Mirrotron Kft.

Hongrie

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Type PI
        Brevet 7
        Marque 1
Juridiction
        International 4
        États-Unis 3
        Europe 1
Date
2026 (AACJ) 1
2023 1
2021 2
Avant 2021 4
Classe IPC
C04B 14/32 - CarburesNitruresBorures 2
G21F 1/04 - BétonsAutres matériaux durcis hydrauliquement 2
G21G 4/02 - Sources de neutrons 2
H05H 3/06 - Production de faisceaux de neutrons 2
B28B 1/14 - Fabrication d'objets façonnés à partir du matériau par simple coulée, le matériau n'étant ni alimenté sous pression, ni réellement compacté 1
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Statut
En Instance 1
Enregistré / En vigueur 7

1.

COMBINED COLD AND THERMAL NEUTRON MODERATOR

      
Numéro d'application 18870227
Statut En instance
Date de dépôt 2023-05-30
Date de la première publication 2026-03-12
Propriétaire MIRROTRON KFT. (Hongrie)
Inventeur(s)
  • Szász, Gábor
  • Mezei, Ferenc
  • Pósfayné Dian, Eszter

Abrégé

The invention relates to a combined cold and thermal neutron moderator (10) having a longitudinal axis (t) and at least one neutron exit window (50) at a first end (11, 12), and a cold moderator (20) arranged along the longitudinal axis (t), a thermal pre-moderator (30) and a vacuum space (40), said thermal pre-moderator (30) having a pre-moderator mantle (32) surrounding the cold moderator (20) along the longitudinal axis (t) and separated from the cold moderator (20) by the vacuum space (40), characterized in that the pre-moderator (30) comprises a pre¬moderator collar (34) extending at least at the first end (11, 12) from the pre¬moderator jacket (32) towards the longitudinal axis (t), which substantially covers the portion of the vacuum space (40) between the cold moderator (20) and the pre¬moderator mantle (32) from the direction of the neutron exit window (50), leaving substantially free at least one end (21, 22) of the cold moderator (20) at the end (11, 12). The invention relates to a combined cold and thermal neutron moderator (10) having a longitudinal axis (t) and at least one neutron exit window (50) at a first end (11, 12), and a cold moderator (20) arranged along the longitudinal axis (t), a thermal pre-moderator (30) and a vacuum space (40), said thermal pre-moderator (30) having a pre-moderator mantle (32) surrounding the cold moderator (20) along the longitudinal axis (t) and separated from the cold moderator (20) by the vacuum space (40), characterized in that the pre-moderator (30) comprises a pre¬moderator collar (34) extending at least at the first end (11, 12) from the pre¬moderator jacket (32) towards the longitudinal axis (t), which substantially covers the portion of the vacuum space (40) between the cold moderator (20) and the pre¬moderator mantle (32) from the direction of the neutron exit window (50), leaving substantially free at least one end (21, 22) of the cold moderator (20) at the end (11, 12). WO

Classes IPC  ?

  • G21C 5/16 - Forme de ses parties constituantes
  • G21C 5/12 - Structure du modérateur ou du cœurEmploi de matériaux spécifiés comme modérateur caractérisée par la composition, p. ex. le modérateur contenant des substances additionnelles qui assurent une meilleure résistance du modérateur

2.

COMBINED COLD AND THERMAL NEUTRON MODERATOR

      
Numéro d'application HU2023050029
Numéro de publication 2023/233174
Statut Délivré - en vigueur
Date de dépôt 2023-05-30
Date de publication 2023-12-07
Propriétaire MIRROTRON KFT. (Hongrie)
Inventeur(s)
  • Szász, Gábor
  • Mezei, Ferenc
  • Pósfayné Dian, Eszter

Abrégé

The invention relates to a combined cold and thermal neutron moderator (10) having a longitudinal axis (t) and at least one neutron exit window (50) at a first end (11, 12), and a cold moderator (20) arranged along the longitudinal axis (t), a thermal pre-moderator (30) and a vacuum space (40), said thermal pre-moderator (30) having a pre-moderator mantle (32) surrounding the cold moderator (20) along the longitudinal axis (t) and separated from the cold moderator (20) by the vacuum space (40), characterized in that the pre-moderator (30) comprises a pre¬ moderator collar (34) extending at least at the first end (11, 12) from the pre¬ moderator jacket (32) towards the longitudinal axis (t), which substantially covers the portion of the vacuum space (40) between the cold moderator (20) and the pre¬ moderator mantle (32) from the direction of the neutron exit window (50), leaving substantially free at least one end (21, 22) of the cold moderator (20) at the end (11, 12).

Classes IPC  ?

  • G21K 1/10 - Dispositifs de diffusionDispositifs d'absorption

3.

