会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 13. 发明公开
    • GENERATEUR THERMIQUE MAGNETOCALORIQUE
    • 磁锅炉
    • EP2399088A1
    • 2011-12-28
    • EP10708237.2
    • 2010-02-15
    • Cooltech Applications S.A.S.
    • HEITZLER, Jean-ClaudeMULLER, Christian
    • F25B21/00
    • F25B21/00F25B2321/002Y02B30/66
    • The invention relates to a magnetocaloric heat generator (10), including at least one magnetocaloric element (2) comprising a first end (3) and a second end (4), a magnetic arrangement for subjecting the magnetocaloric element (2) to a variable magnetic field that alternately generates a heating cycle and a cooling cycle in said magnetocaloric element (2), a means for driving a coolant through said magnetocaloric element (2) alternately towards the first end (3) and the second end (4) and vice versa in a manner that is synchronised with the variation of the magnetic field, and at least one means (15) for exchanging the thermal energy generated by said magnetocaloric element (2) with a device outside said magnetocaloric element (2). The heat generator (1) is characterised in that the exchange means (15) is built into said heat generator (10) so that it can be passed through in one direction by the coolant entering into said magnetocaloric element (2) at one end (3, 4) thereof during a heating or cooling cycle, and in the opposite direction by the coolant exiting said magnetocaloric element (2) at the same end (3, 4) thereof during the other heating or cooling cycle.
    • 15. 发明公开
    • GENERATEUR THERMIQUE A MATERIAU MAGNETOCALORIOUE
    • 与磁制冷材料发热
    • EP2315986A1
    • 2011-05-04
    • EP09737029.0
    • 2009-08-25
    • Cooltech Applications S.A.S.
    • HEITZLER, Jean-ClaudeMULLER, Christian
    • F25B21/00
    • F25B21/00F25B2321/002Y02B30/66
    • The present invention relates to a thermal generator (50), consisting of at least one thermal module (2) incorporating a magnetocaloric element (3) disposed between two chambers, hot (4) and cold (5), and completely traversed by an incompressible heat-carrying fluid by way of a first and of a second means of circulation (6, 7) each disposed in one of the hot (4) and cold (5) chambers, said thermal generator (1) also comprising a magnetic layout arranged so as to alternately submit the magnetocaloric element (3) to a variation of magnetic field and alternately create in the magnetocaloric element (3) a heating cycle and a cooling cycle, thermal generator (1) characterized in that it comprises at least one member (48) for fluidic linking between the volumes (V1 and V2) of the hot (4) and cold (5) chambers, which volumes are situated behind the first and second circulation means (6, 7) with respect to the magnetocaloric element (3), this fluidic linking member (48) and these volumes (V1 and V2) forming a closed circuit filled with an incompressible entrainment fluid, so that, on the one hand, during the displacement of the first means of circulation (6) towards the magnetocaloric element (3), said second means of circulation (7) displaces towards the end of the hot or cold chamber (4 or 5) concerned opposite from the magnetocaloric element (3) and, on the other hand, said second means of circulation (7) is returned automatically towards the magnetic element (3) when the first means of circulation (6) returns towards the end of the corresponding cold or hot chamber (5 or 4) opposite from the magnetocaloric element (3).
    • 20. 发明公开
    • APPAREIL THERMIQUE MAGNETOCALORIQUE
    • 装置THERMIQUE MAGNETOCALORIQUE
    • EP3224551A1
    • 2017-10-04
    • EP15808123.2
    • 2015-11-25
    • Cooltech Applications S.A.S.
    • MULLER, Christian
    • F25B21/00
    • F25B21/00F25B2321/0022Y02B30/66
    • The invention relates to a magnetocaloric thermal apparatus (1) with a structure that is rotary about a longitudinal axis (L), comprising a magnetic arrangement defining at least two mutually parallel air gaps (E
      1 , E
      2 ) and configured to create within each of said air gaps (E
      1 , E
      2 ) a magnetic field that can vary about the longitudinal axis (L). Two supports (S
      1 , S
      2 ) bear magnetocaloric elements (2) and are each positioned in the midplane (P
      1 , P
      2 ) of one of said air gaps (E
      1 , E
      2 ). The magnetic arrangement and the supports (S
      1 , S
      2 ) are in relative movement with respect to one another about the longitudinal axis (L) and positioned angularly with respect to one another about the longitudinal axis (L) in such a way as to generate a phase shift between the magnetic cycle experienced by the magnetocaloric elements (2) of one of the supports (S
      1 ) in one of the air gaps (E
      1 ,
      E
      2 ), and that experienced by the magnetocaloric elements of the other support (S
      2 ) in the other air gap (E
      1 , E
      2 ).
    • 本发明涉及一种具有围绕纵向轴线(L)旋转的结构的磁热装置(1),该磁热装置包括限定至少两个相互平行的气隙(E1,E2)的磁性装置并且被配置为在每个所述 气隙(E1,E2)可以围绕纵轴(L)变化的磁场。 两个支撑件(S1,S2)承载磁热元件(2)并且分别位于所述气隙(E1,E2)之一的中平面(P1,P2)中。 磁性装置和支撑件(S1,S2)围绕纵向轴线(L)相对于彼此进行相对运动并且关于纵向轴线(L)相对于彼此成角度地定位,从而产生 在一个气隙(E1,E2)中的一个支撑件(S1)的磁热元件(2)经历的磁循环与另一个支撑件(S2)的磁热元件经历的磁循环之间的相移 其他气隙(E1,E2)。