IP Library › Granted Patent US 12,403,653
Granted Patent B2
US 12,403,653 · App. 18/304,489 · Granted Sep 2, 2025

Extruder head assembly for additive manufacturing machines

Inventors: Philippe Carrier (Montreal, CA); Maxence Gelinas-Guy (Boucherville, CA); Thomas Jasmin (Montreal, CA)
Assignee: DYZE DESIGN
B29C64/209B33Y30/00B29C64/118
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Quick Facts
Patent No.
US 12,403,653
App. No.
18/304,489
Granted
Sep 2, 2025
Kind
B2
Abstract

An extruder head assembly, which is for an additive manufacturing machine, includes a melt zone component, and a nozzle operatively connected to the melt zone component. The melt zone component is operatively connected to a cold end component for receiving and heating filament. The melt zone component includes a heat source, and an interior member in thermal communication with the heat source. The interior member defines therein a passage, at least one melt channel, and at least one aperture fluidly connecting the passage to the at least one melt channel. The passage and the at least one melt channel are fluidly connected downstream from the at least one aperture, the nozzle being configured to receive heated filament material from the passage and the at least one melt channel.

Claims (52)

1. An extruder head assembly for an additive manufacturing machine, the extruder head assembly comprising:

a melt zone component operatively connected to a cold end component for receiving and heating a filament advanced by the cold end component; and

a nozzle operatively connected to the melt zone component, the nozzle being configured to receive the filament having been heated from the melt zone component,

the melt zone component comprising:

a heat source, and

an interior member in thermal communication with the heat source, the interior member defining therein:

a passage configured to heat unmelted material of the filament,

at least one melt channel, and

at least one aperture fluidly connecting the passage to the at least one melt channel, the at least one aperture being configured to direct melted filament material toward the at least one melt channel,

the passage and the at least one melt channel fluidly connecting downstream from the at least one aperture, the nozzle being configured to receive heated filament material from the passage and the at least one melt channel.

2. The extruder head assembly of claim 1 , wherein:

the at least one aperture defines a central aperture axis that is generally perpendicular to a plane containing the at least one aperture,

the passage defines a central passage axis extending along a length passage, and

the central aperture axis is one of:

generally perpendicular to the central passage axis; and

generally skewed relative to the central passage axis.

3. The extruder head assembly of claim 2 , wherein:

the at least one melt channel defines a central melt axis extending along the length of the at least one melt channel; and

the central melt axis is parallel to the central passage axis.

4. The extruder head assembly of claim 1 , wherein:

the passage defines a central passage axis extending along a length of the passage;

the at least one melt channel defines a melt channel axis extending along a length of the at least one melt channel; and

the melt channel axis is parallel to the central passage axis.

5. The extruder head assembly of claim 1 , wherein the passage has:

a first passage diameter upstream from the at least one aperture;

a second passage diameter downstream from the at least one aperture; and

the first passage diameter is greater than the second passage diameter.

6. The extruder head assembly of claim 1 , wherein the at least one aperture includes a first aperture and a second aperture, the second aperture being spaced from the first aperture along a length of the interior member.

7. The extruder head assembly of claim 6 , wherein the first aperture has a first aperture diameter, the second aperture has a second aperture diameter, and the first aperture diameter is greater than the second aperture diameter.

8. The extruder head assembly of claim 6 , wherein the passage has:

a first passage diameter upstream from the first aperture;

a second passage diameter downstream from the first aperture and upstream from the second aperture; and

a third passage diameter downstream from the second aperture, and

the first passage diameter is greater than the second and third passage diameters, and the second passage diameter is greater than the third passage diameter.

9. The extruder head assembly of claim 1 , wherein the at least one melt channel includes a first melt channel and a second melt channel.

10. The extruder head assembly of claim 9 , wherein the at least one aperture fluidly connects the passage to the first and second melt channels.

11. The extruder head assembly of claim 9 , wherein the at least one aperture includes a first aperture fluidly connecting the passage to the first melt channel, and a second aperture fluidly connecting the passage to the second melt channel.

12. The extruder head assembly of claim 1 , wherein:

the at least one melt channel includes a first melt channel, a second melt channel and a third melt channel; and

the at least one aperture includes:

a first aperture fluidly connecting the passage to the first melt channel,

a second aperture fluidly connecting the passage to the second melt channel, and

a third aperture fluidly connecting the passage to the third melt channel.

13. The extruder head assembly of claim 12 , further including a fourth aperture fluidly connecting the passage to the first melt channel, the fourth aperture being spaced from the first aperture along a length of the interior member.

14. The extruder head assembly of claim 13 , wherein the first aperture has a first aperture diameter, the fourth aperture has a second aperture diameter, and the first aperture diameter is greater than the second aperture diameter.

15. The extruder head assembly of claim 13 , wherein the passage has:

a first passage diameter upstream from the first aperture;

a second passage diameter downstream from the first aperture and upstream from the fourth aperture; and

a third passage diameter downstream from the fourth aperture, and

the first passage diameter is greater than the second and third passage diameters, and the second passage diameter is greater than the third passage diameter.

16. The extruder head assembly of claim 1 , wherein the melt zone component further includes a holding member selectively receiving the interior member therein, one end of the holding member being selectively connected to the cold end component, and another end of the holding member being selectively connected to the nozzle.

17. The extruder head assembly of claim 1 , further comprising the cold end component for receiving filament, the cold end component including filament advancing members.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2024
From: CARRIER, PHILIPPE; GELINAS-GUY, MAXENCE
To: DYZE DESIGN
Reel/Frame 068313/0214 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2024
From: JASMIN, THOMAS
To: DYZE DESIGN
Reel/Frame 068675/0729 →
Continuity (1)
Related Publication 20240351278A1 · Oct 24, 2024
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