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公开(公告)号:US10453654B1
公开(公告)日:2019-10-22
申请号:US16196697
申请日:2018-11-20
Applicant: PHOENIX LLC
Inventor: Arne Kobernik , Carl Sherven , Casey Lamers , Chris Seyfert , Evan Sengbusch , Gabriel Becerra , Jin Lee , Logan Campbell , Mark Thomas , Michael Taylor , Preston Barrows , Ross Radel , Tye Gribb
Abstract: Provided herein are high energy ion beam generator systems and methods that provide low cost, high performance, robust, consistent, uniform, low gas consumption and high current/high-moderate voltage generation of neutrons and protons. Such systems and methods find use for the commercial-scale generation of neutrons and protons for a wide variety of research, medical, security, and industrial processes.
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公开(公告)号:US11226428B2
公开(公告)日:2022-01-18
申请号:US16796000
申请日:2020-02-20
Applicant: PHOENIX LLC
Inventor: Ross Radel , Brad Bloomquist , Evan Sengbusch , Rob O'Connell , Eli Moll , Daniel Cech , Gabriel Becerra
Abstract: Provided herein are neutron-based detection systems and methods that provide, for example, high throughput analysis of elemental analysis of scrap materials. Such systems and methods find use for the commercial-scale evaluation of bulk process materials where hazardous or otherwise undesirable materials or high value materials may be interspersed with the primary process material. In certain embodiments, the system is used to detect and potentially remove unexploded ordinance (UXO) from a conveyor of demilitarized shell casings being recycled by detecting the presence of nitrogen and other elements present in the UXO. In other embodiments, the system detects and removes unwanted or highly valuable materials from a stream of scrap material.
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公开(公告)号:US10609808B2
公开(公告)日:2020-03-31
申请号:US16196740
申请日:2018-11-20
Applicant: PHOENIX LLC
Inventor: Arne Kobernik , Carl Sherven , Casey Lamers , Chris Seyfert , Evan Sengbusch , Gabriel Becerra , Jin Lee , Logan Campbell , Mark Thomas , Michael Taylor , Preston Barrows , Ross Radel , Tye Gribb
IPC: H01J7/24 , H05B31/26 , H05H7/22 , H05H3/06 , H05H9/02 , H05H1/46 , H05H6/00 , H01J37/32 , H05H5/04 , H01T23/00
Abstract: Provided herein are high energy ion beam generator systems and methods that provide low cost, high performance, robust, consistent, uniform, low gas consumption and high current/high-moderate voltage generation of neutrons and protons. Such systems and methods find use for the commercial-scale generation of neutrons and protons for a wide variety of research, medical, security, and industrial processes.
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公开(公告)号:US20200029418A1
公开(公告)日:2020-01-23
申请号:US16196740
申请日:2018-11-20
Applicant: PHOENIX LLC
Inventor: Arne Kobernik , Carl Sherven , Casey Lamers , Chris Seyfert , Evan Sengbusch , Gabriel Becerra , Jin Lee , Logan Campbell , Mark Thomas , Michael Taylor , Preston Barrows , Ross Radel , Tye Gribb
Abstract: Provided herein are high energy ion beam generator systems and methods that provide low cost, high performance, robust, consistent, uniform, low gas consumption and high current/high-moderate voltage generation of neutrons and protons. Such systems and methods find use for the commercial-scale generation of neutrons and protons for a wide variety of research, medical, security, and industrial processes.
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公开(公告)号:US20190110353A1
公开(公告)日:2019-04-11
申请号:US16157583
申请日:2018-10-11
Applicant: PHOENIX LLC
Inventor: Ross Radel , Dave Schneider , Eli Moll , David Ozburn , Evan Sengbusch , Logan Campbell
Abstract: A first system for producing a high flux of neutrons for non-destructive testing includes a dense plasma focus device neutronically coupled to a subcritical or sub-prompt critical fission assembly. The dense plasma focus device is a source of initiating neutrons for the fission assembly, and the fission assembly is configured to multiply a number of the initiating neutrons via inducing fission. A second system for producing a high flux of neutrons includes a gas-target neutron generator neutronically coupled to a subcritical or sub-prompt critical fission assembly. The gas-target neutron generator is a source of initiating neutrons for the fission assembly, and the fission assembly is configured to multiply a number of the initiating neutrons via inducing fission.
