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    • 1. 发明授权
    • Variable lateral thickness airbag, system comprising same, and method of deploying same
    • 可变侧壁厚度安全气囊,包括其的系统及其部署方法
    • US08491007B2
    • 2013-07-23
    • US13277788
    • 2011-10-20
    • Krishnakanth E. AekboteJialiang LeManoharprasad K. RaoJames Chih Cheng
    • Krishnakanth E. AekboteJialiang LeManoharprasad K. RaoJames Chih Cheng
    • B60R21/2334
    • B60R21/2338B60R21/263B60R2021/23388B60R2021/2633
    • An airbag assembly has an airbag, a gas emitting inflator, and an airbag thickness limiting structure. The airbag thickness limiting structure limits a first body region engaging portion to having a lateral thickness within a first lateral thickness range when the gas emitting inflator delivers a first amount of inflation gas into the interior space of the airbag and allows the first body region engaging portion of the airbag to have a lateral thickness within a second lateral thickness range when the gas emitting inflator delivers a second amount of inflation gas greater than the first amount into the interior space of the airbag. A second body region engaging portion has a substantially fixed maximum attainable lateral thickness. Maximum attainable lateral thickness of the first body region engaging portion of the airbag can be dependent upon whether or not inflation of the airbag is implemented using pre-crash sensing technology.
    • 安全气囊组件具有气囊,气体发射充气机和气囊厚度限制结构。 当气体排放充气机将第一量的充气气体输送到气囊的内部空间中时,气囊厚度限制结构将第一体区域接合部分限制为具有在第一横向厚度范围内的横向厚度,并允许第一体区域接合部分 当气体排放充气机将大于第一量的第二量的膨胀气体输送到气囊的内部空间中时,气囊具有在第二横向厚度范围内的横向厚度。 第二体区接合部分具有基本上固定的最大可达到的横向厚度。 气囊的第一体区域接合部分的最大可达到的横向厚度可以取决于气囊的充气是否使用预碰撞感测技术来实现。
    • 9. 发明授权
    • Inertia-locking reactive bumper for motor vehicle
    • 机动车惯性锁定无功保险杠
    • US08246091B1
    • 2012-08-21
    • US13206571
    • 2011-08-10
    • Mangala M. JayasuriyaJames Chih Cheng
    • Mangala M. JayasuriyaJames Chih Cheng
    • B60R19/26
    • B60R21/34B60R19/36B60R2019/262F16F7/12
    • An energy-absorbing front end structure for a motor vehicle includes a pair of frame rails, struts (crushable members) made movable relative to the frame rails along a longitudinal axis, a bumper beam supported by the struts, and a spring resisting rearward movement of each strut relative to the frame rail. An inertia-activated locking device inhibits rearward movement of the strut when the vehicle undergoes a longitudinal deceleration above a threshold level so that the strut may absorb crash energy in a high-speed collision. If the vehicle is involved in a lower energy collision, such as with a pedestrian, the deceleration experienced by the vehicle is below the threshold level and the strut remains in an unlocked condition in which it is able to move rearward against the spring to lessen the crash energy transmitted to the pedestrian.
    • 用于机动车辆的能量吸收前端结构包括一对框架导轨,沿着纵向轴线相对于框架轨道可移动的支柱(可压溃构件),由支柱支撑的保险杠梁,以及抵抗向后移动的弹簧 每个支柱相对于框架轨道。 当车辆经历了高于阈值水平的纵向减速度时,惯性启动锁定装置阻止支柱的向后运动,使得支柱可以在高速碰撞中吸收碰撞能量。 如果车辆参与较低的能量碰撞(例如行人),则车辆所经历的减速度低于阈值水平,并且支柱保持在解锁状态,在该状态下,能够相对于弹簧向后移动以减小 碰撞能量传递给行人。