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Full-Scale Moving Motorcycle into Moving Car Crash Testing for Use in Safety Design and Accident Reconstruction

机译:全面移动摩托车进入动车碰撞测试,用于安全设计和事故重建

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Test methods for vehicle safety development are either based on the movement of a vehicle into a stationary barrier or the movement of a barrier into a stationary vehicle. When deemed necessary, a two-moving-vehicle impact is approximated by modifying the impact motion between the moving and stationary objects. For example, the Federal Motor Vehicle Safety Standard (FMVSS) 214 side-impact crash test procedure approximates the lateral impact of a moving vehicle into the side of another moving vehicle by using a moving barrier with wheels crabbed so that the velocity vector of the barrier is not collinear with its longitudinal axis. Such approximations are valid when the post-impact motions of the two vehicles are not to be evaluated. Similarly, the published data indicates that historic analyses of motorcycle accidents and the advancements in motorcycle safety designs have been based, in large part, on single-moving-vehicle crash tests. However, and as will be described in the following research, the accuracy of the post-impact motion of the motorcycle and automobile is important for evaluating the post-impact kinematics of the motorcycle rider. For two-moving-vehicle accidents, the rotation of the motorcycle front wheel and the resulting asymmetric compression and deformation of the front forks affects the post-impact motion of the motorcycle rider and the deformation of both the motorcycle and the other vehicle. As such, it is preferred to conduct two-moving crash tests when evaluating these post-impact kinematics. Furthermore, unlike when an automobile impacts another automobile, when a motorcycle impacts an automobile, the front tire and wheel of the motorcycle are often directly involved in the engagement. Because the rotation of the front wheel and the compression of the front suspension of the motorcycle may be critical factors in evaluating the impact, it is difficult to accurately approximate a two-moving impact involving a motorcycle with a single-moving test. Exponent's Test and Engineering Center has been conducting moving motorcycle into moving car crash tests for many years and has developed the methodology for conducting such tests for a wide variety of speeds and impact orientations. Along the way, a significant amount has been learned about the post impact motion of the motorcycle, the kinematics of the rider, and the evidence available for analysis when a motorcycle is involved in a two-moving-vehicle impact. A greater understanding of the differences between two-moving-vehicle impacts involving motorcycles and single-moving-vehicle impacts involving motorcycles has also developed. This paper presents the method used and a selection of the results derived from a series of moving-motorcycle into moving-car crash tests. The tests included were conducted at speeds representing urban travel and highway travel and provide data that is useful in the evaluation of crash events with variations in the impact angle and initial point of contact between vehicles.
机译:车辆安全开发的测试方法基于车辆进入固定屏障或屏障移动到固定车辆中的运动。当被视为必要时,通过修改移动和固定物体之间的冲击运动来近似双移动车辆冲击。例如,联邦机动车辆安全标准(FMVS)214侧面冲击碰撞试验程序通过使用带有轮子的移动屏障将移动车辆的横向冲击近似于移动屏障与龟管的移动屏障,使得屏障的速度向量不与纵向轴线相连。当不评估两个车辆的后冲击运动时,这种近似是有效的。同样,已发布的数据表明,大部分摩托车事故的历史分析以及摩托车安全设计的进步一直基于单人车辆碰撞试验。然而,如将在下面的研究中描述,摩托车和汽车后冲击运动的准确性对于评估摩托车骑手的后冲击运动学是重要的。对于双移动式车辆事故,摩托车前轮的旋转和所得到的前叉的变形影响摩托车骑车者的后冲击运动和摩托车和其他车辆的变形。因此,当评估这些后冲击运动学时,优选进行两次移动的碰撞试验。此外,与汽车影响另一汽车时,当摩托车影响汽车时,摩托车的前轮胎和车轮通常直接参与接合。因为前轮的旋转和摩托车的前悬架的压缩可能是评估撞击时的关键因素,所以难以准确地近似涉及具有一次移动测试的摩托车的双运动冲击。指数的测试和工程中心一直在进行移动摩托车进入移动的汽车碰撞测试,并且已经开发了用于对各种速度和影响方向进行此类测试的方法。一路上,已经了解了摩托车的后撞击运动,骑车者的运动学的后撞击运动,以及当摩托车涉及双移动式冲击时,可以进行分析的证据。还开发了对涉及摩托车涉及摩托车的双移动式车辆的差异和涉及摩托车的单机撞击的差异。本文介绍了所使用的方法和选择从一系列移动摩托车进入移动车祸测试的结果。所包括的测试是在代表城市旅行和公路旅行的速度下进行的,并提供有助于评估碰撞事件的数据,其中具有车辆之间的冲击角和初始接触点的变化。

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