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    • 6. 发明授权
    • Magnetic refrigeration device and magnetic refrigeration system
    • 磁性制冷装置及磁性制冷系统
    • US08312730B2
    • 2012-11-20
    • US12396043
    • 2009-03-02
    • Tadahiko KobayashiAkiko SaitoShiori Kaji
    • Tadahiko KobayashiAkiko SaitoShiori Kaji
    • F25D17/02F25B21/00
    • F25B21/00F25B2321/0022Y02B30/66
    • A magnetic refrigeration device, which can be reduced in size and improve magnetic refrigeration efficiency, and a magnetic refrigeration system can be provided. The magnetic refrigeration device has a heat exchanger vessel of a helical structure filled with magnetic particles having a magnetocaloric effect, a magnetic circuit, a driving unit configured to relatively move the heat exchanger vessel and the magnetic circuit so that a magnetic field can be applied to and removed from the magnetic particles, a low temperature side heat exchanging unit, a high temperature side heat exchanging unit, a refrigerant flow device, and a refrigerant circuit formed by connecting the heat exchanger vessel, the low temperature side heat exchanging unit, the high temperature side heat exchanging unit, and the refrigerant flow device by a pipe for circulating a refrigerant. The magnetic refrigeration system is arranged to use the magnetic refrigeration device.
    • 可以提供可以减小尺寸并提高磁制冷效率的磁性制冷装置和磁性制冷系统。 磁性制冷装置具有填充有具有磁热效应的磁性粒子的螺旋结构的热交换器容器,磁路,构造成使热交换器容器和磁路相对移动的驱动单元,使得可以将磁场施加到 低温侧热交换单元,高温侧热交换单元,制冷剂流动装置以及通过连接热交换器容器,低温侧热交换单元,高压侧热交换单元而形成的制冷剂回路 温度侧热交换单元,以及用于循环制冷剂的管道的制冷剂流动装置。 磁性制冷系统设置为使用磁性制冷装置。
    • 8. 发明申请
    • MAGNETIC REFRIGERATION DEVICE AND MAGNETIC REFRIGERATION SYSTEM
    • 磁制冷装置和磁制冷系统
    • US20090217675A1
    • 2009-09-03
    • US12396043
    • 2009-03-02
    • Tadahiko KobayashiAkiko SaitoShiori Kaji
    • Tadahiko KobayashiAkiko SaitoShiori Kaji
    • F25B21/00
    • F25B21/00F25B2321/0022Y02B30/66
    • A magnetic refrigeration device, which can be reduced in size and improve magnetic refrigeration efficiency, and a magnetic refrigeration system can be provided. The magnetic refrigeration device has a heat exchanger vessel of a helical structure filled with magnetic particles having a magnetocaloric effect, a magnetic circuit, a driving unit configured to relatively move the heat exchanger vessel and the magnetic circuit so that a magnetic field can be applied to and removed from the magnetic particles, a low temperature side heat exchanging unit, a high temperature side heat exchanging unit, a refrigerant flow device, and a refrigerant circuit formed by connecting the heat exchanger vessel, the low temperature side heat exchanging unit, the high temperature side heat exchanging unit, and the refrigerant flow device by a pipe for circulating a refrigerant. The magnetic refrigeration system is arranged to use the magnetic refrigeration device.
    • 可以提供可以减小尺寸并提高磁制冷效率的磁性制冷装置和磁性制冷系统。 磁性制冷装置具有填充有具有磁热效应的磁性粒子的螺旋结构的热交换器容器,磁路,构造成使热交换器容器和磁路相对移动的驱动单元,使得可以将磁场施加到 低温侧热交换单元,高温侧热交换单元,制冷剂流动装置以及通过连接热交换器容器,低温侧热交换单元,高压侧热交换单元而形成的制冷剂回路 温度侧热交换单元,以及用于循环制冷剂的管道的制冷剂流动装置。 磁性制冷系统设置为使用磁性制冷装置。