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    • 1. 发明公开
    • Fastening part for a storage system
    • Befestigungsteilfürein Verstauenssystem
    • EP2954804A1
    • 2015-12-16
    • EP14171896.5
    • 2014-06-11
    • Elfa International AB
    • Andersson, JohanNilsson, Peter
    • A47F5/10A47B96/06
    • A47B57/406A47B61/04A47B96/068A47F5/101
    • The present disclosure relates to a fastening part for a storage system. The system comprises a storage device, such as a basket, a set of hooks, a shoe rack, a perforated panel or the like, which can be attached, by means of the fastening part, to a carrier element with a number of slots. The fastening part comprises a base portion, with at least one opening, an inner part, resting on the base portion at the carrier element's side and providing at least one hook to be insterted into the carrier element, and anouter part part resting on the base portion at an outer side, and comprising a connector that engages with the inner part through said at least one opening, such that the base portion is sandwiched between the inner part and the outer part.
    • 本公开涉及一种用于存储系统的紧固部件。 该系统包括可以通过紧固部分附接到具有多个狭槽的载体元件的诸如篮子,一组钩子,鞋架,穿孔板等的存储装置。 紧固部分包括基部,其具有至少一个开口,内部部分,在载体元件的侧面处于基部上,并且提供至少一个待插入载体元件的钩,以及放置在基座上的出口部分 并且包括通过所述至少一个开口与所述内部部分接合的连接器,使得所述基部被夹在所述内部部分和所述外部部分之间。
    • 2. 发明公开
    • Valve control actuator
    • 阀门控制执行器
    • EP2896858A1
    • 2015-07-22
    • EP14151581.7
    • 2014-01-17
    • Esbe AB
    • Kårhammer, Martin
    • F16K31/05
    • F16K31/055
    • The present invention relates to a valve control actuator for a fluid control valve (3), the valve control actuator comprising a valve shaft connector (5) arranged for connecting the valve control actuator (1) to a valve control shaft (7) of the fluid control valve (3) and turning the valve control shaft (7), The valve shaft connector (5) comprises a connector shaft (9) having an axial opening (11) adapted to receive at least a portion (7a) of the valve control shaft (7), and a resilient locking member (13) extending through at least a portion of said axial opening (11) and arranged to co-operate with a retaining shoulder (15) of said valve control shaft (7) for axial locking of the connector shaft (9) to the valve control shaft (7).
    • 本发明涉及用于流体控制阀(3)的阀控制致动器,该阀控制致动器包括阀轴连接器(5),该阀轴连接器布置成用于将阀控制致动器(1)连接到阀控制致动器(1)的阀控制轴(7) 所述阀轴连接器(5)包括具有轴向开口(11)的连接器轴(9),所述轴向开口适于接收所述阀(3)的至少一部分(7a) 控制轴(7)以及延伸穿过所述轴向开口(11)的至少一部分并布置成与所述阀控制轴(7)的保持肩部(15)配合以轴向地延伸的弹性锁定构件(13) 将连接器轴(9)锁定到阀控制轴(7)。
    • 3. 发明公开
    • Temperature adjustment valve
    • Temperaturstellventil
    • EP2821679A1
    • 2015-01-07
    • EP13175350.1
    • 2013-07-05
    • Esbe AB
    • Johansson, Christer
    • F16K5/04F16K11/085
    • F16K5/0407F16K11/0853
    • The present invention relates to a temperature adjustment valve (1) for adjusting liquid flow in a heating and/or cooling system, the valve comprising a cylindrical valve chamber (5) having at least two valve ports (9, 11, 13) distributed around a circumferential chamber wall (15) of the valve chamber (5), and a rotor (23), which is rotatably seated inside said valve chamber (5) and rotatable around a rotor center axis (25), wherein the rotor (23) comprises an adjustment body (31) having a closing sector (33) arranged to sealingly contact the circumferential chamber wall (15) and to close at least one of said valve ports (9, 11, 13). The adjustment body (31) further comprises a first adjusting sector (35) arranged adjacent to the closing sector (33), wherein a distance (L1) between the chamber wall (15) and an adjusting surface (36) of the first adjusting sector (35) gradually increases with increasing distance from the closing sector (33).
