IP Library Granted Patent US 10,889,056
Granted Patent B2
US 10,889,056 · App. 15/938,597 · Granted Jan 12, 2021

Methods and apparatus for embedding heating circuits into articles made by additive manufacturing and articles made therefrom

Inventors: Eduardo Barocio (West Lafayette, IN); Robert Byron Pipes (Lafayette, IN); Bastian Brenken (West Lafayette, IN); Anthony Jordan Favaloro (West Lafayette, IN); Nicholas Mario DeNardo (Bridgeville, PA)
Assignee: Purdue Research Foundation
B29C64/165B29C33/06B29C33/3842B29C64/118B29C64/295B29C70/38B33Y30/00B29C64/209B29K2081/04B29K2705/08B29L2031/757B33Y10/00B33Y80/00
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Quick Facts
Patent No.
US 10,889,056
App. No.
15/938,597
Granted
Jan 12, 2021
Kind
B2
Abstract

Methods of embedding a heating circuit in an article fabricated by additive manufacturing. The methods describe techniques such as co-extruding a wire, capable of being heated, along with print material in additive manufacturing of the article, and placing a pre-shaped wire capable of being heated between adjacent layers of the article. A third method includes dispensing a wire, capable of being heated, during the additive manufacturing of the article, and compacting the wire into the printed material. An apparatus for embedding a heating circuit in an article fabricated by additive manufacturing. The apparatus contains a wire dispenser, a cutter to control the length of the wire dispensed, and a compactor capable of embedding the wire capable of being heated into the printed material. An article made by additive manufacturing is disclosed. The article contains at least one heating element embedded in the article during the additive manufacturing process.

Claims (7)

1. An article made by additive manufacturing comprising of at least one heating element embedded in the article during the additive manufacturing process, wherein the article has a layered structure comprising a material with anisotropic thermal conductivity, and the at least one heating element is located in a layer of the layered structure wherein the layer of the layered structure is chosen such that heating path of the at least one heating element is based on the local orientation of the material with anisotropic thermal conductivity and geometry of the article with respect to temperature gradients.

2. The article of claim 1 , wherein the heating element is a heating circuit.

3. The article of claim 1 , wherein the heating element is a wire or a carbon fiber strand.

4. The article of claim 3 , wherein the wire is capable of being heated by joule heating or induction heating.

5. The article of claim 1 , wherein the article is a mold.

6. The mold of claim 5 , wherein the mold is a one-sided mold.

7. The mold of claim 5 , wherein the mold is one of injection mold, compression mold, hot stamping mold, resin transfer mold, and high pressure resin transfer mold.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2020
From: PIPES, ROBERT BYRON; DENARDO, NICHOLAS MARIO; BAROCIO, EDUARDO; BRENKEN, BASTIAN; FAVALORO, ANTHONY JORDAN
To: PURDUE RESEARCH FOUNDATION
Reel/Frame 054372/0438 →
CONFIRMATORY LICENSE Recorded Mar 11, 2019
From: PURDUE UNIVERSITY
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 048566/0971 →
Continuity (2)
Provisional Application 62480110 · Mar 31, 2017
Related Publication 20180281279A1 · Oct 4, 2018