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    • 21. 发明授权
    • Light source device and projection type display capable of enclosing fragment herein in case of burst of discharge lamp during lighting
    • 在照明期间在放电灯突发的情况下能够包围片段的光源装置和投影型显示器
    • US06709112B2
    • 2004-03-23
    • US10268762
    • 2002-10-11
    • Teruo MiyamotoHideharu TanakaMitsuhiro KawaguchiTatsuro HiroseToshimitsu IwaiTomohiro Bessho
    • Teruo MiyamotoHideharu TanakaMitsuhiro KawaguchiTatsuro HiroseToshimitsu IwaiTomohiro Bessho
    • G03B2118
    • G03B21/16
    • It is an object to obtain a light source device and a projection type display device in which a fragment can be completely enclosed therein even if a discharge lamp bursts during lighting. During normal lighting of a discharge lamp (1), an internal space of a light source device (10) and an external space are spatially connected to each other through a vent hole (43) formed on a cutoff valve mechanism (45) and a vent hole (100) formed on a concave reflecting mirror (4). Cooling air is introduced and discharged between the internal space and the external space so that the discharge lamp (1) is cooled down. When the discharge lamp (1) bursts during lighting for some reason, a very strong impulsive pressure wave is generated in a moment of the burst. The pressure wave presses a movable valve (41) provided in the cutoff valve mechanism (45) through the vent hole (100). By the pressing carried out with the pressure wave, the movable valve (41) is pushed up in a direction of an arrow (K1), thereby closing the vent hole (43).
    • 本发明的目的是获得一种光源装置和投影型显示装置,其中即使放电灯在照明期间突然发生,片段也可以被完全封闭。 在放电灯(1)的正常点亮期间,光源装置(10)和外部空间的内部空间通过形成在截止阀机构(45)上的通气孔(43)和 形成在凹面反射镜(4)上的排气孔(100)。 冷却空气在内部空间和外部空间之间被引入和排出,使得放电灯(1)被冷却。 当放电灯(1)由于某些原因在照明期间爆裂时,在突发的瞬间产生非常强的脉冲压力波。 压力波通过通气孔(100)按压设置在截止阀机构(45)中的可动阀(41)。 通过用压力波进行的压力,可动阀(41)沿箭头(K1)的方向被推上,从而关闭通气孔(43)。
    • 25. 发明授权
    • Vented motor seal for a compressor
    • 压缩机通风电机密封
    • US09506469B2
    • 2016-11-29
    • US13360930
    • 2012-01-30
    • Kenji MoritaHideharu Tanaka
    • Kenji MoritaHideharu Tanaka
    • F04C29/00F04C27/00F04D29/043F04D29/10F04C18/16
    • F04C29/005F04C18/16F04C27/009F04C29/0085F04D29/043F04D29/102
    • An air compressor includes a compressor body, an electric motor, a gear mechanism, a gear casing, a partitioning wall, and a screw seal. The screw seal locates in a through hole formed to the partitioning wall, where a rotating shaft of the electric motor passes through, and makes an air flow from the electric motor side to the gear mechanism side in the through hole with rotating of the rotation shaft. The air compressor also includes a bearing that supports that rotating shaft is arranged to the gear mechanism side of the partitioning wall, such that a rotor of the electric motor has overhang structure. The air compressor also includes a communication hole that communicates the electric motor side from the screw seal of the through hole and an outside of the air compressor not through the internal space of the casing of the electric motor.
