EP1362015A1

Low-e matchable coated articles and methods of making same

Abstract

This record has no abstract on file.

Term

Term ended

Projected expiry passed 7 February 2022, 4.6 years ago.

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58 claims: 9 independent, 49 dependent

  1. 1
    Claims of equivalent WO 02062717 A1 WHAT IS CLAIMED IS:1. A coated article comprising: a layer system supported by a glass substrate, said layer system comprising an infrared (IR) reflecting silver layer located between first and second dielectric layers;and wherein said coated article has a ΔE* value (glass side) no greater than 3.0 after or due to heat treatment.
  2. 17
    A coated article comprising:a substrate;a layer system provided on the substrate, said layer system comprising from the glass outwardly, a first silicon nitride inclusive layer, a first Ni or NiCr inclusive layer, an IR reflecting metal layer, a second Ni or NiCr inclusive layer, and a second silicon nitride inclusive layer;wherein each of said first and second Ni or NiCr inclusive layers is at least about 20 A thick;and wherein said coated article has a hemispherical emissivity (E h ) of no greater than 0.25 before heat treatment, a sheet resistance R s no greater than 20 ohms/square before heat treatment, and a ΔE* value (glass side) no greater than 2.5 after or due to heat treatment.
  3. 23
    A method of making a coated article, the method comprising:depositing a layer system on a glass substrate, the layer system including an infrared (IR) reflecting metal layer located between first and second dielectric layers, wherein prior to heat treatment the glass substrate with the layer system thereon has a sheet resistance R s no greater than 20 ohms/square;and heat treating the substrate with the layer system thereon so that due to said heat treating the resulting substrate with the layer system thereon has a ΔE* value (glass side) no greater than 2.5.
  4. 27
    A method of making a coated article, the method comprising:sputtering a layer system onto a glass substrate to form a coated substrate, the layer system comprising a metal infrared (IR) reflecting layer located between first and second dielectric layers;and thermally tempering the coated substrate including the glass substrate with the layer system thereon, so that the coated substrate has a ΔE* value (glass side) no greater than 2.5 and a hemispherical emissivity (E h ) no greater than 0.25.
  5. 30
    A coated article comprising:a glass substrate;a layer system provided on the substrate, said layer system comprising from the glass outwardly, a first silicon nitride inclusive layer 300 to 380 A thick, a first Ni or NiCr inclusive layer from 25 to 45 A thick, a silver layer from 60-100 A thick, a second Ni or NiCr inclusive layer from 25 to 45 A thick, and a second silicon nitride inclusive layer;and wherein said coated article has a hemispherical emissivity (E h ) of no greater than 0.25 and a sheet resistance R s no greater than 20 ohms/square.
  6. 32
    An insulating glass (IG) window unit comprising:first and second glass substrates sealed together proximate their respective peripheral edges so as to form an insulating space therebetween;a layer system supported by one of said glass substrates proximate said insulating space, said layer system comprising an infrared (IR) reflecting silver layer located between first and second dielectric layers;and wherein said IG unit has a ΔE* value (exterior or outside) no greater than 3.0 after or due to heat treatment.
  7. 48
    An insulating glass (IG) unit comprising:first and second substrates sealed together;a layer system provided on said first substrate, said layer system comprising from the first substrate outwardly, a first silicon nitride inclusive layer, a first Ni or NiCr inclusive layer, an IR reflecting metal layer, a second Ni or NiCr inclusive layer, and a second silicon nitride inclusive layer, wherein each of said first and second Ni or NiCr inclusive layers is at least about 20 A thick;and wherein said first substrate with said layer system thereon has a hemispherical emissivity (E h ) of no greater than 0.25 before heat treatment, a sheet resistance R s no greater than 20 ohms/square before heat treatment, and a ΔE* value (glass side or oμtside) no greater than 2.5 after or due to heat treatment.
  8. 50
    A thermally insulating panel assembly comprising:first and second substrates seal together proximate their respective peripheries to form an insulating space therebetween;a layer system provided on said first substrate, said layer system comprising from the first substrate outwardly, a first silicon nitride inclusive layer 300 to 380 A thick, a first Ni or NiCr inclusive layer from 20 to 90 A thick, a silver layer from 40- 120 A thick, a second Ni or NiCr inclusive layer from 20 to 90 A thick, and a second silicon nitride inclusive layer;and wherein said first substrate with said layer system thereon has a hemispherical emissivity (E h ) of no greater than 0.25 and a sheet resistance R s no greater than 20 ohms/square.
  9. 52
    A coated article comprising:a layer system supported by a glass substrate, said layer system comprising an infrared (IR) reflecting silver layer located between first and second dielectric layers;and wherein said coated article is characterized by a glass side or outside R so i ar which is greater than a glass side or outside visible reflectance R( G or out) , and a visible transmittance (TY or T V1S ) of from about 10-65%.