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    • 2. 发明申请
    • FRAMEWORK, BLAST DAMPER AND METHOD
    • 框架,BLAST阻尼器和方法
    • WO2016142578A1
    • 2016-09-15
    • PCT/FI2016/050130
    • 2016-03-02
    • TEMET OY
    • KARKKULAINEN, Timo
    • F24F13/20F16K17/36F16K27/12
    • F16K27/12F16K17/363F24F11/33F24F13/10
    • The invention relates to a framework (5) for installing and supporting a blast damper (1) to a wall of a building. The framework (5) comprises a frame (10, 11, 12, 13) forming a periphery of the framework (5) and to which frame (10, 11, 12, 13) components of the blast damper (1) are arranged to be installed and supported, and a frame flow channel (15) through the framework (5), the frame flow channel (15) being defined by the frame (10, 11, 12, 13). The frame (10, 11, 12, 13) comprises at least two frame parts (10, 11, 12, 13) mechanically attached to each other with at least one mechanical joint (20) for providing the frame (10, 11, 12, 13).
    • 本发明涉及一种用于将鼓风阻尼器(1)安装和支撑到建筑物的墙壁上的框架(5)。 框架(5)包括形成框架(5)的周边的框架(10,11,12,13),并且鼓风阻尼器(1)的框架(10,11,12,13)组件布置成 通过框架(5)安装和支撑框架流动通道(15),框架流动通道(15)由框架(10,11,12,13)定义。 框架(10,11,12,13)包括至少两个框架部件(10,11,12,13),所述框架部件(10,11,12,13)通过至少一个用于提供框架(10,11,12,13)的框架 ,13)。
    • 3. 发明申请
    • VAKUUM-SICHERHEITS-VERSCHLUSSSYSTEM
    • 真空安全闭锁
    • WO2014048640A1
    • 2014-04-03
    • PCT/EP2013/067460
    • 2013-08-22
    • ENRICHMENT TECHNOLOGY DEUTSCHLAND GMBH
    • SCHÄFER, ChristophVOR DEM ESCHE, Rainer
    • F16K17/34F16K17/36F16K31/08H02K7/02
    • F16K17/34F16K17/363F16K31/084H02K5/04H02K7/025H02K2205/09Y02E60/16
    • Die Erfindung betrifft ein Vakuum-Sicherheits-Verschlusssystem (1), wie es beispielsweise in evakuierten Maschinen- oder Prozessräumen nutzbar ist. Ein Anwendungsfall können beispielsweise kinematische Energiespeicher, insbesondere Schwungradmaschinen, sein. Zur Minimierung der Folgen eines eventuellen Maschinenfehlers schlägt die Erfindung ein Vakuum-Sicherheits-Verschlusssystem vor, das eine Vakuumdurchführung (100) mit s-förmiger Geometrie und eine Verschlussklappe (10) aufweist, wobei die Verschlussklappe ein ferromagnetisches Kontergewicht (11) aufweist und an einer Lagerstange (18) drehbeweglich befestigt und zwischen einer Offenstellung und einer Geschlossenstellung verschwenkbar ist, wobei in der Offenstellung die Vakuumdurchführung durchgängig ist, während sie in der Geschlossenstellung blockiert ist. Im Fehlerfalle verschwenkt die Verschlussklappe durch die sich einstellenden Druckverhältnisse von der Offenstellung in die Geschlossenstellung und blockiert so den Durchgang durch die Vakuumdurchführung.
    • 本发明涉及一种真空安全封闭系统(1),因为它是可用的,例如,在排空机器或过程间。 一个应用中,例如,运动能量储存飞轮特定机器是。 为了尽量减少可能的机器故障的后果,本发明提出一种真空安全闭合系统由具有真空馈通(100),具有S形的几何形状和一个闭合翼片(10),所述具有铁磁配重(11)闭合折板,并且在 枢转地安装支承杆(18)和可在打开位置和关闭位置,其中在所述打开位置时,真空馈通是连续的,它被阻止在关闭位置,同时之间枢转。 在故障的情况下的闭合翼片通过自生压力条件下从打开位置到闭合位置枢转时,阻止通过所述真空通路的通道。
    • 5. 发明申请
    • ELECTROMAGNETIC RELEASE FOR VALVE
    • 阀门电磁释放阀
    • WO2016028603A1
    • 2016-02-25
    • PCT/US2015/045080
    • 2015-08-13
    • EMERSON PROCESS MANAGEMENT REGULATOR TECHNOLOGIES, INC.
