IP Library › Granted Patent US 8,187,720
Granted Patent B2
US 8,187,720 · App. 11/595,623 · Granted May 29, 2012

Corrosion resistant neutron absorbing coatings

Assignees: Lawrence Livermore National Security, LLC; Sandia National Laboratories
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Quick Facts
Patent No.
US 8,187,720
App. No.
11/595,623
Granted
May 29, 2012
Kind
B2
Abstract

A method of forming a corrosion resistant neutron absorbing coating comprising the steps of spray or deposition or sputtering or welding processing to form a composite material made of a spray or deposition or sputtering or welding material, and a neutron absorbing material. Also a corrosion resistant neutron absorbing coating comprising a composite material made of a spray or deposition or sputtering or welding material, and a neutron absorbing material.

Claims (37)

1. A method of forming a corrosion resistant neutron absorbing coating on a spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years, comprising the steps of:

providing an amorphous metal alloy that includes a concentration of yttrium (≧1 atomic %), chromium (10 to 20 atomic %), molybdenum (≧5 atomic %), tungsten additions (≧1 atomic %), and boron (≦10 atomic %),

providing a neutron-absorbing material,

combining said amorphous metal alloy and said neutron-absorbing material into a coating spray of said amorphous metal alloy and said neutron-absorbing material,

positioning the spent nuclear fuel support structure and said coating spray in a position where said coating spray is directed onto the spent nuclear fuel support structure,

spray processing the spent nuclear fuel support structure using coating spray of said amorphous metal alloy and said neutron-absorbing material by cold spray deposition or thermal spray deposition of said amorphous metal alloy and said neutron absorbing material on the spent nuclear fuel support structure thereby producing

a homogenous metallic alloy that contains said amorphous metal alloy and said neutron-absorbing material on the spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years,

including the step of providing moderator materials carbon, or carbides or hydrogen isotopes or hydrides formed from hydrogen isotopes and wherein said step of spray processing the spent nuclear fuel support structure using coating spray of said amorphous metal alloy and said neutron-absorbing material by cold spray deposition or thermal spray deposition includes the addition of said moderator materials carbon, or carbides or hydrogen isotopes or hydrides formed from hydrogen isotopes on the spent nuclear fuel support structure.

2. A method of forming a corrosion resistant neutron absorbing coating on a spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years, comprising the steps of:

providing an amorphous metal alloy that includes a concentration of yttrium (≧1 atomic %), chromium (10 to 20 atomic %), molybdenum (≧5 atomic %), tungsten additions (≧1 atomic %), and boron (≦10 atomic %),

providing a neutron-absorbing material,

combining said amorphous metal alloy and said neutron-absorbing material into a coating spray of said amorphous metal alloy and said neutron-absorbing material,

positioning the spent nuclear fuel support structure and said coating spray in a position where said coating spray is directed onto the spent nuclear fuel support structure,

spray processing the spent nuclear fuel support structure using coating spray of said amorphous metal alloy and said neutron-absorbing material by cold spray deposition or thermal spray deposition of said amorphous metal alloy and said neutron absorbing material on the spent nuclear fuel support structure thereby producing

a homogenous metallic alloy that contains said amorphous metal alloy and said neutron-absorbing material on the spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years,

wherein said step of spray processing the spent nuclear fuel support structure using coating spray of said amorphous metal alloy and said neutron-absorbing material by cold spray or thermal spray deposition comprises applying said coating spray of said amorphous metal alloy and said neutron-absorbing material in multi-layer fashion, with subsequent inter-diffusion and reaction, to create an amorphous metal alloy and neutron-absorbing material composition.

