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    • 3. 发明授权
    • Cooling apparatus by boiling and cooling refrigerant
    • 通过冷却制冷剂冷却冷却装置
    • US06227287B1
    • 2001-05-08
    • US09317382
    • 1999-05-24
    • Hiroshi TanakaKazuo KobayashiTadayoshi TeraoKiyoshi KawaguchiTatsuhito Matsumoto
    • Hiroshi TanakaKazuo KobayashiTadayoshi TeraoKiyoshi KawaguchiTatsuhito Matsumoto
    • F28D1500
    • F28D15/0233F28D15/046H01L23/427H01L2924/0002H01L2924/00
    • A cooling apparatus for cooling a heating body such as a CPU by boiling and condensing refrigerant has a tank having a heating body mounting portion on which the CPU is mounted; a porous metallic sintered body arranged in the tank; and refrigerant contained in the tank. The tank has a pair of faced walls including a heat-receiving wall and a radiation wall. The porous metallic sintered body is arranged along the heat-receiving wall, and transports the refrigerant collected at the bottom of the tank to an adjacent portion of the heating body mounting portion by using a capillary action. Since the refrigerant is boiled at such a wide adjacent portion, a superheat degree of the heating body mounting portion can decrease. Furthermore, since the refrigerant collected at the bottom of the tank is transported to the adjacent portion by the capillary action, an area of the radiation wall soaked in the refrigerant becomes small. As a result, a condensation area for condensing the vapor refrigerant becomes large, and then the supercool degree of the radiation wall can decrease. In this way, a cooling capacity of the cooling apparatus can increase.
    • 通过沸腾冷凝制冷剂来冷却诸如CPU的加热体的冷却装置具有:罐,其具有安装有CPU的加热体安装部; 布置在罐中的多孔金属烧结体; 以及储存在容器内的制冷剂。 储罐有一对面墙,包括一个受热壁和一个辐射墙。 多孔金属烧结体沿着受热壁配置,通过毛细管作用将收集在罐底部的制冷剂输送到加热体安装部的相邻部分。 由于制冷剂在这样宽的相邻部分被煮沸,所以加热体安装部分的过热度可能降低。 此外,由于通过毛细作用将收集在罐底部的制冷剂输送到相邻部分,所以在制冷剂中浸泡的辐射壁的面积变小。 结果,用于冷凝蒸汽制冷剂的冷凝区域变大,然后辐射壁的过冷度降低。 以这种方式,冷却装置的冷却能力可以增加。
    • 4. 发明授权
    • Cooling apparatus using boiling and condensing refrigerant
    • 使用沸腾和冷凝制冷剂的冷却装置
    • US5713413A
    • 1998-02-03
    • US579301
    • 1995-12-27
    • Hiroyuki OsakabeKiyoshi KawaguchiMasahiko SuzukiHajime SugitoKazuo KobayashiShigeru Kadota
    • Hiroyuki OsakabeKiyoshi KawaguchiMasahiko SuzukiHajime SugitoKazuo KobayashiShigeru Kadota
    • F28D15/02H01L23/427H05K7/20F28D15/00
    • H05K7/20936F28D15/0233F28D15/0266F28F13/06
    • According to the present invention, a cooling apparatus includes a refrigerant tank composed of at least a couple of thin plate materials facing each other and bonded together at bonding parts thereof, a heating body mounted on an outer surface of the thin plates, refrigerant sealed in the refrigerant tank for absorbing heat generated by the heating body, the refrigerant vaporizing in the refrigerant tank, a heat radiator mounted on the refrigerant tank in fluid communication therewith for condensing and liquefying boiling vapor ascending from the refrigerant tank, and a refrigerant flow control plate composed of a plate material and disposed in an upper part of the refrigerant tank in contact with the thin plate materials facing each other. The refrigerant flow control plate partitions an inside of the refrigerant tank into a vapor outlet and a liquid inlet. The vapor outlet is defined by one surface of the refrigerant flow control plate and the thin plate materials facing each other to flow out the boiling vapor boiled and ascending within the refrigerant tank into the heat radiator, and the liquid inlet is defined by the other surface of the refrigerant flow control plate and the thin plate materials facing each other to introduce the condensed liquid into the refrigerant tank.
