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    • 1. 发明授权
    • Inflator bottle for combustible gas mixture
    • 用于可燃气体混合物的充气瓶
    • US07959185B2
    • 2011-06-14
    • US12286618
    • 2008-10-01
    • John Paul SparkmanCharles M. WoodsWilliam H. Phipps
    • John Paul SparkmanCharles M. WoodsWilliam H. Phipps
    • B60R21/26
    • B60R21/264B60R2021/2612
    • An inflator bottle adapted for controlled release of product gas to deploy an inflatable cushion and a method thereof is provided. The inflator bottle comprises a compartment filled with a combustible gas mixture having a partition that divides the compartment into a first region and a second region. Upon a crash event, an igniter on the inflator bottle ignites initiating combustion in the first region. Combustion propagates in the first region toward a nozzle building pressure in the first region sufficient to rupture a burst disk over the passage of the nozzle releasing product gas through the nozzle. The release of product gas through the nozzle draws combustible gas mixture from the second region flowing through the gas portal on the partition into the first region for combustion. The area of the gas portal between the regions is sized in relation to the size of the minimum area of the passage of the nozzle to supply the combustible gas mixture to the first region at a rate that maintains the flame front while preventing it from propagating out into the second region or out the nozzle until the remaining combustible gas mixture in the compartment is consumed.
    • 提供一种适于控制释放产品气体以展开充气垫的充气瓶及其方法。 充气机瓶包括装有可燃气体混合物的隔室,该混合气体具有将隔室分隔成第一区域和第二区域的隔板。 在碰撞事件时,充气瓶上的点火器点燃第一区域的燃烧。 燃烧在第一区域中朝向第一区域中的喷嘴构建压力传播,足以使喷嘴的通道上的破裂盘破裂,从而通过喷嘴释放产物气体。 通过喷嘴释放产物气体将可燃气体混合物从流过隔板上的气体入口的第二区域吸入第一区域用于燃烧。 区域之间的气体入口的面积的大小相对于喷嘴通道的最小面积的大小来确定,以便将可燃气体混合物以保持火焰前沿的速率供应到第一区域,同时防止其传播 进入第二区域或从喷嘴出口,直到消耗隔室中剩余的可燃气体混合物。
    • 2. 发明授权
    • Variable output inflator for an air bag
    • 用于气囊的可变输出充气机
    • US06196582B1
    • 2001-03-06
    • US09400588
    • 1999-09-22
    • John Paul SparkmanShawn Gregory RyanAllen Richard StarnerRobert Raymond Niederman
    • John Paul SparkmanShawn Gregory RyanAllen Richard StarnerRobert Raymond Niederman
    • B60R2126
    • B60R21/272B60R2021/2633
    • The present invention presents an inflator providing variable output inflation of an air bag cushion in response to full or reduced level deployment conditions. The inflator of the present invention includes a first chamber for storing an inert gas, a second chamber in fluid communication with the first chamber, and a third chamber in selective fluid communication with the second chamber, the third chamber for storing a heat modifier for varying a heat value of the inert gas. The inflator also includes a pyrotechnic device having a combustible material for heating the inert gas and a first initiator for actuating the pyrotechnic device upon first and second deployment conditions. A second initiator for opening the third chamber to the second chamber is provided wherein actuation of the second initiator causing the heat modifier to fluidly communicate with the combustible material and vary the heat value of the inert gas during a combustion process. The second initiator is actuated during second deployment conditions.
    • 本发明提出了一种充气机,其响应于完全或降低的水平部署条件而提供气囊缓冲器的可变输出充气。 本发明的充气机包括用于存储惰性气体的第一室,与第一室流体连通的第二室和与第二室选择性流体连通的第三室,用于存储用于变化的热改性剂的第三室 惰性气体的热值。 充气机还包括具有用于加热惰性气体的可燃材料的烟火装置和用于在第一和第二部署条件下致动烟火装置的第一启动器。 提供了用于将第三室打开到第二室的第二启动器,其中第二引发器的致动导致热改性剂与可燃材料流体连通并且在燃烧过程中改变惰性气体的热值。 在第二部署条件期间启动第二启动器。
    • 5. 发明申请
    • Inflator bottle for combustible gas mixture
    • 用于可燃气体混合物的充气瓶
    • US20100078922A1
    • 2010-04-01
    • US12286618
    • 2008-10-01
    • John Paul SparkmanCharles M. WoodsWilliam H. Phipps
    • John Paul SparkmanCharles M. WoodsWilliam H. Phipps
    • B60R21/26
    • B60R21/264B60R2021/2612
    • An inflator bottle adapted for controlled release of product gas to deploy an inflatable cushion and a method thereof is provided. The inflator bottle comprises a compartment filled with a combustible gas mixture having a partition that divides the compartment into a first region and a second region. Upon a crash event, an igniter on the inflator bottle ignites initiating combustion in the first region. Combustion propagates in the first region toward a nozzle building pressure in the first region sufficient to rupture a burst disk over the passage of the nozzle releasing product gas through the nozzle. The release of product gas through the nozzle draws combustible gas mixture from the second region flowing through the gas portal on the partition into the first region for combustion. The area of the gas portal between the regions is sized in relation to the size of the minimum area of the passage of the nozzle to supply the combustible gas mixture to the first region at a rate that maintains the flame front while preventing it from propagating out into the second region or out the nozzle until the remaining combustible gas mixture in the compartment is consumed.
