Molding apparatus
Abstract
Disclosed herein is, amongst other things, a mold stack that includes a core insert, a core ring, and a split insert that are configured to cooperate, in use, to define a molding cavity. The core insert defines a ring seat on a medial portion thereof upon which the core ring may be seated, in use, in cooperation with a mounting interface thereon. The split insert defines a pocket that extends coaxially through a second projecting portion thereof within which to receive a projecting portion of the core ring. The core ring and the split insert being further configured to define a core ring-to-split insert parting line that is within the pocket of the split insert. The core ring further defines a first split insert seat for receiving the second projecting portion of the split insert.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . A mold stack, comprising:
a core insert, a core ring, and a split insert that are configured to cooperate, in use, to define a molding cavity; the core insert defines a ring seat on a medial portion thereof upon which the core ring may be seated, in use, in cooperation with a mounting interface thereon; the split insert defines a pocket that extends coaxially through a second projecting portion thereof within which to receive a projecting portion of the core ring; and the core ring and the split insert being further configured to define a core ring-to-split insert parting line that is within the pocket of the split insert; wherein the core ring further defines a first split insert seat for receiving the second projecting portion of the split insert.
2 . The mold stack of claim 1 , wherein:
the first split insert seat has a form, as shown, of a conical female taper.
3 . The mold stack of claim 1 , wherein:
a top face of the projecting portion of the core ring defines the core ring-to-split insert parting line in cooperation with a recessed face of the pocket in the split insert.
4 . The mold stack of claim 1 , wherein:
a top portion of the molding cavity is split between the core ring and the core insert.
5 . The mold stack of claim 4 , wherein
an inner surface of the core ring defines a core ring-to-core insert split line in cooperation with an outer medial surface of the core insert.
6 . The mold stack of claim 5 , wherein:
the core ring defines a split line vent that is configured to cooperate, in use, with the core insert along the core ring-to-core insert split line for venting, in use, air from the molding cavity.
7 . The mold stack of claim 1 , wherein:
the core ring defines a retainer interface that is configured to cooperate, in use, with a retaining interface on the core insert to retain the core ring to the core insert.
8 . The mold stack of claim 7 , wherein:
the retaining interface on the core insert is a core thread that is provided adjacent to a bottom of an outer medial surface thereof, and the retainer interface is a ring thread near a bottom of an inner surface thereof, wherein the ring thread and the core thread are adapted to cooperate to releasably engage with relative rotation between the core ring and the core insert.
9 . The mold stack of claim 1 , wherein:
the core ring defines a parting line vent in cooperation with the split insert across the core ring-to-split insert parting line for venting, in use, air from the molding cavity.
10 . The mold stack of claim 9 , wherein:
the top face of the core ring includes a plurality of semi-annular pads that are separated by a plurality of vent slots, wherein the plurality of semi-annular pads are configured to provide a shut-off, in use, in contact with the recessed face of the pocket in the split insert, and further wherein the plurality of vent slots are configured to form the parting line vent, in use, in contact with the recessed face of the pocket in the split insert.Join the waitlist — get patent alerts
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