Claims
- 1. An apparatus for plasticating material comprising:
a barrel having a longitudinal axis, along which material moves axially from an inlet to an outlet; a rotatable screw disposed within and cooperating with an inner wall of said barrel, including an axial core and a metering section; a main flight arranged helically on, and extending radially from the core in the metering section, the main flight having a first outer periphery facing the barrel, a thickness and multiple, mutually spaced cut-through recesses extending through the thickness at the first periphery, the cut-through recesses providing a passageway for the material to cross the main flight; and a secondary flight arranged helically on, and extending radially from the core, located between successive helical passes of the main flight in the metering section, including a second periphery facing the barrel and spaced radially from the barrel a greater distance than the first periphery is spaced radially from the barrel, thereby providing a passageway for the material to cross over the secondary flight.
- 2. The apparatus of claim 1, wherein the thickness of the main flight is greater than a thickness of the secondary flight in the metering section.
- 3. The apparatus of claim 1, wherein the metering section is a multi-channel, undulating metering section.
- 4. The apparatus of claim 1, wherein the main flight has a push side and a trailing side, and solid material conveyed along said metering section is positioned primarily adjacent said push side of the main flight, and melt material conveyed along said metering section is positioned primarily adjacent said trailing side of the main flight.
- 5. The apparatus of claim 1, wherein the screw further includes a feed section, a barrier melting section, and a reorientation section, each section arranged along the axis sequentially from the feed section downstream to the metering section.
- 6. The apparatus of claim 1, wherein the cut-through recesses are located on alternate helical passes of the main flight about the axis in the metering section.
- 7. The apparatus of claim 1, wherein the core in the metering section includes a crest and a valley located between a helical pass of the main flight and a helical pass of the secondary flight about the axis.
- 8. The apparatus of claim 1, wherein the screw includes helically directed crests and valleys located in the metering section between a helical pass of the main flight and a helical pass of the secondary flight about the axis, a height of the crests and a depth of the valleys varying angularly about the axis; and
the cut-through recesses are located angularly about the axis between a maximum height of the crests and a maximum depth of the valleys.
- 9. The apparatus of claim 7, wherein the cut-through recesses provide a passageway for the material to back flow in a direction from the outlet toward the inlet when crossing the main flight.
- 10. A rotatable screw for moving material in a plasticating process along a conduit from an inlet to an outlet, spaced along an axis from the inlet, comprising:
an axial core; a main flight arranged helically on, and extending radially from the core in the metering section, the main flight having a first outer periphery, a thickness and multiple, mutually spaced cut-through recesses extending through the thickness at the first periphery, the cut-through recesses providing a passageway for the material to cross the main flight; and a secondary flight arranged helically on, and extending radially from the core, located between successive helical passes of the main flight in the metering section, including a second periphery having a diameter that is less than a diameter of the first periphery.
- 11. The apparatus of claim 10, wherein the thickness of the main flight is greater than a thickness of the secondary flight in the metering section.
- 12. The apparatus of claim 10, wherein said metering section is multi-channel and undulating.
- 13. The apparatus of claim 10, wherein the main flight has a push side and a trailing side, and solid material conveyed along said metering section is positioned primarily adjacent said push side of the main flight, and melt material conveyed along said metering section is positioned primarily adjacent said trailing side of the main flight.
- 14. The apparatus of claim 10, wherein the screw further includes a feed section, a barrier melting section, and a reorientation section, each section arranged along the axis sequentially from the feed section downstream to the metering section.
- 15. The apparatus of claim 12, wherein the cut-through recesses are located on alternate helical passes of the main flight about the axis in the metering section.
- 16. The apparatus of claim 12, wherein the core in metering section includes a crest and a valley located between a helical pass of the main flight and a helical pass of the secondary flight about the axis.
- 17. The apparatus of claim 12, wherein the screw includes helically directed crests and valleys located in the metering section between helical passes of the main flight and helical passes of the secondary flight about the axis, a height of the crests and a depth of the valleys varying angularly about the axis; and
the cut-through recesses are located angularly about the axis between a maximum height of the crests and a maximum depth of the valleys.
- 18. The apparatus of claim 12, wherein the cut-through recesses provide a passageway for the material to back flow in a direction from the outlet toward the inlet when crossing the main flight.
