B29C43/42

Cap for a container

A method for making a cap for a container, comprising a step of forming in which the following are: a body, configured to be coupled and uncoupled relative to the neck of the container and including a side wall, which extends around a longitudinal axis, and a transverse wall; a tamper evident ring, configured to remain anchored to the neck of the container even when the body is uncoupled from the neck and including a joining portion where the tamper evident ring is joined to the body, the joining portion being configured to be torn along a full perimeter surrounding the longitudinal axis, wherein the cap comprises a connecting band having a first end connected to the side wall of the body and a second end connected to the retaining portion of the tamper evident ring.

Cap for a container

A method for making a cap for a container, comprising a step of forming in which the following are: a body, configured to be coupled and uncoupled relative to the neck of the container and including a side wall, which extends around a longitudinal axis, and a transverse wall; a tamper evident ring, configured to remain anchored to the neck of the container even when the body is uncoupled from the neck and including a joining portion where the tamper evident ring is joined to the body, the joining portion being configured to be torn along a full perimeter surrounding the longitudinal axis, wherein the cap comprises a connecting band having a first end connected to the side wall of the body and a second end connected to the retaining portion of the tamper evident ring.

COMPRESSION MOULDING DEVICE AND METHOD

Described is a compression moulding device and method, wherein the device comprises: a female element (2) for housing a dose made of material suitable for compression moulding; a male punch (5) which can be at least partly inserted in the female element (2) to compress said dose and make a relative product; wherein said punch (5) has an outer surface (10) for moulding the dose, and wherein said punch (5) comprises a first portion (6) slidable relative to at least a second portion (7) between a moulding condition wherein the second portion (7) radially compresses the dose against the female element (2) and a collapsed condition wherein the second portion (7) is radially retracted away from the dose.

JOINT DEVICE AND METHOD
20250318934 · 2025-10-16 ·

A method of providing an artificial knee or hip joint surface using a mould, wherein the method comprises the steps of placing the mould inside of the joint, injecting the mould with a fluid adapted to cure, curing the fluid inside of the joint, affecting the mould by the fluid injected into the mould, and resorbing the mould by means of the human body or by melting the mold with the injected material, and subsequently cure the fluid and serve as artificial joint surface.

JOINT DEVICE AND METHOD
20250318934 · 2025-10-16 ·

A method of providing an artificial knee or hip joint surface using a mould, wherein the method comprises the steps of placing the mould inside of the joint, injecting the mould with a fluid adapted to cure, curing the fluid inside of the joint, affecting the mould by the fluid injected into the mould, and resorbing the mould by means of the human body or by melting the mold with the injected material, and subsequently cure the fluid and serve as artificial joint surface.

Mold for forming a tire and tire production method
12544999 · 2026-02-10 · ·

Provided are a mold for forming a tire including a tread molding part which is configured to be opened and closed by moving a plurality of segments in a radial direction, and a tire production method using the same. In the mold, each of the segments includes a holder; a plurality of design surface dividing mold parts disposed in a circumferentially arranged manner on a radially inner side of the holder; and a plate spring member to which the plurality of the design surface are fixed and in which both ends of the plate spring member in a circumferential direction are fixed to the holder, and when the tread molding part is opened, by elastic deformation of the plate spring member, the plurality of the design surface are moved in a direction away from the holder with the plurality of the design surface dividing mold parts being rotated.