    • 根据本发明,冷却装置包括由至少一对彼此面对的薄板材料构成的制冷剂罐,其粘合部分粘合在一起,安装在薄板的外表面上的加热体,密封在 用于吸收由加热体产生的热量的制冷剂罐,在制冷剂罐中蒸发的制冷剂,安装在与其流体连通的制冷剂罐中的散热器,用于冷凝和液化从制冷剂罐上升的沸腾蒸气;以及制冷剂流量控制板 由板材组成并且设置在与彼此面对的薄板材料接触的制冷剂罐的上部中。 制冷剂流量控制板将制冷剂罐的内部分隔成蒸汽出口和液体入口。 蒸汽出口由制冷剂流量控制板的一个表面和彼此面对的薄板材料限定,以将在制冷剂罐内沸腾并沸腾的沸腾蒸汽流出到散热器内,并且液体入口由另一个表面 的制冷剂流量控制板和薄板材料相互面对以将冷凝的液体引入制冷剂罐中。
    • 5. 发明授权
    • Cooling apparatus using boiling and condensing refrigerant
    • 使用沸腾和冷凝制冷剂的冷却装置
    • US06575230B1
    • 2003-06-10
    • US09467003
    • 1999-12-20
    • Shigeru KadotaKiyoshi KawaguchiTetsuya TakeutiKazuo KobayashiTakahide OharaMasahiko SuzukiHajime SugitoJunichi Semura
    • Shigeru KadotaKiyoshi KawaguchiTetsuya TakeutiKazuo KobayashiTakahide OharaMasahiko SuzukiHajime SugitoJunichi Semura
    • F28D1500
    • F28D15/0266F28D15/0233F28F1/126F28F13/00F28F2270/00
    • According to the present invention, a cooling apparatus using boiling and condensing refrigerant, includes a fluid separating plate for separating a high-temperature fluid from a low-temperature fluid, a refrigerant tank disposed on the side of the high-temperature fluid from the fluid separating plate, a refrigerant sealed into the refrigerant tank, a pair of communication pipes, one end of which is communicated with the refrigerant tank hermetically, a condensing portion communicated with the other end of the communication pipes and disposed on the side of the low-temperature fluid from the fluid separating plate, and a heat insulating material as a high-temperature portion-side heat insulating material coated on the outer periphery of the high-temperature-side communication pipe. In this way, it is possible to suppress a heat conduction from a high-temperature portion (high-temperature air) to the high-temperature-side communication pipe. As a result, it is possible to prevent the descending refrigerant which has been condensed and liquefied in the radiator from receiving heat from the high-temperature portion through the high-temperature-side communication pipe to receive an ascending force in the high-temperature-side communication pipe.
    • 根据本发明,使用沸腾冷凝制冷剂的冷却装置包括用于从低温流体分离高温流体的流体分离板,设置在来自流体的高温流体侧的制冷剂箱 分离板,密封在制冷剂罐中的制冷剂,一端连接在制冷剂罐上的一对连通管,与连通管的另一端连通并设置在低压侧的冷凝部, 来自流体分离板的温度流体和涂覆在高温侧连通管的外周上的作为高温部分侧绝热材料的绝热材料。 以这种方式,可以抑制从高温部分(高温空气)到高温侧连通管的热传导。 结果,可以防止散热器中冷凝和液化的下降的制冷剂通过高温侧连通管从高温部分接收热量,以在高温侧连通管中承受上升力。 侧通信管。
    • 6. 发明授权
    • Cooling apparatus boiling and condensing refrigerant
    • 冷却装置沸腾冷凝制冷剂
    • US5998863A
    • 1999-12-07
    • US893927
    • 1997-07-15
    • Kazuo KobayashiKiyoshi Kawaguchi
    • Kazuo KobayashiKiyoshi Kawaguchi
    • F28D15/02H01L23/427H01L23/34
    • F28F3/12F28D15/0266H01L23/427H01L2924/0002
    • According to the present invention, the cooling apparatus includes a refrigerant tank to which a semiconductor device is attached, a connection chamber which is open to the central portion of the refrigerant tank on the side opposite to the side where the semiconductor device is mounted, a first tube (a first radiator) having one end in communication with the connection chamber and the other end in communication with one end of the refrigerant tank, a second tube (a second radiator) having one end in communication with the connection chamber and the other end in communication with the other end of the refrigerant tank, and refrigerant contained in the refrigerant tank. Even when the cooling apparatus is inclined, at least one of the other end of the first tube and the other end of the second tube can be immersed below the liquid level of the refrigerant so that the refrigerant can circulate within the refrigerant tank efficiently.
