IP Library Granted Patent US 7,456,411
Granted Patent B2
US 7,456,411 · App. 11/481,040 · Granted Nov 25, 2008

He-3 neutron proportional counter with internal leakage detection and related method

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Quick Facts
Patent No.
US 7,456,411
App. No.
11/481,040
Granted
Nov 25, 2008
Kind
B2
Abstract

A radiation detector includes a pressure-tight housing having a peripheral, cylindrically-shaped wall and opposite end closures. An electrode wire extends through a center of the housing, spaced from the cylindrically-shaped wall. A pressurized detector gas fills the housing, and circuit connections to the electrode wire and the housing permits application of an electric potential thereto. The electrode wire is composed of a material providing a source of alpha particles for ionizing the gas within the housing, generating an alpha peak on the output spectrum distinct from the peak generated by incident neutrons. A related method is also disclosed.

Claims (16)

1. A neutron radiation detector comprising a pressure-tight housing having a peripheral, cylindrically-shaped wall and opposite end closures; an electrode wire extending through a center of said housing, spaced from said cylindrically-shaped wall;

a pressurized detector gas within said housing; and

circuit connections to said electrode wire and said housing for application of an electric potential thereto, wherein said electrode wire is itself composed of a material that also provides a source of alpha particles for ionizing the gas within the housing.

2. The radiation detector of claim 1 wherein said electrode wire is composed of thoriated tungsten.

3. The radiation detector of claim 2 wherein said electrode wire comprises an anode wire.

4. The radiation detector of claim 1 wherein said pressurized detector gas is He-3.

5. The radiation detector of claim 4 wherein said source for alpha particles generates an alpha peak at a specific location along an output spectrum that is distinct from a neutron spectrum peak generated by incident neutrons.

6. The radiation detector of claim 1 wherein said electrode wire is connected to a DC source via a resistor.

7. The radiation detector of claim 6 wherein voltage developed across the resistor is applied to a pulse amplifier.

8. The radiation detector of claim 1 wherein said source for alpha particles generates an alpha peak at a specific location along an output spectrum that is distinct from a neutron spectrum peak generated by incident neutrons.

9. A method of detecting an He-3 gas leak from a neutron detector housing comprising:

(a) using thoriated tungsten as an anode wire extending through the housing, the anode wire also serving as a source of alpha particles emitted due to radioactive decay;

(b) generating an alpha peak on an output spectrum distinct from a peak generated by neutron detection; and

(c) monitoring the position of the alpha peak along the output spectrum as an indicator of He-3 leakage from the housing.

10. The method of claim 9 wherein said electrode wire is connected to a DC source via a resistor.

11. The method of claim 10 wherein voltage developed across the resistor is applied to a pulse amplifier.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2020
From: GENERAL ELECTRIC COMPANY
To: BAKER HUGHES, A GE COMPANY, LLC
Reel/Frame 051733/0574 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2006
From: WEISSMAN, ERIC M.; CLARKE, LUCAS L.; WILLIAMS, JAMES R.; ANDERSON, THOMAS R.
To: GENERAL ELECTRIC COMPANY
Reel/Frame 018081/0264 →