Claims
- 1. A preparatory treatment device for thermoplastic plastic material comprising a comminuting device and a conveyor device with a predisposed comminuting device, with a predisposed feed supply shaft with a movable charging mechanism (2) and out of an immediately following extruding device, for plastification and/or for granulating and/or for agglomeration, wherein the comminuting device comprises a single knife carrying preparatory treatment drum (3), wherein the preparatory treatment drum (3) circulates driven in a substantially horizontally disposed conveyor tube (6), wherein the conveyor tube (6) is furnished with an upwardly directed feed supply opening (11) and with an axial discharge outlet opening (10) and wherein the preparatory treatment drum (3) is disposed with the longitudinal axis (17) aligned to the longitudinal axis (20) of the extruder worm (8) and wherein the preparatory treatment drum (3) is connected mechanically disengageably to the extruder worm (8) and wherein the preparatory treatment drum (3) and the extruder worm (8) are jointly driven through a transmission (31) by a drive motor (34) and wherein the discharge outlet opening (10) of the conveyor tube (6) and the feed supply opening (23) of the worm tube (22) of the extruder worm (8) are disposed axially successively, and are connected through a transition tube (21), wherein the transition tube is furnished under employing of a bearing body (32) for the extruder side bearing (19) of the preparatory treatment drum (3) with an inner bearing part (33) and an outer support ring (36), wherein the inner bearing part (33) and the outer support ring (36) are supportedly connected by several flow favorably formed connection webs (37) and wherein the connection between the preparatory treatment drum (3) on the one hand and the extruder worm (8) on the other hand is furnished by a disengageable connection, characterized in that a cone body is disposed in the transition tube, wherein the cone body is placed on the extruder side bearing pin of the preparatory treatment drum (3), wherein the cone body is fixed against rotation and disengageable connected to the preparatory treatment drum (3), wherein a flank of the extruder worm (8) is supported at the cone body and wherein the cone body together with the transition tube (21) forms a conical transport slot (48), wherein the conical transport slot (48) reaches up to the charging inlets opening (23) of the worm tube (22) of the extruder worm (8) and wherein the extruder worm (8) is fixed to the bearing pin of the extruder side bearing (19) of the preparatory treatment drum (3) fixed against rotation with an involute toothing or a groove and spring wedge connection or the like and wherein the extruder worm (8) is held by a support screw (47), wherein the support screw (47) is led through a bore hole from the side of the drive shaft (35) or wherein the drive shaft (35) is formed by a close tolerance bolt penetrating at a right angle relative to the axis preparatory treatment drum (3) and extruder worm (8).
- 2. The preparatory treatment device according to claim 1 wherein the bearing body (32) is inserted between the transition tube (21) and the machine casing (13) and is flanged intermediately for the extruder side bearing (19) of the preparatory treatment drum (3), wherein the inner bearing part (33) of the extruder side bearing (19) exhibits essentially the diameter of the preparatory treatment drum (3) and the outer support ring (36) of the extruder side bearing (19) exhibits a diameter, which diameter corresponds essentially to the inner diameter of the conveyor tube (6) and wherein the two amongst each other are connected supportingly with the several flow favorable formed connection webs (37).
- 3. The preparatory treatment device according to claim 2 wherein feed line (39) and the discharge line (40) for the bearing air flushing and the lubrication lines are led in the connection webs (37).
- 4. The preparatory treatment device according to claim 1 wherein cone bodies disposed in the transition tube (21) are formed as two-part cone bodies, wherein the cone body (45) on the bearing side of the cone bodies is fixed on the extruder side bearing pin of the preparatory treatment drum (3), preferably with a groove and spring wedge connection and wherein the cone body (46) on the extruder side of the cone bodies is seated on the extruder worm (8) or is screwed to the bearing side cone body (45).
- 5. The preparatory treatment device according to claim 1, wherein a cone shape transport slot (48) is formed between the cone body or the two parts cone body (45, 46) and the transition tube (21), wherein the cone shape transport slot (48) exhibits a uniform breadth, wherein at least one transport wing (49) circulates in the cone shape transport slot (48) set for transport in the direction of the charge inlet opening (23) of the worm tube (22) of the extruder.
