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    • 73. 发明授权
    • Breathing respirator
    • 呼吸呼吸器
    • US07523750B2
    • 2009-04-28
    • US10986209
    • 2004-11-12
    • J. Mario Krzysztofik
    • J. Mario Krzysztofik
    • A62B7/10A62B19/00A62B23/02A62B18/10
    • A62B18/08A62B23/02
    • The combination noise suppression and breathing respirator of the present invention includes a face mask of the snorkel or diving type, the facemask sealing against the face of the user around the nose, cheeks, eyes and forehead of the wearer. The facemask has a nosepiece having an exhalation flap check valve for exhalation by the user. Each side of the face mask has a one-way inlet valve at a connection which connects with rearward extending dual use air channel and straps. A noise suppression and air filter module is worn over each ear of the user and is attached to respective dual use air channel and straps. Head bands extend around the back of the wearer's head between air filter modules an adjustably connected by buckles thereto.
    • 本发明的组合噪声抑制呼吸器具有呼吸管或潜水型的面罩,面罩在使用者周围的鼻子,脸颊,眼睛和前额面上密封。 面罩具有鼻罩,其具有用于呼气的呼气瓣止回阀。 面罩的每一侧都具有一个单向入口阀,该连接件与向后延伸的双重使用空气通道和带子连接。 噪声抑制和空气过滤器模块佩戴在用户的每个耳朵上,并连接到相应的双用途空气通道和皮带。 头带在空气过滤器模块之间围绕佩戴者头部的后部延伸,通过带扣可调节地连接。
    • 74. 发明申请
    • Valve Unit for a Rebreather Apparatus
    • 用于回流装置的阀单元
    • US20090101143A1
    • 2009-04-23
    • US12226766
    • 2006-04-28
    • Lars Erik Frimann
    • Lars Erik Frimann
    • A62B18/10B63C11/02
    • B63C11/186A62B9/06A62B19/00B63C11/24
    • The present invention concerns a valve unit for a rebreather apparatus that recycles gas exhaled by a user. The valve unit includes a housing 5 with a first port for communication with a respiratory system of the user and a first inlet port 9 for breathable gas in said housing, a first exit port for exhausting gas from said housing into a flow channel, at least one separate second exit port 12 for exhausting gas form said housing 5 into an ambient environment, a second inlet port 13 for breathable gas connected to an open loop inlet valve 6 in said housing 5, and a valve body 4 in said housing 5 forming a valve for switching between two operating modes. The valve body 4 is formed as a barrel or cylinder with valve openings sealing against the housing 5, where the valve body 4 forms an internal cavity 18, alone or in combination with the housing 5, in connection with the port 10 for communication with a user. The valve 6 has an outlet in said cavity 18.
    • 本发明涉及一种用于再循环由使用者呼出的气体的循环呼吸器装置的阀单元。 阀单元包括具有用于与使用者的呼吸系统连通的第一端口和用于所述壳体中的可呼吸气体的第一入口端口9的壳体5,用于将气体从所述壳体排出到流动通道的第一出口端口,至少 用于排出气体的一个单独的第二出口12用于将所述壳体5排放到周围环境中,用于连接到所述壳体5中的开环入口阀6的透气气体的第二入口13和在所述壳体5中的阀体4形成 用于在两种操作模式之间切换的阀。 阀体4形成为具有阀门开口密封抵靠壳体5的阀体或气缸,其中阀体4单独地或与壳体5组合形成内部空腔18,与端口10结合,用于与一个 用户。 阀6在所述空腔18中具有出口。
    • 75. 发明申请
    • Valve system for underwater diving equipment
    • 水下潜水设备阀门系统
    • US20070186926A1
    • 2007-08-16
    • US11356566
    • 2006-02-16
    • William MorganConnie MorganTrent Schultz
    • William MorganConnie MorganTrent Schultz
    • B63C11/02A62B18/10
    • B63C11/2227B63C11/16
    • A tubular body is operatively coupled to an oral nasal mask and provided with lateral apertures adapted for fluid flow. A flexible valve is mounted onto one end of the tubular body and adapted to seal the lateral apertures under normal operation conditions and expose the lateral apertures for fluid flow during emergency operation conditions. The sealed lateral apertures keep exhaust gases from escaping the oral nasal mask and contaminating the interior of the diving equipment during normal operation conditions. The exposed lateral apertures allow air from an alternate source to reach the mouth and nose of a user covered by the oral nasal mask during emergency operation conditions. The exposed lateral apertures allow excess water to be removed from inside the diving equipment. The valve system may be implemented as an integrated regulator mount nut/valve system.
