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    • 1. 发明申请
    • OIL-COOLED AIR COMPRESSOR
    • 油冷空气压缩机
    • US20090087320A1
    • 2009-04-02
    • US12038876
    • 2008-02-28
    • Hideharu TANAKAMasahiko TakanoAkihiro Nagasaka
    • Hideharu TANAKAMasahiko TakanoAkihiro Nagasaka
    • F04B39/06F04B39/02F01P11/08
    • F04C29/04F04B39/0207F04B53/08
    • In an oil-cooled air compressor for controlling a temperature of a lubricant by changing a flow rate of a cooling medium supplied to a heat exchanger for the lubricant, for obtaining an energy saving effect by variable control of the flow rate of the cooling medium and preventing securely a condensed water from occurring in a compressor unit even when an exhaust duct is arranged inappropriately, a lubricant flow rate adjustor is arranged to measure a temperature of the lubricant and decreasing a flow rate of the lubricant supplied to the heat exchanger so that the lubricant temperature becomes T1 to satisfy T0>T1≧TD when T0 is a control temperature of the lubricant and TD is a condensed water occurrence critical temperature at which a condensed water occurs in the compressor.
    • 在用于通过改变供给润滑剂的热交换器的冷却介质的流量来控制润滑剂的温度的油冷空气压缩机中,为了通过冷却介质的流量的可变控制获得节能效果,以及 即使在排气管不适当地布置时也能够可靠地防止在压缩机单元中发生冷凝水,润滑剂流量调节器被布置成测量润滑剂的温度并降低供给到热交换器的润滑剂的流量, 当T0是润滑剂的控制温度,TD是在压缩机中发生冷凝水的冷凝水发生临界温度时,润滑剂温度变为T1以满足T0> T1> = TD。
    • 2. 发明授权
    • Water-cooled air compressor
    • 水冷空气压缩机
    • US08246318B2
    • 2012-08-21
    • US12142069
    • 2008-06-19
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • F04B39/04F04B39/06
    • F28D9/00F28D15/00F28F27/02F28G9/00
    • Provided is a water-cooled air compressor which is capable of restraining lowering of the performance of a plate type compressor for heat-exchanging compressed air from a compressor body, with cooling water due to clogging of gaps between plates in the heat-exchanger by dust or the like, incorporating a first solenoid valve and a second solenoid valve connected respectively in a cooling water supply pipe line and a cooling water discharge pipe line of the heat-exchanger, an air feed pipe line connecting between a compressed air supply pipe line on the outlet side of the heat-exchanger and the cooling water discharge pipe line, a third solenoid valve and a check valve connected in the air feed pipe line, a discharge pipe line connected in a discharge pipe line 18 so as to branch therefrom, a fourth solenoid valve connected in the discharge pipe line, and a control device for controlling opening and closing of the first to fourth solenoid valves.
    • 提供一种水冷空气压缩机,其能够抑制用于从压缩机主体热交换压缩空气的板式压缩机的性能降低,由于热交换器中的板之间的间隙堵塞而产生的冷却水由灰尘 包括分别连接在热交换器的冷却水供给管线和冷却水排出管路中的第一电磁阀和第二电磁阀,连接在压缩空气供给管线上的供气管线 热交换器的出口侧和冷却水排出管路,连接在供气管线中的第三电磁阀和止回阀,排出管路连接在排出管路18中以从其分支, 连接在排出管路中的第四电磁阀,以及用于控制第一至第四电磁阀的打开和关闭的控制装置。
    • 3. 发明授权
    • Air compressor
    • 空气压缩机
    • US08425198B2
    • 2013-04-23
    • US12700189
    • 2010-02-04
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • F04B49/00
    • F04B49/06F04D27/0292
    • An air compressor 20, for enabling to restart a fan motor when an inverter trip generates within an inverter control of the fan motor, as well as, to continue supplying of compressed air therefrom, comprises: a compressor main body 1; a compressor motor 2 for driving this compressor main body 1; a fan motor 9b for driving a fan 9a; an inverter for controlling the fan motor; and a controller 10 for controlling driving of the compressor motor 2 and driving of the fan motor 9b. The controller 10 conducts such control that the fan motor 9b is brought into a restart waiting condition while continuing operation of the compressor motor 2 when an inverter trip generates, and thereafter to restart the fan motor 9b.