    • 提供一种适于控制释放产品气体以展开充气垫的充气瓶及其方法。 充气机瓶包括装有可燃气体混合物的隔室,该混合气体具有将隔室分隔成第一区域和第二区域的隔板。 在碰撞事件时,充气瓶上的点火器点燃第一区域的燃烧。 燃烧在第一区域中朝向第一区域中的喷嘴构建压力传播,足以使喷嘴的通道上的破裂盘破裂,从而通过喷嘴释放产物气体。 通过喷嘴释放产物气体将可燃气体混合物从流过隔板上的气体入口的第二区域吸入第一区域用于燃烧。 区域之间的气体入口的面积的大小相对于喷嘴通道的最小面积的大小来确定,以便将可燃气体混合物以保持火焰前沿的速率供应到第一区域,同时防止其传播 进入第二区域或从喷嘴出口,直到消耗隔室中剩余的可燃气体混合物。
    • 6. 发明授权
    • Variable output air bag module with PAV heat sink
    • 带PAV散热器的可变输出气囊模块
    • US06203061B1
    • 2001-03-20
    • US09414430
    • 1999-10-07
    • Robert Raymond NiedermanAllen Richard StarnerShawn Gregory RyanGraham Thornton SpencerJohn Paul Sparkman
    • Robert Raymond NiedermanAllen Richard StarnerShawn Gregory RyanGraham Thornton SpencerJohn Paul Sparkman
    • B60R2126
    • B60R21/26B60R21/2644B60R2021/2633
    • The present invention provides variable deployment performance by controlling the heat content of the inflator gas which exits an air bag sub-module, disposed in a module, into an air bag cushion. The air bag sub-module includes a sub-module housing which receives an inflator in a central cavity formed therein. The module housing includes low output module ports formed in the module housing and high output module ports. Heat sinking material is disposed within the sub-module housing between an outer wall of the sub-module housing and the inflator such that the heat sinking material surrounds the low output module ports. The air bag sub-module provides a first fluid flow path for the heated inflator gas to flow under high level deployment conditions and a second fluid flow path for the inflator gas to flow under reduced level deployment conditions. The first fluid flow path comprises a low resistance fluid flow path in which the heated inflator gas exits the inflator through the high output module ports. Little or no heated inflator gas will flow through the second fluid flow path, which comprises a high resistance fluid flow path, because in order for the inflator gas to flow according to the second fluid flow path, the inflator gas must pass through the high resistance heat sink material and the low output module ports. The heat content of the inflator gas is reduced by forcing the inflator gas to flow according to the second fluid flow path.
    • 本发明通过将离开设置在模块中的气囊子模块的充气器气体的热含量控制到气囊垫中来提供可变的部署性能。 气囊子模块包括在其中形成的中心腔中容纳充气机的子模块壳体。 模块外壳包括形成在模块外壳中的低输出模块端口和高输出模块端口。 散热材料设置在子模块壳体内,在子模块壳体的外壁和充气机之间,使得散热材料围绕低输出模块端口。 气囊子模块提供第一流体流动路径,用于加热的充气器气体在高水平的展开条件下流动,第二流体流动路径用于使充气器气体在降低的部署条件下流动。 第一流体流动路径包括低阻力流体流动路径,其中加热的充气机气体通过高输出模块端口离开充气机。 由于为了使充气机气体根据第二流体流动路径流动,充气机气体必须通过高阻力,所以很少或没有加热的充气机气体将流过包括高阻流体流路的第二流体流路, 散热材料和低输出模块端口。 通过迫使充气机气体根据第二流体流动路径流动来减少充气机气体的热量。