EP2685293A2

Optical article comprising an antireflective coating with a low reflection both in the ultraviolet region and in the visible region

Abstract

This invention relates to an ophthalmic lens with a low reflection both in the ultraviolet region and in the visible region, comprising a substrate provided on its rear main face with a multilayered antireflective coating (3-7 layers) comprising a stack of at least one layer with a high refractive index and at least one layer with a low refractive index, having a mean reflection factor on the rear face in the visible region Rm lower than or equal to 1.15%, a mean light reflection factor on the rear face in the visible region Rv lower than or equal to 1%, a mean reflection factor RUV on the rear face between 280 nm and 380 nm, weighted by the function W(λ) defined in the ISO 13666:1998 standard, lower than 5%, for angles of incidence of 30° and 45°, the antireflective coating outer layer being a silica-based layer. The lens according to the invention does especially prevent the reflection of the UV radiation produced by light sources located behind the wearer.

EP2685293A2, drawing sheet 1
Sheet 1 of 5

Term

5.2 yearsto projected expiry

Projected expiry 9 December 2031, counted from filing; an application has no term until it is granted.

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

14 claims: 13 independent, 1 dependent

  1. 1
    An ophthalmic lens comprising a substrate with a front main face and a rear main face, said rear main face being coated with a multilayered antireflective coating comprising a stack of at least one layer having a refractive index higher than 1.6 and of at least one layer having a refractive index lower than 1.5, wherein:- the mean reflection factor on said rear face in the visible region R m is lower than or equal to 1.15%, - the mean light reflection factor on said rear face in the visible region R v is lower than or equal to 1%, - the mean reflection factor R UV on said rear face between 280 nm and 380 nm, weighted by the function W(λ) defined in the ISO 13666:1998 standard, is lower than 5%, for an angle of incidence of 30° and for an angle of incidence of 45°, - the multilayered antireflective coating comprises a number of layers higher than or equal to 3, preferably higher than or equal to 4, and lower than or equal to 7, preferably lower than or equal to 6, more preferably lower than or equal to 5, - the multilayered antireflective coating does not comprise any layer with a thickness higher than or equal to 20 nm based on indium oxide, - the antireflective coating outer layer is a silica-based layer.
  2. 3
    A lens according to any one of the preceding claims, wherein the antireflective coating is deposited on a silica-based sub-layer layer having a thickness of from 100 to 300 nm.
  3. 4
    A lens according to any one of the preceding claims, wherein the antireflective coating comprises at least one electrically conductive layer.
  4. 5
    A lens according to any one of the preceding claims, wherein the mean reflection factor R m-UV1 on said rear face between 290 nm and 330 nm is lower than 15%, for an angle of incidence of 15°, preferably lower than 10%.
  5. 6
    A lens according to any one of the preceding claims, wherein the mean reflection factor R m-UV2 on said rear face between 300 nm and 320 nm is lower than 4%, more preferably lower than 3%, for an angle of incidence of 15° and/or 30° and/or 45°.
  6. 7
    A lens according to any one of the preceding claims, wherein the mean reflection factor R m-UV3 on said rear face between 300 nm and 380 nm is lower than 5%, more preferably lower than 4.5%, for an angle of incidence of 15°.
  7. 8
    A lens according to any one of the preceding claims, wherein the mean reflection factor on said rear face is higher than 5%, more preferably higher than 6%, over at least 20% of the 280-295 nm wavelength range, for an angle of incidence of 30° and for an angle of incidence of 45°.
  8. 9
    A lens according to any one of the preceding claims, wherein the mean reflection factor on said rear face in the visible region R m is lower than or equal to 1%, more preferably ≤ 0.75%.
  9. 10
    A lens according to any one of the preceding claims, wherein the mean light reflection factor on said rear face in the visible region R v is lower than or equal to 0.90%, more preferably ≤ 0.85%.
  10. 11
    A lens according to any one of the preceding claims, wherein the mean reflection factor R UV on said rear face between 280 nm and 380 nm, weighted by the function W(λ) defined in the ISO 13666:1998 standard, is lower than 4.5%, for an angle of incidence of 30° and for an angle of incidence of 45°, preferably ≤ 4%.
  11. 12
    A lens according to any one of the preceding claims, wherein the antireflective coating comprises, in the direction moving away from the substrate, a layer having a refractive index higher than 1.6 with a thickness of from 8 to 25 nm, a layer having a refractive index lower than 1.5 with a thickness of from 10 to 35 nm, a layer having a refractive index higher than 1.6 with a thickness of from 75 to 105 nm, more preferably from 75 to 100 nm, optionally an electrically conductive layer with a thickness of from 3 to 10 nm, and a layer having a refractive index lower than 1.5, with a thickness of from 60 to 95 nm.
  12. 13
    A lens according to any one of the preceding claims, wherein the multilayered antireflective coating does not comprise any MgF 2 layer.
  13. 14
    A lens according to any one of the preceding claims, wherein the lens is a tinted solar lens.