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    • 6. 发明专利
    • Vehicular bumper structure
    • 车辆结构
    • JP2007216803A
    • 2007-08-30
    • JP2006038439
    • 2006-02-15
    • Denso CorpHitachi Cable LtdToyota Motor Corpトヨタ自動車株式会社日立電線株式会社株式会社デンソー
    • TAKAHASHI HIROYUKIIENAKA RYUTAROTAKATO TETSUYAKOBAYASHI YOJI
    • B60R19/18B60R19/48B60R21/00
    • B60R19/483B60R21/34B60R2021/01095
    • PROBLEM TO BE SOLVED: To provide a vehicular bumper structure which transmits a collision load applied to a bumper shock-absorbing member to a load detection means with excellent accuracy even when the load detection means is provided on a part of an outer surface of a vehicle. SOLUTION: An optical fiber sensor 32 is arranged on the front upper portion of a front wall part 30A of a front bumper reinforcement 30 along the width direction of a vehicle. A load transmission plate 34 and a front bumper absorber 28 are arranged adjacent to each other on a front side of the optical fiber sensor 32, the vertical width B3 thereof is set to be larger than the vertical width B1 of the optical fiber sensor 32, and a lower end 34A of the load transmission plate 34 extends below the sensor. Thus, when the optical fiber sensor 32 is arranged on an upper portion of the front bumper reinforcement 30 in an offset manner, and even if the input direction of the collision load is slightly deviated, the front bumper absorber 28 is not toppled, and the collision load is input in the optical fiber sensor 32. COPYRIGHT: (C)2007,JPO&INPIT
    • 解决的问题:为了提供一种车辆保险杠结构,即使当负载检测装置设置在外表面的一部分上时,也能以高精度将施加到保险杠减震构件的碰撞载荷传递到负载检测装置 的车辆 解决方案:光纤传感器32沿着车辆的宽度方向布置在前保险杠加强件30的前壁部30A的前上部。 负载传递板34和前保险杠吸收体28在光纤传感器32的前侧彼此相邻设置,其垂直宽度B3被设定为大于光纤传感器32的垂直宽度B1, 负载传递板34的下端34A在传感器的下方延伸。 因此,当光纤传感器32以偏移方式布置在前保险杠加强件30的上部上时,即使碰撞负载的输入方向稍微偏离,也不会使前保险杠吸收器28倒塌, 在光纤传感器32中输入碰撞载荷。(C)2007,JPO&INPIT
    • 8. 发明专利
    • Impact detection optical fiber sensor
    • 冲击检测光纤传感器
    • JP2007064715A
    • 2007-03-15
    • JP2005248835
    • 2005-08-30
    • Denso CorpHitachi Cable LtdToyota Motor Corpトヨタ自動車株式会社日立電線株式会社株式会社デンソー
    • HISHIDA YASUYUKIKOBAYASHI SHIGENORISUZUKI AKIRATAKAHASHI HIROYUKI
    • G01L5/00G01L1/24
    • PROBLEM TO BE SOLVED: To provide an impact detection optical fiber sensor capable of suppressing dispersion of detection accuracy caused by deviation of an impact application direction. SOLUTION: This impact detection optical fiber sensor is equipped with an optical fiber 2 for detecting the impact; a light source connected to one end of the optical fiber 2; a light receiving machine connected to the other end of the optical fiber 2; a load concentration plate 10 provided along the longitudinal direction of the optical fiber 2, for supporting a load applied to the optical fiber 2; and a molding material 11 for covering the optical fiber 2 and the load concentration plate 10. The load concentration plate 10 is equipped with a plate body 13 formed along the longitudinal direction of the optical fiber 2, a plurality of holes 14 formed at prescribed intervals in the longitudinal direction of the plate body 13, and a connection part 15 formed between the holes 14. The connection part 15 has a hollow part 16 formed to have an approximately recessed shape as a view from the axial direction of the optical fiber 2, and the optical fiber 2 is arranged in the hollow part 16. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够抑制由冲击施加方向的偏差引起的检测精度的分散的冲击检测光纤传感器。 解决方案:该冲击检测光纤传感器配备有用于检测冲击的光纤2; 连接到光纤2的一端的光源; 连接到光纤2的另一端的光接收机; 沿着光纤2的长度方向设置的用于支撑施加到光纤2的负载的负载集中板10; 以及用于覆盖光纤2和负载集中板10的成型材料11.负载集中板10配备有沿着光纤2的长度方向形成的板体13,以规定间隔形成的多个孔14 在板体13的长度方向,以及形成在孔14之间的连接部15.连接部15具有形成为从光纤2的轴向观察的大致凹状的中空部16, 并且光纤2布置在中空部分16中。版权所有(C)2007,JPO&INPIT