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    • 71. 发明授权
    • Surface tension measuring device and method
    • 表面张力测量装置及方法
    • US08390815B2
    • 2013-03-05
    • US12667184
    • 2008-03-14
    • Takayuki SaitoToshiyuki SanadaYusuke Ozawa
    • Takayuki SaitoToshiyuki SanadaYusuke Ozawa
    • G01N21/55
    • G01N13/02G01N21/431
    • Low-cost interface property measuring device and method enabling high-precision and simple measurement of an interface property. The interface property measuring device comprises an optical fiber probe (1) having a first end face (2) at least part of which is inclined with respect to a direction perpendicular to a fiber axis, a light supply (24) for supplying light from a second end face on the side opposite to the first end face of the optical fiber probe, a reflected light amount measuring device (24) for measuring the reflected light amount and a moving mechanism (18) for moving at least one of the optical fiber probe and an object (21) to be measured such that the first end face of the optical fiber probe passes through an interface (23) of the object (21) at a constant speed, and the interface property measuring device acquires the interface property of the object to be measured according to the result of measurement of the reflected light amount when the first end face of the optical fiber probe passes through the interface of the object to be measured.
    • 低成本接口属性测量装置和方法能够实现高精度和简单的测量接口性能。 所述界面性质测量装置包括:光纤探针(1),其具有至少一部分相对于与光纤轴垂直的方向倾斜的第一端面(2);用于从 第二端面与光纤探针的第一端面相对的一侧,用于测量反射光量的反射光量测量装置(24)和用于移动光纤探针中的至少一个的移动机构(18) 和测量对象(21),使得光纤探针的第一端面以恒定速度穿过物体(21)的界面(23),并且界面性质测量装置获取 当光纤探针的第一端面通过被测量物体的界面时,根据反射光量的测量结果来测量的物体。
    • 74. 发明授权
    • Intake air mass flow measurement device
    • 进气质量流量测量装置
    • US07934419B2
    • 2011-05-03
    • US12132888
    • 2008-06-04
    • Takayuki SaitoShinya IgarashiTakayuki YogoChihiro Kobayashi
    • Takayuki SaitoShinya IgarashiTakayuki YogoChihiro Kobayashi
    • G01M15/04
    • G01F5/00G01F1/40G01F1/684
    • In an intake air mass flow measurement device, for preventing clogging in a pressure intake tube due to water or the like entering the pressure intake tube in a device measuring a pressure in the intake air tube, the intake air mass flow measurement device includes a mass air flow measurement device for measuring an intake air mass flow in an intake air tube; and a pressure sensing device for sensing pressure in the intake air tube, the pressure sensing device being integrated with the mass air flow measurement device, and an aperture plane opened to the inside of a main air flow passage for detection of the pressure takes in pressure by using a gap generated between a main air flow passage constituting member and an insertion part of the mass air flow measurement device when a measurement part of the mass air flow measurement device is inserted into the main air flow passage. With this construction, it is possible to provide a structure in which water or the like can hardly clog the pressure intake port.
    • 在进气量质量流量测量装置中,为了防止在测量进气管中的压力的​​装置中进入压力进入管的水等引入的压力吸入管中的堵塞,进气质量流量测量装置包括质量 气流测量装置,用于测量进气管中的进气质量流量; 以及用于感测进气管中的压力的​​压力感测装置,所述压力感测装置与所述质量空气流量测量装置成一体,并且开口到主空气流动通道内侧的孔平面用于检测压力 通过在大气流量测量装置的测定部插入主空气流路时,通过使用在主空气流路构成构件和大容量空气流量测量装置的插入部之间产生的间隙。 利用这种结构,可以提供一种其中水等难以阻塞压力进气口的结构。
    • 75. 发明申请
    • SURFACE TENSION MEASURING DEVICE AND METHOD
    • 表面张力测量装置和方法
    • US20100188662A1
    • 2010-07-29
    • US12667184
    • 2008-03-14
    • Takayuki SaitoToshiyuki SanadaYusuke Ozawa
    • Takayuki SaitoToshiyuki SanadaYusuke Ozawa
    • G01N21/55
    • G01N13/02G01N21/431
    • Low-cost interface property measuring device and method enabling high-precision and simple measurement of an interface property. The interface property measuring device comprises an optical fiber probe (1) having a first end face (2) at least part of which is inclined with respect to a direction perpendicular to a fiber axis, a light supplying means (24) for supplying light from a second end face on the side opposite to the first end face of the optical fiber probe, a reflected light amount measuring means (24) for measuring the reflected light amount obtained by the light supplied by the light supplying means being reflected by the first end face and returning to the second end face, and a moving means (18) for moving at least one of the optical fiber probe and an object (21) to be measured such that the first end face of the optical fiber probe passes through an interface (23) of the object (21) at a constant speed, and the interface property measuring device acquires the interface property of the object to be measured according to the result of measurement of the reflected light amount when the first end face of the optical fiber probe passes through the interface of the object to be measured.
