首页> 外文会议>ASME international mechanical engineering congress and exposition >VEHICLE MASS OPTIMIZATION FOR FRONTAL STRUCTURE USING I-SIGHT AND STUDY OF WELD PARAMETERIZATION FOR MASS IMPROVEMENT
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VEHICLE MASS OPTIMIZATION FOR FRONTAL STRUCTURE USING I-SIGHT AND STUDY OF WELD PARAMETERIZATION FOR MASS IMPROVEMENT

机译:基于I-Sight的车体质量优化及改进车体焊接参数化研究

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In order to meet the Federal Motor Vehicle Safety Standards (FMVSS) requirement, the frontal structure of the vehicle needs to be design to maximize energy absorption in the presence powertrain design layout constraint. This needs the basis for structural optimization using a pragmatic approach. With regards to passive safety of a vehicle, there is a constant increase of the requirements to the BIW (Body in White) stiffness in ever greater extent, without a significant increase in vehicle weight. The primary objective of this study is to demonstrate mass optimization in a virtual tryout chain and generate optimized analytical model that can be leveraged in future assessment of a car. For this, a parameter investigation concerning variation of input data is done using I-sight. Simplified model of the bumper subsystem is developed for the offset crash test to serve as a base for the creation of designs by changing design variables. The optimization is carried out using I-sight to explore design space for this subsystem. Finally the effectiveness of optimized bumper subsystem is examined using full vehicle impact test. The focus of the work is further promoting the trend for light weight construction by weld optimization. Overall, this virtual tryout leads in sustainability by lighter transport on road, thus saving fuel and reducing emission.
机译:为了满足联邦机动车辆安全标准(FMVSS)的要求,需要对车辆的前部结构进行设计,以在存在动力总成设计布局约束的情况下最大程度地吸收能量。这需要使用务实方法进行结构优化的基础。关于车辆的被动安全性,对BIW(白车身)刚度的要求不断增加,而且没有显着增加车辆重量。这项研究的主要目的是演示虚拟试车链中的质量优化,并生成可用于未来汽车评估的优化分析模型。为此,使用I-sight进行了有关输入数据变化的参数调查。保险杠子系统的简化模型用于偏移碰撞测试,可作为通过更改设计变量来创建设计的基础。使用I-sight进行优化,以探索该子系统的设计空间。最后,使用完整的车辆碰撞测试来检查优化的保险杠子系统的有效性。工作的重点是通过焊接优化进一步促进轻质结构的发展趋势。总体而言,这种虚拟试车通过公路上的轻载运输实现了可持续性,从而节省了燃料并减少了排放。

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