Fused Deposition Modeling Filament Production Apparatus
20190168436 ยท 2019-06-06
Inventors
Cpc classification
B29C48/142
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B29C48/02
PERFORMING OPERATIONS; TRANSPORTING
B65H54/44
PERFORMING OPERATIONS; TRANSPORTING
B29C48/00
PERFORMING OPERATIONS; TRANSPORTING
B29C48/265
PERFORMING OPERATIONS; TRANSPORTING
B65H54/106
PERFORMING OPERATIONS; TRANSPORTING
B29C2948/92619
PERFORMING OPERATIONS; TRANSPORTING
B29C48/92
PERFORMING OPERATIONS; TRANSPORTING
B29C48/28
PERFORMING OPERATIONS; TRANSPORTING
B29C48/355
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/731
PERFORMING OPERATIONS; TRANSPORTING
B65H51/10
PERFORMING OPERATIONS; TRANSPORTING
B29C48/0018
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65H51/10
PERFORMING OPERATIONS; TRANSPORTING
B29C48/28
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A fused deposition modeling filament production apparatus including an extrusion unit comprising an extruder, feeding means for feeding FDM raw material into the extrusion unit, a filament discharge at an end of the extruder, a filament cooling unit linked to the filament discharge, a filament buffer unit for receiving and storing the filament from the cooling unit. The extrusion unit, the filament cooling unit and the filament buffer unit are accommodated in a frame. The extrusion unit is horizontally accommodated in a top section of the frame, having the feeding means on top of the extrusion unit and extending vertically from the extrusion unit. The filament discharge is arranged for substantially vertically downward discharging the extruded filament from the extrusion unit. The filament cooling unit and filament buffer unit are accommodated in a lower section of the frame below the extrusion unit.
Claims
1. A FDM filament production apparatus, comprising: an extrusion unit comprising an extruder, feeding means for feeding FDM raw material into the extrusion unit, a filament discharge opening at an end of the extruder; a filament cooling unit linked to the filament discharge opening; a filament buffer unit for receiving and storing the filament from the cooling unit; a frame for accommodating the extrusion unit, the filament cooling unit and the filament buffer unit; wherein the extrusion unit is horizontally accommodated in a top section of the frame, having the feeding means on top of the extrusion unit and extending vertically from the extrusion unit; wherein the filament discharge opening is arranged for substantially vertically downward discharging the extruded filament from the extrusion unit; wherein the filament cooling unit and filament buffer unit are accommodated in a lower section of the frame below the extrusion unit.
2. The FDM filament production apparatus according to claim 1, wherein the extruder comprises an extruder barrel, at least one rotary extrusion shaft arranged within the extruder barrel, and a drive for driving the rotary extrusion shaft.
3. The FDM filament production apparatus according to claim 2, wherein the extruder comprises at least one heating element for heating the extruder barrel.
4. The FDM filament production apparatus according to claim 1, wherein the filament discharge opening comprises a right angle bend.
5. The FDM filament production apparatus according to claim 1, wherein the filament buffer unit comprises a reel holder, a reel holder drive and an access port for introducing a reel into the filament buffer unit for storing the filament from the filament cooling unit, and filament guide for evenly winding the filament onto the reel.
6. The FDM filament production apparatus according to claim 1, wherein the filament buffer unit comprises a container for storing the filament from the filament cooling unit, and coiling means for coiling up the filament from the filament cooling unit within the container, and a filament output port for outputting the coiled up filament from the container.
7. The FDM filament production apparatus according to claim 6, wherein the coiling means comprise a rotator and a rotatable guide mounted on the rotator, wherein the rotatable guide is arranged for feeding the filament through the rotator and for tangentially releasing and coiling the filament in opposite direction relative to the rotational direction of the rotator.
8. The FDM filament production apparatus according to claim 1, wherein the filament cooling unit is arranged having a port at a top side for receiving the filament from the filament discharge of the extruder, and transport means for substantially vertically downward transporting the filament through the filament cooling means.
9. The FDM filament production apparatus according to claim 8, wherein the filament cooling means comprise a blower arranged for blowing air onto the filament from the filament discharge.
10. The FDM filament production apparatus according to claim 9, further comprising a control unit, and wherein the transport means comprise filament stretching means and wherein the control unit is arranged for controlling the filament stretching means.
11. The FDM filament production apparatus according to claim 10, wherein the control unit is arranged for controlling the filament stretching means transport rate.
12. The FDM filament production apparatus according to claim 11, wherein the control unit is arranged for controlling the filament stretching means transport rate relative to an extruder production rate.
13. The FDM filament production apparatus according to claim 11, further comprising a filament diameter sensor connected to the control unit for sending a filament diameter to the control unit, and wherein the control unit is arranged for controlling the filament stretching means transport rate as a function of the filament diameter and a filament diameter set value.
14. The FDM filament production apparatus according to claim 12, wherein the filament diameter sensor comprises a light source and an optical imaging device for measuring the filament diameter.
15. The FDM filament production apparatus according to claim 3, wherein the filament discharge opening comprises a right angle bend.
