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    • 95. 发明申请
    • 冷凍装置
    • 制冷装置
    • WO2011083756A1
    • 2011-07-14
    • PCT/JP2011/000010
    • 2011-01-05
    • ダイキン工業株式会社木戸尚宏前田敏行
    • 木戸尚宏前田敏行
    • F25B1/00F24F1/24
    • F25B31/006F24F1/24F24F2013/207F25B13/00F25B2600/021H05K7/20354Y02B30/741
    •  圧縮機(30)が接続されて冷凍サイクルを行う冷媒回路(20)と、パワーモジュール(56)を含む電子部品(56,57,59)と、内部に冷媒回路(20)の冷媒が流通すると共に該冷媒によって前記パワーモジュール(56)が冷却されるようにパワーモジュール(56)に接触する冷却用部材(60)とを備えた冷凍装置を前提とする。この冷凍装置(10)の冷却用部材(60)に、内部を流れる冷媒の冷熱が少なくともパワーモジュール(56)との接触面(60a)以外の非接触面(60b)から外部伝達することを阻止する断熱層(65)を設ける。
    • 公开了一种具有制冷剂回路(20)的制冷装置,压缩机(30)连接到制冷循环,包括动力模块(56)和冷却部件(56)的电子部件(56,57,59) 60),其中所述制冷剂回路(20)的制冷剂循环,所述冷却构件与所述动力模块(56)接触,使得所述动力组件(56)被所述制冷剂冷却。 防止通过冷却部件(60)的制冷剂的冷能通过除接触面(60a)以外的非接触面(60b)向外部传递的隔热层(65) 与冷却装置(10)的冷却部件(60)上设置有与功率模块(56)接触的部件。
    • 98. 发明申请
    • 室外機及び冷凍サイクル装置
    • 户外单元和制冷循环装置
    • WO2014119430A1
    • 2014-08-07
    • PCT/JP2014/051155
    • 2014-01-21
    • 三菱電機株式会社
    • 上原 伸哲
    • F24F1/24F24F1/18
    • H05K7/20354F24F1/18F24F1/24H05K7/20318H05K7/20918H05K7/20936
    • 伝熱管22に対して伝熱フィン21を任意の間隔で挿入して固定し、伝熱管22内を通過する冷媒と伝熱フィン21間を通過する空気との熱交換を行う熱交換器20と、機器を制御する電気品31と、熱交換器20を通過した空気の流路上に設けられ、電気品31の熱を空気に放熱させる冷却部材32とを備え、冷却部材32の設置位置に対応して、冷却部材32に通過させる空気の通風路となる部分の伝熱フィン21間の間隔を広げて挿入するものである。
    • 本发明装备有:热交换器(20),其中传热翅片(21)以期望的间隔插入并固定到传热管(22),热量在传热管(22)中循环的制冷剂之间交换 )和在传热翅片(21)之间循环的空气; 用于控制装置的电气部件(31) 以及设置在通过所述热交换器(20)的空气的流路中并将热量从所述电气部件(31)散发到空气中的冷却部件(32)。 传热翅片(21)在形成通过冷却构件(32)的空气的循环路径的传热翅片之间以更大的间隔插入,这对应于冷却构件(32)的安装位置。
    • 100. 发明申请
    • DEVICE FOR REMOVING HEAT FROM HEAT DISSIPATION SYSTEMS (EMBODIMENTS)
    • 从散热系统中去除热量的装置(实施例)
    • WO2010077180A2
    • 2010-07-08
    • PCT/RU2009000723
    • 2009-12-25
    • BURDIN SERGEI GERMANOVICH
    • BURDIN SERGEI GERMANOVICH
    • H01L23/427F28D15/0266F28D15/06F28F2250/08H01L2924/0002H05K7/20354H01L2924/00
    • The invention relates to radio engineering and can be used in systems for cooling heat dissipation units in radio electronic equipment. A device for removing heat, which comprises a thermally insulated evaporation chamber with a coolant and a thermally insulated condensation chamber, which are connected to one another by means of two thermally insulated pipes, wherein the evaporation chamber is designed so as to be capable of removing heat from the heat dissipation systems and is mounted below the condensation chamber, one of the thermally insulated pipes is designed so as to be capable of transporting the vapour from the evaporation chamber to the condensation chamber, and the other is designed so as to be capable of transporting a liquid from the condensation chamber to the evaporation chamber, is characterized in that the device is equipped with an additional chamber, which is mounted on a level between the evaporation chamber and the condensation chamber and communicates with the second thermally insulated pipe connecting said chambers by means of a control valve, and with a hydraulic motor, which is mounted on the first thermally insulated pipe in such a way that the input of said hydraulic motor is connected to the evaporation chamber and the output is connected to the condensation chamber, the control valve is designed so as to be capable of coupling the additional chamber to the condensation chamber for periodically filling the additional chamber with the liquid which is transported out of the condensation chamber, or of coupling the additional chamber to the evaporation chamber for subsequently emptying the additional chamber and transporting the liquid into the evaporation chamber, and the coolant comprises at least two immiscible and chemically nonreactive liquid components, one of which is a refrigerant and changes state of aggregation from the liquid phase to the gaseous phase on heating in the process of the removal of heat from the heat dissipation systems, whilst ensuring a pressure difference between the evaporation chamber and the condensation chamber, and the other does not change state of aggregation and is transferred from the evaporation chamber to the condensation chamber on heating in the process of the removal of heat from the heat dissipation systems on account of the pressure difference between said chambers. In accordance with a first embodiment, the device is equipped with a hydraulic motor, which is mounted on the first thermally insulated pipe in such a way that the input of said hydraulic motor is connected to the evaporation chamber, and the output is connected to the condensation chamber. In accordance with a second embodiment, the device is equipped with a hydraulic motor, which is arranged in the condensation chamber. The invention makes it possible to use the energy from the dissipated heat, which makes it possible to increase the eco-friendliness and operational efficiency of the device.
    • 本发明涉及无线电工程,可用于无线电电子设备中散热单元的冷却系统。 一种用于除热的装置,其包括具有冷却剂和绝热冷凝室的绝热蒸发室,它们通过两个绝热管彼此连接,其中蒸发室设计成能够去除 来自散热系统的热量并且安装在冷凝室下方,其中一个绝热管被设计成能够将蒸汽从蒸发室输送到冷凝室,另一个设计成能够 将液体从冷凝室输送到蒸发室的特征在于,该装置配备有附加室,其安装在蒸发室和冷凝室之间的水平面上,并与连接所述蒸发室的第二绝热管连通 通过控制阀,以及安装在其上的液压马达 第一绝热管,使得所述液压马达的输入连接到所述蒸发室,并且所述输出端连接到所述冷凝室,所述控制阀被设计成能够将所述附加室连接到所述冷凝室 用于用输送出冷凝室的液体周期性地填充附加室,或者将附加室耦合到蒸发室,以便随后排空附加室并将液体输送到蒸发室中,并且冷却剂包括至少两个 不混溶和化学非反应性液体组分,其中之一是制冷剂,并且在从散热系统除去热量的过程中在加热时改变从液相到气相的聚集状态,同时确保蒸发之间的压力差 室和冷凝室,另一个不改变 由于所述腔室之间的压力差,在从散热系统去除热量的过程中在加热时从蒸发室转移到冷凝室。 根据第一实施例,该装置配备有液压马达,其安装在第一绝热管上,使得所述液压马达的输入连接到蒸发室,并且输出端连接到 冷凝室。 根据第二实施例,该装置配备有设置在冷凝室中的液压马达。 本发明使得能够使用来自散热的能量,这使得可以增加装置的生态友好性和运行效率。