    • 空气压缩机包括压缩机主体,电动马达,齿轮机构,齿轮箱,分隔壁和螺丝密封件。 螺旋密封件位于形成于分隔壁的通孔中,电动机的旋转轴通过,并且通过旋转轴的旋转使空气从通孔的电动机侧流向齿轮机构侧 。 空气压缩机还包括轴承,其将旋转轴支撑到分隔壁的齿轮机构侧,使得电动机的转子具有悬臂结构。 空气压缩机还包括连通孔,该连通孔使电动机侧从通孔的螺纹密封件和空气压缩机的外部不通过电动机壳体的内部空间连通。
    • 26. 发明授权
    • Oil-cooled gas compressor
    • 油冷式气体压缩机
    • US09441638B2
    • 2016-09-13
    • US13818841
    • 2011-08-08
    • Masahiko TakanoHideharu Tanaka
    • Masahiko TakanoHideharu Tanaka
    • F04B39/02F04D29/58F28D1/04F04C29/04F25B31/00F25B43/02F04C18/16
    • F04C29/04F04C18/16F04C2240/81F04C2270/195F05B2260/20F25B31/004F25B43/02Y02P80/152
    • An oil-cooled gas compressor provided with: a compressor body (3); an oil separator (6) that separates out oil from a compressed gas; a gas pipe (8) for sending the compressed gas, from which oil has been separated out by the oil separator, to a user; and an oil pipe (7) for returning, to the compressor, the oil separated out by the oil separator. The following are also provided: an air-cooled heat exchanger (13) for cooling the aforementioned oil; a controllable-speed cooling fan (14) for blowing cooling air at said air-cooled heat exchanger; and a waste-heat-recovery heat exchanger (10), provided upstream of the air-cooled heat exchanger, for recovering heat from the oil flowing through the abovementioned oil pipe. The speed of the cooling fan is controlled so as to bring the temperature of the compressed gas discharged from the compressor body to within a prescribed range. This makes it possible both to recover waste heat from the oil heated by being used to cool the compressor, and to suppress compressor temperature fluctuations even if the load on the waste-heat-recovery equipment varies.
    • 一种油冷式气体压缩机,具备:压缩机体(3); 从压缩气体中分离出油的油分离器(6) 用于将用油分离出油的压缩气体送到使用者的气体管道(8) 以及用于将由油分离器分离出的油返回到压缩机的油管(7)。 还提供以下:用于冷却上述油的风冷式热交换器(13) 用于在所述空气冷却热交换器处吹送冷却空气的可控冷却风扇(14); 以及设置在风冷式热交换器的上游的用于从流过上述油管的油回收热量的废热回收热交换器(10)。 控制冷却风扇的速度使得从压缩机主体排出的压缩气体的温度达到规定范围。 这使得既可以通过用于冷却压缩机来加热的油来回收废热,也能够抑制压缩机温度波动,即使废热回收设备上的负荷变化。
    • 27. 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。
    • 29. 发明授权
    • Oil-injection screw compressor
    • 注油螺杆压缩机
    • US08241007B2
    • 2012-08-14
    • US11544657
    • 2006-10-10
    • Hideharu Tanaka
    • Hideharu Tanaka
    • F04B49/035F01C1/16F01C1/24
    • F04C28/06F04C18/16F04C28/08F04C29/126F04C2240/403F04C2270/18
    • An oil-injection screw compressor includes a blow-off valve disposed on the discharge side of the compressor body and capable of releasing a quantity of air beyond the discharge capacity of the compressor body when operating of the motor at the minimum number of revolutions; a suction non-return valve which, disposed on the suction side of the compressor body, is closed when it is at a stop; and a pressure sensor for detecting the discharge side pressure of the compressor body; and, a controller which, at the time of operation of the motor at the minimum number of revolutions, opens the blow-off valve when the discharge side pressure P detected by the pressure sensor has risen to a prescribed upper limit Pu and closes the blow-off valve when it has fallen to a prescribed control pressure Po.
    • 注油螺杆式压缩机包括设置在压缩机主体的排出侧的排气阀,当以最小转速运转时,能够释放超过压缩机主体的排出能力的空气量; 设置在压缩机主体的吸入侧的吸入止回阀在停止时关闭; 以及用于检测压缩机主体的排出侧压力的压力传感器; 以及当由所述压力传感器检测到的排出侧压力P上升到规定的上限Pu并且关闭所述打击时,所述马达在所述最小转数时的操作时打开所述排气阀的控制器 当阀门已经达到规定的控制压力Po时。