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Analyzing the Environmental Consequences of Production Processes from a System of Systems Perspective: A Case of Gear Manufacturing in the Automotive Industry

机译:从系统系统视角分析生产过程的环境后果:汽车工业齿轮制造的情况

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Many research studies have been done to investigate different aspects of environmental challenges. In the product development context, there have been attempts to reduce the environmental impacts of associated activities including the production processes themselves. As a result, various technological improvements have been made and new production processes e.g. powder metallurgy technologies have been introduced that may demonstrate a lower environmental footprint compared to conventional processes e.g. cutting machining technologies. However, a production process with a lower environmental impact may lead to reducing the quality/performance attributes of the produced parts (gear) and probably of final products (transmission box). Therefore, the efforts intended to produce more sustainable products by using production processes with less environmental footprints may lead to some unintended consequences such as increased maintenance requirements and/or demand. This is a rebound effect from a system of systems (SoS) perspective. This paper aims to analyze the impacts of more environmentally friendly production processes on the total environmental impact associated with a product given they may have a negative impact on a part/product's quality and performance or usage. This paper introduces a methodological approach to analyze the environmental sustainability of a production process at a SoS level. This is done by including the entire supply chain of a product-system and its interacting systems by using the results of the attributional/consequential life cycle assessment (LCA) method. The approach validity approach is demonstrated in the case of gear manufacturing in the automotive industry.
机译:已经完成了许多研究研究来调查环境挑战的不同方面。在产品开发语境中,已经试图减少相关活动的环境影响,包括生产流程本身。结果,已经进行了各种技术改进和新的生产过程。与常规过程相比,已经引入了粉末冶金技术,其可以证明较低的环境足迹。切割加工技术。然而,环境影响较低的生产过程可能导致降低所产生的部件(齿轮)和最终产品(传输箱)的质量/性能属性。因此,通过使用较少环境足迹的生产过程产生更多可持续产品的努力可能导致一些意外后果,例如增加维护要求和/或需求。这是系统系统(SOS)视角的反弹效果。本文旨在分析更多环保生产流程对与所赋予的产品相关的环境影响的影响,他们可能对零件/产品的质量和绩效或使用产生负面影响。本文介绍了一种方法论方法,可以在SOS级别分析生产过程的环境可持续性。这通过包括产品系统的整个供应链及其相互作用系统来完成的,通过使用归因/后果周期评估(LCA)方法的结果。在汽车行业的齿轮制造的情况下,对方法有效性方法进行了证明。

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