IP Library Granted Patent US 11,235,528
Granted Patent B2
US 11,235,528 · App. 15/694,772 · Granted Feb 1, 2022

Carriageless print head assembly for extrusion-based additive construction

Inventor: Paul Sieradzki (New York, NY)
Assignee: R3 Printing, Inc.
B29C64/364B29C64/106B29C64/209B29C64/386B29C64/393B33Y30/00B33Y50/02B29C48/87
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Quick Facts
Patent No.
US 11,235,528
App. No.
15/694,772
Granted
Feb 1, 2022
Kind
B2
Abstract

A carriageless print head assembly, for use in extrusion-based additive construction is disclosed. The carriageless print head features a cold end equipped with one or more timing belt attachment slots and bores for receiving bearings to achieve linear motion. The carriageless print head may be optionally equipped with some combination of an air conduit for cooling the top layer of the constructed product, a fluid channel for aiding in the regulation of the temperature of the print head cold end, and a thermal monitor for monitoring the temperature of the cold end of the print head. A computer-mediated method of monitoring the cold end of the print head to limit jams due to overheating is also disclosed.

Claims (29)

1. A carriageless print head assembly, for use in extrusion-based additive construction, comprising:

a cold end having a front end, a rear end, a left side, a right side, a top surface extending from the front end to the rear end and from the left side to the right side, and a bottom surface extending from the front end to the rear end and from the left side to the right side; and

a hot end configured to provide a melt zone, the hot end being removably attached to the bottom surface,

wherein the left side has a first timing belt attachment slot adjacent to and aligned with a first receiver for receiving a first shaft, the first timing belt attachment slot extending substantially from the front end to the rear end, the first shaft extending substantially from the front end to the rear end,

wherein the top surface is equipped with a first slot which extends downwardly towards the bottom surface and is configured to receive a first material feed,

wherein the cold end is of a singular construction,

further comprising an air conduit extending downwardly from the top surface to the bottom surface,

the air conduit having a nipple extending upwardly from the top surface, and

an air duct extending downwardly from the nipple to the bottom surface,

wherein the air duct and the nipple are fluidly connected.

2. The carriageless print head of claim 1 , wherein the air duct is equipped with a plurality of fins configured to optimize airflow from the nipple to the bottom surface.

3. The carriageless print head of claim 1 , wherein the air conduit is removably attached to the cold end.

4. A carriageless print head assembly, for use in extrusion-based additive construction, comprising:

a cold end having a front end, a rear end, a left side, a right side, a top surface extending from the front end to the rear end and from the left side to the right side, and a bottom surface extending from the front end to the rear end and from the left side to the right side; and

a hot end configured to provide a melt zone, the hot end being removably attached to the bottom surface,

wherein the left side has a first timing belt attachment slot adjacent to and aligned with a first receiver for receiving a first shaft, the first timing belt attachment slot extending substantially from the front end to the rear end, the first shaft extending substantially from the front end to the rear end,

wherein the right side has a second timing belt attachment slot adjacent to and aligned with a second for receiving a second shaft, the second timing belt attachment slot extending substantially from the front end to the rear end, the second shaft extending substantially from the front end to the rear end,

wherein the top surface is equipped with a first slot, a second slot, a third slot, and a fourth slot,

the first slot extending downwardly towards the bottom surface and is configured to receive material feed,

the second slot extending downwardly towards the bottom surface and is configured to receive material feed,

the third slot extending downwardly towards the bottom surface and is configured to receive a cooling fluid,

the fourth slot extending downwardly towards the bottom surface and is configured to expel a cooling fluid,

wherein the carriageless print head is equipped with a first heat break, which is proximate to the first slot and a second heat break which is proximate to the second slot;

an air conduit extending downwardly from the top surface to the bottom surface,

wherein the air conduit comprises a nipple extending upwardly from the top surface, and air duct extending downwardly from the nipple to the bottom surface, the air duct and the nipple being fluidly connected,

wherein the air duct is equipped with a plurality of fins configured to optimize airflow from the nipple to the bottom surface;

a fluid channel having a perimeter,

wherein the perimeter of the fluid channel is contained within the cold end and the perimeter is bounded by the bottom surface, the top surface, the front end, the rear end, the first receiver and the second receiver; and

a thermal monitor having a temperature sensor, wherein the thermal monitor is located within the cold end such that the temperature of the cold end may be monitored by the thermal monitor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 21, 2018
From: R3 PRINTING, LLC
To: R3 PRINTING, INC.
Reel/Frame 045301/0563 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2017
From: SIERADZKI, PAUL
To: R3 PRINTING, LLC
Reel/Frame 044198/0296 →
Continuity (1)
Related Publication 20190070780A1 · Mar 7, 2019
Cited By (1)
US 12,709,060