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Effects of Environmental Impact Based on Alternative Materials and Process Selection in Automotive Components Design

机译:汽车零部件设计中基于替代材料和工艺选择的环境影响

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摘要

Recent literature in automotive research indicates that studies of the environmental impact mostly concern with metal-based components. Environmental effects are mainly analysed using “environmental performance indicators” and “life cycle assessment” techniques. Therefore a knowledge gap in the field of studying automotive plastic components should be conducted based on analysing material and manufacturing processes selection at the design stage. The research is focused on a plastic component previously unexplored and analyses it using tools that have not been employed for this application. A computer-aided tool was used to model the part and its associated sustainability function was used to analyse its environmental impact. The component was analysed using different materials and manufacturing processes, then redesigned to be more ergonomic. The improved component design was manufactured using rapid prototyping and a consumer preference survey was conducted to determine which component was preferred. The research found that by changing the material to high density polyethylene there would be approximately a 30% reduction in carbon footprint, 24% reduction in air acidification, 26% reduction in water eutrophication and 15% reduction in total energy consumption. Injection moulding is found to be the most sustainable manufacturing process.
机译:汽车研究的最新文献表明,对环境影响的研究主要涉及金属基部件。主要使用“环境绩效指标”和“生命周期评估”技术来分析环境影响。因此,应在设计阶段对材料和制造工艺选择进行分析的基础上,进行汽车塑料部件研究领域的知识鸿沟。研究集中于以前未开发的塑料部件,并使用尚未用于此应用程序的工具对其进行分析。使用计算机辅助工具对零件进行建模,并使用其关联的可持续性功能分析其环境影响。使用不同的材料和制造工艺对组件进行了分析,然后重新设计以更符合人体工程学。改进后的组件设计是使用快速原型制造的,并且进行了消费者偏好调查以确定哪个组件是首选的。研究发现,通过将材料更改为高密度聚乙烯,碳足迹将减少约30%,空气酸化减少24%,水富营养化减少26%,总能耗减少15%。发现注塑是最可持续的制造过程。

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