CA2184738C

Ion beam process for deposition of highly abrasion-resistantcoatings

Abstract

An ion beam deposition method isprovided for manufacturing a coated sub-strate with improved abrasion resistance,and improved lifetime. The substrate isfirst chemically cleaned to remove con-taminants. Secondly, the substrate is in-serted into a vacuum chamber (1) on holder(3), and the air therein is evacuated viapump (2). Then the substrate surface isbombarded with energetic ions from ionbeam source (4) supplied from inert (5)or reactive (6) gas inlets to assist in re-moving residual hydrocarbons and surfaceoxides, and activating the surface. Aftersputter-etching the surface, a protective,abrasion-resistant coating is deposited byion beam deposition where reactive gas in-lets (7, 8 and 9) may be employed. Theion beam-deposited coating may containone or more layers. Once the chosen coat-ing thickness is achieved, deposition is ter-minated, vacuum chamber pressure is in-creased to atmospheric pressure and thecoated substrate products having improvedabrasion-resistance are removed from thechamber. These coated products may beplastic sunglass lenses, ophthalmic lenses,bar codes scanner windows, and indus-trial wear parts needing protection fromscratches and abrasion.

CA2184738C, drawing sheet 1
Sheet 1 of 3

Term

Term ended

Expired 1 March 2015, 11.6 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

2 claims: 2 independent, 0 dependent

  1. 1
    CA 02184738 2004-12-30 CLAIMS 1. A method for producing a protective, abrasion-resistant coating on the surface of a substrate comprising the steps of:(a) chemically cleaning the surface of said substrate to remove contaminants;(b) sputter-etching the surface of said substrate in an evacuated deposition chamber with a beam of energetic ions to further remove residual contaminants and to activate said surface;(c) ion beam depositing a layer of abrasion-resistant coating material using an ion beam from an ion source, said ion beam comprising reactive gases containing one of the following combinations of elements: Si and C;Si, C and H;Si and N;Si, N and H;Si and 0;Si, 0 and H;Si, 0 and N;Si, Ο N and H;Si, C and N;Si, C, H and N;Si, C and O;Si, C, H and O;Si, C, O and N;Si, C, H, 0 and N;(d) increasing the vacuum chamber pressure to substantially atmospheric pressure and recovering a coated substrate product having improved wear and abrasion resistance;characterised in that at least a portion of the reactive gases are introduced into the ion beam downstream of the ion source.;and in that the ion energy used in the ion beam deposition process is in the range 20eV to 300eV.
  2. 2
    An ion beam deposition system comprising a deposition chamber (I) evacuated by a vacuum pump (2) and containing a substrate holder (3) an ion source (4) and inlets (7, 8) for introducing reactive gases into the ion beam downstream of the ion source (4).