IP Library Granted Patent US 11,110,658
Granted Patent B2
US 11,110,658 · App. 16/946,188 · Granted Sep 7, 2021

System and method for automated successive three-dimensional printing

Inventor: Paul Sieradzki (Los Angeles, CA)
Assignee: R3 Printing, Inc.
B29C64/245B29C64/00B29C64/227B29C64/255B29C64/295B29C64/379B29C64/393B33Y10/00B29C64/106B29C64/205B33Y30/00B33Y40/00B33Y50/02
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Quick Facts
Patent No.
US 11,110,658
App. No.
16/946,188
Granted
Sep 7, 2021
Kind
B2
Abstract

A system and method for autonomously creating subsequent physical objects using a 3-dimensional printer. The system includes a build platform that melts or sublimates at a lower temperature and pressure than the glass-transition temperature of the printed object, allowing the printed object to become detached and removed from the build area with minimal force.

Claims (14)

1. A method of ejecting an object from a print area, the object being printed by a 3-dimensional printer, the print area comprising a build plane, a build platform constructed entirely out of a material with a melting point between 40° C. and 55° C., the build platform having a top surface, a bottom surface, and a reservoir configured to contain the build platform, a push mechanism, having a horizontal actuator attached to a plow, where the plow is located proximately to the build platform, the horizontal actuator being configured to provide sufficient force to eject the object beyond the build platform, and a temperature regulator, located below the bottom surface, the method comprising the steps of:

providing, by the 3-dimensional printer, a printed object, wherein the printed object is adhered to the top surface of the build platform;

heating the build platform, by the temperature regulator, to at least the melting point of the build platform;

allowing, the build platform to melt and the printed object to become disjoined from the top surface of the build platform; and

pushing the printed object off the build platform by the plow of the push mechanism.

2. The method of claim 1 , wherein the material is a gallium or a gallium-alloy.

3. The method of claim 1 , further comprising the step of cooling, by the temperature regulator such that the build surface deposits within the reservoir.

4. A method of ejecting an object from a print area, the object being printed by a 3-dimensional printer, the print area comprising a build plane, a build platform, having a top surface, a bottom surface, and a reservoir that extends therebetween and surrounds the build platform, a push mechanism, having a horizontal actuator attached to a plow, where the plow is located proximately to the build platform, the horizontal actuator being configured to provide sufficient force to eject the object beyond the build platform, and a temperature regulator, located below the bottom surface, an air-tight chamber configured to envelope the build platform, the push mechanism, and the temperature regulator, the method comprising the steps of:

providing, by the 3-dimensional printer, a printed object, wherein the printed object is adhered to the top surface of the build platform;

heating the build platform, by the temperature regulator, to a sublimation point of the build platform;

allowing, the build platform to sublimate and the printed object to become disjoined from the top surface of the build platform; and

pushing the printed object off the build platform by the plow of the push mechanism.

5. The method of claim 4 , wherein the step of heating the build platform is followed by the step of changing the pressure in the air-tight chamber, by a pressure modulator.

6. The method of claim 5 , further comprising the step of cooling, by the temperature regulator and changing the pressure, by the pressure modulator such that the build surface deposits within the reservoir.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2022
From: SIERADZKI, PAUL
To: R3 PRINTING, INC.
Reel/Frame 060178/0231 →
Continuity (3)
Division 15801016 · Nov 1, 2017
Provisional Application 62416428 · Nov 2, 2016
Related Publication 20200298486A1 · Sep 24, 2020
Cited By (3)
US 12,325,188 US 12,337,539 US 12,515,406