    • JING, ChenLI, Li
    • F16K15/03F16K31/56F16K31/524F16K17/36
    • F16K15/033F16K17/363F16K31/52408F16K31/56F16K31/563
    • An emergency shut-off valve includes a valve body (12), an inlet (14), an outlet (16), and a fluid passageway. A valve closure assembly (20) is positioned at least partially within the valve body, and includes a shaft (26), an arm coupled to the shaft, a closure member (22) coupled to the arm (24), and a biasing member (38). The arm, closure member, and shaft rotate about an axis between open position and a closed position. A valve actuation assembly to rotates the arm, closure member, and shaft, and includes a securement member and an electromagnet adapted to generate a first magnetic force in a first state and a second magnetic force in a second state. In the first state, a contact surface of the securement member magnetically couples to a surface of the electromagnet, and in the second state, the closure member, the arm, and the shaft are rotated into the second closed position by the biasing member.
    • 紧急切断阀包括阀体(12),入口(14),出口(16)和流体通道。 阀闭合组件(20)至少部分地定位在阀体内,并且包括轴(26),联接到轴的臂,联接到臂(24)的闭合构件(22)和偏置构件 (38)。 臂,关闭构件和轴围绕打开位置和关闭位置之间的轴线旋转。 一种用于旋转臂,关闭构件和轴的阀致动组件,并且包括适于在第一状态下产生第一磁力的固定构件和电磁体,以及在第二状态下产生第二磁力。 在第一状态下,固定构件的接触表面磁耦合到电磁体的表面,并且在第二状态下,闭合构件,臂和轴通过偏置构件旋转到第二闭合位置。
    • 7. 发明申请
    • A PRESSURE VALVE AND METHOD OF ADJUSTING A PRESSURE VALVE
    • 压力阀和调压阀的方法
    • WO2016142577A1
    • 2016-09-15
    • PCT/FI2016/050129
    • 2016-03-02
    • TEMET OY
    • KARKKULAINEN, Timo
    • F16K17/36F16K1/16F24F11/04F24F13/15
    • F24F13/15F16K1/2007F16K1/2021F16K17/363F24F11/74
    • The invention relates to a pressure valve (1) comprising a body (2) forming a flow channel (4) through the pressure valve (1); closing blades (6) arranged to be turned between a closed position, in which the closing blades (6) are essentially transverse to the flow channel (4) of the pressure valve (1) essentially preventing flow through the pressure valve (1), and an open position, in which the closing blades (6) are at an angle to the flow channel (4) of the pressure valve (1) or essentially parallel to the flow channel (4) allowing flow through the pressure valve (1); and prestressing means (10, 12, 14) for prestressing the closing blades (6) into the open position and for triggering them to turn into the closed position in response to a pressure increase in the flow channel (4) of the pressure valve (1). The prestressing means (10, 12, 14) are operationally connected to the closing blades (6) for turning the closing blades (6) into the closed position in response to a trigger from the pressure increase in the flow channel (4). The pressure valve (1) further comprises a closing blade adjustment mechanism (16) arranged to adjust alignment of the closing blades (6) for changing flow through the pressure valve (1); and a prestressing means adjustment mechanism (18) arranged to change stress of the prestressing means (10, 12, 14) for adjusting triggering sensitivity. The closing blade adjustment mechanism (16) and the prestressing means adjustment mechanism (18) are together arranged to adjust the triggering sensitivity relative to flow through the pressure valve (1) defined by the alignment of the closing blades (6).