- 6. The preparatory treatment device according to claim 5, wherein the cone shaped transport slot (48) exhibits a falling or a rising breadth in the transport direction (28) depending on the transport stock.
- 7. The preparatory treatment device according to claim 5 wherein at least the one transport wing (49) at the cone body is circulating attached to one of the two cone bodies (45 or 46), wherein the transport wing (49) is formed out of two parts and is attached at the two parts of the cone body (45 and 46).
- 8. The preparatory treatment device according to claim 5 wherein a blocking strip (50) is inserted into the transition tube (21) disposed opposite to the transport wing (49), preferably to the two parts of the transport wing (49).
- 9. The preparatory treatment device according to claim 5 wherein a slot going toward the 0 is inset between the transport wing (49), preferably between the two parts of the transport wing (49), and the blocking strip (50).
- 10. The preparatory treatment device according to claim 8, wherein the blocking strip (50) is supported closably in a counter plate (51) attached at the transition tube (21) with guides, preferably through an opening in the transition tube (21) and wherein the blocking strip (50) is attached with screwings, in particular with tension and pressure screws.
- 11. The preparatory treatment device according to claim 5, wherein the conical transport slot (48) exhibits an opening angle of several degrees up to 90 degrees, and preferably from about 20 to 45 degrees.
- 12. The preparatory treatment device according to claim 1 wherein several injection nozzles are placed at a distance from each other at the inner wall (24) of the conveyor tube (6) of the preparatory treatment drum (3), preferably at the lowest position and operating in axial transport direction (28).
- 13. The preparatory treatment device according to one of claim 1, wherein the conveyor tube (6) of the preparatory treatment drum (3) is closed with the removably screwed on tube segment (53) reaching over at least a quarter of the circumference, preferably from the lowest position of the conveyor tube (6) in the circulating direction (25) of the preparatory treatment drum (3).
- 14. The preparatory treatment device according to claim 1, wherein knives (4) distributed in several rows, and preferably in three rows and disposed staggered over the circumference amongst each other in axial direction (20) are screwed onto the preparatory treatment drum (3) and wherein the knives cooperate with at least one spatially fixed counter knife (5) and grip through the counter knife, wherein the counter knife (5) is disposed at the opening at (26) of the feed supply opening (11) of the conveyor tube (6) of the preparatory treatment drum (3).
- 15. The preparatory treatment device according to claim 1, wherein the feed supply opening (11) of the preparatory treatment drum (3) is placed reaching down at least over about a quarter of the circumference of the conveyor tube (6), from above up to the middle of the conveyor tube (6) and is placed in axial direction (20) essentially over the length of the preparatory treatment drum (3), wherein the slider (30) of the movable charging mechanism (2) feeds the plastic material into the preparatory treatment drum (3).
- 16. The preparatory treatment device according to claim 1, wherein the rotation speed of the preparatory treatment drum (3) is automatically controllable depending on the temperature of the plastic material at the discharge outlet opening (10) of the conveyor tube (6) or of the conveyor trough (38).
- 17. The preparatory treatment device according to claim 1, wherein the preparatory treatment drum (3) disposed in the conveyor tube (6) is replaced by a transport device, which is formed as a conveyor screw (9) and wherein a comminuting device is predisposed above the feed supply opening (11) of the conveyor tube (6).
- 18. The preparatory treatment device according to claim 17, wherein the conveyor screw (9) is guided in the transition tube (21) at the end region on the extruder side, in particular supporting itself at the cylindrical guide bush (57), wherein the guide bush (57) is disposed following to the screw trough (38) and/or the extruder worm (8) is additionally or instead of the extruder side. bearing (19) of the conveyor screw (9) supported with a bearing at the end disposed remote relative to the conveyor screw (9).
- 19. The preparatory treatment device according to claim 1, wherein the preparatory treatment drum (3) is disposed aligned to the extruder worm (8) and preferably aligned disposed parallel to the extruder worm (8) at a distance above the conveyor screw (9) and wherein the preparatory treatment drum (3) is covered downwardly toward the conveyor screw (9) with a disengageably attached sieve segment (41), wherein the sieve segment (41) surrounds at least a lower quarter of the preparatory treatment drum (3) and wherein the sieve segment (41) extends in the circulation direction (25) of the preparatory treatment drum (3), in particular from one trough wall of a screw trough (38) of the conveyor screw (9) open toward the conveyor tube (6) of the preparatory treatment drum (3) and wherein the preparatory treatment drum (3) is driven by a separate transmission (42), preferably a toothed belt drive, and is driven by a separate drive motor (43).
