IP Library Granted Patent US 9,236,714
Granted Patent B2
US 9,236,714 · App. 14/515,332 · Granted Jan 12, 2016

Plasma ignition plug for an internal combustion engine

Inventors: Serge V. Monros (Costa Mesa, CA); David G. Yurth (Holladay, UT); Darko Segota (Salt Lake City, UT)
H01T13/28F02P9/007F02P23/04H01T13/50H05H1/52F02P3/01F02P7/03
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Quick Facts
Patent No.
US 9,236,714
App. No.
14/515,332
Granted
Jan 12, 2016
Kind
B2
Abstract

A plasma ignition plug for an internal combustion engine has a thorium alloyed tungsten anode separated from a vanadium- or beryllium-alloyed copper cathode by a boron nitride ceramic powder insulator. A generally semi-spherical titanium emitter is electrically coupled to the anode and disposed within an end of the insulator so as to form an annular gap with a torus on the end of the cathode. The surface of the emitter protrudes slightly beyond the rim of the torus on the cathode. High amplitude pulses driven into the anode arc across the annular gap to the cathode at more than twenty-four spots simultaneously, generating a plasma ignition front.

Claims (25)

1. A plasma ignition plug for an internal combustion engine, the plasma ignition plug comprising:

a generally cylindrical insulating body having a proximal end and a distal end;

a central anode co-axially disposed within the insulating body and generally co-extensive therewith;

a generally semi-spherical emitter disposed in the distal end of the insulating body and electrically connected to the central anode;

a terminal disposed in the proximal end of the insulating body and electrically connected to the central anode; and

a generally cylindrical cathode sleeve co-axially disposed around the distal end of the insulating body and having a torus-shaped ring encircling and immediately adjacent to the emitter, wherein the ring and emitter form an annular spark gap opening from the distal end of the insulating body without obstruction.

2. The plasma ignition plug of claim 1 , wherein the insulating body comprises a vitreous machinable ceramic powder.

3. The plasma ignition plug of claim 2 , wherein the vitreous machinable ceramic powder comprises a compressed machinable composition of boron-nitride.

4. The plasma ignition plug of claim 1 , wherein the central anode comprises a thorium-alloyed tungsten.

5. The plasma ignition plug of claim 1 , wherein the emitter comprises titanium and is press fitted on the central anode.

6. The plasma ignition plug of claim 1 , wherein the cathode sleeve comprises a beryllium-alloyed copper or a vanadium-alloyed copper.

7. The plasma ignition plug of any of claims 1 - 6 , wherein an equatorial diameter of the emitter is approximately equal to an inner diameter of the insulating body.

8. The plasma ignition plug of any of claims 1 - 6 , wherein the cathode sleeve is threaded for compatibility with a threaded port on an internal combustion engine.

9. The plasma ignition plug of any of claims 1 - 6 , wherein an arc of the semi-spherical emitter extends beyond the distal end of the cathode sleeve.

10. The plasma ignition plug of any of claims 1 - 6 , wherein the insulating body electrically insulates the central anode from the cathode sleeve along its length.

11. A plasma ignition plug for an internal combustion engine, the plasma ignition plug comprising:

a boron-nitride ceramic insulating body having a proximal end and a distal end;

a thorium-alloyed tungsten central anode co-axially disposed within the insulating body;

a titanium semi-spherical emitter disposed in the distal end of the insulating body and electrically connected to the central anode;

a terminal disposed in the proximal end of the insulating body and electrically connected to the central anode; and

a beryllium or vanadium-alloyed copper cathode sleeve co-axially disposed around the distal end of the insulating body and having a torus-shaped ring encircling and immediately adjacent to the emitter, wherein the ring and emitter form an annular spark gap opening from the distal end of the insulating body without obstruction.

12. The plasma ignition plug of claim 11 , wherein the insulating body comprises a generally cylindrical, hollow shape.

13. The plasma ignition plug of claim 11 , wherein the cathode sleeve is threaded for compatibility with a threaded port on an internal combustion engine.

14. The plasma ignition plug of claim 11 wherein an equitorial diameter of the emitter is approximately equal to an inner diameter of the insulating body.

15. The plasma ignition plug of claim 11 , wherein the central anode is generally co-extensive with the insulating body.

Assignments (5)
LIEN Recorded May 4, 2022
From: MONROS, SERGE V.
To: ARNOLD WEESE & DAVID MOSS C/O THE EVANNS LAW FIRM
Reel/Frame 059851/0841 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2017
From: YURTH, DAVID G.
To: NOVA INSTITUTE OF TECHNOLOGY LLC
Reel/Frame 041133/0816 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2017
From: NOVA INSTITUTE OF TECHNOLOGY LLC
To: MONROS, SERGE V.
Reel/Frame 041134/0426 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2016
From: MONROS, SERGE V.
To: SVMTECH, LLP
Reel/Frame 039222/0059 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2016
From: MONROS, SERGE V.
To: SVMTECH, LLP
Reel/Frame 038836/0817 →
Continuity (2)
Provisional Application 61891551 · Oct 16, 2013
Related Publication 20150102719A1 · Apr 16, 2015