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    • 23. 发明授权
    • Flowmeter
    • 流量计
    • US4969364A
    • 1990-11-13
    • US251219
    • 1988-08-08
    • Kenji Masuda
    • Kenji Masuda
    • G01F1/20G01F1/28
    • G01F1/206G01F1/28Y10T137/7759
    • In a flow meter, a detective core (5) is fitted in a cylindrical chamber (3a) in a main body (2), and a fluid is introduced at a predetermined angle from inflow passageways (17) into the interior of this detective core (5), the fluid introduced into the detective core (5) being discharged at a predetermined angle to the interior of the main body (2) through outflow passageways (13). A force generated by a variation in momentum of the fluid is applied to the detective core (5), and this force is detected by a device for measuring load (6) and thereby momentarily determines a mass flow rate of the fluid. Thus, a variation in momentum is generated in the fluid by the inflow passageways (17) and outflow passageways (13), and the force produced by the momentum variation is applied to the detective core (5), the force applied to the detective core (5) being detected by the device for measuring load (6). Accordingly, the mass flow rate of a cavitation-generating fluid and a bubble-containing fluid can be measured accurately without being influence by variations in viscosity thereof resulting from variations in temperature.
    • PCT No.PCT / JP87 / 00946 Sec。 371日期1988年8月8日第 102(e)日期1988年8月8日PCT提交1987年12月8日PCT公布。 出版物WO88 / 04411 日期:1988年6月16日。在流量计中,将检测芯(5)装配在主体(2)中的圆柱形室(3a)中,并且流体从入口通道(17)以预定角度被引入, 进入该检测芯(5)的内部,引入到检测芯(5)中的流体通过流出通道(13)以预定的角度排出到主体(2)的内部。 通过流体动量变化产生的力被施加到检测铁心(5),该力由用于测量负载(6)的装置检测,从而瞬间确定流体的质量流量。 因此,通过流入通道(17)和流出通道(13)在流体中产生动量变化,并且由动力变化产生的力施加到检测铁心(5),施加到检测铁芯 (5)由用于测量负载的装置(6)检测。 因此,气蚀产生流体和含气泡流体的质量流量可以精确地测量,而不受温度变化引起的粘度变化的影响。
    • 25. 发明申请
    • VENTILATOR
    • 通风机
    • US20110008159A1
    • 2011-01-13
    • US12919335
    • 2008-05-26
    • Kenji MasudaYoshikatsu NankakuDaisuke NagasakiAkihiro Ikawa
    • Kenji MasudaYoshikatsu NankakuDaisuke NagasakiAkihiro Ikawa
    • F04D29/44
    • F24F7/007F04D25/12F04D29/4226F04D29/601F24F7/013
    • A ventilator includes a body casing having an opening formed in its lower portion and an exhaust port formed on one side; a fan that is provided in the body casing, for sucking indoor air from the opening and exhausting the indoor air from the exhaust port; a resin fan casing that has a suction port and forms an air passage of the fan; a protection frame formed outside the air passage to cover a terminal block provided outside the air passage; a resin terminal block cover that watertightly seals a protection frame opening of a lower portion of the protection frame and is opened and closed; a sheet-metal case that is provided in the protection frame and stores the terminal block; and a sheet-metal terminal block cover that opens and closes a lower opening of the sheet-metal case.
    • 一种通风机,包括:主体壳体,其具有形成在其下部的开口和形成在一侧的排气口; 风扇,设置在所述主体壳体中,用于从所述开口吸入室内空气并从所述排气口排出室内空气; 树脂风扇壳体,其具有吸入口并形成风扇的空气通道; 保护框架,其形成在所述空气通道的外侧,以覆盖设置在所述空气通道外部的端子块; 树脂端子块盖,其将保护框架的下部的保护框架开口水密地密封并打开和关闭; 设置在保护框架中并存储端子块的金属片外壳; 以及打开和关闭金属​​薄板壳体的下部开口的金属板端子块盖。
    • 29. 发明授权
    • Cell gap adjusting device, pressurizing seal device and liquid crystal display device manufacturing method
    • 电池间隙调节装置,加压密封装置和液晶显示装置的制造方法
    • US06914661B2
    • 2005-07-05
    • US09947946
    • 2001-09-06
    • Kenji MasudaMasahiro Kuroiwa
    • Kenji MasudaMasahiro Kuroiwa
    • G02F1/13G02F1/1333G02F1/13357G02F1/1339G02F1/1341
    • G02F1/1341G02F1/1333G02F1/1339
    • A cell gap adjusting device 2 for adjusting a thickness between a pair of substrate plates (cell gap) in a liquid crystal cell 1 having a liquid crystal filled between the pair of substrate plates bonded together through a seal member having a frame form and an opening in a predetermined point of a frame wall thereof, the cell gap adjusting device characterized by comprising: a supporting part 3 having one or more pairs of supporting jigs 30 (301a, 301b, 302a-302e) for clamping to support one or more of the liquid crystal cells 1 and closing seals 32 in a frame form arranged between the liquid crystal cell 1 and the supporting jigs 30 (301a, 301b, 302a-302e) to form an enclosed space by both outer surfaces of the pair of substrate plates of the liquid crystal cell 1, opposed surfaces of the one pair of support jigs 30 (301a, 301b, 302a-302e) to the liquid crystal cell 1 and an inner surface thereof (of the closing seal); and a pressurizing part 50 for simultaneously pressurizing both outer surfaces of the one pair of substrate plates of the liquid crystal cell 1 by the pressure of a fluid introduced in the enclosed space.
    • 一种单元间隙调节装置2,用于调节液晶单元1中的一对基板之间的厚度(单元间隙),所述液晶单元1具有通过具有框架形式的密封构件与一对基板之间填充的一对基板之间的液晶, 在其框架壁的预定点处,电池间隙调节装置的特征在于包括:支撑部分3,其具有一对或多对支撑夹具30(301a,301b,302a-302e),用于夹持以支撑一个 液晶单元1和支撑夹具30(301a,301b,302a〜302e)之间的框架形式的液晶单元1和封闭密封件32,以及两个外表面形成封闭空间 的一对支撑夹具30(301a,301b,302a〜302e)的对置面与液晶单元1的内表面 关闭密封); 以及加压部50,用于通过引入封闭空间的流体的压力同时对液晶单元1的一对基板的两个外表面加压。