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    • 1. 发明授权
    • Refrigeration device
    • 制冷装置
    • US07117688B2
    • 2006-10-10
    • US10482691
    • 2002-06-26
    • Hiromune MatsuokaOsamu Tanaka
    • Hiromune MatsuokaOsamu Tanaka
    • F25D45/00
    • F25B45/00F25B13/00F25B2400/19
    • The present invention allows an optimal quantity of refrigerant to be quickly and easily charged into the refrigeration device. In a refrigeration device that includes a refrigerant cycle circuit (A) connecting an outdoor unit (X) and indoor units (Y) via refrigerant lines (6), (7), a refrigerant charging device (10) that charges refrigerant to the refrigerant cycle circuit (A) in the cooling operational state is detachably connected to the liquid side refrigerant line (6) (the high pressure liquid line during cooling operations) that links the outdoor unit (X) with the indoor units (Y). In this way, when the refrigerant charging device (10) and the liquid line refrigerant line (6) are linked together and the refrigerant cycle circuit (A) is in the cooling operational state, refrigerant charging can be carried out from the refrigerant charging device (10) to the refrigerant cycle circuit (A) via the liquid side refrigerant line (6) (the high pressure liquid line).
    • 本发明允许最佳量的制冷剂快速且容易地装入制冷装置。 在包括通过制冷剂管路(6),(7)连接室外机组(X)和室内机组(Y)的制冷剂循环回路(A)的制冷装置中,制冷剂充量装置(10)向制冷剂 制冷运转状态的循环回路(A)与室内机组(Y)连接的液侧制冷剂管路(制冷运转时的高压液体管路)可拆卸地连接。 以这种方式,当制冷剂填充装置10和液体线制冷剂管路6连接在一起并且制冷剂循环回路(A)处于制冷运转状态时,可以从制冷剂填充装置 (10)经由液体制冷剂管线(6)(高压液体管线)到制冷剂循环回路(A)。
    • 2. 发明授权
    • Air conditioning system
    • 空调系统
    • US08156752B2
    • 2012-04-17
    • US12373264
    • 2007-07-20
    • Hiromune MatsuokaToshiyuki Kurihara
    • Hiromune MatsuokaToshiyuki Kurihara
    • F25B27/00
    • F24F5/0017F24F3/06F24F5/0096F24F2221/54F25B9/008F25B13/00F25B25/005F25B2309/061F25B2313/0252F25B2313/0254F25B2313/02741Y02E60/147
    • An air conditioning system includes a compressor, a first heat source-side heat exchanger for heating or cooling a refrigerant, a second heat source-side heat exchanger for exchanging heat between the refrigerant and a heat delivery medium, a first utilization-side heat exchanger for performing indoor cooling by using the refrigerant cooled in the first heat source-side heat exchanger, a second utilization-side heat exchanger for performing indoor heating by using the heat delivery medium subjected to heat exchange in the second heat source-side heat exchanger, and a connection mechanism. The connection mechanism can switch between a first connection state in which refrigerant is circulated sequentially through the compressor, the first heat source-side heat exchanger, the first utilization-side heat exchanger and the compressor; and a second connection state in which the refrigerant is circulated sequentially through the compressor, the second heat source-side heat exchanger, the first heat source-side heat exchanger, and the compressor.
    • 空调系统包括压缩机,用于加热或冷却制冷剂的第一热源侧热交换器,用于在制冷剂和传热介质之间进行热交换的第二热源侧热交换器,第一利用侧热交换器 用于通过使用在第一热源侧热交换器中冷却的制冷剂进行室内冷却的第二利用侧热交换器,其通过使用在第二热源侧热交换器中进行热交换的传热介质进行室内加热, 和连接机构。 连接机构可以在制冷剂依次通过压缩机,第一热源侧热交换器,第一利用侧热交换器和压缩机的循环的第一连接状态之间切换; 以及第二连接状态,其中制冷剂依次通过压缩机,第二热源侧热交换器,第一热源侧热交换器和压缩机。
    • 5. 发明授权
    • Electric insulating device of air conditioner, and air conditioner with the device
    • 空调电气绝缘装置,空调装置
    • US07013665B2
    • 2006-03-21
    • US10506635
    • 2003-03-10
    • Hiromune Matsuoka
    • Hiromune Matsuoka
    • F25D19/00H01B17/34
    • F24F1/32F16L23/167F16L25/026F24F1/26F24F1/34F24F11/36F25D23/003
    • The present invention provides an electric insulation device of an air conditioner divided into an indoor unit and an outdoor unit which can improve work efficiency during installation of the indoor unit and the outdoor unit. An electric insulation device is arranged between a gas side connection line and a gas side refrigerant line of an outdoor unit, and electrically insulates the gas side connection line and the gas side refrigerant line on the outdoor unit side. The electric insulation device includes a refrigerant line connection portion that is connected to a gas side refrigerant line of the indoor unit, a connection line connection portion that is connected to the gas side connection line, an insulation portion capable of both electrically insulating the refrigerant line connection portion and the gas side connection line and circulating refrigerant, and a terminal portion on which an electric connection line is mounted.
