Extruded and shaped earplug
Earplugs are formed by extruding an elastomeric material ( 12 ) forwardly (F) through an extrusion head ( 14 ) so a forward portion of the extrusion enters a shaping cavity ( 50 A). The forward portion of the extrusion is severed from the rest of the mass being extruded to form a globule. The globule is allowed or forced to expand in the cavity, or the cavity is formed of parts that compress the globule, to shape the globule to the shape of the cavity.
1 . A method for forming earplugs, comprising:
forming an extrusion of elastomeric material by extruding the elastomeric material forwardly through an extrusion head opening and separating a front portion of the extrusion from the rest of the elastomeric material;
allowing said front portion to enter an open cavity formed by cavity walls, closing the cavity, and flowing the separated extrusion front portion to fill the closed cavity to produce a formed mass of said material in the shape of an earplug;
removing said formed mass from the cavity after the formed mass in the shape of an earplug has at least partially solidified.
2 . The method described in claim 1 wherein:
said step of allowing said front portion of the extrusion to enter an open cavity includes positioning the open cavity in line with said extrusion head opening so that while a rear end of the extrusion lies in an extrusion head opening, a front end of the extrusion has already entered the cavity.
3 . The method described in claim 1 wherein:
said step of allowing said front portion of the extrusion to enter an open cavity formed by cavity walls, includes moving at least two mold parts that each forms part of the cavity, together around the extrusion as the extrusion is moving forward out of the extrusion head opening.
4 . The method described in claim 1 wherein:
said step of allowing said front portion of the extrusion to enter an open cavity, and said step of separating a front portion of the extrusion, includes moving a pair of mold parts together form the cavity, while rear ends of the mold parts move together with the extrusion between them and sever the extrusion front portion from the rest of the extrusion.
5 . The method described in claim 1 wherein:
said step of flowing the extrusion front portion to fill the closed cavity includes advancing a piston into a first part of the cavity to press the extrusion front portion further into the cavity.
6 . The method described in claim 1 wherein said cavity has an axis and said cavity defines at least one flange on the outside of the shape of the earplug, with the flange extending at a radially outward and rearward incline, and wherein:
said step of allowing said front portion of said extrusion to enter an open cavity includes allowing the extrusion to pass through an open front end of a cavity; and
said step of removing includes opening a second end of said cavity which is opposite said front end of the cavity and ejecting said earplug through said second end of said cavity.
7 . The method described in claim 1 , wherein:
said step of separating includes moving at least one blade across said extrusion head opening to not only sever the extrusion front portion from the rest of the material, but to close said opening to the free outflow of material therethrough.
8 . Apparatus for forming earplugs, comprising:
extrusion apparatus which includes an extrusion head for forming an extrusion of elastomeric material;
separator means positioned to separate the extrusion into separate globules;
a molder which has at least one part forming a plurality of cavities that are each changeable from a first open position to receive, into one of said cavities, a globule that has been extruded and separated, to a closed position wherein the cavity is closed with the globule lying inside, so the globule can fill the cavity to form an earplug, and to a second open position at which the cavity is open to allow the earplug formed by the globule to be removed.
9 . The apparatus described in claim 8 wherein:
said molder includes a plurality of pairs of mold parts that form each of said cavities between one of the pairs, and a mechanism that moves a pair of the mold parts together immediately forward of the extrusion head to move around an extrusion front portion, and then moves the pair, with a globule therein, away from a position immediately forward of the extrusion head.
10 . The apparatus described in claim 8 wherein:
said molder includes at least one piston that is movable in one of said cavities to compress a globule in the cavity to cause the globule to fill the rest of the cavity.