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Reverse engineering method for developing passenger vehicle finite element models

机译:开发乘用车有限元模型的逆向工程方法

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A methodology to develop full-vehicle representation in the form of a finite element model for crashworthiness studies has been evolved. Detailed finite element models of two passenger vehicles (1995 Chevy Lumina and 1994 Dodge Intrepid) have been created. The models are intended for studying the vehicle's behavior in full frontal, frontal offset and side impact collisions. These models are suitable for evaluating vehicle performance and occupant safety in a wide variety of impact situations and are also suitable for part and material substitution studies to support PNGV (Partnership for New Generation of Vehicles) research. The geometry for these models was created by careful scanning and digitizing of the entire vehicle. High degree of detail is captured in the BIW, the front-end components and other areas involved in frontal, frontal offset and side impact on the driver's side. Mass, center of gravity and moment of inertia were matched at the component level and at the full vehicle level. The models represent the vehicle in mass, moments of inertia and crashworthiness performance. Vehicle responses in the different crash modes 56 km/h (35 mph) frontal (NCAP), 64 km/h (40 mph) offset (IIHS) and 53.6 km/h (33.5 mph) side impact (FMVSS 214), were validated by comparing with actual vehicle test responses. Good agreement between the test results and finite element simulation was found.
机译:一种方法,以开发用于克雷什性研究的有限元模型的形式的全载体表示。已经创建了两辆乘用车的详细有限元模型(1995年Chevy Lumina和1994年闪避Intrepid)。该模型用于研究车辆在完全正面,正面偏移和侧面冲突中的行为。这些型号适用于在各种影响情况下评估车辆性能和乘员安全,也适用于部分和材料替代研究,以支持PNGV(新一代车辆的伙伴关系)研究。这些模型的几何形状是通过仔细扫描和整个车辆的数字化而产生的。 BIW,前端部件和涉及驾驶员侧的前端偏移和侧面撞击的其他区域捕获高度细节。质量,重心和惯性矩的重心在组件水平和全车辆水平上匹配。该模型代表了惯性的车辆,惯性矩和耐火性能。在不同碰撞模式下的车辆响应56 km / h(35英里/小时)正面(ncap),64km / h(40mph)偏移(IIH)和53.6 km / h(33.5英里/小时)副作用(FMVSS 214)进行了验证通过与实际车辆测试响应进行比较。测试结果与有限元模拟之间的良好一致性。

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