness in the range 8 nm to 30 nm.
  27. 33
    A bent and/or toughened silver-coated glass substrate having a light transmission of at least 80% of the uncoated glass, the coating comprising an anti-reflection metal oxide layer, a silver layer 5 nm to 30 nm thick over said anti-reflection layer, and an oxidised layer of titanium or tantalum over said silver layer, and an overlying anti-reflection metal oxide layer, the said layer of oxidised metal having a thickness in the range 8 nm to 30 nm.
  28. 34
    A bent and/or toughened silver-coated glass substrate having a light transmission of at least 80% of the uncoated glass, the coating comprising an anti-reflection metal oxide layer, a silver layer 5 nm to 30 nm thick over said anti-reflection metal layer and an overlying anti-reflection metal layer, with oxidised zinc distributed through all the layers of the coating.
  29. 36
    A bent and/or toughened silver-coated glass according to any of claims 31 to 35 having a light transmission of at least 70%.
Independent claims29