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    • 1. 发明授权
    • Gas generator
    • 气体发生器
    • US06886338B2
    • 2005-05-03
    • US10864213
    • 2004-06-09
    • Joachim FischerMichael GablerAchim Hofmann
    • Joachim FischerMichael GablerAchim Hofmann
    • B60R21/26B60R21/261B60R21/264B60R21/272F16K7/02F01B29/08
    • B60R21/264B60R21/26B60R21/261B60R21/2644B60R21/272B60R2021/26094F16K7/02
    • A gas generator comprises an outflow chamber and a freeing element. The outflow chamber contains at least briefly gas under pressure, when the gas generator is activated and at least one outflow opening is arranged in a side wall of the outflow chamber. The freeing element is arranged non-displaceably in the outflow chamber and has a peripheral wall and a base wall. The peripheral wall extends along the side wall and closes at least one outflow opening before an activation of the gas generator. The base wall is connected with the peripheral wall. The freeing element is constructed so that on exceeding a predetermined gas pressure in the outflow chamber, the base wall turns inwards under partial plastic deformation of the peripheral wall and at least one hitherto concealed outflow opening is freed by the plastic deformation of the peripheral wall.
    • 气体发生器包括流出室和释放元件。 当气体发生器被激活并且至少一个流出开口布置在流出室的侧壁中时,流出室至少包含短时间的压力下的气体。 释放元件不可移位地设置在流出室中,并且具有周壁和底壁。 周边壁沿着侧壁延伸并且在气体发生器的启动之前关闭至少一个流出开口。 底壁与周壁连接。 释放元件被构造成使得在超出流出室中的预定气体压力时,底壁在周壁的部分塑性变形下向内转动,并且至少一个迄今为止隐藏的流出开口由于周壁的塑性变形而被释放。
    • 3. 发明申请
    • Vehicle impact protection system
    • 车辆碰撞保护系统
    • US20080143145A1
    • 2008-06-19
    • US12001171
    • 2007-12-10
    • Michael GablerChristian HergetAchim HofmannDetlef Last
    • Michael GablerChristian HergetAchim HofmannDetlef Last
    • B62D25/00B60R21/00
    • B60R21/0428B60J5/0437B60J5/0444
    • A vehicle impact protection system (10) includes a vehicle outer wall (16), a vehicle inner wall (14), the vehicle outer wall (16) and the vehicle inner wall (14) defining a mounting space (18) between them, and an elongated reinforcing profile (20) housed in the mounting space (18) and having a profile longitudinal axis (A), the reinforcing profile (20) being connected with an actuator device (28), an activation of the actuator device (28) leading to a change in curvature of said profile longitudinal axis (A) such that the profile longitudinal axis (A) is curved more intensively outwards towards the vehicle outer wall (16) after the activation of the actuator device (28) than before the activation.In one embodiment, an activation of the actuator device (28) leads to a change in curvature of the profile longitudinal axis (A) such that the profile longitudinal axis (A) is curved more intensively outwards towards the vehicle outer wall (16) after the actuator device (28) has been activated than before the activation.In another embodiment, the reinforcing profile (20) has different section moduli transverse to a rotation axis (B) which runs through a first fastening point (22) and a second fastening point (24) of the reinforcing profile (20), the actuator device (28) being able to swivel the reinforcing profile (20) about the rotation axis (B) starting from an initial position, such that the section modulus of the reinforcing profile (20) from the vehicle outer wall (16) towards the vehicle inner wall (14) is greater after the activation of the actuator device than in the initial position.
    • 车辆撞击保护系统(10)包括车辆外壁(16),车辆内壁(14),车辆外壁(16)和车辆内壁(14),它们在它们之间限定安装空间(18) 以及容纳在所述安装空间(18)中并且具有轮廓纵向轴线(A)的细长的加强轮廓(20),所述加强轮廓(20)与致动器装置(28)连接,所述致动器装置 )导致所述轮廓纵向轴线(A)的曲率变化,使得轮廓纵向轴线(A)在致动器装置(28)的致动之后比向前朝向车辆外壁(16)更加集中地朝向车辆外壁(16)弯曲。 激活。 在一个实施例中,致动器装置(28)的激活导致轮廓纵向轴线(A)的曲率变化,使得轮廓纵向轴线(A)在其后方向朝向车辆外壁(16)更加向外朝向车辆外壁(16)弯曲弯曲 致动器装置(28)已经比激活之前被激活。 在另一个实施例中,加强轮廓(20)具有横向于穿过加强轮廓(20)的第一紧固点(22)和第二紧固点(24)的旋转轴线(B)的不同截面模块,致动器 装置(28)能够从初始位置开始绕着旋转轴线(B)旋转加强轮廓(20),使得从车辆外壁(16)朝向车辆的增强轮廓(20)的截面模数 在启动致动器装置之后,内壁(14)比初始位置更大。
    • 6. 发明授权
    • Vehicle impact protection system
    • 车辆碰撞保护系统
    • US07530628B2
    • 2009-05-12
    • US12001171
    • 2007-12-10
    • Michael GablerChristian HergetAchim HofmannDetlef Last
    • Michael GablerChristian HergetAchim HofmannDetlef Last
    • B60J5/04
    • B60R21/0428B60J5/0437B60J5/0444
    • A vehicle impact protection system (10) includes a vehicle outer wall (16), a vehicle inner wall (14), the vehicle outer wall (16) and the vehicle inner wall (14) defining a mounting space (18) between them, and an elongated reinforcing profile (20) housed in the mounting space (18) and having a profile longitudinal axis (A), the reinforcing profile (20) being connected with an actuator device (28), an activation of the actuator device (28) leading to a change in curvature of said profile longitudinal axis (A) such that the profile longitudinal axis (A) is curved more intensively outwards towards the vehicle outer wall (16) after the activation of the actuator device (28) than before the activation.
