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A material selection approach to evaluate material substitution for minimizing the life cycle environmental impact of vehicles

机译:一种评估材料替代的材料选择方法,以最大程度地减少车辆的生命周期对环境的影响

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摘要

Weight reduction is commonly adopted in vehicle design as a means for energy and emissions savings. However, selection of lightweight materials is often focused on performance characteristics, which may lead to sub optimizations of life cycle environmental impact. Therefore systematic material selection processes are needed that integrate weight optimization and environmental life cycle assessment. This paper presents such an approach and its application to design of an automotive component. Materials from the metal, hybrid and polymer families were assessed, along with a novel self-reinforced composite material that is a potential lightweight alternative to non-recyclable composites. It was shown that materials offering the highest weight saving potential offer limited life cycle environmental benefit due to energy demanding manufacturing. Selection of the preferable alternative is not a straightforward process since results may be sensitive to critical but uncertain aspects of the life cycle. Such aspects need to be evaluated to determine the actual benefits of lightweight design and to base material selection on more informed choices.
机译:减轻重量通常在车辆设计中用作节省能源和排放的手段。但是,轻质材料的选择通常侧重于性能特征,这可能导致生命周期环境影响的次优。因此,需要系统的材料选择过程,将重量优化和环境生命周期评估相结合。本文介绍了这种方法及其在汽车零部件设计中的应用。评估了金属,杂化和聚合物家族中的材料,以及一种新型的自增强复合材料,该材料是不可回收复合材料的潜在轻质替代品。结果表明,由于耗能的制造,具有最大减重潜力的材料只能提供有限的生命周期环境效益。选择最佳替代方案并不是一个简单的过程,因为结果可能对生命周期的关键但不确定的方面敏感。需要评估这些方面,以确定轻量化设计的实际好处,并根据更明智的选择来选择材料。

著录项

  • 来源
    《Materials & design》 |2015年第15期|704-712|共9页
  • 作者单位

    KTH, Royal Institute of Technology, Division of Environmental Strategies Research, Stockholm, Sweden;

    KTH, Royal Institute of Technology, Department of Aeronautical and Vehicle Engineering, Stockholm, Sweden;

    KTH, Royal Institute of Technology, Division of Environmental Strategies Research, Stockholm, Sweden;

    KTH, Royal Institute of Technology, Department of Aeronautical and Vehicle Engineering, Stockholm, Sweden,University of Cambridge, Engineering Department, Cambridge, United Kingdom;

    KTH, Royal Institute of Technology, Department of Aeronautical and Vehicle Engineering, Stockholm, Sweden;

    KTH, Royal Institute of Technology, Department of Aeronautical and Vehicle Engineering, Stockholm, Sweden;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lightweight design; Material selection; Life cycle assessment; Sandwich structures; Self-reinforced composites;

    机译:轻巧的设计;材料选择;生命周期评估;三明治结构;自增强复合材料;

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