    • 根据本发明,冷却装置包括安装有半导体装置的制冷剂罐,在与安装半导体装置的一侧相反的一侧与制冷剂罐的中心部分开口的连接室, 第一管(第一散热器),其一端与连接室连通,另一端与制冷剂罐的一端连通;一端与连接室连通的第二管(第二散热器)和另一端 与制冷剂罐的另一端连通,以及容纳在制冷剂罐中的制冷剂。 即使当冷却装置倾斜时,第一管的另一端和第二管的另一端中的至少一个可以浸没在制冷剂的液面之下,使得制冷剂可以有效地在制冷剂罐内循环。
    • 7. 发明授权
    • Cooling device with water proof structure
    • 具防水结构的冷却装置
    • US07100682B2
    • 2006-09-05
    • US10679161
    • 2003-10-03
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • F28D9/02H05K7/20F24F1/02H02B1/56
    • H05K7/206F28D9/0068
    • A cooling device for cooling an inner part of an approximately sealed box includes a casing and a heat exchanger disposed in the casing. Plural inside air passages through which air inside the box flows and plural outside air passages through which air outside the box flows are alternately adjacently arranged in the heat exchanger. In the cooling device, both outside air introduction port and outside air discharge port are provided in an outer side plate of the casing, and a drain space is provided between the heat exchanger and the outer side plate of the casing so that outside air passages communicate with the outside air discharge port through the drain space. Thus, even when rain water is introduced into the casing from the outside air discharge port, almost rain water flows downwardly through the drain space, and it can restrict rain water from being introduced into the heat exchanger.
    • 用于冷却大致密封的箱体的内部的冷却装置包括壳体和布置在壳体中的热交换器。 箱内空气的多个内部空气通道流动,并且箱体外部的空气流过的多个外部空气通道交替地相邻地布置在热交换器中。 在冷却装置中,外部空气导入口和外部空气排出口均设置在壳体的外侧板中,并且在热交换器与壳体的外侧板之间设置排水空间,使得外部空气通路连通 外部排气口通过排水空间。 因此,即使从外部空气排出口将雨水引入到壳体中,几乎雨水也通过排水空间向下流动,并且能够限制雨水被引入热交换器。
    • 10. 发明授权
    • Cooling device with waterproof structure
    • 防水结构冷却装置
    • US06789612B1
    • 2004-09-14
    • US09666697
    • 2000-09-21
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • Yoshiyuki OkamotoKiyoshi KawaguchiKoji Kishita
    • F28D902
    • H05K7/206F28D9/0068
    • A cooling device for cooling an inner part of an approximately sealed box includes a casing and a heat exchanger disposed in the casing. Plural inside air passages through which air inside the box flows and plural outside air passages through which air outside the box flows are alternately adjacently arranged in the heat exchanger. In the cooling device, both outside air introduction port and outside air discharge port are provided in an outer side plate of the casing, and a drain space is provided between the heat exchanger and the outer side plate of the casing so that outside air passages communicate with the outside air discharge port through the drain space. Thus, even when rain water is introduced into the casing from the outside air discharge port, almost rain water flows downwardly through the drain space, and it can restrict rain water from being introduced into the heat exchanger.
    • 用于冷却大致密封的箱体的内部的冷却装置包括壳体和布置在壳体中的热交换器。 箱内空气的多个内部空气通道流动,并且箱体外部的空气流过的多个外部空气通道交替地相邻地布置在热交换器中。 在冷却装置中,外部空气导入口和外部空气排出口均设置在壳体的外侧板中,并且在热交换器与壳体的外侧板之间设置排水空间,使得外部空气通路连通 外部排气口通过排水空间。 因此,即使从外部空气排出口将雨水引入到壳体中,几乎雨水也通过排水空间向下流动,并且能够限制雨水被引入热交换器。