EP0904922B1

Injection molding apparatus for molding a multi-layered article and methods of injection-molding a multi-layered article

Abstract

This record has no abstract on file.

EP0904922B1, drawing sheet 1
Sheet 1 of 21

Term

Term ended

Expired 24 September 2018, 8 years ago.

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

32 claims: 17 independent, 15 dependent

  1. 1
    An injection molding apparatus for injection molding a multi-layered article, which comprises:(a) a mold (20) having a cavity block provided with a cavity (25) and a hot runner block (22), (b) at least a first injection cylinder (10A) and a second injection cylinder (10B), (c) a first resin-flow-passage (23A) for connecting an inside of the first injection cylinder (10A) and the cavity (25), and (d) a second resin-flow-passage (23B) for connecting an inside of the second injection cylinder (10B) and the cavity (25),    the injection molding apparatus having a structure in which: those portions of the first and second resin-flow-passages (23A, 23B) which are located within the mold are provided in the hot runner block (22), and the first resin-flow-passage (23A) and the second resin-flow-passage (23B) meet with each other in a junction portion upstream of a gate portion (24) opened to the cavity (25),     characterized in that    the injection molding apparatus is provided with back flow means (30B) for letting a predetermined volume of first molten resin (40A) in the first resin-flow-passage flow (23A) into the second resin-flow-passage (23B) after second molten resin (40B) is injected into the cavity (25) through the second resin-flow-passage (23B), the back flow means (30B) being operable in response to a pressure which the first molten resin (40A) in the first resin-flow-passage (23A) exerts on the second molten resin (40B) in the second resin-flow-passage (23B).
  2. 4
    The injection molding apparatus of any one of the preceding claims, wherein the back flow means (30B) is provided in the second resin-flow-passage (23B) between the junction portion of the resin-flow-passages (23A, 23B) and the second injection cylinder (10B).
  3. 6
    The injection molding apparatus of any one of the preceding claims, wherein the back flow means is a back flow control valve (30B).
  4. 8
    The injection molding apparatus of any one of the preceding claims, wherein the first molten resin (40A) which is allowed to flow into the second resin-flow-passage (23B) is 5 to 50 % based on the cavity volume.
  5. 10
    The injection molding apparatus of any one of the preceding claims, which is for injection molding a parison as the multi-layered article.
  6. 12
    A method of injection molding a multi-layered article by means of an injection molding apparatus which comprises:(a) a mold (20) having a cavity block provided with a cavity (25) and a hot runner block (22), (b) at least a first injection cylinder (10A) and a second injection cylinder (10B), (c) a first resin-flow-passage (23A) for connecting an inside of the first injection cylinder (10A) and the cavity (25), and (d) a second resin-flow-passage (23A) for connecting an inside of the second injection cylinder (10B) and the cavity (25),    the injection molding apparatus having a structure in which: those portions of the first and second resin-flow-passages (23A, 23B) which are located within the mold (20) are provided in the hot runner block (22), and the first resin-flow-passage (23A) and the second resin-flow-passage (23B) meet with each other in a junction portion upstream to a gate portion (24) opened to the cavity (25), the injection molding apparatus being provided with back flow means (30B) for letting a predetermined volume of first molten resin (40A) in the first resin-flow-passage flow (23A) into the second resin-flow-passage (23B) after second molten resin (40B) is injected into the cavity (25) through the second resin-flow-passage (23B), the back flow means (30B) being operable in response to pressure which the first molten resin (40A)in the first resin-flow-passage (23A) exerts on the second molten resin (40B) in the second resin-flow-passage (23B), the method comprising the steps of: (A) injecting first molten resin (40A) prepared in the first injection cylinder (10A) into the cavity (25) through the first resin-flow-passage (23A) and then discontinuing the injection of the first molten resin (40A), (B) injecting second molten resin (40B) prepared in the second injection cylinder (10B) into the cavity (25) through the second resin-flow-passage (23B) and then terminating the injection of the second molten resin (40B), and then, (C) injecting first molten resin (40A) prepared in the first injection cylinder (10A) into the cavity (25) through the first resin-flow-passage (23A) and letting the predetermined volume of first molten resin (40A) in the first resin-flow-passage (23A) flow into the second resin-flow-passage (23B) on the basis of operation of the back flow means (30B) during the injection of the first molten resin (40A) or after completion of injection of the first molten resin (40A).
