EP1558950A1

An infra-red reflecting layered structure

Abstract

The invention relates to an infra-red reflecting layered structure comprising a transparent substrate layer; a first metal oxide layer; a first silver containing layer, a second metal oxide layer; a second silver containing layer and a third metal oxide layer. The first, second and third metal oxide layer have a refractive index of at least 2.40 at a wavelength of 500 nm. The layered structure according to the present invention laminated on glass has a visual light transmittance (VLT) higher than 70% and a solar heat gain coefficient (SHGC) lower than 0.44. The invention further relates to the use of a layered structure as a transparent heat-mirror.

Term

Term ended

Projected expiry passed 23 October 2023, 2.9 years ago.

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11 claims: 6 independent, 5 dependent

  1. 1
    Claims of equivalent WO 2004042435 A1 CLAIMS 1. An infra-red reflecting layered structure, said layered structure comprising - a transparent substrate layer;a first metal oxide layer;a first silver containing layer;a second metal oxide layer;a second silver containing layer;- a third metal oxide layer;said first, second and third metal oxide layer having a refractive index of at least 2.40 at a wavelength of 500 nm and said layered structure laminated on glass having a visual light transmittance (VLT) higher than 70 % and a solar heat gain coefficient (SHGC) lower than 0.44.
  2. 5
    A layered structure according to any one of the preceding claims, whereby said layered structure comprises at least one intermediate layer, said intermediate layer being located between a silver containing layer and a metal oxide layer and/or between a metal oxide layer and a silver containing layer.
  3. 7
    A layered structure according to any one of the preceding claims, whereby said first and second silver containing layer have a thickness between 10 and 25 nm.
  4. 8
    A layered structure according to any one of the preceding claims, whereby said first, second and third metal oxide layer have a thickness between 25 and 70 nm.
  5. 10
    A method of reducing the number of silver containing layers in an infra-red reflecting layered structure, said method comprising the following steps :providing a transparent substrate layer;depositing upon said substrate layer a first metal oxide layer having a refractive index of at least 2.40 at a wavelength of 500 nm ;depositing upon said first metal oxide layer a first silver containing layer;depositing upon said first silver containing layer a second metal oxide layer having a refractive index of at least 2.40 at a wavelength of 500 nm ;depositing upon said second metal oxide layer a second silver containing layer;depositing upon said second silver containing layer a third metal oxide layer having a refractive index of at least 2.40 at a wavelength of 500 nm .
  6. 11
    A method of improving the visual light transmittance of an infrared reflecting layered structure, said method comprising the following steps :providing a transparent substrate layer;depositing upon said substrate layer a first metal oxide layer having a refractive index of at least 2.40 at a wavelength of 500 nm ;- depositing upon said first metal oxide layer a first silver containing layer;depositing upon said first silver containing layer a second metal oxide layer having a refractive index of at least 2.40 at a wavelength of 500 nm ;- depositing upon said second metal oxide layer a second silver containing layer;depositing upon said second silver containing layer a third metal oxide layer having a refractive index of at least 2.40 at a wavelength of 500 nm .