Claims
- 1. A filament cassette for supplying spooled filament to an extrusion apparatus, comprising:
a chamber containing, a rotatable spool of coiled filament; a filament path leading from the chamber to an exit orifice; and a means for advancing a filament strand from the spool along the filament path.
- 2. The filament cassette of claim 1, wherein the means for advancing comprises:
a pair of rollers mounted opposite one another along the filament path so as to grip the filament strand therebetween.
- 3. The filament cassette of claim 2, wherein each roller in said pair of rollers is passive and one roller in said pair is a follower roller that is accessible to receive an external drive force.
- 4. The filament cassette of claim 3, wherein the follower roller has a floating axis of rotation in a direction perpendicular to the filament path, allowing the follower roller to move away from the filament path in the absence of an external applied force, thereby relieving pressure on a filament strand in the filament path.
- 5. The filament cassette of claim 1, wherein the means for advancing comprises a knurled roller mounted opposite a wall of the filament path so as to grip the filament strand therebetween.
- 6. The filament cassette of claim 5, wherein the knurled roller is accessible to receive an external drive force.
- 7. The filament cassette of claim 1, wherein the means for advancing comprises a raised contour in a wall of the filament path over which a strand of filament is positioned, the raised contour being accessible such that an external propulsion force may be applied to the strand of filament.
- 8. The filament cassette of claim 7, wherein the raised contour is defined by the surface of an idler wheel.
- 9. The filament cassette of claim 1 and further comprising:
a retainer which positions the filament strand in the filament path.
- 10. The filament cassette of claim 4, wherein the retainer forms a seal which blocks air from entering the chamber.
- 11. The filament cassette of claim 1, wherein the chamber is air tight.
- 12. The filament cassette of claim 1, wherein the chamber and the coiled filament are dried to a water content of less than 700 parts per million.
- 13. The filament cassette of claim 12, and further comprising:
a door through which the means for advancing is accessed.
- 14. The filament cassette of claim 1, wherein the chamber has a window which allows observation of the amount of filament wound on the spool.
- 15. The filament cassette of claim 1, and further comprising:
a supply of desiccant inside of the chamber.
- 16. The filament cassette of claim 1, and further comprising:
an electronically readable and writeable data store mounted on the cassette so as to be accessible to an external controller and containing information about the filament.
- 17. The filament cassette of claim 1, and further comprising:
a registration means for mating with a modeling machine so as to align the exit orifice with a filament conduit of the modeling machine.
- 18. In a modeling machine that builds three-dimensional objects by depositing flowable modeling material under the control of a controller, wherein the modeling material is provided to the machine in the form of spooled filament and is made flowable when heated in a liquifier carried by the machine, a filament cassette receiving system comprising:
a conduit configured to mate with an exit orifice of a cassette containing spooled filament for receiving a filament strand from an exit orifice of the cassette and guiding the filament strand along a filament path towards the liquifier; and a drive means responsive to control signals from the controller for advancing the filament strand through the conduit.
- 19. The cassette receiving system of claim 18, wherein the drive means comprises a roller pair that engages the filament strand in the conduit.
- 20. The cassette receiving system of claim 18, wherein the drive means comprises a drive wheel which engages a follower wheel on the filament cassette.
- 21. The cassette receiving system of claim 20, and further comprising:
a registration means for aligning a filament cassette in the loading bay with the conduit and the drive mean.
- 22. The cassette receiving system of claim 20, and further comprising:
a drive engagement means responsive to control signals for engaging and disengaging the drive means.
- 23. The cassette receiving system of claim 22, wherein the drive means advances the filament strand to a pair of feed rollers on the modeling machine which then advance the filament strand into the liquifier, and further comprising:
a sensor for detecting presence of the filament strand between the feed rollers and responsively providing a detection indication to the controller; wherein the drive engagement means disengages the drive means in response to the controller receiving the detection indication.
- 24. The filament cassette receiving system of claim 18 and further comprising:
a latching means for engaging and disengaging the cassette.
- 25. The filament cassette receiving system of claim 18 and further comprising:
a means for creating an active moisture barrier along the filament path.
- 26. The cassette receiving system of claim 18 and further comprising:
an electrical connector electrically coupled to the controller for connecting to an electronically readable and writeable data store of the filament cassette.
- 27. The cassette receiving system of claim 18 and further comprising:
a loading bay containing the conduit and drive means, into which the filament cassette is removably inserted.
- 28. The cassette receiving system of claim 27 and further comprising:
a means for ejecting a filament cassette from the loading bay.
- 29. An extrusion apparatus comprising:
a liquifier which receives modeling material in the form of a filament strand and delivers the material in flowable form for extrusion; a loading bay for receiving a cassette containing spooled filament; a conduit for receiving a strand of filament from a cassette inserted in the loading bay and guiding the filament strand along a filament path towards the liquifier; and a drive means responsive to control signals from the controller for advancing the filament strand through the conduit.
- 30. The extrusion apparatus of claim 29, and further comprising:
a means for creating an active moisture barrier along the filament path.
- 31. The extrusion apparatus of claim 30, wherein the conduit makes an airtight seal with the cassette.
- 32. A method for loading filament into an extrusion apparatus of the type having a liquifier to which a strand of filament is advanced under the control of a controller, the method comprising the steps of:
inserting into a loading bay of the apparatus a cassette containing a coil of filament wound on a spool, the cassette having a filament path terminating in an exit orifice; engaging a filament strand in the filament path of the cassette; and advancing the filament strand out of the exit orifice of the cassette and into a conduit of the apparatus which begins a path towards the liquifier.
- 33. The method of claim 32 and further comprising the step of:
ceasing advancement of the filament strand before it reaches the liquifier in response to the controller receiving an electrical signal indicating that the filament strand is detected at a sensing position.
- 34. The method of claim 32 and further comprising the step of:
continuing to advance the filament strand through the conduit until it reaches a filament feed drive associated with the liquifier.
- 35. The method of claim 32 and further comprising the step of:
continuing to advance the filament strand through the conduit and into the liquifier.
- 36. The method of claim 32 and further comprising the steps of:
identifying that the filament coil remaining in the cassette has reached a predetermined minimum length; and automatically driving the filament strand back out of the conduit, in response to the minimum length identification, so that the cassette can be removed and replaced.
- 37. A method for assembling the filament cassette of claim 12, comprising the steps of:
loading the spool of coiled filament into the chamber; drying the chamber and the coiled filament to a water content of less than 700 parts per million; and sealing the chamber.
- 38. The method of claim 37, wherein the drying step comprises placing a supply of desiccant in the chamber.
- 39. The method of claim 37, wherein the drying step comprises heating the filament cassette in an oven under vacuum conditions.
- 40. The method of claim 37, wherein the filament is formed of a high-temperature thermoplastic.
CROSS-REFERENCE TO RELATED APPLICATION(S)
[0001] This application claims priority to provisional application Ser. No. 60/218,642, filed Jul. 13, 2000. This application is also a continuation-in-part of PCT International Application No. US00/17363, filed Jun. 23, 2000 (designating the United States), which is hereby incorporated by reference as it set forth fully herein, and which is a non-provisional of provisional application Serial No. 60/130,165, filed Apr. 20, 1999.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60218642 |
Jul 2000 |
US |
|
60140613 |
Jun 1999 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/US00/17363 |
Jun 2000 |
US |
Child |
09804401 |
Mar 2001 |
US |