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公开(公告)号:US10206273B2
公开(公告)日:2019-02-12
申请号:US15873664
申请日:2018-01-17
Applicant: PHOENIX LLC
Inventor: Arne Kobernik , Carl Sherven , Casey Lamers , Chris Seyfert , Evan Sengbusch , Gabriel Becerra , Jin Lee , Logan Campbell , Mark Thomas , Michael Taylor , Preston Barrows , Ross Radel , Tye Gribb
Abstract: Provided herein are high energy ion beam generator systems and methods that provide low cost, high performance, robust, consistent, uniform, low gas consumption and high current/high-moderate voltage generation of neutrons and protons. Such systems and methods find use for the commercial-scale generation of neutrons and protons for a wide variety of research, medical, security, and industrial processes.
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公开(公告)号:US20220174809A1
公开(公告)日:2022-06-02
申请号:US17401725
申请日:2021-08-13
Applicant: PHOENIX LLC
Inventor: Ross Radel , Dave Schneider , Eli Moll , David Ozburn , Evan Sengbusch , Logan Campbell
Abstract: A first system for producing a high flux of neutrons for non-destructive testing includes a dense plasma focus device neutronically coupled to a subcritical or sub-prompt critical fission assembly. The dense plasma focus device is a source of initiating neutrons for the fission assembly, and the fission assembly is configured to multiply a number of the initiating neutrons via inducing fission. A second system for producing a high flux of neutrons includes a gas-target neutron generator neutronically coupled to a subcritical or sub-prompt critical fission assembly. The gas-target neutron generator is a source of initiating neutrons for the fission assembly, and the fission assembly is configured to multiply a number of the initiating neutrons via inducing fission.
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公开(公告)号:US20190317229A1
公开(公告)日:2019-10-17
申请号:US16381856
申请日:2019-04-11
Applicant: PHOENIX LLC
Inventor: Ross Radel , Evan Sengbusch , Michael Taylor , Christopher M. Seyfert , Eli Moll , Lucas Jacobson
Abstract: Provided herein are neutron imaging systems (e.g., radiography and tomography) systems and methods that provide, for example, high-quality, high throughput 2D and 3D fast or thermal neutron and/or X-ray images. Such systems and methods find use for the commercial-scale imaging of industrial components. In certain embodiments, provided herein are system comprising a plurality of independent neutron absorber-lined collimators (e.g., 4 or more collimators) extending outwards from a central neutron source assembly.
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公开(公告)号:US10438773B1
公开(公告)日:2019-10-08
申请号:US16196710
申请日:2018-11-20
Applicant: PHOENIX LLC
Inventor: Arne Kobernik , Carl Sherven , Casey Lamers , Chris Seyfert , Evan Sengbusch , Gabriel Becerra , Jin Lee , Logan Campbell , Mark Thomas , Michael Taylor , Preston Barrows , Ross Radel , Tye Gribb
Abstract: Provided herein are high energy ion beam generator systems and methods that provide low cost, high performance, robust, consistent, uniform, low gas consumption and high current/high-moderate voltage generation of neutrons and protons. Such systems and methods find use for the commercial-scale generation of neutrons and protons for a wide variety of research, medical, security, and industrial processes.
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公开(公告)号:US10123405B2
公开(公告)日:2018-11-06
申请号:US15125855
申请日:2015-03-17
Applicant: PHOENIX LLC
Inventor: Ross Radel , Dave Schneider , Eli Moll , David Ozburn , Evan Sengbusch , Logan Campbell
Abstract: A first system for producing a high flux of neutrons for non-destructive testing includes a dense plasma focus device neutronically coupled to a subcritical or sub-prompt critical fission assembly. The dense plasma focus device is a source of initiating neutrons for the fission assembly, and the fission assembly is configured to multiply a number of the initiating neutrons via inducing fission. A second system for producing a high flux of neutrons includes a gas-target neutron generator neutronically coupled to a subcritical or sub-prompt critical fission assembly. The gas-target neutron generator is a source of initiating neutrons for the fission assembly, and the fission assembly is configured to multiply a number of the initiating neutrons via inducing fission.
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