IP Library Granted Patent US 7,461,512
Granted Patent B2
US 7,461,512 · App. 10/977,276 · Granted Dec 9, 2008

System and method for suppressing sublimation using opacified aerogel

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Quick Facts
Patent No.
US 7,461,512
App. No.
10/977,276
Granted
Dec 9, 2008
Kind
B2
Abstract

The present invention relates to a castable, aerogel-based, ultra-low thermal conductivity opacified insulation to suppress sublimation. More specifically, the present invention relates to an aerogel opacified with various opacifying or reflecting constituents to suppress sublimation and provide thermal insulation in thermoelectric modules. The opacifying constituent can be graded within the aerogel for increased sublimation suppression, and the density of the aerogel can similarly be graded to achieve optimal thermal insulation and sublimation suppression.

Claims (28)

1. A system for sublimation suppression comprising:

an opacified aerogel surrounding a portion of a thermoelectric element, whereby the aerogel suppresses sublimation;

wherein the opacified aerogel is opacified with various opacifying or reflecting constituents; and

wherein the opacified aerogel has a concentration gradient of opacifying constituent such that a portion of the opacified aerogel has a higher concentration of opacifying constituent than another portion.

2. A system for sublimation suppression comprising:

an opacified aerogel surrounding a portion of a thermoelectric element, whereby the aerogel suppresses sublimation;

wherein the opacified aerogel is opacified with various opacifying or reflecting constituents; and

wherein the density of the opacified aerogel is higher on an upper portion of the aerogel and lower on a lower portion of the aerogel, such that the upper portion corresponds to a hot side of the thermoelectric element, and the lower portion corresponds to a cool side of the thermoelectric element.

3. A system for sublimation suppression comprising:

an opacified aerogel surrounding a portion of a thermoelectric module;

the aerogel being opacified with an opacifying or reflecting constituent;

the opacifying constituent selected from a group consisting of ceramic powder, graphite powder, carbon black, aluminum oxide, titanium oxide, and reflective metal flake;

the opacified aerogel having a concentration gradient of opacifying constituent such that one portion of aerogel has a higher concentration of opacifying constituent than another portion; and

the opacified aerogel having a higher density on an upper portion and a lower density on a lower portion, the upper portion corresponding to the hot side of a thermoelectric element, and the lower portion corresponding to the cool side of a thermoelectric element.

4. A method for suppressing sublimation comprising acts of:

surrounding a portion of a thermoelectric element with an opacified aerogel;

opacifying an aerogel with various opacifying or reflecting constituents; and

creating a concentration gradient of opacifying constituent within the opacified aerogel such that one portion of the opacified aerogel has a higher concentration of opacifying constituent than another portion.

5. A method for suppressing sublimation comprising acts of:

surrounding a portion of a thermoelectric element with an opacified aerogel;

opacifying an aerogel with various opacifying or reflecting constituents; and

creating an opacified aerogel such that an upper portion of the opacified aerogel has a high density and a lower portion of the opacified aerogel has a lower density, the upper portion corresponding to the hot side of a thermoelectric element, and the lower portion corresponding to the cool side of a thermoelectric element.

6. A method for suppressing sublimation comprising acts of

surrounding a portion of a thermoelectric element with an opacified aerogel;

opacifying an aerogel with various opacifying or reflecting constituents;

selecting an opacifying constituent from a group consisting of ceramic powder, graphite powder, carbon black, aluminum oxide, titanium oxide, and reflective metal flake;

creating a concentration gradient of opacifying constituent within the opacified aerogel such that one portion of the opacified aerogel has a higher concentration of opacifying constituent than another portion; and

creating an opacified aerogel such that an upper portion of the opacified aerogel has a high density and a lower portion of the opacified aerogel has a lower density, the upper portion corresponding to the hot side of a thermoelectric element, and the lower portion corresponding to the cool side of a thermoelectric element.

Assignments (4)
RELEASE OF SECURITY INTEREST Recorded Mar 1, 2013
From: BANK OF AMERICA, N.A.
To: AMERIGON INCORPORATED; BSST LLC; ZT PLUS LLC
Reel/Frame 029908/0725 →
SECURITY AGREEMENT Recorded May 11, 2012
From: AMERIGON INCORPORATED; BSST LLC; ZT PLUS, LLC
To: BANK OF AMERICA, N.A.
Reel/Frame 028192/0016 →
CONFIRMATORY LICENSE Recorded Sep 23, 2005
From: CALIFORNIA INSTITUTE OF TECHNOLOGY
To: NASA
Reel/Frame 017014/0815 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2005
From: SAKAMOTO, JEFF S.; PAIK, JONG-AH; JONES, STEVEN M.; SNYDER, G. JEFFREY; CAILLAT, THIERRY; FLEURIAL, JEAN-PIERRE
To: CALIFORNIA INSTITUTE OF TECHNOLOGY
Reel/Frame 016298/0100 →