IP Library Granted Patent US 12,398,955
Granted Patent B2
US 12,398,955 · App. 17/934,745 · Granted Aug 26, 2025

High pressure furnace and methods of use

Inventors: Charles Lamar English (Tallahassee, FL); George Miller (Tallahassee, FL); Ernesto Bosque (Tallahassee, FL)
Assignee: THE FLORIDA STATE UNIVERSITY RESEARCH FOUNDATION, INC.
F27B17/0083F27D1/00F27D7/06F27D99/0006H01F6/00F27D2007/063F27D2019/0009F27D2019/0018
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Quick Facts
Patent No.
US 12,398,955
App. No.
17/934,745
Granted
Aug 26, 2025
Kind
B2
Abstract

A furnace system including an outer shell which comprises a top flange, an elongated body portion, and a bottom flange, wherein the outer shell is a pressure vessel, with no penetrations in the elongated body portion; a heater assembly which comprises (i) a single-piece annular shaped insulation layer, and (ii) a plurality of heaters embedded in the insulation layer, wherein the heater assembly is disposed within the elongated body portion of the outer shell; and an innermost layer disposed within the annular-shaped insulation layer, wherein the innermost layer is a baffle tube configured to force a natural convective flow, wherein each of the plurality of heaters is individually controllable and the plurality of heaters are configured to heat different zones within the furnace to different temperatures and/or at different rates. The system may be used to heat treat magnet materials, such as those formed of Bi-2212, therein.

Claims (28)

1. A furnace system comprising:

an outer shell which comprises a top flange, an elongated body portion, and a bottom flange;

a heater assembly which comprises (i) a single-piece annular shaped insulation layer, and (ii) a plurality of heaters embedded in the insulation layer, wherein the heater assembly is disposed within the elongated body portion of the outer shell;

an innermost layer disposed within the annular-shaped insulation layer; and

a gas inlet and a gas outlet, which are configured to feed one or more gases or gas mixture through the furnace.

2. The furnace system of claim 1 , wherein the outer shell is a pressure vessel, with no penetrations in the elongated body portion.

3. The furnace system of claim 2 , wherein the innermost layer is a baffle tube comprising a series of openings radially spaced around a circumference of the baffle tube, the series of openings configured to force a natural convective flow.

4. The furnace system of claim 1 , wherein the plurality of heaters are configured to heat different zones within the furnace to different temperatures and/or at different rates.

5. The furnace system of claim 4 , wherein each of the plurality of heaters is individually controlled.

6. The furnace system of claim 1 , wherein the plurality of heaters consists of six heaters.

7. The furnace system of claim 6 , wherein each of the plurality of heaters is individually controlled.

8. The furnace system of claim 1 , further comprising two or more gas inlets and two or more gas outlets, which are configured to feed one or more gases or gas mixture through the furnace.

9. The furnace system of claim 1 , further comprising a control system to control (1) temperatures and pressure within the furnace, and (2) rate of gas flow through the furnace.

10. The furnace system of claim 1 , wherein electrical feedthroughs, control thermocouples, pressure transducer and a gas inlet are located in the base flange, and wherein sample thermocouples and a gas outlet are located in the top flange.

11. The furnace system of claim 1 , which is configured to be operated at a temperature up to at least 1000° C.

12. A method of heat treating magnet materials, the method comprising:

deploying a magnet material within a furnace of the furnace system of claim 1 ; and

heat treating the magnet material within the furnace.

13. The method of claim 12 , wherein the magnet material comprises or consists of Bi-2212.

14. The method of claim 12 , wherein the magnet material is in the form of a wire.

15. A furnace system comprising:

an outer shell which comprises a top flange, an elongated body portion, and a bottom flange, wherein the outer shell is a pressure vessel, with no penetrations in the elongated body portion;

a heater assembly which comprises (i) a single-piece annular shaped insulation layer, and (ii) a plurality of heaters embedded in the insulation layer, wherein the heater assembly is disposed within the elongated body portion of the outer shell; and

an innermost layer disposed within the annular-shaped insulation layer, wherein the innermost layer is a baffle tube comprising a series of openings radially spaced around a circumference of the baffle tube, the series of openings configured to force a natural convective flow,

wherein each of the plurality of heaters is individually controllable and the plurality of heaters are configured to heat different zones within the furnace to different temperatures and/or at different rates, and

wherein electrical feedthroughs, one or more control thermocouples, one or more pressure transducers, and one or more gas inlets are located in the base flange, and wherein one or more sample thermocouples and a gas outlet are located in the top flange.

16. The furnace system of claim 15 , wherein the plurality of heaters consists of six heaters.

17. The furnace system of claim 15 , further comprising a control system to control (1) temperatures and pressure within the furnace, and (2) rate of gas flow through the furnace.

Assignments (2)
CONFIRMATORY LICENSE Recorded Aug 13, 2024
From: FLORIDA STATE UNIVERSITY
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 068590/0060 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 23, 2022
From: ENGLISH, CHARLES LAMAR; MILLER, GEORGE; BOSQUE, ERNESTO
To: THE FLORIDA STATE UNIVERSITY RESEARCH FOUNDATION, INC.
Reel/Frame 061195/0318 →
Continuity (2)
Provisional Application 63249903 · Sep 29, 2021
Related Publication 20230105323A1 · Apr 6, 2023
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