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    • 2. 发明授权
    • Over-pressure limiting arrangement for a cryogen vessel
    • 冷冻剂容器的超压限制装置
    • US09523467B2
    • 2016-12-20
    • US14382071
    • 2013-01-29
    • SIEMENS PLC
    • Patrick William RetzNeil Charles Tigwell
    • F16K17/14F17C13/12F16K17/16H01F6/02G01R33/28G01R33/38G01R33/3815
    • F17C13/12F16K17/16G01R33/288G01R33/3804G01R33/3815H01F6/02Y10T137/1692
    • An over-pressure limiting arrangement for a cryogen vessel includes an access neck providing access into the cryogen vessel, a tubular structure extending through the access neck, a turret outer assembly joined leak-tight to the cryogen vessel and defining an interior volume that is separated from the atmosphere by a protective valve or burst disc, enclosing an upper extremity of the access neck and the tubular structure. An egress path defines a route for cryogen gas to escape from the turret outer assembly, and a pressure-responsive quench valve seals the egress path and opens when a differential pressure between the interior of the turret outer assembly and the interior of the egress path exceeds a predetermined value. An auxiliary burst disc, or a valve, is attached to the tubular structure within the turret outer assembly, with an inner surface thereof exposed to the interior of the tubular structure and an outer surface thereof exposed to the interior of the turret outer assembly.
    • 用于冷冻剂容器的过压限制装置包括提供进入冷冻剂容器的进入颈部,延伸穿过进入颈部的管状结构,与冷冻剂容器密封连接并限定分离的内部体积的转塔外部组件 通过保护阀或爆破盘从大气中包围入口颈部和管状结构的上端。 出口路径定义了冷冻剂气体从转塔外部组件逸出的路线,并且压力响应型骤冷阀密封出口路径,并且当转塔外部组件的内部与出口路径的内部之间的压差超过 预定值。 辅助爆破盘或阀门附接到炮塔外部组件内的管状结构,其内表面暴露于管状结构的内部,其外表面暴露于炮塔外部组件的内部。
    • 4. 发明授权
    • Rupture disk and gas insulated switchgear having the same
    • 具有相同的破裂盘和气体绝缘开关设备
    • US09121517B2
    • 2015-09-01
    • US13781931
    • 2013-03-01
    • HALLA INDUSTRIAL CO., LTD.
    • Gap-Dong Kim
    • F16K17/40F16K17/16
    • F16K13/04F16K17/1613Y10T137/1692
    • A rupture disk for a gas insulated switchgear which includes a thin dome plate that includes a first flange portion and a first dome-shaped portion formed in a dome shape, at the center of the first flange portion; and a rupture guide plate which includes a second flange portion, laminated on the first flange portion, and a second dome-shaped portion has a plurality of slots formed therein to define a rupture shape so that a part of the first dome-shaped portion is ruptured, in a predetermined shape, when an internal pressure increases. End portions of slots, disposed at both edges among the plurality of slots, are provided with rupture restriction openings, respectively, to configure a hinge portion of the second dome-shaped portion.
    • 一种用于气体绝缘开关装置的破裂盘,包括:薄的圆顶板,包括第一凸缘部分和形成为圆顶形状的第一圆顶形部分,位于第一凸缘部分的中心; 以及破裂引导板,其包括层压在所述第一凸缘部上的第二凸缘部分和第二圆顶形部分,其中形成有多个狭槽以限定破裂形状,使得所述第一圆顶形部分的一部分为 当内部压力增加时,以预定形状破裂。 设置在多个槽中的两个边缘处的槽的端部分别设置有断裂限制开口,以构成第二圆顶形部分的铰链部分。
    • 5. 发明授权
    • Pressure control and relief system
    • 压力控制和救生系统
    • US08534308B2
    • 2013-09-17
    • US12658453
    • 2010-02-04
    • Mario Nunez
    • Mario Nunez
    • F16K17/14F16K17/40B65D90/34
    • F16K17/162B65D90/34B65D90/36F16K17/048Y10T29/49947Y10T137/1692Y10T137/1714Y10T137/1789
    • A pressure control system for controlling pressure in a tank is provided. The pressure control system includes a base plate, a pressure relief valve, a rupture disc, a first connector and a second connector. The base plate includes a tank side and a valve side. The pressure relief valve includes a body and a connection portion for coupling the pressure relief valve to the base plate adjacent the valve side. The rupture disc is positioned between the pressure relief valve and the base plate. The first connector extends between the base plate and the pressure relief valve to secure the pressure relief valve to the base plate and secure the rupture disc. The second connector is positioned for securing the base plate to the tank.