    • 本发明涉及一种压力阀(1),包括通过压力阀(1)形成流动通道(4)的主体(2); 闭合叶片(6)被布置成在关闭位置之间转动,在该关闭位置中,闭合叶片(6)基本上横向于压力阀(1)的流动通道(4),基本上防止通过压力阀(1)的流动, 以及打开位置,其中所述关闭叶片(6)与所述压力阀(1)的流动通道(4)成一角度或者基本上平行于所述流动通道(4),允许流过所述压力阀(1) ; 以及预应力装置(10,12,14),用于响应于压力阀的流动通道(4)中的压力增加而使闭合叶片(6)进入打开位置并使其触发成关闭位置, 1)。 预应力装置(10,12,14)可操作地连接到关闭叶片(6),用于响应于来自流动通道(4)的压力增加的触发而将闭合叶片(6)转动到关闭位置。 压力阀(1)还包括关闭叶片调节机构(16),其被布置成调节闭合叶片(6)的对准以改变通过压力阀(1)的流动; 以及布置成改变用于调节触发灵敏度的预应力装置(10,12,14)的应力的预应力装置调节机构(18)。 闭合叶片调节机构16和预应力装置调节机构18一起布置成调节相对于通过由关闭叶片6的对准限定的压力阀1的流动的触发灵敏度。
    • 8. 发明申请
    • Hydraulic Switch
    • 液压开关
    • WO2015082888A2
    • 2015-06-11
    • PCT/GB2014/053555
    • 2014-12-01
    • EDWARDS, Vincent
    • EDWARDS, Vincent
    • F16K17/363F15B20/00F16K11/0856
    • The present invention relates to a hydraulic switch arrangement and a fluid switch for incorporating into a hydraulic switch arrangement that may be included in a hydraulic circuit for inhibiting flow of hydraulic fluid through a hydraulic circuit in the event of movement of an apparatus or platform from a stable to an unstable condition. Such platforms or apparatus may include for example, cranes, excavators, teletrucks and forklift trucks and roll over incidents of such machinery is common leading to numerous fatalities. Aspects of the present invention ensure fast switching in the event of a transfer from a stable to an unstable condition.
    • 液压开关装置和流体开关技术领域本发明涉及一种用于并入液压开关装置中的液压开关装置和流体开关,该液压开关装置可以包括在液压回路中,用于在液压回路 装置或平台从稳定状态移动到不稳定状态。 这样的平台或设备可以包括例如起重机,挖掘机,电动工具和叉车,并且这种机器的翻转事件通常导致许多死亡事故。 本发明的各个方面确保在从稳定状态转换到不稳定状态时的快速切换。
    • 9. 发明申请
    • SHUT-OFF DEVICE FOR A PIPE
    • 一个管子的关闭装置
    • WO2006059941A1
    • 2006-06-08
    • PCT/SE2005/001731
    • 2005-11-17
    • NORRMAN, Jan
    • NORRMAN, Jan
    • F16L55/10F16K17/32F16K17/04F16K17/36
    • F16K1/165F16K17/32F16K17/363F16L55/1022Y10T137/86976
    • Shut-off device for a pipe for a liquid, in particular pressurized crude oil, a pipe baffle (28), having an opening in the form of a valve seat (21) for a valve flap (21) placed upstream, being spring biased toward closed position, an appurtenant hydraulic cylinder (2) being arranged to overcome the spring bias upon pressurizing in order to keep the flap in open position. An appurtenant hydraulic pipe extend along the liquid pipe and locally pressurizes the valve hydraulic cylinders, and a pump-out valve (4) having a relatively small valve area through the stoppage (28) has a throughput channel (41) between the upstream and downstream side of the baffle (28), the pump-out valve being spring biased toward closed position and being kept open by a hydraulic cylinder, which is fed by the hydraulic pipe.
    • 用于液体管,特别是加压原油的管道挡板(28),具有用于安置在上游的阀瓣(21)形式的阀座形式的开口的管道挡板(28)具有弹簧偏置 朝向关闭位置,附加的液压缸(2)布置成克服了加压时的弹簧偏压,以便将挡板保持在打开位置。 一个附加的液压管沿着液体管延伸并对阀液压缸进行局部加压,并且通过停止(28)具有相对小的阀面积的抽出阀(4)具有在上游和下游之间的通道(41) 挡板(28)的一侧,所述排出阀被弹簧偏压到关闭位置,并被由所述液压管供给的液压缸保持打开。