    • 本发明涉及一种用于调节加热和/或冷却系统中的液体流量的温度调节阀(1),该阀包括一个圆柱形阀室(5),其具有分布在其周围的至少两个阀口(9,11,13) 阀室(5)的周向室壁(15)和转子(23),其可旋转地安置在所述阀室(5)内并且可围绕转子中心轴线(25)旋转,其中转子(23) 包括具有封闭扇形部分(33)的调节体(31),所述闭合扇形部分(33)布置成密封地接触周向室壁(15)并且关闭至少一个所述阀口(9,11,13)。 调节体(31)还包括邻近闭合扇区(33)设置的第一调节扇区(35),其中室壁(15)与第一调节扇区(35)的调节表面(36)之间的距离(L1) (35)随着与闭合部分(33)的距离的增加而逐渐增加。
    • 4. 发明公开
    • Fluid control valve
    • 流体控制阀
    • EP2940357A1
    • 2015-11-04
    • EP14166573.7
    • 2014-04-30
    • Esbe AB
    • Davidsson, Jonas
    • F16K11/085F16K27/06
    • F16K11/0853F16K27/065
    • The present invention relates to a fluid control valve comprising a valve chamber (5) having at least a first, a second and a third port arrangement (11, 13, 15) distributed around a circumferential chamber wall (19) of the valve chamber (5), at least three connecting conduits (21, 23, 25, 27), each of which is fluidly connected to the valve chamber (5) by a respective one of said port arrangements (11, 13, 15), and a rotor (7) which is rotatably seated inside the valve chamber (5) and rotatable around a rotor center axis (10). The rotor (7) comprises a first fluid passage (29) arranged at a first level (L1) as seen along the rotor center axis (10), and a second fluid passage (31) which is separated from the first fluid passage (29) and arranged at a second level (L2) as seen along the rotor center axis (10), wherein said second level (L2) is different from said first level (L1).
    • 流体控制阀技术领域本发明涉及一种流体控制阀,其包括阀室(5),该阀室具有分布在阀室的周向室壁(19)周围的至少第一,第二和第三端口装置(11,13,15) 至少三个连接管道(21,23,25,27),每个连接管道通过相应的一个所述端口装置(11,13,15)流体连接到所述阀室(5);以及转子 (7),其可旋转地安置在所述阀室(5)内并且可围绕转子中心轴线(10)旋转。 转子7包括沿着转子中心轴线10观察布置在第一水平面L1处的第一流体通路29和与第一流体通路29隔开的第二流体通路31。 )并且沿着转子中心轴线(10)看时布置在第二高度(L2)处,其中所述第二高度(L2)不同于所述第一高度(L1)。
    • 6. 发明公开
    • Fire extinguishing system
    • 灭火系统
    • EP2868351A1
    • 2015-05-06
    • EP13190809.7
    • 2013-10-30
    • Fogmaker International AB
    • Ernfjäll, Johnny
    • A62C35/64A62C37/44A62C37/48A62C3/07
    • A62C35/64A62C3/07A62C35/023A62C37/44A62C37/48
    • The present invention relates to a fire extinguishing system comprising a pressurized detection conduit (115), an extinguishing line (108) separate from the detection conduit (115), and a control module (105) adapted for sensing a pressure drop in the detection conduit (115) and for opening supply of extinguishing medium from a storage (103) to the extinguishing line (108). The detection conduit (115) is filled with a detection liquid. The fire extinguishing system further comprises a liquid-gas interface (117) fluidly connecting the detection conduit (115) to a pressurized gas source (103, 106), wherein the liquid-gas interface (117) comprises an interface container (123) defining a gas space (131) which communicates with the pressurized gas source (106) and a liquid space (133) which communicates with the detection conduit (115).
    • 本发明涉及包括加压检测导管(115),与检测导管(115)分开的灭火线(108)的灭火系统以及适于检测检测导管(115)中的压降的控制模块(105) (115)并且用于从储存器(103)向灭火线(108)打开灭火介质的供应。 检测管道(115)充满检测液体。 灭火系统还包括将检测导管(115)流体连接到加压气体源(103,106)的液 - 气界面(117),其中液 - 气界面(117)包括界定容器(123) 与加压气体源(106)连通的气体空间(131)和与检测导管(115)连通的液体空间(133)。
    • 7. 发明公开
    • Fluid control valve
    • 流体控制阀
    • EP2730824A1
    • 2014-05-14
    • EP12192272.8
    • 2012-11-12
    • Esbe AB
    • Celander, Filip
    • F16K27/02F16K27/04
    • The present invention relates to a fluid control valve comprising a valve body (3) with a valve chamber (5) extending along a valve centre axis (7), and a valve member (27) which is arranged in the valve chamber (5) for controlling at least a first flow of fluid through the control valve. The valve body (3) comprises a first flow channel (9) having an inner opening (19) fluidly connected to the valve chamber (5) and an outer connection opening (21) and extending along a first flow channel axis (11) being angled with respect to the valve centre axis (7), and a second flow channel (13) having an inner opening (23) fluidly connected to the valve chamber (5) and an outer connection opening (25) and extending along a second flow channel axis (15) being parallel to and offset from the first flow channel axis (11). The outer opening (21) of the first flow channel (9) and the outer opening (25) of the second flow channel (13) are aligned along a common axis (24). At least a part of at least one (9) of the first (9) and second (13) flow channels is formed by an impression of a kernel retracted along a respective flow channel axis (11).
