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    • 3. 发明授权
    • Passenger compartment crash sensors
    • 乘客舱碰撞传感器
    • US5155307A
    • 1992-10-13
    • US480271
    • 1990-02-15
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.Chingyao Chan
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.Chingyao Chan
    • B60R21/00B60R21/01B60R21/16B60R21/33H01H35/14
    • B60R21/0136B60R21/01B60R21/33H01H35/14B60R2021/0006B60R2021/01006H01H35/142
    • This invention includes crash sensors designed to be used for frontal impact sensing and the strategies of using these sensors. It is analyzed and shown that velocity sensing or damped sernsors are desirable for frontal impact passenger compartment sensing. inertially damped sensors, with a damping force proportional to the square of velocity, is preferred for some applications. In other cases a viscous damped sensor is appropriate and in a few cases an undamped spring mass sensor will suffice. Such sensors can be made of plastic and in the shape of short housings. A preferred embodiment of this invention utilizes a swinging mass hinged to a housing as the sensing mass. Different geometries of the mass and the housing are disclosed and used to improve the performance of such sensors. These flapper mass sensors are useful for sensing frontal impacts in the passenger compartment both as primary sensors and as single or dual contact arming sensors. A method of manufacturing these sensors is also disclosed, in which the contacts are treated to become adhesive to plastic and then molded with the remaining plastic parts of the sensors. The plastic parts are then welded to form a hermetically-sealed interior of the sensor.
    • 本发明包括设计用于正面碰撞感测的碰撞传感器和使用这些传感器的策略。 分析和显示速度感测或阻尼检测器对于正面碰撞乘客舱室感应是理想的。 对于某些应用,惯性阻尼传感器具有与速度平方成正比的阻尼力。 在其他情况下,粘性阻尼传感器是适当的,在少数情况下,无阻尼弹簧质量传感器就足够了。 这样的传感器可以由塑料制成并且具有短的壳体的形状。 本发明的优选实施例利用铰链到壳体的摆动质量作为感测质量块。 公开和使用质量和壳体的不同几何形状来改善这种传感器的性能。 这些挡板质量传感器可用于感测乘客室中的正面撞击,作为主传感器以及单接触或双接触布防传感器。 还公开了制造这些传感器的方法,其中将接触处理成与塑料粘合,然后与传感器的其余塑料部件一起模制。 然后将塑料部件焊接以形成传感器的气密密封的内部。
    • 4. 发明授权
    • Side impact sensor systems
    • 侧面碰撞传感器系统
    • US07070202B2
    • 2006-07-04
    • US11058337
    • 2005-02-15
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • B60R21/22B60R21/32
    • B60R21/33B60R21/0132B60R21/20B60R21/21B60R2021/0006
    • Vehicle including a side impact sensor system having a longitudinally extending outer skin arranged on a side of the vehicle, a system housing arranged inward of the outer skin and having an opening facing a portion of a passenger compartment, an inflatable airbag arranged in the system housing, an inflator arranged in connection with the system housing, and a sensor system for detecting an impact into a side of the vehicle. The sensor system includes a sensor housing and a mass arranged therein and movable relative thereto housing in response to acceleration in excess of a threshold value. Movement of the mass relative to the sensor housing provides an indication of a side impact for which deployment of the airbag is desired. The inflator is actuated in response to a side impact by the sensor system in order to expel the airbag through the opening into the passenger compartment.
    • 包括侧部碰撞传感器系统的车辆,所述侧部碰撞传感器系统具有布置在车辆侧面上的纵向延伸的外皮,系统壳体,其布置在外皮的内侧,并且具有面向乘客舱的一部分的开口, 与系统壳体连接的充气机,以及用于检测对车辆侧面的撞击的传感器系统。 传感器系统包括传感器壳体和布置在其中并且响应于超过阈值的加速度而相对于壳体可移动的质量块。 质量块相对于传感器壳体的运动提供了对于该气囊展开所期望的侧面冲击的指示。 响应于传感器系统的侧面碰撞来致动充气机,以便通过穿过开口的气囊将乘客舱排出。
    • 8. 发明授权
    • Side impact sensor systems
    • 侧面碰撞传感器系统
    • US07097201B2
    • 2006-08-29
    • US11174837
    • 2005-07-05
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • B60R21/16
    • B60R21/33B60R21/0132B60R21/20B60R21/21B60R2021/0006
    • Vehicle including an occupant protection apparatus for protecting an occupant during an impact into a side of the vehicle, and a side impact, electronic crash sensor assembly for detecting impact into the side of the vehicle and controlling the occupant protection apparatus responsive to the detected impact. The sensor assembly includes a sensor housing arranged in a door or between inner and outer side panels along a side of the vehicle, a movable sensing mass arranged within and movable in the lateral direction relative to the sensor housing in response to lateral accelerations thereof, a micro-processor containing an algorithm which generates a time-varying signal representative of lateral movement of the mass, analyzes the signal and generates a deployment signal based thereon, and a control unit for receiving the deployment signal from the micro-processor and controlling deployment of the occupant protection apparatus based thereon.