    • 低成本接口属性测量装置和方法能够实现高精度和简单的测量接口性能。 所述界面特性测量装置包括:光纤探针(1),其具有至少一部分相对于与光纤轴垂直的方向倾斜的第一端面(2),用于提供来自 在与光纤探针的第一端面相反的一侧的第二端面,反射光量测量装置,用于测量由光供给装置提供的光获得的反射光量,该反射光量由第一端 并且返回到第二端面,以及移动装置(18),用于移动光纤探针和被测量物体(21)中的至少一个,使得光纤探针的第一端面通过界面 (21)的第一端面(23),并且界面性质测量装置根据反射光量的测量结果来获取被测量物体的界面特性,当第一端面 的光纤探头穿过待测物体的界面。
    • 77. 发明授权
    • Exhaust gas processing device, and method of using the same
    • 废气处理装置及其使用方法
    • US07651329B2
    • 2010-01-26
    • US10541153
    • 2004-01-29
    • Hajime OkuraToshio KatsubeTakayuki Saito
    • Hajime OkuraToshio KatsubeTakayuki Saito
    • F23D14/00
    • F23J15/06F23J15/02F23J15/08Y02E20/363
    • In an exhaust gas processing device wherein in order to efficiently outwardly discharge heat at high temperatures of about 90-150° C. released from a GGH reheater during the shutdown of a desulfurizer, to prevent damage to equipment and corrosion preventive lining material, and to ensure long-term stabilized use of the exhaust gas processing device, at least a GGH heat recovery unit, an absorption tower, a mist eliminator (M/E), and the GGH reheater are placed in a duct for exhaust gases discharged from a fire furnace, in the order named as seen from the upstream side of a flow of exhaust gases, an exhaust gas duct between the M/E and the reheater is provided with a heat radiation device or the like having a heat suppression function for suppressing dissipated heat from the reheater.
    • 在废气处理装置中,为了在脱硫器关闭期间从GGH再热器释放的约90-150℃的高温有效地向外排出热量,以防止对设备和防腐蚀衬里材料的损坏,以及 确保废气处理装置的长期稳定使用,至少将GGH热回收单元,吸收塔,除雾器(M / E)和GGH再热器放置在用于从火中排出的废气的管道中 炉子以从废气流的上游侧看的顺序,M / E和再热器之间的排气管道设置有具有用于抑制散热的热抑制功能的散热装置等 从再热器。
    • 79. 发明申请
    • Compressor
    • 压缩机
    • US20060078442A1
    • 2006-04-13
    • US11221260
    • 2005-09-08
    • Hirotsugu OgasawaraTakahiro NishikawaTakayuki Saito
    • Hirotsugu OgasawaraTakahiro NishikawaTakayuki Saito
    • F04B35/04F04B17/00
    • F04C18/3568F04C23/008F04C2230/41F05C2203/08F05C2225/00F05C2225/12
    • An object is to provide a compressor in which durability of a compression member is improved, reliability of the compressor is enhanced, and a satisfactory sliding property can be secured even in a case where a compression element is non-lubricated, the compressor comprises: the compression element comprising a cylinder in which a compression space is constituted; a suction port and a discharge port which communicate with the compression space in the cylinder; the compression member whose one surface crossing an axial direction of a rotary shaft is inclined continuously between a top dead center and a bottom dead center and which is disposed in the cylinder to be rotated by the rotary shaft and which compresses a fluid (refrigerant) sucked from the suction port to discharge the fluid from the discharge port; and a vane which is disposed between the suction port and the discharge port to abut on one surface (upper surface) of the compression member and which partitions the compression space in the cylinder into a low pressure chamber and a high pressure chamber, wherein hardness of the upper surface of the compression member is set to be higher than that of a discharge member as a receiving surface of the top dead center and lower than that of the vane.
    • 本发明的目的是提供一种压缩机,其中提高了压缩构件的耐久性,提高了压缩机的可靠性,并且即使在压缩元件未被润滑的情况下,也可以确保令人满意的滑动性能,压缩机包括: 压缩元件包括其中构成压缩空间的气缸; 与气缸中的压缩空间连通的吸入口和排出口; 其一个表面与旋转轴的轴向相交的压缩构件在上死点和下死点之间连续地倾斜并且设置在气缸中以由旋转轴旋转并且压缩被吸入的流体(制冷剂) 从吸入口排出流体; 以及叶片,其设置在所述吸入口和所述排出口之间以抵靠所述压缩构件的一个表面(上表面),并且将所述气缸中的压缩空间分隔成低压室和高压室,其中,硬度 压缩构件的上表面被设定为高于作为上止点的接收表面的排出构件的上表面,并且低于叶片的接收表面。