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    • 61. 发明申请
    • PRESSURE COMPENSATION DEVICE IN AIRCRAFT
    • 航空器压力补偿装置
    • US20130098491A1
    • 2013-04-25
    • US13352414
    • 2012-01-18
    • Juan Zuniga SagredoCarlos Fernandez AlonsoIgnacio Jorge Outon Hernandez
    • Juan Zuniga SagredoCarlos Fernandez AlonsoIgnacio Jorge Outon Hernandez
    • F16L55/04
    • B64D37/32Y02T50/44
    • Pressure compensation device (100) deployed in an element that contains a flammable substance that compensates pressures between interior (101) of the element and exterior atmosphere (102) in which said element is deployed, by means of a continuous primary circulation (300) of air through primary channel (103) in said device (110) that communicates interior (100) and exterior (102) of the element, further comprising a secondary channel (104) integrated in the device (100) itself, communicating interior (102) and exterior (102) of the element, comprising said secondary channel (104) in the interior zone of the element a sheet (105) such that, in the event primary continuous circulation (300) of air through primary channel (103) is interrupted, said continuous circulation continues through secondary circulation (400) of air to interior (101) of the element, this secondary circulation (400) of air being capable of breaking sheet (105) of secondary channel (104).
    • 压力补偿装置(100),其部署在包含易燃物质的元件中,该易燃物质通过连续的主循环(300)来补偿元件的内部(101)和所述元件的外部空气(102)之间的压力 空气通过所述装置(110)中的与所述元件的内部(100)和外部(102)连通的主通道(103),还包括集成在所述装置(100)本身中的第二通道(104),连通内部(102) 和所述元件的外部(102),包括在元件的内部区域中的所述次级通道(104),片材(105),使得在主要通道(103)的空气的主要连续循环(300)被中断的情况下 所述连续循环继续通过空气的二次循环(400)到元件的内部(101),该二次循环(400)的空气能够破坏次级通道(104)的片材(105)。
    • 62. 发明授权
    • Accumulator
    • 累加器
    • US08365772B2
    • 2013-02-05
    • US13131371
    • 2009-11-19
    • Tatsuhiro ArikawaTakashi OtaEiji MizutaniNoriyuki Hosoi
    • Tatsuhiro ArikawaTakashi OtaEiji MizutaniNoriyuki Hosoi
    • F16L55/04
    • F15B1/103F15B20/00F15B2201/205F15B2201/3153
    • To cause a safety mechanism for an emergency to be activated at lower pressure in comparison with a rupture plate, an accumulator comprises an accumulator housing, a stay having a liquid passage provided in the end surface portion on an end of a stepped tubular portion of the stay, a bellows with a bellows cap, a safety mechanism for pressure drop, and a safety mechanism for an emergency which is structured such that, in an emergency such as a fire, the bellows cap or a member held by the bellows cap presses the stay by high pressure due to the fire in the housing, to buckle the stay at a step of the stepped tubular portion, and open a liquid chamber, wherein a thin portion is provided circumferentially partially at the step of the stay to readily incline the end surface portion of the stay when the stay is buckled.
    • 为了使紧急情况的安全机构与破裂板相比在较低压力下被激活,蓄能器包括蓄能器壳体,具有设置在端部表面部分中的液体通道的支架,其在端部表面部分的阶梯状管状部分的端部 带有波纹管盖的波纹管,用于压降的安全机构,以及用于紧急情况的安全机构,其构造成使得在诸如火灾的紧急情况下,波纹管盖或由波纹管盖保持的部件按压 由于壳体内的火灾而保持高压,在阶梯状的管状部分的台阶处扣住支撑,并且打开一个液体腔室,其中一个薄的部分沿着圆周方向设置在该支柱的台阶处以容易地倾斜该端部 住宿时的表面部分被扣住。
    • 63. 发明申请
    • PIPE JOINT CAPABLE OF ABSORBING WATER HAMMER SHOCK
    • 吸管水锤冲击的管接头
    • US20120285570A1
    • 2012-11-15
    • US13103229
    • 2011-05-09
    • Fu-Chung TSAI
    • Fu-Chung TSAI
    • F16L55/04
    • F16L55/055
    • A pipe joint, capable of absorbing water hammer shock, includes a tubular body, an elastic gasket, an inlet conduit and an outlet conduit. The tubular body has a passageway therethrough in which the elastic gasket is disposed. The elastic gasket divides the passageway of the tubular body into a first room and a second room and defines therein a plurality of holes each communicating with the first and second rooms. The inlet conduit is joined to one end of the tubular body and has a port in fluid communication with the first room of the tubular body. And, the outlet conduit is joined to the other end of the tubular body and has a port in fluid communication with the second room of the tubular body.