  7. 15
    A method of injection molding a multi-layered article by means of an injection molding apparatus which comprises:(a) a mold (20) having a cavity block provided with a cavity (25) and a hot runner block (22), (b) at least a first injection cylinder (10A) and a second injection cylinder (10B), (c) a first resin-flow-passage (23A) for connecting an inside of the first injection cylinder (10A) and the cavity (25), and (d) a second resin-flow-passage (23B) for connecting.an inside of the second injection cylinder (10B) and the cavity (25),    the injection molding apparatus having a structure in which: those portions of the first and second resin-flow-passages (23A, 23B) which are located within the mold are provided in the hot runner block (22), and the first resin-flow-passage (23A) and the second resin-flow-passage (23B) meet with each other in a junction portion upstream of a gate portion (24) opened to the cavity (25), the injection molding apparatus being provided with back flow means (30B) for letting a predetermined volume of first molten resin (40A) in the first resin-flow-passage flow (23A) into the second resin-flow-passage (23B) after second molten resin (40B) is injected into the cavity (25) through the second resin-flow-passage (23B), the back flow means (30B) being operable in response to a pressure which the first molten resin (40A) in the first resin-flow-passage (23A) exerts on the second molten resin (40B) in the second resin-flow-passage (23B), the method comprising the steps of: (A) injecting first molten resin (40A) prepared in the first injection cylinder (10A) into the cavity (25) through the first resin-flow-passage (23A) (B) injecting second molten resin (40B) prepared in the second injection cylinder (10B) into the cavity (25) through the second resin-flow-passage (23B) during the injection of the first molten resin (40A), and, (C) after completion of injection of the second molten resin (40B), letting the predetermined volume of first molten resin (40A) in the first resin-flow-passage (23A) flow into the second resin-flow-passage (23B) on the basis of operation of the back flow means (30B) during the injection of the first molten resin (40A) or after completion of injection of the first molten resin (40A).
  8. 18
    The method of any one of claims 12 to 17, wherein the inside of the second injection cylinder (10B) and the cavity (25) are brought into a communicated state by means of the back flow means (30B) during the injection of the second molten resin (40B) into the cavity (25) through the second resin-flow-passage (23B) and after completion of injection of the second molten resin (40B), and    the inside of the second injection cylinder (10B) and the cavity (25) are brought into a non-communicated state on the basis of operation of the back flow means (30B), after a predetermined amount of the first molten resin (40A) in the first resin-flow-passage (23A) flows into the second resin-flow-passage (23B).
  9. 19
    The method of any one of claims 12 to 17, wherein the inside of the second injection cylinder (10B) and the cavity (25) are brought into a communicated state by means of the back flow means (30B), during the injection of the second molten resin (40B) into the cavity (25) through the second resin-flow-passage (23B) and after completion of injection of the second molten resin (40B), and    the inside of the second injection cylinder (10B) and the cavity (25) are brought into a non-communicated state on the basis of operation of the back flow means (30B), after the first molten resin (40A) in the first resin-flow-passage (23A) begins to flow into the second resin-flow-passage (23B).
  10. 20
    The method of any one of claims 12 to 19, wherein the back flow means (30B) is provided in the second resin-flow-passage (23B) between the junction portion of the resin-flow-passages and the second injection cylinder (10B).
  11. 22
    The method of any one of claims 12 to 21, wherein the back flow means is a back flow control valve (30B).
  12. 24
    The method of any one of claims 12 to 23, wherein the first molten resin (40A) which is allowed to flow into the second resin-flow-passage (23B) is 5 to 50 % based on the cavity volume.
  13. 26
    The method of any one of claims 12 to 25, which is for injection molding a parison as the multi-layered article.
  14. 28
    The method of any one of claims 12 to 27, wherein the first resin (40A) is at least one resin selected from the group consisting of a thermoplastic polyester resin, a thermoplastic copolyester resin, a polyolefin resin, an aliphatic polyamide resin, a polycarbonate resin, a polyacrylonitrile resin, a polyvinyl chloride resin and a polystyrene resin.