    • 本发明涉及一种流体控制阀,其包括具有沿着阀中心轴线(7)延伸的阀室(5)的阀体(3)和布置在阀室(5)中的阀构件(27) 用于控制通过控制阀的至少第一流体流。 阀体(3)包括具有流体连接到阀室(5)的内开口(19)和外连接开口(21)并且沿着第一流动通道轴线(11)延伸的第一流动通道(9) (7)倾斜;以及第二流动通道(13),其具有流体连接到阀室(5)的内部开口(23)和外部连接开口(25)并且沿着第二流动方向 通道轴线(15)与第一流动通道轴线(11)平行并偏离。 第一流动通道(9)的外部开口(21)和第二流动通道(13)的外部开口(25)沿着公共轴线(24)对齐。 第一流体通道(9)和第二流体通道(13)中的至少一个(9)的至少一部分通过沿相应的流动通道轴线(11)缩回的内核的印模形成。
    • 8. 发明公开
    • Fire extinguishing system
    • Feuerlöschsystem
    • EP2959946A1
    • 2015-12-30
    • EP14174657.8
    • 2014-06-27
    • Fogmaker International AB
    • Ernfjäll, Johnny
    • A62C35/68
    • A62C35/68F16K11/0716
    • The present invention relates to a fire extinguishing system comprising a fire extinguishing medium container (3), a first (5) and a second (7) fire extinguishing sub-system, and a valve assembly (9) arranged for selectively distributing fire extinguishing medium to the first or to the second fire extinguishing sub-system upon activation of the fire extinguishing system (1).
      The fire extinguishing system further comprises a first and a second detection conduit arrangement (19, 21) connected to the valve assembly (9), wherein the valve assembly (9) comprises a valve chamber (33), a valve member (35) being movably arranged in the valve chamber and a fluid passage portion (39) being arranged in at least one of the valve member and the valve chamber, the valve member having: i) a first force receiving surface (45) arranged to be subjected to a first force (F 1 ) exerted by a force applicator of the first detection conduit arrangement (19) and for moving the valve member to a first position, in which said fluid passage portion is aligned for distribution of fire extinguishing medium to the second fire extinguishing sub-system, and ii) a second force receiving surface (47) arranged to be subjected to a second force (F 2 ) exerted by a second force application arrangement of the second detection conduit arrangement (21) and for moving the valve member to a second position, in which said fluid passage portion is aligned for distribution of fire extinguishing medium to the first fire extinguishing sub-system.
    • 本发明涉及一种灭火系统,包括灭火介质容器(3),第一(5)和第二(7)灭火子系统,以及阀组件(9),用于选择性地分配灭火介质 在灭火系统(1)启动时,到第一或第二灭火子系统。 灭火系统还包括连接到阀组件(9)的第一和第二检测导管装置(19,21),其中阀组件(9)包括阀室(33),阀构件(35) 可移动地布置在阀室中,以及流体通道部分(39),其布置在阀构件和阀室中的至少一个中,阀构件具有:i)第一受力面(45),其布置成经受 由第一检测导管装置(19)的施力器施加的用于将阀构件移动到第一位置的第一力(F 1),其中所述流体通道部分对准以将灭火介质分配到第二灭火 子系统,以及ii)第二力接收表面(47),其布置成经受由第二检测导管装置(21)的第二施力装置施加的第二力(F 2),并且用于将阀构件移动到 一秒 位置,其中所述流体通道部分对准以将灭火介质分配到第一灭火子系统。
    • 10. 发明公开
    • ACTIVE BOLT RELEASE ARRANGEMENT
    • AKTIVE BOLZENFREIGABEANORDNUNG
    • EP2920475A1
    • 2015-09-23
    • EP12888411.1
    • 2012-11-13
    • Autoliv Development AB
    • AHLQVIST, AndersANDERSSON, Rickard
    • F16B31/00
    • F42B3/006B62D21/152F16B31/005
    • The present invention relates to an active bolt release arrangement comprising a nut (11) having nut portions adapted for radial movement, a sleeve part (17) encircling the nut (11) and having contact portions (18) in contact with the nut portions in order to prevent the nut portions from radial movement, a pyrotechnical actuator adapted for, upon deployment, moving the sleeve part (17) relative to the nut (11) to a released position forming a release space allowing radial movement of the nut portions. The pyrotechnical actuator is arranged for turning, upon deployment, the sleeve part (17) a predetermined rotational distance to the released position, such that radial movement of the nut portions by formation of the release space is allowed, thereby causing release of a bolt connected to the bolt release arrangement (19).
    • 主动螺栓释放装置包括具有适于径向移动的螺母部分的螺母,环绕螺母的套筒部分,并且具有与螺母部分接触的接触部分以防止螺母部分径向运动,以及烟火致动器。 烟火致动器适于在展开时将套筒部分相对于螺母移动到释放位置,形成允许螺母部分径向运动的释放空间。 烟火执行器布置成在部署时将套筒部分转动到释放位置的预定旋转距离,使得允许通过形成释放空间的螺母部分的径向运动,从而导致连接到螺栓的螺栓的释放 发布安排。