Neutron absorbing concrete wall and method for producing such concrete wall

      
Numéro d'application 17053898
Numéro de brevet 11810682
Statut Délivré - en vigueur
Date de dépôt 2019-05-08
Date de la première publication 2021-09-30
Date d'octroi 2023-11-07
Propriétaire MIRROTRON KFT (Hongrie)
Inventeur(s)
  • Mezei, Ferenc
  • Zanini, Luca

Abrégé

10B).

Classes IPC  ?

  • G21F 1/04 - BétonsAutres matériaux durcis hydrauliquement
  • C04B 14/32 - CarburesNitruresBorures
  • C04B 14/34 - Métaux
  • C04B 20/00 - Emploi de matières comme charges pour mortiers, béton ou pierre artificielle prévu dans plus d'un groupe et caractérisées par la forme ou la répartition des grainsTraitement de matières spécialement adapté pour renforcer leur propriétés de charge dans les mortiers, béton ou pierre artificielle prévu dans plus d'un groupe de Matières expansées ou défibrillées
  • C04B 28/02 - Compositions pour mortiers, béton ou pierre artificielle, contenant des liants inorganiques ou contenant le produit de réaction d'un liant inorganique et d'un liant organique, p. ex. contenant des ciments de polycarboxylates contenant des ciments hydrauliques autres que ceux de sulfate de calcium
  • E04B 1/92 - Protection contre d'autres agents indésirables ou dangers
  • E04B 2/84 - Murs réalisés par moulage, coulage ou compactage sur place
  • B28B 1/14 - Fabrication d'objets façonnés à partir du matériau par simple coulée, le matériau n'étant ni alimenté sous pression, ni réellement compacté
  • C04B 111/00 - Fonction, propriétés ou utilisation des mortiers, du béton ou de la pierre artificielle

4.

Neutron source and method of producing a neutron beam

      
Numéro d'application 16978393
Numéro de brevet 11375602
Statut Délivré - en vigueur
Date de dépôt 2019-03-05
Date de la première publication 2021-02-18
Date d'octroi 2022-06-28
Propriétaire MIRROTRON KFT (Hongrie)
Inventeur(s) Mezei, Ferenc

Abrégé

The object of the invention relates to a neutron source, which contains a proton accelerator for producing a proton beam, and a target arranged in the trajectory of the proton beam exiting the proton accelerator for producing a neutron beam, to which the proton beam arrives in long, typically 0.5 ms-3 ms impulses, and contains a moderator-reflector system arranged in the vicinity of the target and serving for producing a moderated neutron beam, which has at least one moderator, and a reflector surrounding the moderator and the target, characterized by that at least one statistical neutron chopper is arranged to protrude into the at least one moderated neutron beam exiting channel that modulates at least one neutron beam intensity according to a random or pseudo-random sample as a function of time with its neutron transmittance ability varying according to such pattern.

Classes IPC  ?

  • H05H 3/06 - Production de faisceaux de neutrons
  • G21G 4/02 - Sources de neutrons
  • G21G 1/06 - Dispositions pour la conversion des éléments chimiques par rayonnement électromagnétique, radiations corpusculaires ou bombardement par des particules, p. ex. production d'isotopes radioactifs à l'extérieur des réacteurs nucléaires ou des accélérateurs de particules par irradiation par des neutrons
  • H05H 6/00 - Cibles pour la production de réactions nucléaires

5.

NEUTRON ABSORBING CONCRETE WALL AND METHOD FOR PRODUCING SUCH CONCRETE WALL

      
Numéro d'application HU2019050019
Numéro de publication 2019/215464
Statut Délivré - en vigueur
Date de dépôt 2019-05-08
Date de publication 2019-11-14
Propriétaire MIRROTRON KFT. (Hongrie)
Inventeur(s)
  • Mezei, Ferenc
  • Zanini, Luca

Abrégé

The object of the invention relates to a neutron absorbing concrete wall (10), which concrete wall (10) has an internal delimiting surface (11a), and an external delimiting surface (11b) on an opposite side to the internal delimiting surface (11a), the essence of which is that it contains a first concrete layer (13a) on the side of the internal delimiting surface (11a), and a second concrete layer (13b) on the side of the external delimiting surface (11b), which first concrete layer (13a) contains at least 0.05 mass% boron-10 isotope (10B), and the second concrete layer (13b) is formed as heavyweight concrete. The object of the invention also relates to a method for creating a neutron radiation absorbing concrete wall (10) that has an internal delimiting surface (11a), and an external delimiting surface (11b) on an opposite side to the internal delimiting surface (11a), the essence of which is a first concrete layer (13a) containing at least 0.05 mass% boron-10 isotope (10B) is formed on the side of the internal delimiting surface (11a), and a second concrete layer (13b) created as heavyweight concrete is formed on the side of the external delimiting surface (11b). The object of the invention also relates to a neutron absorbing concrete wall (10), the essence of which is that it is formed as heavyweight concrete containing at least 0.05 mass% boron-10 isotope (10B).

