US20030194489A1

Low-e matchable coated articles, and methods

Claim Score by NHIP

Read claim 1, the broadest

Abstract

A heat treatable coated article including an infrared (IR) reflecting layer (e.g., of or including Ag), the coated article being able to attain a DeltaE* (glass side) no greater than about 3.5, more preferably no greater than 3.0, and even more preferably no greater than 2.6, following or due to heat treatment (e.g., thermal tempering). Accordingly, low-E (i.e., low emissivity) coated articles of certain embodiments of-this invention appear from the glass side thereof visually similar to the naked eye both before and after heat treatment. Good matchability characteristics (i.e., low DeltaE* values) combined with good durability can be achieved by controlling to what extent barrier layer(s) in contact with the IR reflecting layer are nitrided and to what thickness(es) they are sputtered. Optionally, certain embodiments of this invention relate to coated articles that also have high visible transmission and/or good durability. Coated articles herein may be used in the context of insulating glass (IG) window units, vehicle windows, or any other suitable applications. In certain embodiments of this invention, an exemplary layer stack includes: glass/Si<subscript>3</highlight>N<subscript>4</highlight>/NiCrN<subscript>x</highlight>/Ag/NiCrN<subscript>x</highlight>/Si<subscript>3</highlight>N<subscript>4</highlight>. Other materials may instead be used without departing from the scope and/or spirit of the instant invention which is a low-E matchable and/or durable product.

US20030194489A1, drawing sheet 1
Sheet 1 of 4

Term

Term ended

Projected expiry passed 16 May 2023, 3.4 years ago.

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40 claims: 6 independent, 34 dependent

  1. 1
    Broadest claimClaim Score 72, broad(NHIP)A coated article comprising:a layer system supported by a glass substrate, said layer system comprising an infrared (IR) reflecting silver layer located between and in contact with first and second metal inclusive barrier layers;and wherein at least said first metal inclusive barrier layer is at least partially nitrided to an extent so that said coated article has a ΔE* value (glass side) no greater than 3.5 after or due to heat treatment (HT).
  2. 17
    A coated article including a layer system supported by a substrate, the coated article comprising:a first dielectric layer on said substrate;an IR reflecting layer sandwiched between first and second barrier layers, each of said IR reflecting layer and said barrier layers overlying said first dielectric layer;a second dielectric layer overlying each of said first dielectric layer, said barrier layers and said IR reflecting layer;and wherein at least one of said barrier layers comprises a metal nitride that is nitrided to an extent so that the coated article has a ΔE* value (glass side) no greater than 3.5 after or due to heat treatment (HT).
  3. 24
    A coated article including a layer system supported by a substrate, the coated article comprising:a first dielectric layer on said substrate;an IR reflecting layer sandwiched between and in contact with first and second metal inclusive layers, each of said IR reflecting layer and said metal inclusive layers overlying said first dielectric layer;a second dielectric layer overlying each of said first dielectric layer, said metal inclusive layers and said IR reflecting layer;and wherein at least one of said metal inclusive layers comprises a metal nitride that is no more than 75% nitrided so that the coated article has a ΔE* value (glass side) no greater than 3.5 after or due to heat treatment (HT).
  4. 26
    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 and in contact with first and second metal inclusive layers, at least one of the metal inclusive layers being nitrided to some extent, wherein prior to heat treatment the glass substrate with the layer system thereon has a sheet resistance Rs 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 3.5.
  5. 35
    A coated article comprising:a layer system supported by a glass substrate, said layer system comprising an infrared (IR) reflecting silver layer located between and in contact with first and second metal inclusive barrier layers;and wherein said coated article is characterized by: (a) a visible transmittance of at least 70%;(b) a ΔE* value (glass side) no greater than 3.0 after or due to heat treatment (HT);and (c) a sheet resistance (Rs) of no greater than 20 ohms/sq. after HT.
  6. 38
    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 and in contact with first and second barrier layers that are at least partially nitrided, controlling nitrogen gas flow during sputtering of at least one of the barrier layers so that the nitrogen gas flow is from 0-16 sccm/kW, 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 3.5.