- 19. A plasticating apparatus comprising:
a barrel having an inlet and an outlet; a rotatable screw having a longitudinal axis, disposed within and cooperating with an inner wall of said barrel, said screw adapted for plasticating resinous material fed into said barrel through said inlet, said screw comprising; a core, feed section, a barrier melting section, a metering section disposed sequentially downstream along said axis, and a reorientation section disposed between the barrier melting section and the metering section; said screw including a main helical flight having a push side and a trailing side, said main flight forming a feed channel at said inlet of said screw; a barrier flight disposed in said barrier melting section intermediate said main flight, said main flight having a constant pitch in the barrier melting section, said barrier flight and said main flight dividing said barrier melting section into a melt channel and a solids channel extending helically side by side, said barrier flight having a helical thread with a diameter less than the diameter of a helical thread of said main flight, so that melt material flows over said barrier flight and into said melt channel, whereby solid material conveyed along said barrier melting section is positioned adjacent said trailing side and whereas melt material conveyed along said barrier melting section is positioned adjacent said push side; said barrier flight discontinuing at a terminal end of said barrier melting section; said main helical flight passing into the reorientation section making a rotation of at least 540° about said axis at a pitch less than the pitch of the main flight in the barrier melting section, said melt channel and said solids channel in said barrier melting section merging into a substantially uniform reorientation channel in said reorientation section thereby forcing solid plastic material conveyed along said reorientation section toward said push side of the main flight; said main flight extending radially from the core into the metering section, the main flight in the metering section having a first outer periphery facing the barrel, a thickness and multiple, mutually spaced cut-through recesses extending through the thickness at the first periphery, the cut-through recesses providing a passageway for the material to cross the main flight in the metering section; and a secondary flight arranged helically on, and extending radially from the core, located between successive helical s passes of the main flight in the metering section, including a second periphery facing the barrel and spaced radially from the barrel a greater distance than the first periphery is spaced radially from the barrel, thereby providing a passageway for the material to cross over the secondary flight in the metering section.
- 20. The apparatus of claim 19, wherein the cut-through recesses are located on alternate helical passes of the main flight about the axis in the metering section.
- 21. The apparatus of claim 19, wherein the core in the metering section includes a crest and a valley located between a helical pass of the main flight and a helical pass of the secondary flight about the axis in the metering section.
- 22. The apparatus of claim 19, wherein the screw includes helically directed crests and valleys located in the metering section between helical passes of the main flight and helical passes of the secondary flight about the axis, a height of the crest and a depth of the valley varying angularly about the axis; and
the cut-through recesses are located angularly between a maximum height of the crests and a maximum depth of the valleys.
- 23. The apparatus of claim 19, wherein the cut-through recesses provide a passageway for the material to back flow in a direction from the outlet toward the inlet when crossing the main flight in the metering section.
- 24. An apparatus for plasticating material comprising:
a barrel having a longitudinal axis, along which material moves from an inlet to an outlet; a rotatable screw disposed within and cooperating with an inner wall of said barrel, including an axial core having a feed section, a barrier melting section and a metering section, the metering section being undulating; a main flight arranged helically on, and extending radially from the core in the metering section; and a secondary flight arranged helically on, and extending radially from the core, located between successive helical passes of the main flight in the metering section, including a first outer periphery facing the barrel, a first thickness and first mutually spaced cut-through recesses extending through the first thickness at the first periphery, the first cut-through recesses providing a passageway for the material to cross the secondary flight.
- 25. The apparatus of claim 24, wherein the screw further comprises a reorientation section between the barrier melting section and the metering section.
- 26. The apparatus of claim 25 wherein the main flight further comprises a second outer periphery facing the barrel, a second thickness and second mutually spaced cut-through recesses extending through the second thickness at the second periphery, the second cut-through recesses providing a passageway for the material to cross the main flight.
- 27. The apparatus of claim 25, wherein the first cut-through recesses extend radially from the first periphery to the core.
- 28. The apparatus of claim 25, wherein the main flight further comprises a second outer periphery facing the barrel, a second thickness and second mutually spaced cut-through recesses extending through the second periphery to the core.
- 29. The apparatus of claim 25, wherein the secondary flight includes a first radial depth extending from the first periphery to the core, and the first cut-through recesses extend through the first thickness and partially into the first radial depth.
- 30. The apparatus of claim 25, wherein the main flight further comprises a second outer periphery facing the barrel, a second thickness having a second radial depth extending from the second periphery to the core, and a second cut-through recess extending through the second thickness and partially into the second radial depth.
Parent Case Info
[0001] This application is a continuation-in-part of prior and copending application Ser. No. 10/083,427, filed Feb. 25, 2002, issuing as U.S. Pat. No. 6,672,753 on Jan. 6, 2004.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10083427 |
Feb 2002 |
US |
Child |
10746677 |
Dec 2003 |
US |