16. The FDM filament production apparatus according to claim 15, wherein the filament buffer unit comprises a reel holder, a reel holder drive and an access port for introducing a reel into the filament buffer unit for storing the filament from the filament cooling unit, and filament guide for evenly winding the filament onto the reel.
17. The FDM filament production apparatus according to claim 15, wherein the filament buffer unit comprises a container for storing the filament from the filament cooling unit, and coiling means for coiling up the filament from the filament cooling unit within the container, and a filament output port for outputting the coiled up filament from the container.
18. The FDM filament production apparatus according to claim 17, wherein the coiling means comprise a rotator and a rotatable guide mounted on the rotator, wherein the rotatable guide is arranged for feeding the filament through the rotator and for tangentially releasing and coiling the filament in opposite direction relative to the rotational direction of the rotator, wherein the filament cooling unit is arranged having a port at a top side for receiving the filament from the filament discharge of the extruder, and transport means for substantially vertically downward transporting the filament through the filament cooling means, and wherein the filament cooling means comprise a blower arranged for blowing air onto the filament from the filament discharge.
19. The FDM filament production apparatus according to claim 18, further comprising a control unit, and wherein the transport means comprise filament stretching means and wherein the control unit is arranged for controlling the filament stretching means.
20. The FDM filament production apparatus according to claim 19, wherein the control unit is arranged for controlling the filament stretching means transport rate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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[0034]
DETAILED DESCRIPTION OF THE INVENTION
[0035] In
[0036] Filament 105 extruded from the extrusion unit 101 passes downward vertically trough cooling unit 104. The cooling unit lowers the temperature of the filament 105 such that the filament 105 can be guided buffer unit 106 for storing or buffering. The vertical outflow of the filament 105 from the filament discharge 103 assures that the filament cross section is maintained. Horizontal outflow of the filament 105 would cause bending of the filament 105 as it is still hot when discharged from the extrusion unit 101. Bending of the filament 105 would cause a distortion of its cross section, which is undesirable in the production of quality filament.
[0037] A guide 113 can be provided to aid proper buffering of the filament 105 in filament buffer 106.
[0038] As a certain length L is required for sufficiently cool down and/or processing of the filament 105, a space 107 can be created underneath the extrusion unit 101 which advantageously provides room for accommodating the filament buffer unit 106. The extrusion unit 101 preferably is located in the top section of the FDM filament production apparatus, as its hopper 102 is in that position easily accessible for the user to supply raw material. The extrusion unit 101 has a drive 109 for driving one or more extrusions screws within the extrusion extruder barrel 111. The frame 108a-108d provides support for the extrusion unit 101, with its drive 109, the cooling unit 104 and the filament buffer unit 106.
[0039]
[0040] In
[0041] The puller 201 is shown having puller wheels 203a, 203b wherein puller wheel 203b can be positioned on the extruded filament 105 by means of a lever 204. This results in the filament 105 to be clamped between the puller wheels 203a, 203b. By driving one or both of the puller wheels 203a, 203b pulling force is affected on the filament 105. By properly adjusting the pulling force in relation to an extrusion speed, set by the extruder drive 109, the filament diameter of the extruded filament 105 can be controlled. The pulling force can be adjusted by controlling the puller transport rate or speed. The higher the puller transport rate or speed, the higher the pulling force. The controlling can be performed by controller 205 which controls 206, 207 both the extrusion drive 109 and the puller drive, driving either of the puller wheels 203a, 203b.
[0042]
[0043] Thus, the filament production apparatus is equipped to produce filament with a controlled diameter. The filament diameter preset value may be constant, but may also vary per batch or period of produced filament, which provides flexibility in use of the filament production apparatus, depending on filament diameter requirements of FDM equipment downstream of the filament production apparatus. No hardware modifications are required for producing various filament diameters, only modification of the preset value is required.
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[0049] The above described embodiments are given by way of example only. Variations and modifications of the embodiments can be made without departing from the scope of protection as defined by the claims set out below.
REFERENCE NUMERALS
[0050] 100 FDM filament production apparatus [0051] 101 extrusion unit [0052] 102 hopper [0053] 103 filament discharge [0054] 104 cooling unit [0055] 105 filament [0056] 106 filament buffer unit [0057] 107 lower section [0058] 108a-108d frame [0059] 109 extrusion drive unit [0060] 110 right angle bend [0061] 111 extruder barrel [0062] 112 heating element [0063] 113 filament guide [0064] 201 puller [0065] 202 fan [0066] 203a, 203b puller wheel [0067] 204 lever [0068] 205 filament diameter controller [0069] 301 filament diameter measuring unit [0070] 302 light source [0071] 303 collimator [0072] 304 collimated light [0073] 305 slot [0074] 306 aperture [0075] 307 light sensor [0076] 308 sensor signal [0077] 401 spindle drive [0078] 402 belt [0079] 403 spindle [0080] 404 reel [0081] 405 rotator [0082] 406 puller [0083] 407 puller [0084] 408 filament [0085] 409 coiled filament [0086] 410 rotation direction [0087] 411 rotator gear wheel [0088] 412 container [0089] 413 cam [0090] 414 rotatable guide [0091] 415 puller wheel [0092] 416 guide wheel