3. The method of forming a corrosion resistant neutron absorbing coating on a spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years, comprising the steps of:

providing an amorphous metal alloy that includes a concentration of yttrium (≧1 atomic %), chromium (10 to 20 atomic %), molybdenum (≧5 atomic %), tungsten additions (≧1 atomic %), and boron (≦10 atomic %), wherein said step of providing amorphous metal alloy comprises refinement of particle sizes of said amorphous metal alloy using cryogenic milling,

providing a neutron-absorbing material,

combining said amorphous metal alloy and said neutron-absorbing material into a coating spray of said amorphous metal alloy and said neutron-absorbing material,

positioning the spent nuclear fuel support structure and said coating spray in a position where said coating spray is directed onto the spent nuclear fuel support structure,

spray processing the spent nuclear fuel support structure using coating spray of said amorphous metal alloy and said neutron-absorbing material by cold spray deposition or thermal spray deposition of said amorphous metal alloy and said neutron absorbing material on the spent nuclear fuel support structure thereby producing

a homogenous metallic alloy that contains said amorphous metal alloy and said neutron-absorbing material on the spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years.

4. A method of forming a corrosion resistant neutron absorbing coating on a spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years, comprising the steps of:

providing an amorphous metal alloy that includes a concentration of yttrium (≧1 atomic %), chromium (10 to 20 atomic %), molybdenum (≧5 atomic %), tungsten additions (≧1 atomic %), and boron (≦10 atomic %),

providing ceramic particles,

providing neutron-absorbing material,

combining said amorphous metal alloy, said ceramic particles, and said neutron-absorbing material into a coating spray of said amorphous metal alloy, said ceramic particles, and said neutron-absorbing material,

spray processing the spent nuclear fuel support structure using coating spray of said amorphous metal alloy, said ceramic particles, and said neutron-absorbing material by cold spray deposition or thermal spray deposition of said amorphous metal alloy, ceramic particles, and neutron-absorbing material on the spent nuclear fuel support structure to form

a composite that contains said amorphous metal alloy, ceramic particles, and neutron-absorbing material on the spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years.

5. A method of forming a corrosion resistant neutron absorbing coating on a spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years, comprising the steps of:

providing an amorphous metal alloy that includes a concentration of yttrium (≧1 atomic %), chromium (10 to 20 atomic %), molybdenum (≧5 atomic %), tungsten additions (≧1 atomic %), and boron (≦10 atomic %),

providing a neutron-absorbing material,

combining said amorphous metal alloy and said neutron-absorbing material into a deposition coating of said amorphous metal alloy and said neutron-absorbing material,

positioning the spent nuclear fuel support structure and said deposition coating in a position where said deposition coating is directed onto the spent nuclear fuel support structure,

deposition of the spent nuclear fuel support structure using said deposition coating of said amorphous metal alloy and said neutron-absorbing material by reverse micelle synthesis, chemical precipitation, physical vapor deposition, chemical vapor deposition, or electrodeposition said amorphous metal and neutron absorbing material on the spent nuclear fuel support structure to form

a homogenous metallic alloy that contains said amorphous metal alloy and said neutron-absorbing material on the spent nuclear fuel support structure for storage of spent nuclear fuel for a period as short as 10,000 years and as long as 300,000 years.

Assignments (7)
CHANGE OF NAME Recorded Jan 19, 2018
From: SANDIA CORPORATION
To: NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLC
Reel/Frame 045102/0144 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2016
From: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 037839/0509 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 10, 2013
From: YANG, NANCY
To: SANDIA CORPORATION
Reel/Frame 031381/0708 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2012
From: CHAMPAGNE, VICTOR K.
To: UNITED STATES GOVERNMENT AS REPRESENTED BY THE SECRETARY OF THE ARMY, THE
Reel/Frame 029060/0841 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2007
From: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 020012/0032 →
CONFIRMATORY LICENSE Recorded Apr 12, 2007
From: CALIFORNIA, THE REGENTS OF THE UNIVERSITY OF
To: ENERGY, U.S. DEPARTMENT OF
Reel/Frame 019162/0077 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2006
From: CHOI, JOR-SHAN; FARMER, JOSEPH C.; LEE, CHUCK K.
To: REGENTS OF THE UNIVERSITY OF CALIFORNIA, THE
Reel/Frame 018600/0063 →
Continuity (2)
Provisional Application 60737026 · Nov 14, 2005
Related Publication 20070153965A1 · Jul 5, 2007