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Material Selection and Structural Optimization for Lightweight Truck Trailer Design

机译:轻型卡车拖车设计的材料选择与结构优化

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This article investigates options for lightweighting truck trailers through a combination of material selection and structural optimization. Critical chassis design load cases were established and a parametric finite element (FE) model of a typical European-style 13.5 m long truck trailer built from steel I-beams was developed. The model has been used to show that existing longitudinal steel I-beams could be reduced in weight by 28% (140 kg) through shape optimization alone. The model was expanded to analyze holistic composite trailer structures. It showed that up to 67% (1,326 kg) of weight could be saved by executing shape and material optimization in unison. The approach highlights that design through parametric analysis allows for many different structural configurations to be assessed in terms of both mechanical performance and material cost. This facilitates the construction of a theoretical design space of a lightweight chassis, clarifying the weight reduction limits that could be achieved with lightweight materials and structural optimization. The lightweight trailer chassis designs proposed here are also compared against a portfolio of shorter-term strategies for trailer lightweighting. These strategies are poised to have an increasingly important role in reducing the greenhouse gas emissions of the road freight industry.
机译:本文通过材料选择和结构优化的组合调查了轻质卡车拖车的选择。建立了临界底盘设计负载案例,并开发了由钢I-梁构建的典型欧式13.5米长卡车拖车的参数有限元(FE)模型。该模型已被用于表明现有的纵向钢I梁通过单独的形状优化可以重量减少28%(140kg)。该模型扩大以分析整体复合拖车结构。它显示,通过执行形状和材料优化,可以节省高达67%(1,326千克)的重量。该方法突出显示通过参数分析设计允许在机械性能和材料成本方面进行许多不同的结构配置。这有助于建造轻质底盘的理论设计空间,阐明了轻质材料和结构优化可以实现的重量减少限制。此处提出的轻质拖车底盘设计也将与拖车轻质较短策略的组合进行比较。这些策略准备在减少道路货运的温室气体排放方面具有越来越重要的作用。

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