Classes IPC  ?

  • C04B 14/32 - CarburesNitruresBorures
  • G21F 1/04 - BétonsAutres matériaux durcis hydrauliquement
  • G21F 1/12 - Matériaux de blindage laminés

6.

NEUTRON SOURCE AND METHOD OF PRODUCING A NEUTRON BEAM

      
Numéro d'application HU2019050006
Numéro de publication 2019/171092
Statut Délivré - en vigueur
Date de dépôt 2019-03-05
Date de publication 2019-09-12
Propriétaire MIRROTRON KFT (Hongrie)
Inventeur(s) Mezei, Ferenc

Abrégé

The invention relates to a neutron source, containing a first proton accelerator for producing a first proton beam having a first energy and a first target for producing a first neutron beam, which first target is connected to the first proton accelerator by a first beam trajectory, and at least one first neutron beam channel serving for guiding the protons exiting the first target, characterised by a second proton accelerator for producing a higher, second energy proton beam from the first proton beam, which second proton accelerator is linked to the first proton accelerator by a second proton accelerator, furthermore the first beam trajectory and the second beam trajectory contain a proton beam deflector arranged on a common section, set up to convey the proton beam along the first beam trajectory to the first target in a first operation state, and along the second beam trajectory to the second proton accelerator in a second operation state, and contain a second target for producing a second neutron beam, which second target is linked to the second proton accelerator by a third beam trajectory. In a similar way the neutron source is also conceivable with a third or even more accelerators and targets.

Classes IPC  ?

7.

MIRROBOR

      
Numéro d'application 017359481
Statut Enregistrée
Date de dépôt 2017-10-17
Date d'enregistrement 2018-03-13
Propriétaire Mirrotron Kft. (Hongrie)
Classes de Nice  ? 09 - Appareils et instruments scientifiques et électriques

Produits et services

Neutron screens for neutron reactors and neutron-conducting pipes; Neutron resonators for neutron reactors and neutron-conducting pipes; Neutron shields for neutron reactors and neutron-conducting pipes; Protective radiation shields for neutron reactors and neutron-conducting pipes; Neutron screens containing boron; Neutron resonators containing boron; Neutron resonators containing boron carbide; Neutron screens containing boron carbide; Rigid or flexible neutron screens containing boron carbide; Neutron shields based on boron carbide; Rigid or flexible neutron shields based on boron carbide; Neutron resonators based on boron carbide and artificial resins; Rigid or flexible neutron shields based on boron carbide and artificial resins; Neutron screens based on boron carbide and artificial resins; Rigid or flexible neutron screens based on boron carbide and artificial resins; Protective radiation shields; Protective neutron resonators containing boron carbide; Protective radiation shields containing boron carbide; Rigid or flexible protective radiation shields containing boron carbide; Rigid or flexible protective radiation shields based on boron carbide and artificial resins.

8.

NEUTRON GUIDE SYSTEM COMPRISING NEUTRON GUIDE SECTIONS, SUPPORT FOR NEUTRON GUIDE SECTIONS AND METHOD OF ALIGNING NEUTRON GUIDE SECTIONS

      
Numéro d'application HU2008000090
Numéro de publication 2010/010411
Statut Délivré - en vigueur
Date de dépôt 2008-07-25
Date de publication 2010-01-28
Propriétaire MIRROTRON KFT. (Hongrie)
Inventeur(s)
  • Mezei, Ferenc
  • Vamos, Robert

Abrégé

The invention relates to a neutron guide system (10) having neutron guide sections (12) with two ends (27), the guide sections (27) being arranged to provide a neutron path (32), and the guide system (10) having a support structure (18) for supporting the guide sections (12). The inventive guide system (10) comprises: flexible connecting means (20) flexibly connecting the adjacent ends (27) of two adjacent guide sections (12) along the neutron path (32) for allowing tilting of the guide sections (12) relative to each other and maintaining the positions of the adjacent ends (27) of the guide sections (12) relative to each other in directions substantially perpendicular to the neutron path; and / or supports (22) provided at the adjacent ends (27) of the guide sections (12); the supports (22) comprising positioning means (40) for adjusting the position of the adjacent ends (27) along at least a substantially vertical axis. The invention further relates to such support structure (18) and a method of aligning such neutron guide system (10).

Classes IPC  ?

  • G21K 1/06 - Dispositions pour manipuler des particules ou des rayonnements ionisants, p. ex. pour focaliser ou pour modérer utilisant la diffraction, la réfraction ou la réflexion, p. ex. monochromateurs