IL88220A

Injection molding methods,injection molding apparatus and injection nozzle devices for use in molding multiple-layer articles,and multiple-layer injection molded articles

Abstract

This record has no abstract on file.

IL88220A, drawing sheet 1
Sheet 1 of 85

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

34 claims: 13 independent, 21 dependent

  1. 1
    CLAIMS:1. A method of injection molding a multi-layer plastics article, e.g. a parison or container having an internal layer a portion of which is folded over within a side wall of the article, the method involving injecting a multi-layer flow stream comprising three layers into an injection cavity characterised in that the speed of flow of the layered stream is highest on a fast flow streamline positioned intermediate the boundaries of said layered stream, and characterised in that, during the injection cycle, the method includes the steps of: establishing flows of materials for a first layer and a second layer of the flow stream and forming an interface between the flowing first and second layers, positioning the interface at a first location which is not coincident with said fast flow streamline, interposing flow of material for a third layer of the flow stream between said first and second layers, the third layer being at a position which is not coincident with said fast flow streamline, and either (i) moving the third layer to a second location which is closer to, or substantially coincident with, or proximate said fast flow streamline, or (ii) moving the third layer across the fast flow streamline to a second location not coincident therewith.
  2. 6
    The method according to any of claims 1 to 5, characterised in that the layered flow stream is formed in a nozzle having an injection channel, e.g. centrally located, and then is injected into the injection cavity, the flow stream formed in said channel having a flow streamline which corresponds to the fast flow streamline in the injection cavity, and the first location of the interface in said channel is not coincident with the flow streamline in said channel that corresponds to the fast flow streamline in the injection cavity, the third layer being interposed between said first and second layers at a position which is not coincident with the said flow streamline in the channel that corresponds to the fast flow streamline in the injection cavity, and the third layer either is moved to a second location in said channel which is closer to or substantially coincident with the flow streamline in said channel that corresponds to the fast flow streamline in the injection cavity, or is moved across the said flow streamline to the non-coincident second location.
  3. 7
    The method according to any of claims 1 to 6, characterised by forming the multi-layer flow stream comprising three layers for injection into an injection cavity into an annular or tubular layered stream, in which the second layer material is formed around the first layer material to establish an annular or tubular interface between the flowing materials of said first and second layers, the interface being positioned between the flowing materials of said first and second layers at the first location which is not coincident with said fast flow streamline, the latter being annular for preference.
  4. 8
    The method according to any of claims 1 to 7, characterised by forming the third layer for interposition between the first and second layers as a plural layer composite from a plurality of constituent materials.
  5. 10
    An injection molded, multi-layer plastics article, e.g. an injection molded container or a parison for blow molding, the article having a side wall with an internal layer and being characterised by the latter having a portion, e.g. a terminal or marginal end portion, which is folded over within the side wall.
  6. 13
    The article according to any of claims 10 to 12, characterised in that the folded over portion is folded towards the inside of the article.
  7. 14
    The article according to any of claims 10 to 13, characterised by the side wall comprising an outside surface layer, an inside surface layer, and the internal layer therebetween, by the side wall having a terminal end portion and the internal layer having a terminal end, and by a portion of the terminal end of the internal layer being folded over within the side wall, whereby the terminal end of an unfolded portion of the internal layer and the fold line of the folded over portion are located in the terminal end portion of the side wall.
  8. 15
    The article according to any of claims 10 to 14, characterised by an outwardly disposed terminal flange for attachment of a closure, and at least a part of the folded over portion of the internal layer is in the flange.
  9. 16
    The article according to any of claims 10 to 15, characterised in that the internal layer is an oxygen barrier material.
  10. 21
    The article according to any of claims 10 to 20, characterised in that the side wall has a terminal end, and the internal layer has a terminal edge which is substantially unbiased relative to the terminal end of the side wal1.
  11. 28
    The article according to any of claims 24 to 27, characterised in that the article is a container having a marginal end portion, for example which includes a flange, wherein the terminal end of the internal layer is located.
  12. 29
    The article according to any of claims 25 to 27, characterised in that the article is a container having a marginal end portion, for example which includes a flange, and wherein the fold line is located.
  13. 34
    The method according to any of claims 30 to 33, which further includes the steps of operating the valve means for:preventing flow from all of the orifices, preventing the flow of polymer material from the second passageway orifice or orifices, while allowing flow of material from the third orifice, the first orifice, or both the third and first orifices, and allowing flow of material through the second orifice or orifices while allowing material to flow through the third orifice or both the third and first orifices.