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Achieving Light-Weight Design of Automotive Bodies with Advanced High Strength Steels via Structural Optimization

机译:通过结构优化实现具有先进高强度钢的汽车体的轻量级设计

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The development of light-weight vehicles that are safe and durable has become an imperative for the automotive industry. The complexity of the vehicle design, the variety of available material grades, and the disparate needs (imposed by energy absorption, intrusion resistance, durability and stiffness) can make the search of light-weight design quite daunting and tedious. Optimization techniques, used in conjunction with CAE analyses, can be effective in arriving at a viable design by searching a wide spectrum of alternatives in the design space. Through a case study involving mass and material optimization, it is shown that utilization of advanced high-strength steels (AHSS) can be exploited judiciously to arrive at strong, stiff, and durable automotive structures. Multiple linear load cases, along with a non-linear roof crush load are considered in this study. Sizing optimization technique has been primarily used to optimize the structure in the linear domain, and advanced high strength steels were used to improve the roof crush performance of the structure with optimized gages.
机译:安全和耐用的轻型车辆的开发已成为汽车行业的必要性。车辆设计的复杂性,各种可用材料等级和不同的需求(通过能量吸收,侵入性,耐用性和刚度施加)可以进行轻质设计的搜索相当令人生畏和繁琐。与CAE分析结合使用的优化技术,可以通过在设计空间中的广泛替代方案中搜索可行的设计来实现可行的设计。通过涉及质量和材料优化的案例研究,显示了先进的高强度钢(AHSS)的利用可以明智地利用强大,坚硬和耐用的汽车结构。在本研究中考虑多个线性负载箱,以及非线性屋顶挤压负荷。施胶优化技术主要用于优化线性结构域中的结构,采用先进的高强度钢通过优化的测量来改善结构的屋顶挤压性能。

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