EP4416111B1

Vacuum insulated panel with tellurium oxide and/or boron and bismuth oxide inclusive seal

Abstract

This record has no abstract on file.

EP4416111B1, drawing sheet 1
Sheet 1 of 38

Term

17.1 yearsleft in the term

Expires 6 November 2043.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

25 claims: 20 independent, 5 dependent

  1. 1
    A vacuum insulating panel (100) comprising:a first substrate (1);a second substrate (2);a plurality of spacers (4) provided in a gap (5) between at least the first and second substrates, wherein the gap (5) is at pressure less than atmospheric pressure;a seal (3) provided at least partially between at least the first and second substrates, characterized in that the seal (3) comprises a first seal layer (30) and a second seal layer (31, 32);and in that the second seal layer (31, 32) comprises boron oxide and bismuth oxide, wherein the second seal layer (31, 32) comprises from about 1-20 mol% bismuth oxide and from about 20-65 mol% boron oxide, and comprises at least two times more boron oxide than bismuth oxide in terms of mol%.
  2. 3
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises from about 1-12 mol% bismuth oxide and from about 0-50 mol% silicon oxide.
  3. 4
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises from about 40-55 mol% boron oxide.
  4. 5
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises from about 0-20 mol% titanium oxide.
  5. 6
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises at least three times more boron oxide than bismuth oxide in terms of mol%.
  6. 7
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises at least four times more boron oxide than bismuth oxide in terms of mol%.
  7. 8
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises more boron oxide than bismuth oxide in terms of wt. %.
  8. 9
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises, in terms of mol%, from about 4-9% bismuth oxide, from about 40-55% boron oxide, from about 15-35% silicon oxide, and from about 3-12% titanium oxide.
  9. 10
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises elements in the following order of magnitude on an elemental basis:O > B > Si > Bi.
  10. 11
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) comprises elements in the following order of magnitude on an elemental basis:B > Si > Bi > Ti.
  11. 12
    The vacuum insulating panel (100) of any preceding claim, wherein a thermal conductivity of the second seal layer (31, 32) is greater than a thermal conductivity of the first seal layer (30).
  12. 13
    The vacuum insulating panel (100) of any preceding claim, wherein the first seal layer (30) has a density of from about 2.8-4.0 g/cm 3 , the second seal layer (31, 32) has a density of from about 3.0-4.2 g/cm 3 , and wherein the density of the second seal layer (31, 32) is at least about 0.20 g/cm 3 greater than the density of the first seal layer (30).
  13. 14
    The vacuum insulating panel (100) of any preceding claim, wherein the second seal layer (31, 32) has a bridging oxygen (BO) content of at least about 80%.
  14. 15
    The vacuum insulating panel (100) of any preceding claim, wherein the first seal layer (30) comprises tellurium oxide and vanadium oxide, and by wt.% comprises more tellurium oxide than vanadium oxide.
  15. 19
    The vacuum insulating panel (100) of any preceding claim, wherein the first seal layer (30) is a main seal layer, and the second seal layer (31, 32) is a primer layer.
  16. 20
    The vacuum insulating panel (100) of any preceding claim, wherein the seal (3) further comprises a third seal layer, the first seal layer (30) being located between at least the second and third seal layers, and wherein the third seal layer comprises boron oxide and bismuth oxide, wherein the third seal layer comprises from about 1-20 mol% bismuth oxide and from about 20-65 mol% boron oxide, and comprises at least two times more boron oxide than bismuth oxide in terms of mol%.
  17. 22
    The vacuum insulating panel (100) of any preceding claim, wherein, for at least one location of the seal (3), a width of the first seal layer (30) is less than a width of the second seal layer (31, 32) by at least about 1 mm.
  18. 23
    The vacuum insulating panel (100) of any preceding claim, the second seal layer (31, 32) has a melting point (Tm) at least 100 degrees C higher than a melting point of the first seal layer (30).
  19. 24
    The vacuum insulating panel (100) of any preceding claim, wherein the first and second substrates comprise tempered glass substrates or heat strengthened glass substrates.
  20. 25
    The vacuum insulating panel (100) of any preceding claim, wherein the panel is configured for use in a window.
Independent claims20