    • 提供一种用于控制罐中的压力的​​压力控制系统。 压力控制系统包括基板,减压阀,破裂盘,第一连接器和第二连接器。 基板包括罐侧和阀侧。 减压阀包括主体和用于将压力释放阀联接到邻近阀侧的基板的连接部分。 破裂盘位于减压阀和底板之间。 第一连接器在基板和减压阀之间延伸,以将压力释放阀固定到基板上并固定破裂盘。 第二连接器定位成用于将基板固定到罐。
    • 8. 发明申请
    • RUPTURE DISK
    • 破碎盘
    • US20130056085A1
    • 2013-03-07
    • US13499199
    • 2010-09-29
    • John TomaskoPaul GogginGeof Brazier
    • John TomaskoPaul GogginGeof Brazier
    • F16K17/14B21D22/00B21B3/00
    • F16K17/1606Y10T29/49826Y10T137/0396Y10T137/1692Y10T137/1714Y10T137/1729Y10T137/1737Y10T137/1744Y10T137/1752
    • A rupture disk (20), along with associated methods, is disclosed. More particularly, a miniaturized rupture disk is disclosed, comprising a transition area (23) configured to determine a pressure at which the rupture able portion will rupture. A method for forming a rupture disk is also disclosed, wherein a radius (R) of a transition area is configured to set the burst pressure of the rupture disk. A rupture disk having an indent at its apex (24) and a circular line of weakness configured to improve opening performance is also disclosed. Additionally, a method of relieving pressure in a pressurized system is disclosed, wherein a set of rupture disks is provided, wherein each rupture disk in the set has a different radius of transition area. A rupture disk may be selected from the set and installed based on a burst pressure set by the radius of transition area.
    • 公开了一种破裂盘(20)及相关方法。 更具体地,公开了一种小型化的破裂盘,包括被配置为确定破裂能部分将破裂的压力的过渡区域(23)。 还公开了一种用于形成破裂盘的方法,其中过渡区域的半径(R)被配置为设置破裂盘的爆破压力。 还公开了具有在其顶点(24)上具有凹口的破裂盘和被构造成改善开口性能的圆形无虚线。 此外,公开了一种在加压系统中减轻压力的方法,其中提供了一组破裂盘,其中该组中的每个破裂盘具有不同的过渡区域的半径。 破裂盘可以从组中选择并且基于由过渡区域的半径设定的爆破压力来安装。
    • 10. 发明申请
    • RUPTURE FEATURE FOR INFLATOR OF VEHICLE AIRBAG
    • 汽车安全气囊的破坏特征
    • US20110169252A1
    • 2011-07-14
    • US12687353
    • 2010-01-14
    • Anthony M. YoungAndrew J. YoungKurt L. Gamill
    • Anthony M. YoungAndrew J. YoungKurt L. Gamill
    • B60R21/26
    • B60R21/274B60R21/262Y10T137/1692Y10T137/1744
    • A rupture feature releases pressurized gas into a diffuser through an egress opening in an inflator wall responsive to a pressure impulse in the inflator. A sturdy rupture fragment is positioned opposite the egress opening. A thin rupture membrane continuously circumscribes and sealingly interconnects the rupture fragment to the inflator about the egress opening. Rupture membrane thickness is less than rupture fragment thickness or inflator wall thickness at the egress opening. The rupture membrane is upstanding from the inflator wall about the egress opening to a constant height. The rupture fragment and the rupture membrane are integrally-formed with each other and with the inflator wall at the egress opening. The pressure impulse impacts the rupture fragment, urges the rupture fragment away from the inflator, detaches the rupture fragment from the inflator by fully transversely fracturing the rupture membrane, and drives the rupture fragment into containment within the diffuser.
    • 破裂特征通过充气机壁中的出口开口将加压气体释放到扩散器中,以响应于充气机中的压力冲击。 坚固的破裂片段位于出口开口的对面。 薄的断裂膜连续地将破裂片段围绕出口开口密封地连接到充气机。 破裂膜厚度小于出口开口处的破裂碎片厚度或充气机壁厚度。 破裂膜从围绕出口开口的充气机壁竖立到恒定的高度。 破裂片和破裂膜彼此一体地形成,并且在出口处具有充气机壁。 压力冲击影响破裂片段,促使断裂碎片远离充气机,通过完全横向断裂破裂膜将破裂碎片从充气机上分离,并将破裂片段驱动到扩散器内的容纳物中。