MULTI-TUBE EXTRUSION APPARATUS AND METHOD
A method and apparatus for producing a plurality of bi-oriented, heat-shrinkable thermoplastic tubular films is disclosed. Thermoplastic resin is extruded through a plurality of annular dies to form a plurality of molten plastic tubes. The tubes are cooled and solidified and sent through a plurality of pinch rollers to stretch the tubes simultaneously in a machine and transverse direction, creating a plurality of tubular films. The films are cooled and heated, and then relaxed simultaneously in a machine and transverse direction. Winding rollers then wind up the finished tubular films.
1 . An apparatus for making a plurality of biaxially oriented, heat-shrinkable thermoplastic tubular films comprising:
at least one extruder comprising a plurality of annular dies for extruding a molten thermoplastic resin to form a plurality of molten plastic tubes;
a system for cooling and solidifying the plurality of molten plastic tubes to form a plurality of solid tubes;
a heat source;
a first pair of pinch rollers for guiding the plurality of solid tubes into the heat source to warm the plurality of solid tubes;
a second pair of pinch rollers;
a third set of pinch rollers for each of the solid tubes, wherein the second pair of pinch rollers pull the plurality of solid tubes forward towards the third set of pinch rollers, while introducing air into each of the solid tubes and then closing off the third set of pinch rollers to entrap the air in a length of the solid tubes, thereby biaxially stretching each tube simultaneously in each of a machine direction (MD) and transverse direction (TD) to form a plurality of bi-oriented tubular films having a first diameter;
at least one first cooling device placed between the second and third pairs of pinch rollers to cool the plurality of bi-oriented tubular films with cool air to form a plurality of cooled bi-oriented tubular films;
a fourth pair of pinch rollers;
a fifth set of pinch rollers for each of the cooled bi-oriented tubular films, wherein the fourth pair of pinch rollers pull the cooled bi-oriented tubular films forward towards the fifth set of pinch rollers, while introducing air into each of the cooled bi-oriented tubular films and then closing off the fifth set of pinch rollers to entrap the air in a length of the cooled bi-oriented tubular films, thereby biaxially relaxing each film simultaneously in each of a machine direction (MD) and transverse direction (TD) to form a plurality of tubular films having a second diameter, the second diameter being smaller than the first diameter;
a heater to heat treat the plurality of tubular films during the relaxation in order to size the plurality of tubular films
at least one second cooling device placed between the fourth and fifth pairs of pinch rollers to cool the relaxed plurality of tubular films with cool air; and
a winding roller for each tubular film for winding up the tubular films.
2 . The apparatus of claim 1 wherein the plurality of tubular films is monolayer.
3 . The apparatus of claim 1 wherein the plurality of tubular films is multilayer.
4 . The apparatus of claim 1 wherein the system for cooling and solidifying is a water-quenching system.
5 . The apparatus of claim 1 wherein the heat source is a warm water bath.
6 . The apparatus of claim 1 wherein the air is introduced into the solid tubes by a nozzle or valve.
7 . The apparatus of claim 1 wherein the third set of pinch rollers spin faster than the second set of pinch rollers to stretch the tubes in the machine direction.
8 . The apparatus of claim 1 wherein the at least one first cooling device is a cooling air ring.
9 . The apparatus of claim 1 wherein the air is introduced into the cooled bi-oriented tubular films by a nozzle or valve.
10 . The apparatus of claim 1 wherein the fifth set of pinch rollers spin slower than the fourth set of pinch rollers to relax the tubes in both the machine direction and the transverse direction.
11 . The apparatus of claim 1 wherein the second cooling device is a cooling air ring.