    • 车辆撞击保护系统(10)包括车辆外壁(16),车辆内壁(14),车辆外壁(16)和车辆内壁(14),它们在它们之间限定安装空间(18) 以及容纳在所述安装空间(18)中并且具有轮廓纵向轴线(A)的细长的加强轮廓(20),所述加强轮廓(20)与致动器装置(28)连接,所述致动器装置 )导致所述轮廓纵向轴线(A)的曲率变化,使得轮廓纵向轴线(A)在致动器装置(28)的致动之后比向前朝向车辆外壁(16)更加集中地朝向车辆外壁(16)弯曲。 激活。
    • 7. 发明申请
    • Gas Generator
    • 燃气发电机
    • US20080296877A1
    • 2008-12-04
    • US12154994
    • 2008-05-29
    • Michael GablerKarl EnglbrechtDaniel KrausStefan LabitzkeThomas NobachHelmut PritzJohann Seidl
    • Michael GablerKarl EnglbrechtDaniel KrausStefan LabitzkeThomas NobachHelmut PritzJohann Seidl
    • B60R21/26
    • B60R21/26B60R2021/26094
    • A gas generator, in particular for a vehicle occupant restraint system, has a rigid outer housing (12), a chamber (14) formed in the outer housing (12), in which a compressed gas is present at least upon activation of the gas generator (10), a component immovable (20; 34; 62), at least one outflow opening (22) formed in the component immovable (20; 34; 62) relative to the outer housing (12), and at least one substantially flat, resilient element (26), which is clamped inside the outer housing (12) and rests against the immovable component (20; 34; 62) at least in its normal position. In its normal position, the resilient element (26) closes a flow path between the chamber (14) and external surroundings of the gas generator (10) and is deformed elastically under the influence of compressed gas, whereby it clears a flow cross-section (30) whose size is increasing with increasing pressure.
    • 特别是用于车辆乘员约束系统的气体发生器具有刚性的外壳体(12),形成在外壳体(12)中的腔室(14),至少在活塞气体时存在压缩气体 发生器(10),不可移动的部件(20; 34; 62),形成在所述部件中的至少一个流出开口(22)相对于所述外壳体(12)不可移动(20; 34; 62) 平坦的弹性元件(26),其被夹紧在外壳体(12)内并且至少在其正常位置抵靠不动部件(20; 34; 62)。 在其正常位置,弹性元件(26)封闭腔室(14)和气体发生器(10)的外部环境之间的流动路径,并在压缩气体的影响下弹性变形,从而清除流动横截面 (30),其尺寸随着压力的增加而增加。
    • 9. 发明授权
    • Gas generator
    • 气体发生器
    • US07665762B2
    • 2010-02-23
    • US12154994
    • 2008-05-29
    • Michael GablerKarl EnglbrechtDaniel KrausStefan LabitzkeThomas NobachHelmut PritzJohann Seidl
    • Michael GablerKarl EnglbrechtDaniel KrausStefan LabitzkeThomas NobachHelmut PritzJohann Seidl
    • B60R21/26
    • B60R21/26B60R2021/26094
    • A gas generator for a vehicle occupant restraint system a rigid outer housing (12), a chamber (14) formed in the outer housing (12), in which a compressed gas is present at least upon activation of the gas generator (10), a component immovable (20; 34; 62) relative to the outer housing (12), at least one outflow opening (22) formed in the immovable component (20; 34; 62), and a least one resilient element (26), which is clamped inside the outer housing (12) and rests against the immovable component (20; 34; 62) at least in its normal position. In its normal position, the resilient element (26) closes a flow path between the chamber (14) and external surroundings of the gas generator (10) and is deformed elastically under the influence of compressed gas, whereby it clears a flow cross-section (30) whose size is increasing with increasing pressure.
    • 一种用于车辆乘员约束系统的气体发生器,刚性外壳(12),形成在外壳体(12)中的室(14),其中至少在气体发生器(10)启动时存在压缩气体, 相对于所述外壳体(12)不可移动的部件(20; 34; 62),形成在所述不可移动部件(20; 34; 62)中的至少一个流出开口(22)和至少一个弹性元件(26) 其被夹紧在外壳体(12)内并且至少在其正常位置抵靠不动部件(20; 34; 62)。 在其正常位置,弹性元件(26)封闭腔室(14)和气体发生器(10)的外部环境之间的流动路径,并在压缩气体的影响下弹性变形,从而清除流动横截面 (30),其尺寸随着压力的增加而增加。