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    • 1. 发明授权
    • Energy absorbing vehicle barrier
    • 能量吸收障碍物
    • US08182169B2
    • 2012-05-22
    • US13095283
    • 2011-04-27
    • Sean ThompsonSamuel Ross Stanley, Jr.Patrick A. LeonhardtDonald C. Pyde
    • Sean ThompsonSamuel Ross Stanley, Jr.Patrick A. LeonhardtDonald C. Pyde
    • E01F13/00
    • E01F13/12
    • A non-lethal energy absorbing vehicle barrier for decelerating an impacting vehicle a gate member disposed between first and second gate receivers that is deformable from a pre-impact configuration to an impact configuration. The gate member may include a first deformable energy absorption member having a first end coupled to the first gate receiver and a second end extending inward toward a center of the gate member; a second deformable energy absorption member having a first end coupled to the second gate receiver and a second end extending inward toward the center of the gate member; and a deforming member connecting the first and second deformable energy absorption members in an overlapping configuration. The deforming member is configured to engage and deform the first and second deformable energy absorption members as the gate member is deformed from the pre-impact configuration to the impact configuration.
    • 一种非致死能量吸收车辆屏障,用于使冲击车辆减速,所述门构件设置在第一和第二门接收器之间,所述门构件可从预冲击构型变形为冲击构型。 门构件可以包括第一可变形能量吸收构件,其具有联接到第一门接收器的第一端和朝向门构件的中心向内延伸的第二端; 第二可变形能量吸收构件,其具有联接到第二栅极接收器的第一端和朝向门构件的中心向内延伸的第二端; 以及以重叠构造连接第一和第二可变形能量吸收构件的变形构件。 变形构件构造成当门构件从预冲击构造变形到冲击构造时,使第一和第二可变形能量吸收构件接合和变形。
    • 3. 发明申请
    • ENERGY ABSORBING VEHICLE BARRIER
    • 能量吸收车辆障碍物
    • US20110217115A1
    • 2011-09-08
    • US13095283
    • 2011-04-27
    • Sean ThompsonSamuel Ross Stanley, JR.Patrick A. LeonhardtDonald C. Pyde
    • Sean ThompsonSamuel Ross Stanley, JR.Patrick A. LeonhardtDonald C. Pyde
    • E01F13/00E01F15/00
    • E01F13/12
    • A non-lethal energy absorbing vehicle barrier for decelerating an impacting vehicle a gate member disposed between first and second gate receivers that is deformable from a pre-impact configuration to an impact configuration. The gate member may include a first deformable energy absorption member having a first end coupled to the first gate receiver and a second end extending inward toward a center of the gate member; a second deformable energy absorption member having a first end coupled to the second gate receiver and a second end extending inward toward the center of the gate member; and a deforming member connecting the first and second deformable energy absorption members in an overlapping configuration. The deforming member is configured to engage and deform the first and second deformable energy absorption members as the gate member is deformed from the pre-impact configuration to the impact configuration.
    • 一种非致死能量吸收车辆屏障,用于使冲击车辆减速,所述门构件设置在第一和第二门接收器之间,所述门构件可从预冲击构型变形为冲击构型。 门构件可以包括第一可变形能量吸收构件,其具有联接到第一门接收器的第一端和朝向门构件的中心向内延伸的第二端; 第二可变形能量吸收构件,其具有联接到第二栅极接收器的第一端和朝向门构件的中心向内延伸的第二端; 以及以重叠构造连接第一和第二可变形能量吸收构件的变形构件。 变形构件构造成当门构件从预冲击构造变形到冲击构造时,使第一和第二可变形能量吸收构件接合和变形。
    • 7. 发明授权
    • Tunable laser
    • 可调谐激光
    • US07826501B2
    • 2010-11-02
    • US12176879
    • 2008-07-21
    • Ross StanleyMaurizio TormenRino KunzPhilippe Niedermann
    • Ross StanleyMaurizio TormenRino KunzPhilippe Niedermann
    • H01S3/10
    • G01J3/1804G02B5/1828G02B26/0808H01S5/141
    • A mode hop-free tunable laser including a gain medium, a microfabricated blazed grating, defining an external cavity of a given length, the blazed grating lying in a general plane and including a plurality of elongate beams carrying mutually parallel respective reflection surfaces spaced apart from one another with a predefined pitch, and actuating elements designed so as to allow displacements of the assembly with respect to a grating support within a plane substantially parallel to the grating general plane, and including actuation elements designed so as to apply a stretching and a displacement of the assembly in a direction transverse to said reflection surfaces, the blazed grating being arranged relative to an incident light beam provided by the gain medium so that the incident light beam impinges on the reflection surfaces with a substantially normal incident angle.
    • 包括增益介质的模式跳跃可调谐激光器,限定给定长度的外部空腔的微型闪光光栅,所述闪耀的光栅位于总体平面中,并且包括多个细长光束,所述多个细长光束承载相互平行的各自的反射表面, 彼此具有预定的间距,以及致动元件,其被设计成允许组件相对于基本上平行于光栅总体平面的平面内的光栅支撑件移位,并且包括设计成施加拉伸和位移的致动元件 在相对于所述反射表面横向的方向上,所述闪耀的光栅相对于由增益介质提供的入射光束布置,使得入射光束以基本上正常的入射角度照射在反射表面上。