    • 一种空气压缩机20,用于在风扇电动机的逆变器控制期间产生变频器跳闸以及继续从其供应压缩空气时能够重新起动风扇电动机,包括:压缩机主体1; 用于驱动该压缩机主体1的压缩机电动机2; 用于驱动风扇9a的风扇马达9b; 用于控制风扇电动机的逆变器; 以及用于控制压缩机电动机2的驱动和风扇电动机9b的驱动的控制器10。 控制器10进行这样的控制,即当变频器跳闸产生时,继续运行压缩机电动机2,使风扇电动机9b进入重启等待状态,然后重启风扇电动机9b。
    • 4. 发明申请
    • Water-Cooled Air Compressor
    • 水冷空气压缩机
    • US20080314562A1
    • 2008-12-25
    • US12142069
    • 2008-06-19
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • F28D15/00F04B53/00
    • F28D9/00F28D15/00F28F27/02F28G9/00
    • Provided is a water-cooled air compressor which is capable of restraining lowering of the performance of a plate type compressor for heat-exchanging compressed air from a compressor body, with cooling water due to clogging of gaps between plates in the heat-exchanger by dust or the like, incorporating a first solenoid valve and a second solenoid valve connected respectively in a cooling water supply pipe line and a cooling water discharge pipe line of the heat-exchanger, an air feed pipe line connecting between a compressed air supply pipe line on the outlet side of the heat-exchanger and the cooling water discharge pipe line, a third solenoid valve and a check valve connected in the air feed pipe line, a discharge pipe line connected in a discharge pipe line 18 so as to branch therefrom, a fourth solenoid valve connected in the discharge pipe line, and a control device for controlling opening and closing of the first to fourth solenoid valves.
    • 提供一种水冷空气压缩机,其能够抑制用于从压缩机主体热交换压缩空气的板式压缩机的性能降低,由于热交换器中的板之间的间隙堵塞而产生的冷却水由灰尘 包括分别连接在热交换器的冷却水供给管线和冷却水排出管路中的第一电磁阀和第二电磁阀,连接在压缩空气供给管线上的供气管线 热交换器的出口侧和冷却水排出管路,连接在供气管线中的第三电磁阀和止回阀,排出管路连接在排出管路18中以从其分支, 连接在排出管路中的第四电磁阀,以及用于控制第一至第四电磁阀的打开和关闭的控制装置。
    • 5. 发明授权
    • Oil-cooled air compressor
    • 油冷空气压缩机
    • US08622716B2
    • 2014-01-07
    • US12038876
    • 2008-02-28
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • Hideharu TanakaMasahiko TakanoAkihiro Nagasaka
    • F04B39/06
    • F04C29/04F04B39/0207F04B53/08
    • In an oil-cooled air compressor for controlling a temperature of a lubricant by changing a flow rate of a cooling medium supplied to a heat exchanger for the lubricant, for obtaining an energy saving effect by variable control of the flow rate of the cooling medium and preventing securely a condensed water from occurring in a compressor unit even when an exhaust duct is arranged inappropriately, a lubricant flow rate adjustor is arranged to measure a temperature of the lubricant and decreasing a flow rate of the lubricant supplied to the heat exchanger so that the lubricant temperature becomes T1 to satisfy T0>T1≧TD when T0 is a control temperature of the lubricant and TD is a condensed water occurrence critical temperature at which a condensed water occurs in the compressor.
    • 在用于通过改变供给润滑剂的热交换器的冷却介质的流量来控制润滑剂的温度的油冷空气压缩机中,为了通过冷却介质的流量的可变控制获得节能效果,以及 即使在排气管不适当地布置时也能够可靠地防止在压缩机单元中发生冷凝水,润滑剂流量调节器被布置成测量润滑剂的温度并降低供给到热交换器的润滑剂的流量, 当T0是润滑剂的控制温度,TD是在压缩机中发生冷凝水的冷凝水发生临界温度时,润滑剂温度变为T1以满足T0> T1> = TD。
    • 6. 发明申请
    • Air Compressor
    • 空气压缩机
    • US20100232980A1
    • 2010-09-16
    • US12700189
    • 2010-02-04
    • Hideharu TANAKAMasahiko TakanoAkihiro Nagasaka
    • Hideharu TANAKAMasahiko TakanoAkihiro Nagasaka
    • F04B49/06
    • F04B49/06F04D27/0292
    • An air compressor 20, for enabling to restart a fan motor when an inverter trip generates within an inverter control of the fan motor, as well as, to continue supplying of compressed air therefrom, comprises: a compressor main body 1; a compressor motor 2 for driving this compressor main body 1; a fan motor 9b for driving a fan 9a; an inverter for controlling the fan motor; and a controller 10 for controlling driving of the compressor motor 2 and driving of the fan motor 9b. The controller 10 conducts such control that the fan motor 9b is brought into a restart waiting condition while continuing operation of the compressor motor 2 when an inverter trip generates, and thereafter to restart the fan motor 9b.
    • 一种空气压缩机20,用于在风扇电动机的逆变器控制期间产生变频器跳闸以及继续从其供应压缩空气时能够重新起动风扇电动机,包括:压缩机主体1; 用于驱动该压缩机主体1的压缩机电动机2; 用于驱动风扇9a的风扇马达9b; 用于控制风扇电动机的逆变器; 以及用于控制压缩机电动机2的驱动和风扇电动机9b的驱动的控制器10。 控制器10进行这样的控制,即当变频器跳闸产生时,继续操作压缩机电动机2,风扇电动机9b进入重启等待状态,然后重启风扇电动机9b。