    • 车辆包括用于在冲击期间保护乘客的乘客保护装置到车辆的侧面,以及侧碰撞,电子碰撞传感器组件,用于检测对车辆侧面的冲击并响应于检测到的冲击来控制乘员保护装置。 所述传感器组件包括传感器壳体,所述传感器壳体布置在车门中或沿着车辆侧面的内侧面板和外侧面板之间,可移动检测质量块响应于其横向加速度而相对于传感器壳体在横向方向上布置并可沿其横向方向移动; 微处理器包含产生表示质量横向运动的时变信号的算法,分析信号并基于此生成部署信号,以及控制单元,用于从微处理器接收部署信号并控制部署 基于此的乘员保护装置。
    • 9. 发明授权
    • Side impact sensor systems
    • 侧面碰撞传感器系统
    • US07052038B2
    • 2006-05-30
    • US10768791
    • 2004-01-30
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • B60R21/22B60R21/32
    • B60R21/33B60R21/0132B60R21/20B60R21/21B60R2021/0006
    • A vehicle including a side impact crash sensor, a transfer structure interposed between the side of the vehicle and the sensor and an occupant restraint system such as a side impact airbag system. When an object strikes the side of the vehicle or vice versa, the transfer structure serves to transfer the lateral force from the side of the vehicle to the sensor and is designed so that it does not distort upon the application of the lateral force. The side impact crash sensor detects the force or acceleration applied to the side of the vehicle, and the airbag system connected to the sensor deploys an airbag based on the detected force or acceleration. The transfer structure may be constructed to account for mismatch between the point of impact of an object on the side of the vehicle and the location of the sensor.
    • 一种车辆,包括侧面撞击碰撞传感器,介于车辆侧面和传感器之间的传送结构和诸如侧面碰撞气囊系统的乘员约束系统。 当物体撞击车辆的侧面或反之亦然时,传递结构用于将侧向力从车辆侧面传递到传感器,并且被设计成使得其在施加横向力时不会变形。 侧面碰撞传感器检测施加到车辆侧面的力或加速度,并且连接到传感器的气囊系统基于检测到的力或加速度部署安全气囊。 转移结构可被构造成考虑物体在车辆侧面上的撞击点与传感器的位置之间的不匹配。
    • 10. 发明授权
    • Side impact sensors and airbag system
    • 侧面碰撞传感器和气囊系统
    • US06685218B1
    • 2004-02-03
    • US09435045
    • 1999-11-08
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • David S. BreedVittorio CastelliAnthony S. Pruszenski, Jr.
    • B60R2122
    • B60R21/33B60R21/0132B60R21/20B60R21/21B60R2021/0006
    • A side impact crash sensor for a vehicle including a housing and a mass within the housing movable relative to the housing in response to accelerations of the housing. The mass moves upon acceleration of the housing and when this movement is in excess of a predetermined threshold value, it is possible to control an occupant protection apparatus (such movement being indicative of a crash involving the vehicle). The housing is mounted in such a position and a direction as to sense an impact into a side of the vehicle. Possible mounting locations of the housing include inside a door of the vehicle, between inner and outer panels not associated with a door of the vehicle, a seat in the vehicle and remote from the side of the vehicle. In the latter case, the vehicle includes a sufficiently strong member connecting the sensor to the vehicle side such that there is little or no plastic deformation between the sensor and the side of the vehicle.
    • 一种用于车辆的侧面撞击碰撞传感器,包括壳体和壳体内的质量,其响应于壳体的加速度而相对于壳体可移动。 质量在壳体加速时移动,并且当该移动超过预定阈值时,可以控制乘员保护装置(这种运动指示涉及车辆的碰撞)。 壳体安装在这样的位置和方向上以感测到车辆侧面的冲击。 壳体的可能的安装位置包括在车辆的门内部,在不与车辆的门相关联的内部和外部面板之间,车辆中的座椅并且远离车辆的侧面。 在后一种情况下,车辆包括足够强的构件,其将传感器连接到车辆侧,使得传感器和车辆侧面之间很少或没有塑性变形。