    • 能够吸收水锤冲击的管接头包括管状体,弹性垫圈,入口导管和出口导管。 管状体具有穿过其中的通道,弹性垫圈设置在该通道中。 弹性垫圈将管状体的通道分成第一房间和第二房间,并在其中限定多个孔,每个孔与第一和第二房间连通。 入口管道连接到管状体的一端并且具有与管状体的第一房间流体连通的端口。 并且,出口管道连接到管状体的另一端并且具有与管状体的第二房间流体连通的端口。
    • 64. 发明授权
    • Regulator dampening device and method
    • 调节器阻尼装置及方法
    • US08267168B2
    • 2012-09-18
    • US12625777
    • 2009-11-25
    • Ryan GustafsonSalvador ReyesPerrin Rodriguez
    • Ryan GustafsonSalvador ReyesPerrin Rodriguez
    • E21B34/02E21B33/06F16L55/04F16K31/12
    • G05D16/10Y10T137/7801Y10T137/7822
    • A flow regulator includes a flow regulating part configured to receive at an inlet a working fluid at a first pressure and to release the working fluid at an outlet at a second pressure; a slide provided inside the flow regulating part and configured to move along an axis to reduce the pressure of the working fluid; a control part attached to the flow regulating part, the control part including a chamber; a spring housing provided in the chamber and connected to the slide though a shaft, the spring housing configured to move the slide along the axis; a cap provided in the chamber and facing the spring housing, the cap being configured to have plural blind holes; and plural pins extending along the axis and attached to the spring housing, the plural pins being configured to enter the plural blind holes.
    • 流量调节器包括流量调节部件,其配置成在入口处接收处于第一压力的工作流体并在第二压力下在出口处释放工作流体; 设置在所述流量调节部内并且被构造成沿轴线移动以减小所述工作流体的压力的滑块; 控制部,其附接到所述流量调节部,所述控制部包括室; 弹簧壳体,设置在所述腔室中并通过轴连接到所述滑块,所述弹簧壳体构造成沿着所述轴线移动所述滑块; 设置在所述室中并面向所述弹簧壳体的盖,所述盖被配置为具有多个盲孔; 以及沿着轴线延伸并且附接到弹簧壳体的多个销,所述多个销被配置为进入所述多个盲孔。
    • 68. 发明申请
    • METHOD AND DEVICE FOR ACTIVELY SUPPRESSING PRESSURE OSCILLATIONS IN A HYDRAULIC SYSTEM
    • 用于动态地抑制液压系统中的压力振荡的方法和装置
    • US20120000543A1
    • 2012-01-05
    • US13132715
    • 2009-11-30
    • Georg KeintzelAnton Pirko
    • Georg KeintzelAnton Pirko
    • F17D3/00F16L55/04
    • F16L55/05B21B37/62F15B21/008F15B2211/6313F15B2211/8613Y10T137/0379
    • In a method and a device for actively suppressing pressure oscillations or pressure pulses in a hydraulic system of a cold or warm roll train or a strip treatment installation, the following method steps are carried out: a) detection of a pressure signal by means of a pressure sensor by permanent measurement of a pressure in the hydraulic system; b) determination of an alternating component of the pressure signal; c) determination of at least one temporally changing actuating variable in real time with the aid of a regulator, taking at least one setpoint value and the alternating component into consideration; d) loading of at least one actuator with the actuating variable, the actuator changing a volume which corresponds to the actuating variable and is connected to the hydraulic system, as a result of which the pressure oscillations in the hydraulic system are suppressed.
    • 在用于主动抑制冷或热轧机组或钢带处理装置的液压系统中的压力振荡或压力脉冲的方法和装置中,执行以下方法步骤:a)通过以下步骤检测压力信号: 压力传感器通过永久测量液压系统中的压力; b)确定压力信号的交替分量; c)借助调节器实时确定至少一个暂时变化的致动变量,考虑至少一个设定点值和交替分量; d)至少一个致动器与致动变量的装载,致动器改变对应于致动变量并且连接到液压系统的体积,结果液压系统中的压力振荡被抑制。
    • 69. 发明申请
    • SIDE GRIPPING MECHANISM AND DEVICE HANDLERS HAVING SAME
    • 侧面抓斗机构和具有相同功能的装置操纵器
    • US20110226372A1
    • 2011-09-22
    • US13049578
    • 2011-03-16
    • Kenneth B. UEKERT
    • Kenneth B. UEKERT
    • F16L55/04
    • G01R1/0408G01R31/00G01R31/2865G01R31/2886
    • An apparatus comprises a cavity coupled to a pneumatic controller configured to control pressure in the cavity; a piston configured to be pulled into the cavity when pressure in the cavity is below atmospheric pressure and to be pushed outward when pressure in the cavity is greater than atmospheric pressure; and a gripper arm mechanically coupled to the piston. The gripper arm may be configured to support a device under test. The gripper arm may be coupled to the piston through a pusher bar. The apparatus may further comprise a pneumatic control port; and a pneumatic bleed port. The pneumatic control port is coupled to the cavity, and the pneumatic bleed port is configured to bleed pneumatic pressure to atmosphere if the piston over-travels a predetermined position.
    • 一种装置包括耦合到气动控制器的空腔,所述气动控制器被配置成控制空腔中的压力; 活塞构造成当空腔中的压力低于大气压力时被拉入空腔中,并且当空腔中的压力大于大气压力时被推动向外推动; 以及机械地联接到活塞的夹臂。 夹持臂可以被配置成支撑被测设备。 夹臂可以通过推杆连接到活塞上。 该装置还可以包括气动控制端口; 和气动排气口。 气动控制端口联接到空腔,并且气动排气端口被配置为如果活塞超过预定位置则将气动气压泄放到大气中。