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Cost-Effectiveness of a Lightweight Design for 2017-2020: An Assessment of a Midsize Crossover Utility Vehicle

机译:2017 - 2020年轻量级设计的成本效益:对中型交叉电厂车辆的评估

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In response to more stringent greenhouse gas and fuel economy standards and increasing consumer demand for fuel efficient vehicles, automobile manufacturers have identified vehicle mass reduction as a leading strategy for reducing greenhouse gas emissions and improving fuel economy. The potential for significant levels of mass reduction can only be understood using a full-vehicle analysis, partly because mass reduction in one vehicle system or part can enable additional reductions elsewhere. This paper describes a holistic approach in which the most cost-effective mass reduction ideas were selected using a structured optimization procedure, and the crash safety of the resultant design was evaluated using a full-vehicle engineering analysis. The results of this study indicate that when mass reduction strategies are considered using a full-vehicle approach, significant mass reduction can be achieved with overall cost savings while maintaining safety and without requiring the adoption of unproven technologies. For a 2010 midsize crossover utility vehicle (CUV), a 312kg mass reduction (18.3 percent of 1711kg) was found to result in direct manufacturing cost savings of $148 per vehicle, or $0.47 per kilogram. When the increased tooling costs of $23M are included, the net savings are $0.43 per kilogram. CAE model comparison and analyses were performed on the baseline and mass reduced models to demonstrate that crash worthiness would not be degraded.
机译:为了应对更严格的温室气体和燃油经济性标准,并增加了对节能汽车消费需求,汽车制造商已经确定车辆质量减少为减少温室气体排放和提高燃油经济性的主要策略。大规模削减显著水平的潜力,只能用一个整车分析,一方面是因为在一个车辆系统或部件质量降低可以在其他地方能够进一步减少可以理解。本文介绍其中最具成本效益的大规模减少想法是使用结构优化过程中选择一种全面的方法,并采用全车辆工程分析结果设计的碰撞安全性进行了评价。这项研究的结果表明,当大规模削减战略使用的是全车的做法认为,显著降低质量可以储蓄的总体成本,同时保持安全,而无需采用未经证实的技术来实现。对于2010年的中型交叉型多用途车(CUV),一个312公斤质量减少(1711千克18.3%)被发现导致$ 148每车或每公斤0.47 $直接节省制造成本。当$ 23M的增加模具成本计算在内,净储蓄是每公斤$ 0.43。 CAE模型的比较和分析在基线和质量降低模型进行证明,耐撞性不会下降。

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