  15. 29
    The method of any one of claims 12 to 28, wherein the second resin (40B) is at least one resin selected from the group consisting of a gas-barrier resin, a recycled polyethylene terephthalate resin and a colored polyethylene terephthalate resin.
  16. 31
    A method of injection molding a multi-layered article by means of an injection molding apparatus which comprises; (a) a mold (20) having a cavity block provided with a cavity (25) and a hot runner block (22), (b) at least a first injection cylinder (10A) and a second injection cylinder (10B), (c) a first resin-flow-passage (23A) for connecting an inside of the first injection cylinder (10A) and the cavity (25), and (d) a second resin-flow-passage (23B) for connecting an inside of the second injection cylinder (10B) and the cavity (25),    the injection molding apparatus having a structure in which:those portions of the first and second resin-flow-passages (23A, 23B) which are located within the mold (20) are provided in the hot runner block (22), and the first resin-flow-passage (23A) and the second resin-flow-passage (23B) meet with each other in a junction portion upstream of a gate portion (24) opened to the cavity (25), the injection molding apparatus being provided with back flow means (30B) for letting a predetermined volume of first molten resin (40A) in the first resin-flow-passage (23A) flow into the second resin-flow-passage (23B) after second molten resin(40B) is injected into the cavity (25) through the second resin-flow-passage (23B), the back flow means (30B) being operable in response to a pressure which the first molten resin (40A) in the first resin-flow-passage (23A) exerts on the second molten resin (40B) in the second-resin-flow-passage (23B), the method comprising the steps of: (A) injecting first molten resin (40A) prepared in the first injection cylinder (10A) into the cavity (25) through the first resin-flow-passage (23A), and then terminating the injection of the first molten resin (40A), (B) injecting second molten resin (40B) prepared in the second injection cylinder (10B) into the cavity (25) through the second resin-flow-passage (23B) and then terminating the injection of the second molten resin (40B), and (C) applying a dwell pressure with the first injection cylinder (10A) and letting the predetermined volume of first molten resin (40A) in the first resin-flow-passage (23A) flow into the second resin-flow-passage (23B) on the basis of operation of the back flow means (30B).
  17. 32
    A method of injection molding a multi-layered article by means of an injection molding apparatus which comprises:(a) a mold (20) having a cavity block provided with a cavity (25) and a hot runner block (22), (b) at least a first injection cylinder (10A) and a second injection cylinder (10B), (c) a first resin-flow-passage (23A) for connecting an inside of the first injection cylinder (10A) and the cavity (25), and (d) a second resin-flow-passage (23B) for connecting an inside of the second injection cylinder (10B) and the cavity (25),    the injection molding apparatus having a structure in which: those portions of the first and second resin-flow-passages (23A, 23B) which are located within the mold (20) are provided in the hot runner block (22), and the first resin-flow-passage (23A) and the second resin-flow-passage (23B) meet with each other in a junction portion upstream of a gate portion (24) opened to the cavity (25), the injection molding apparatus being provided with back flow means (30B) for letting a predetermined volume of first molten resin (40A) in the first resin-flow-passage (23A) flow into the second resin-flow-passage (23B) after second molten resin (40B) is injected into the cavity (25) through the second resin-flow-passage (23B), the back flow means (30B) being operable in response to a pressure which the first molten resin (40A) in the first resin-flow-passage (23A) exerts on the second molten resin (40B) in the second resin-flow-passage (23B), the method comprising the steps of: (A) injecting first molten resin (40A) prepared in the first injection cylinder (10A) into the cavity (25) through the first resin-flow-passage (23A). (B) injecting second molten resin (40B) prepared in the second injection cylinder (10B) into the cavity (25) through the second resin-flow-passage (23B) during the injection of the first molten resin (40A) (C) terminating the injection of the first molten resin (40A) and the injection of the second molten resin (40B) almost at the same time, then, applying a dwell pressure with the first injection cylinder (10A), and letting the predetermined volume of first molten resin (40A) in the first resin-flow-passage (23A) flow into the second resin-flow-passage (23B) on the basis of operation of the back flow means (30B).
Independent claims17