首页> 外文会议>ASME International Mechanical Engineering Congress and Exposition >ACCELERATION AMPLIFICATION IN SAFETY BELT BUCKLE SYSTEMS
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ACCELERATION AMPLIFICATION IN SAFETY BELT BUCKLE SYSTEMS

机译:安全带扣系统中的加速放大

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Multi-planar rollover accidents report belt usage rates that are noted to be significantly lower than that of planar crash modes. One explanation for this dramatic difference in reported belt usage in rollovers as compared to planar crashes is that highway patrol officers often conclude that an ejection would not have occurred had the occupant been belted. Restrained occupants can be ejected from the vehicle if the seat belts fail to restrain occupants as a result of belt spool out or buckle unlatching. Previous studies have documented the susceptibility of certain safety belt buckles to inertially unlatch. Under sufficient vertical accelerations, top button safety belt buckles have inertially unlatched in testing which would obviously negate the safety belts ability to restrain the occupant. This study expands on the mechanisms that could lead to inertial release under vertical loading in safety belt buckle systems with stiff attachments to the vehicle floor. An audio transducer was attached to a vehicle floorpan to induce accelerations at variable frequency and amplitude. Accelerations were recorded at the floorpan and safety belt buckle body simultaneously. Accelerations measured at the buckle body were up to 13 times greater than the accelerations measured at the floor pan for frequencies up to 8.5 kHz. The present sutdy provides a first step to better understand the injury biomechanics by quantifying the accelerations at the floor pan and safety belt buckle.
机译:多平面翻车事故报告所指出的是显著比平面碰撞模式下带使用率。在翻车报告的安全带使用率,这种巨大差异的一种解释相比,平面崩溃的是,高速公路巡警常常得出结论,喷射就不会发生了乘员被束带。约束乘员可以从车辆,如果安全带无法抑制乘员作为带卷轴出来或带扣的解锁的结果被喷射。以前的研究已经证明某些安全带扣的易感性惯性解锁。在足够的垂直加速度,顶部的按钮安全带的扣环,测试这显然否定安全带约束乘员的能力具有惯性解锁。对可能导致惯性释放期竖向荷载下的安全带锁扣系统与硬附件车辆地板的机制,这项研究展开。音频换能器被连接到车辆底盘上,以诱导在可变频率和幅度的加速度。加速度是在底盘上和安全带锁扣体同时记录。在带扣主体测量的加速度分别达到比在底板测量频率高达8.5千赫的加速度大13倍。本sutdy提供了第一步,通过在底板和安全带锁扣量化的加速度更好地理解损伤生物力学。

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