EP1524099A2

Dipcoating thermoplastic spectacle lenses

Abstract

Plastic injection-compression multi-cavity molding of flash-free improved cleanliness thermoplastic spectacle lenses (16) which are suitable for robotic dip hardcasting. Spring-loaded (25,26) molds (13,14) having variable-volume cavities are used in an injection-compression molding process to form, without parting line flash, pairs of a wide range of differing optical power polycarbonate prescription spectacle lenses (16). These pairs have molded-on design features which are specifically suited for full automation of the process, starting with ejection out of the mold into a takeout robot (43,60) whis is integrated via full automation with a subsequent dip hardcoating A molded-on tab (1,3,4) with each pair of lenses (16) is specifically suited for manipulation by SCARA-type robot (43,60). This combination produces micro-clean hardcoated, paired molded lenses made entirely within a single cleanroom air enclosure, without any human operators therein, and without requiring any cutting or trimming of the molded lens pair or runner system before hardcoating or the use of FREON„¢ CFC or aqueous cleaning protocols before dip hardcoating.

EP1524099A2, drawing sheet 1
Sheet 1 of 9

Term

Term ended

Projected expiry passed 20 September 2016, 10 years ago.

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

35 claims: 17 independent, 18 dependent

  1. 1
    A plastic molding in combination with a diptank, the plastic molding comprising:two plastic lenses each having an upper 90-degree quadrant defined as an area between a 10:30 o'clock and a 1:30 o'clock position of each lens when the lenses are situated in a dipcoating position and during dipcoating in the dip tank, each lens further having a left side quadrant defined as an area between a 7:30-10:30 o'clock and a right side quadrant defined as an area between 1:30-4:30 o'clock, and a hanger tab having a head and a stem characterised in that: the head comprises a first gripping orientation;the stem is edge gated to the lens at one of the side quadrants of each lens;and the stem comprises a second gripping orientation along its length between the head and the edge gate.
  2. 15
    A molding according to any of claims 12 to 14 characterised in that the cold-runner is edge gated to one lens between the 1:30 o'clock and the 4:30 o'clock positions and is edge gated to the other lens between the 7:30 o'clock and 10:30 o'clock positions, when the lenses are positioned for dipcoating.
  3. 16
    A method for manufacturing lenses, comprising the steps of:molding two lenses and a cold runner disposed in a same plane as the lenses for attaching to the lenses, the cold-runner having a length which includes a stem wit a free end portion to provide a first position for a robotic grip, the stem including a second position along the length for a robotic grip;gripping one of the first position and the second position to provide a gripped position;and dipcoating the lenses by immersing the lenses in solution without immersing the gripped position.
  4. 20
    The method of any of claims 16 to 19, wherein the stem includes a protruding slide-stop to provide the second position.
  5. 21
    The method of any of claims 16 to 20, wherein the first position and the second position are spaced apart along the stem, and further comprising the step of handing-off the lens between robot grips where a first robot grips the stem at one of the first and second position and a second robot grips the stem at the other of the first and second positions.
  6. 22
    The method of any of claims 16 to 21, wherein the step of dip coating the lens includes maintaining the first position above a surface of the solution during the dipcoating.
  7. 23
    The method of any of claims 16 to 22, wherein the step of dipcoating the lens includes maintaining the free end portion above a surface of the solution during the dipcoating while the lens is fully immersed in the solution.
  8. 24
    The method of any of claims 16 to 23, wherein the step of dipcoating the lens includes maintaining the free end portion vertically above the lens during the dipcoating.
  9. 25
    The method of any of claims 16 to 24, wherein the cold-runner attaches to the lens outside of an upper 90-degree quadrant between a 10:30 o'clock position and a 1:30 o'clock position when the lens is positioned for dipping, and wherein the step of dipcoating the lens includes maintaining the free end portion vertically above the lens during the dipcoating.
  10. 26
    The method of any of claims 16 to 25, wherein the step of molding includes forming the lens and the cold-runner in a same molding process.
  11. 27
    The method of any of claims 16 to 26, wherein the stem is formed during molding, without cutting, to form a hanger tab portion.
  12. 28
    The method of any of claims 16 to 27, wherein the steps of molding, gripping and dipcoating are performed in a same clean-room envelope.
  13. 29
    The method of any of claims 16 to 28, further comprising the step of curing the dipcoating material.
  14. 30
    The method of any of claims 16 to 29, further comprising the step of coating the lens with an anti-reflection coating.
  15. 31
    The method of any of claims 16to 30, further comprising the step of inspecting the lens in an automatic inspection process, preferably in a same clean-room.
  16. 32
    The method of any of claims 16 to 31, wherein the free end portion includes a point above a highest lens edge when the lens is held during the step of dicpoating.
  17. 33
    The method of any of clams 16 to 32, wherein said molding step includes molding two lenses connected by the cold-runner, wherein the stem rises off the cold-runner, preferably substantially vertically off the cold-runner, when the lens is positioned for dipcoating.