- 20. The preparatory treatment device according to claim 1, wherein a mouthpiece (58) is inserted at the charge inlet opening (23) of the worm tube (22) of the extruder, wherein the inner diameter of the mouthpiece (58) is larger as compared to the outer diameter of the extruder worm (8) and wherein the inner diameter of the mouthpiece (58) decreases in the transport direction (28) up to the outer diameter of the extruder worm (8), wherein several strips are distributed over the inner circumference, wherein the several strips reach over the length of the mouthpiece and are leaving essentially free the outer diameter of the extruder worm (8) and wherein the several strips preferably exhibit inclined slopes at the beginning of the mouthpiece (58).
- 21. A preparatory treatment device for thermoplastic plastic material comprising
a substantially horizontally disposed conveyor tube (6), wherein the conveyor tube (6) is furnished with an upwardly directed feed supply opening (11) and with an axial discharge outlet opening (10); a comminuting device, wherein the comminuting device comprises a single knife carrying preparatory treatment drum (3), wherein the preparatory treatment drum (3) circulates driven in the substantially horizontally disposed conveyor tube (6); a conveyor device, wherein the comminuting device is predisposed to the conveyor device; a feed supply shaft predisposed relative to the comminuting device; a movable charging mechanism (2) connected to the feed supply shaft; an extruding device immediately following to the conveyor device for plastification and/or for granulating and/or for agglomeration; an extruder worm (8) having a longitudinal axis (20), a worm tube (22) and a charging inlet opening (23), wherein the preparatory treatment drum (3) is disposed with a longitudinal axis (17) aligned to the longitudinal axis (20) of the extruder worm (8) and wherein the preparatory treatment drum (3) is connected mechanically disengageably to the extruder worm (8); a transition tube (21); a drive motor (34); a transmission (31) connected to the drive motor, wherein the preparatory treatment drum (3) and the extruder worm (8) are jointly driven through the transmission (31) by the drive motor (34) and wherein the discharge outlet opening (10) of the conveyor tube (6) and the charging inlet opening (23) of the worm tube (22) of the extruder worm (8) are disposed axially successively, and are connected through the transition tube (21), wherein the transition tube is furnished under employing of a bearing body (32) for the extruder side bearing (19) of the preparatory treatment drum (3) with an inner bearing part (33) and an outer support ring (36), wherein the inner bearing part (33) and the outer support ring (36) are supportedly connected by several flow favorably formed connection webs (37) and wherein the connection between the preparatory treatment drum (3) on the one hand and the extruder worm (8) on the other hand is furnished by a disengageable connection; a cone body disposed in the transition tube, wherein the cone body is placed on an extruder side bearing pin of the preparatory treatment drum (3), wherein the cone body is fixed against rotation and disengageable connected to the preparatory treatment drum (3), wherein a flank of the extruder worm (8) is supported at the cone body and wherein the cone body together with the transition tube (21) forms a conical transport slot (48), wherein the conical transport slot (48) reaches up to the charging inlet opening (23) of the worm tube (22) of the extruder worm (8) and wherein the extruder worm (8) is fixed to a bearing pin of the extruder side bearing (19) of the preparatory treatment drum (3) fixed against rotation with an involute toothing or a groove and spring wedge connection and wherein the extruder worm (8) is held by a support screw (47), wherein the support screw (47) is led through a bore hole from the side of the drive shaft (35) or wherein the drive shaft (35) is formed by a close tolerance bolt penetrating at a right angle relative to the axis preparatory treatment drum (3) and extruder worm (8).
Priority Claims (1)
Number |
Date |
Country |
Kind |
A 2193/99 |
Dec 1999 |
AT |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part application of another international application filed under the Patent Cooperation Treaty Dec. 27, 2000, bearing Application No. PCT/EP00/13271, and listing the United States as a designated and/or elected country. The entire disclosure of this latter application, including the drawings thereof, is hereby incorporated in this application as if fully set forth herein.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/EP00/13271 |
Dec 2000 |
US |
Child |
10185916 |
Jun 2002 |
US |