    • 管状体可操作地联接到口腔鼻罩上并且设置有适于流体流动的侧向孔。 柔性阀安装在管状体的一端上并且适于在正常操作条件下密封侧向孔,并且在紧急操作条件期间暴露侧向孔以进行流体流动。 密封的侧面孔口在正常操作条件下使排气不会从口腔鼻罩中泄漏并污染潜水设备的内部。 暴露的侧向孔允许来自替代源的空气在紧急操作条件期间到达由口腔鼻罩覆盖的使用者的嘴和鼻部。 暴露的侧向孔允许从潜水设备内部移除多余的水。 阀系统可以实现为集成调节器安装螺母/阀系统。
    • 76. 发明申请
    • Respiratory apparatus with improved seal
    • 呼吸机具有改进的密封
    • US20070113855A1
    • 2007-05-24
    • US11283441
    • 2005-11-18
    • Wayne Carlsen
    • Wayne Carlsen
    • A62B18/10A61M5/315A61M5/31A61M25/16A61M5/00A61M25/18
    • A61M16/0463A61M16/0816A61M2206/14
    • A respiratory apparatus includes a seal disposed within a port around a suction catheter so as to provide a sliding frictional sealing fit with the suction catheter. The seal is formed from a resilient material and is shaped to contain a radially outer flange section, an inner conically shaped skirt section defining an aperture through which the suction catheter passes, and a bridge section between the outer flange section and the conical skirt section. The outer flange section defines an inner diameter and the bridge section extends radially inward from the inner diameter at a first angle relative to the outer flange section. The conical skirt section extends radially inward from the bridge section at a second angle relative to the bridge section that is less than the first angle and a seal lip is defined at an end of the conical skirt section.
    • 呼吸装置包括设置在吸引导管周围的端口中的密封件,以便提供与吸引导管的滑动摩擦密封配合。 密封件由弹性材料形成并且被成形为包含径向外部凸缘部分,内部圆锥形裙部部分,限定抽吸导管穿过的孔,以及外部凸缘部分和锥形裙部分之间的桥接部分。 外凸缘部分限定内径,并且桥接部分相对于外凸缘部分以第一角度从内径径向向内延伸。 圆锥形裙部部分相对于桥接部分的第二角度从桥接部分径向向内延伸,小于第一角度,并且密封唇缘限定在锥形裙部分的端部。
    • 79. 发明授权
    • Demand valves for breathing apparatus
    • 呼吸器需要阀
    • US07111625B2
    • 2006-09-26
    • US10859013
    • 2004-06-02
    • Peter J. Jackson
    • Peter J. Jackson
    • A62B9/02A62B18/10B63C11/02A61M16/00
    • A62B9/027
    • There is described a demand valve for a breathing apparatus with a “first breath” mechanism, wherein a demand valve is held closed by resiliently latching an operating diaphragm of the valve in a position wherein the valve is closed. The diaphragm is resiliently biased towards opening the valve, and the resilient latch is arranged to exert sufficient force so as not to be overcome by the resilient bias alone, but so as to be overcome by the combination of the resilient bias and a predetermined pressure difference across the diaphragm caused by sub-ambient pressure within the facepiece of the breathing apparatus.
    • 描述了具有“第一呼吸”机构的呼吸器的需求阀,其中通过将阀的操作隔膜弹性地锁定在阀关闭的位置来将需求阀保持关闭。 隔膜被弹性偏压以打开阀门,并且弹性闩锁被布置成施加足够的力,以便不被单独的弹性偏压克服,而是通过弹性偏压和预定压力差的组合来克服 在呼吸器的面罩内的环境压力下由隔膜引起。
    • 80. 发明授权
    • Electromechanically-assisted regulator control assembly
    • 机电辅助调节器控制组件
    • US07100628B1
    • 2006-09-05
    • US10718273
    • 2003-11-18
    • Michael G. IzensonPatrick J. Magari
    • Michael G. IzensonPatrick J. Magari
    • G05D16/20A62B18/10
    • A62B18/10G05D16/2093Y10S137/908Y10T137/0396Y10T137/7761
    • An electromechanically-assisted control system for use in a second-stage regulator. Regulator control assembly (20), also referred to as EMA assembly (20), includes a mechanical actuator sub-assembly (21) and an electromechanical actuator (EMA) sub-assembly (22) for controlling airflow through single air supply line (23). EMA sub-assembly (22) includes electronically controllable actuator (ECA) (34), which removably seals EMA orifice (36) in wall (30) of pilot chamber (32). ECA (34) is electrically connected with and controlled by control electronics (38). The control electronics include programmable microprocessor (40), which is electrically connected with charge and discharge electronics (42), both of which are electrically connected with power supply (44). Alternatively, regulator control assembly (20′), also referred to as all-electronic (AE) assembly (20′), has only an EMA sub-assembly and no mechanical actuator sub-assembly. AE assembly (20′) does not include a low-pressure diaphragm, a lever arm, a first valve, or a pilot jet orifice.
    • 一种用于二级调节器的机电辅助控制系统。 也称为EMA组件(20)的调节器控制组件(20)包括机械致动器子组件(21)和用于控制通过单个供气管线(23)的气流的机电致动器(EMA)子组件(22) )。 EMA子组件(22)包括电子可控致动器(ECA)(34),其可拆卸地密封在先导室(32)的壁(30)中的EMA孔口(36)。 ECA(34)与控制电子装置(38)电连接并由其控制。 控制电子器件包括与充电和放电电子器件(42)电连接的可编程微处理器(40),两者都与电源(44)电连接。 或者,也称为全电子(AE)组件(20')的调节器控制组件(20')仅具有EMA子组件,而不具有机械致动器子组件。 AE组件(20')不包括低压隔膜,杠杆臂,第一阀或先导喷嘴。