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A coherent life cycle assessment of a range of lightweighting strategies for compact vehicles

机译:紧凑型车辆一系列轻量化策略的一致生命周期评估

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A complete and fully consistent LCA-based comparison of a range of lightweighting options for compact passenger vehicles is presented and discussed, using advanced lightweight materials (Al, Mg and carbon fibre composites), and including all life cycle stages and a number of alternative end-of-life scenarios. Results underline the importance of expanding the analysis beyond the use phase, and point to maximum achievable reductions of environmental impact of approximately 7% in most impact categories. In particular, lightweighting strategies based on the use of aluminium were found to be the most robust and consistent in terms of reducing the environmental impacts (with the notable exception of a relatively high potential toxicity). The benefits of using magnesium instead appear to be less clear-cut, and strongly depend on achieving the complete phase-out of SF6 in the metal production process, as well as the establishment of a separate closed-loop recycling scheme. Finally, the use of carbon fibre composites leads to similar environmental benefits to those achieved by using Al, albeit generally at a higher economic cost. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出并讨论了基于LCA的紧凑型乘用车轻量化选项的完整,完全一致的比较,其中使用了先进的轻量化材料(Al,Mg和碳纤维复合材料),包括所有生命周期阶段和许多替代方案生活场景。结果强调了将分析扩展到使用阶段以外的重要性,并指出在大多数影响类别中,可以最大程度地减少约7%的环境影响。特别是,在减少环境影响方面(最显着的例外是相对较高的潜在毒性),基于铝的轻量化策略被认为是最可靠,最一致的。相反,使用镁的好处似乎不太明确,并且强烈依赖于在金属生产过程中完全淘汰SF6,以及建立单独的闭环回收计划。最后,尽管通常以较高的经济成本使用碳纤维复合材料,但与使用Al所获得的环境益处相似。 (C)2015 Elsevier Ltd.保留所有权利。

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