    • 本发明提供一种分为室内机和室外机的空调机的电绝缘装置,能够提高室内机和室外机的安装时的工作效率。 电气绝缘装置设置在室外单元的气体侧连接线和气体侧制冷剂管线之间,并且使室侧单元侧的气体侧连接线和气体侧制冷剂管线电绝缘。 电绝缘装置包括连接到室内单元的气体侧制冷剂管线的制冷剂管线连接部,与气体侧连接线连接的连接线连接部,能够使制冷剂线电绝缘的绝缘部 连接部分和气体侧连接线和循环制冷剂,以及其上安装有电连接线的端子部分。
    • 6. 发明授权
    • Refrigeration apparatus
    • 制冷装置
    • US06845626B2
    • 2005-01-25
    • US10333055
    • 2002-05-20
    • Hiromune MatsuokaJunichi Shimoda
    • Hiromune MatsuokaJunichi Shimoda
    • F25B1/00F25B45/00F25B49/02
    • F25B49/027F25B45/00F25B2400/16F25B2600/02F25B2600/111F25B2600/112F25B2600/2513F25B2700/04F25B2700/1933Y02B30/743
    • This invention makes it possible to charge a refrigeration apparatus with the amount of refrigerant that the refrigeration apparatus requires at the time of onsite installation. As a result, the optimum refrigerant charging amount can always be obtained. The refrigeration apparatus is provided with a refrigeration cycle in which an outdoor unit equipped with a compressor, a condenser, and a receiver is connected to an indoor unit equipped with an expansion valve and an evaporator via a liquid pipe and a gas pipe. The refrigeration cycle is charged with refrigerant while a refrigerant charging operation state is created in which the liquid pipe that connects the outdoor unit to the indoor unit is filled with liquid refrigerant having a prescribed density. Refrigerant charging ends when, during the refrigerant charging operation, it is detected that the level of the liquid inside the receiver has reached a prescribed level.
    • 本发明使得可以在现场安装时以制冷装置所需的制冷剂量对制冷装置充电。 结果,可以始终获得最佳的制冷剂填充量。 制冷装置具有制冷循环,在该制冷循环中,配备有压缩机,冷凝器和接收器的室外机通过液体管和气体管连接到配备有膨胀阀和蒸发器的室内机。 制冷剂循环中充入制冷剂,同时产生将室外机连接到室内机的液体管填充有规定浓度的液体制冷剂的制冷剂充注动作状态。 在制冷剂填充操作期间,检测到接收器内液体的液面达到规定水平时,制冷剂充气结束。
    • 10. 发明申请
    • AIR CONDITIONING SYSTEM
    • 空调系统
    • US20090288437A1
    • 2009-11-26
    • US12373264
    • 2007-07-20
    • Hiromune MatsuokaToshiyuki Kurihara
    • Hiromune MatsuokaToshiyuki Kurihara
    • F25B27/00
    • F24F5/0017F24F3/06F24F5/0096F24F2221/54F25B9/008F25B13/00F25B25/005F25B2309/061F25B2313/0252F25B2313/0254F25B2313/02741Y02E60/147
    • An air conditioning system includes a compressor, a first heat source-side heat exchanger for heating or cooling a refrigerant, a second heat source-side heat exchanger for exchanging heat between the refrigerant and a heat delivery medium, a first utilization-side heat exchanger for performing indoor cooling by using the refrigerant cooled in the first heat source-side heat exchanger, a second utilization-side heat exchanger for performing indoor heating by using the heat delivery medium subjected to heat exchange in the second heat source-side heat exchanger, and a connection mechanism. The connection mechanism can switch between a first connection state in which refrigerant is circulated sequentially through the compressor, the first heat source-side heat exchanger, the first utilization-side heat exchanger and the compressor; and a second connection state in which the refrigerant is circulated sequentially through the compressor, the second heat source-side heat exchanger, the first heat source-side heat exchanger, and the compressor.
    • 空调系统包括压缩机,用于加热或冷却制冷剂的第一热源侧热交换器,用于在制冷剂和传热介质之间进行热交换的第二热源侧热交换器,第一利用侧热交换器 用于通过使用在第一热源侧热交换器中冷却的制冷剂进行室内冷却的第二利用侧热交换器,其通过使用在第二热源侧热交换器中进行热交换的传热介质进行室内加热, 和连接机构。 连接机构可以在制冷剂依次通过压缩机,第一热源侧热交换器,第一利用侧热交换器和压缩机的循环的第一连接状态之间切换; 以及第二连接状态,其中制冷剂依次通过压缩机,第二热源侧热交换器,第一热源侧热交换器和压缩机。