EP0765734A2

Molding arrangement to achieve short mold cycle time

Abstract

An apparatus for molding polystyrene mold halves which are used, with a complementary mold halves, for subsequent molding of a soft contact lens such as a hydrogel soft contact lens. The apparatus is designed with superior heat conduction capacity so as to minimize the molding cycle time, while simultaneously producing uniformly precise and accurate optical quality surfaces. Molten polystyrene is provided via a hot runner system to a plurality of mold cavities, each of which is defined by first and second structural elements, the first having a convex surface and the other having a concave surface. In a specific variation, the convex surface provides the optical quality surface to the concave surface of the mold half produced thereby. The structural element which defines the convex surface includes a hollow cylindrical bushing and a removable power insert mounted therein, which may be changed so that the prescription strength of the contact lens to be formed by the mold may be varied. In a first embodiment, the power insert includes only a convex surface at its operational end. In a second embodiment, the power insert includes an annular flat surface surrounding the convex surface, defining at the junction therebetween a discontinuity of curvature, which imparts a sharp edge to the mold half formed thereby. The power insert may be constructed of pure steel, or alternatively, it may be made of brass, copper chromium, or cobalt-nickel alloyed martensitic steel. The power insert may be coated with a surface layer of nickel phosphor or silicone oxide, or chrome nitride. These layers may be turned to their proper thicknesses and dimensions by diamond cutters, and they may be thermally hardened.

EP0765734A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 27 September 2016, 10 years ago.

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  5. Today

38 claims: 4 independent, 34 dependent

  1. 1
    A molding apparatus for producing at least one mold half which is used for subsequently molding a soft contact lens therewith, comprising:at least one first structure having a convex curved surface;at least one corresponding second structure having a concave curved surface disposed in proximal spaced relation to said convex surface, said first and second structures defining therebetween a volume wherein a mold half is formed;one of said first and second elements having an optical quality curved surface for imparting an optical quality to a surface of the mold half;a hot runner system connected to the volume between said first and second structures for delivering a quantity of molten material of which the mold half is to be formed, wherein the structure having the optical quality surface is positioned further from the heated hot runner system than the other structure;anda cooling system for cooling at least one of said first and second structures,wherein the positioning of the structure having the optical quality curved surface further away from the heated hot runner system, and the cooling system, provide for faster cooling of molten material which forms the mold half at the optical quality surface than the other surface of the mold half to allow quicker setting so that minimal residual stresses remain in the material which forms the optical quality curved surface of the mold half, and also provides faster molding and cycling time.
  2. 13
    A molding apparatus for producing at least one mold half which is used for subsequently molding a soft contact lens therewith, comprising:first and second reciprocating blocks, having opposing faces, said blocks reciprocating relative to one another so that the opposing faces meet and separate in a regular repetitive molding cycle;at least one first structure, mounted within said first reciprocating block, said first structure including a hollow cylindrical bushing and a power insert disposed therein, said power insert defining a convex curved surface which protrudes from the face of said first reciprocating block and a flat annular surface surrounding the convex surface;at least one corresponding second structure, mounted within said second reciprocating block, said second structure having a concave curved surface which forms a recession in the face of said second block, wherein said convex curved surface of said first structure and said concave curved surface of said second structure are disposed in proximal spaced relation to one another and define therebetween a volume wherein a mold half is formed when said opposing faces meet;said convex curved surface being an optical quality curved surface for imparting an optical quality to a concave surface of the mold half formed thereby;a hot runner system connected to the volume between said first and second structures for delivering a quantity of molten material of which the mold half is to be formed, wherein the structure having the optical quality surface is positioned further from the heated hot runner system than the other structure;andwherein the positioning of the structure having the optical quality curved surface further away from the heated hot runner system provides for faster cooling of molten material which forms the concave optical quality surface of the mold half than the other surface to allow quicker setting so that minimal residual stresses remain in the material which forms the optical quality curved surface of the mold half, and also provides faster molding cycle.
  3. 25
    A molding apparatus for producing at least one mold half which is used for subsequently molding a soft contact lens therewith, comprising:first and second reciprocating blocks, having opposing faces, said blocks reciprocating relative to one another so that the opposing faces meet and separate in a regular repetitive molding cycle;at least one first structure, mounted within said first reciprocating block, said first structure including: a hollow cylindrical bushing having annular flat surface recession at one end thereof, anda power insert disposed within said bushing having a convex curved surface which protrudes from the face of said first reciprocating block, and an annular flat surface surrounding said convex curved surface, the interface of said annular flat surface thereof and said convex curved surface defining a discontinuous profile,whereby an annular flat flange portion of said mold half may be formed simultaneously with the formation of the mold half by the annular flat surfaces said bushing and said power insert;at least one corresponding second structure, mounted within said second reciprocating block, said second structure having a concave curved surface which forms a recession in the face of said second block, wherein said convex curved surface of said first structure and said concave curved surface of said second structure are disposed in proximal spaced relation to one another and define therebetween at least a portion of a volume wherein a mold half is formed when said opposing faces meet;said convex curved surface being an optical quality curved surface for imparting an optical quality to a concave surface of the mold half formed thereby;a hot runner system connected to the volume between said first and second structures for delivering a quantity of molten material of which the mold half is to be formed.
  4. 36
    A method of forming a mold insert for the production of multi-focal contact lenses, said lenses formed between first and second intermediate mold halves formed by injection molding, said method comprising:plating a power insert to be used in an injection mold, with a NiP coating,cutting said plated insert with a computer controlled mono-crystalline diamond cutter to generate a power insert having complex optical characteristics,forming a plurality of said first contact lens mold halfs in said injection mold with said power insert,forming a plurality of said second contact mold halfs in an injection mold,molding a multi-focal contact lens between said first and second mold halves with a polymerizable composition, said contact lens having at least two optical powers formed therein.