EP3758908B1

Molds having cooling behind insert technology and related methods

Abstract

This record has no abstract on file.

EP3758908B1, drawing sheet 1
Sheet 1 of 9

Term

12.4 yearsleft in the term

Expires 1 March 2039.

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

12 claims: 4 independent, 8 dependent

  1. 1
    A mold comprising:first and second mold portions (14a, 14b), each having one or more recesses (18), wherein the mold portions (14a, 14b) are movable relative to one another between an open position and a closed position in which each of the recess(es) (18) of the first mold portion (14a) cooperates with a respective one of the recess(es) (18) of the second mold portion (14b) to define a chamber (26), wherein each of the one or more chambers (26) comprises a first cooling body (22) coupled to the first mold portion (14a) and a second cooling body (22) coupled to the second mold portion (14b), wherein a first insert (30a) is configured to be removably coupled to the first cooling body (22) and a second insert (30b) is configured to be removably coupled to the second cooling body (22) such that, when the first and second inserts (30a, 30b) are respectively removably coupled to the first and second cooling bodies (22), the first insert (30a) and the second insert (30b) cooperate to define a mold cavity (34) within the chamber (26) that is configured to receive a thermoplastic material;wherein each of the first and second cooling bodies (22) comprises a thermally-conductive material, each of the first and second cooling bodies (22) comprising opposing first and second faces (56, 58) and an inlet (46) and an outlet (54), wherein the first face (56) is coupled to one of the mold portions (14a, 14b) and the second face (58) is configured to be removably coupled to one of the first and second inserts (30a, 30b), wherein each of the first and second cooling bodies (22) defines a fluid cavity (50) closer to the second face (58) than the first face (56), wherein the fluid cavity (50) is in fluid communication with the inlet (46) and the outlet (54);wherein the chamber(s) (26) comprise two or more chambers, and wherein for each of one or more sets of a plurality of the chambers (26): the first cooling bodies (22) are in fluid communication with one another via one or more first conduits (66a), each of the first conduit(s) (66a) having a first diameter;the second cooling bodies (22) are in fluid communication with one another via one or more second conduits (66b), each of the second conduit(s) (66b) having a second diameter;and optionally, the second diameter is at least 20% larger than the first diameter;wherein each of the one or more second cooling bodies (22) is movable within a respective recess (18) of the second mold portion (14b) between a first position and a second position in which the second cooling body (22) is closer than when in the first position to the face of the second mold portion (14b) that, when the mold portions (14a, 14b) are in the closed position, faces the first mold portion (14a);wherein the mold (10) comprises one or more of the first inserts (30a) and one or more of the second inserts (30b) wherein each of the first and second inserts (30a, 30b) comprises silicon carbide and, for each of the chamber(s) (26), one of the first insert(s) (30a) is coupled to the first cooling body (22) and one of the second insert(s) (30b) is coupled to the second cooling body (22).
  2. 3
    The mold of any of claims 1 or 2, wherein for each of the set(s) of the chambers (26) the second cooling bodies (22) are connected in series such that:a supply conduit (78a;78b) in fluid communication with a fluid source is coupled to the inlet (46) of one of the second cooling bodies (22);an exhaust conduit (82a;82b) in fluid communication with an exhaust (86a) is coupled to the outlet (54) of one of the second cooling bodies (22);and one or more conduits are disposed between the second cooling bodies (22) such that when fluid flows from the supply conduit (78a;78b), the fluid flows consecutively through each of the second cooling bodies (22) before flowing through the exhaust conduit (82a;82b).
  3. 5
    The mold of any of claims 1-4, wherein:the set(s) of the chambers (26) comprise two or more sets of the chambers (26);and the second cooling bodies (22) of at least one of the sets are not in fluid communication with the second cooling bodies (22) of other ones of the sets.
  4. 6
    A method for creating one or more optical articles, the method comprising:moving a first mold portion (14a) and a second mold portion (14b) relative to one another from an open position to a closed position in which the mold portions (14a, 14b) cooperate to define one or more chambers (26), wherein each of the chamber(s) (26) comprises a first cooling body (22) coupled to the first mold portion (14a), a second cooling body (22) coupled to the second mold portion (14b), a first insert (30a) removably coupled to the first cooling body (22), and a second insert (30b) removably coupled to the second cooling body (22) such that the first and second inserts (30a, 30b) cooperate to define a mold cavity (34);receiving, at each of the one or more mold cavities (34), a thermoplastic material;and cooling the received thermoplastic material with the first and second cooling bodies (22), wherein each of the first and second cooling bodies (22) comprises opposing first and second faces (56, 58) and an inlet (46) and an outlet (54), wherein the first face (56) is coupled to one of the mold portions (14a, 14b) and the second face (58) is removably coupled to one of the first and second inserts (30a, 30b), wherein each of the first and second cooling bodies (22) defines a fluid cavity (50) closer to the second face (58) than the first face (56), wherein the chamber(s) comprise two or more chambers (26), and wherein for each of one or more sets of a plurality of the chambers (26): the first cooling bodies (22) are in fluid communication with one another via one or more first conduits (66a), each of the first conduit(s) (66a) having a first diameter;the second cooling bodies (22) are in fluid communication with one another via one or more second conduits (66b), each of the second conduit(s) (66b) having a second diameter;and optionally, the second diameter is at least 20% larger than the first diameter;wherein each of the one or more second cooling bodies (22) is movable within a respective recess (18) of the second mold portion (14b) between a first position and a second position in which the second cooling body (22) is closer than when in the first position to the face of the second mold portion (14b) that, when the mold portions (14a, 14b) are in the closed position, faces the first mold portion (14a);wherein the mold (10) comprises one or more of the first inserts (30a) and one or more of the second inserts (30b) wherein each of the first and second inserts (30a, 30b) comprises silicon carbide and, for each of the chamber(s) (26), one of the first insert(s) (30a) is coupled to the first cooling body (22) and one of the second insert(s) (30b) is coupled to the second cooling body (22);and wherein cooling comprises, at each of the first and second cooling bodies (22): receiving, at the inlet (46), fluid from a fluid source;conveying the received fluid to the fluid cavity (50);conducting, through one of the first and second inserts (30a, 30b), heat from the thermoplastic material to the cooling body (22) to thereby heat the conveyed fluid;and transmitting, through the outlet (54), the heated fluid outside of the cooling body (22).
  5. 8
    The method of any of claims 6 or 7, wherein the one or more chambers comprise two or more chambers (26), and cooling comprises receiving, at the inlet (46) of at least one of the second cooling bodies (22), fluid conveyed from the outlet (54) of another one of the second cooling bodies (22).
  6. 9
    The method of any of claims 6-8, comprising:before moving the first and second mold portions (14a, 14b), for at least one of the chamber(s) (26): decoupling a third insert from the first cooling body (22);decoupling a fourth insert from the second cooling body (22);removably coupling the first insert (30a) to the first cooling body (22);and removably coupling the second insert (30b) to the second cooling body (22);wherein the third and fourth inserts are configured to cooperate to define a mold cavity having a shape different from a shape of the mold cavity (34) defined by the first and second inserts (30a, 30b);and wherein the coupling is performed without placing the first and second inserts (30a, 30b) in fluid communication with the first and second cooling bodies (22).
  7. 10
    The method of any of claims 6-9, wherein cooling is performed until the thermoplastic material solidifies.
  8. 12
    The method of any of claims 6-11, wherein cooling comprises, for each of the one or more chambers (26), receiving fluid at the inlet (46) of the first cooling body (22) at a rate within 10% of the rate at which fluid is received at the inlet (46) of the second cooling body (22).