Extrusion die with deckle system and methods of using same
In extrusion system includes an extrusion die and a deckle system. In one embodiment, the deckle system includes a deckle rod and a cam member operatively coupled to the deckle rod. A cam controller controls the cam member. The cam member cams with the deckle rod in response to actuation of the cam controller. The camming action forces the deckle rod to seal an end region of the extrusion die.
1. An extrusion die having a manifold, an internal flow passageway, an orifice having an end region, and an internal deckle system, said internal deckle system comprising a downstream internal deckle member, a deckle rod, a cam member, and a cam controller, said downstream internal deckle member being located within said internal flow passageway and having a downstream edge alongside said deckle rod, said cam member being configured to rotate about a pivot point in response to actuation of said cam controller such that said cam member contacts said deckle rod and thereby forces said deckle rod to seal an end region of said orifice.
2. The extrusion die of claim 1 , wherein said internal flow passageway extends from said manifold to said orifice, said internal deckle system further comprising an upstream internal deckle member located within said manifold, said downstream internal deckle member being the only internal deckle member located within said internal flow passageway between said upstream internal deckle member and said deckle rod.
3. The extrusion die of claim 1 , wherein said downstream internal deckle member bounds a recess in which said cam member is received, and further comprising an end plate adjacent to which said cam member is mounted, wherein said recess is surrounded collectively by said downstream internal deckle member, said end plate, and said deckle rod.
4. The extrusion die of claim 1 , further comprising an end plate adjacent to which said cam member is mounted, said downstream internal deckle member having a height, a length, a leading end region, and a trailing end region, said trailing end region being closer to said end plate than is said leading end region, said height being greater along said leading end region than along said trailing end region.
5. The extrusion die of claim 1 , further comprising an end plate adjacent to which said cam member is mounted, said cam controller comprises an elongated body extending through an opening in said end plate and having a proximal end located outside of said extrusion die and a distal end located inside of said extrusion die, said proximal end being moveable to push said distal end forcibly against said cam member.
6. The extrusion die of claim 5 , wherein said elongated body is configured to move axially in response to rotation of said proximal end such that said distal end bears forcibly against, and thereby moves, said cam member.
7. The extrusion die of claim 1 , wherein said cam controller comprises an externally threaded elongated body and has a proximal end and a distal end, said elongated body being configured to move axially in response to rotation of said proximal end such that said distal end bears forcibly against said rotatable cam member, and wherein said rotatable cam member pivots in response to actuation of said cam controller.
8. The extrusion die of claim 1 , wherein said cam member has a generally disc-shaped configuration with a lobe and a track surface that cams with said deckle rod in response to actuation of said cam controller.
9. The extrusion die of claim 8 , wherein said downstream internal deckle member bounds a recess in which said cam member is received, said extrusion die further comprises an end plate adjacent to which said cam member is mounted, wherein said recess is surrounded collectively by said downstream internal deckle member, said end plate, and said deckle rod.