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An Integrated Approach for the Sustainable Development of an Automotive Component Using CAD/CAE, DFE and DFMA Concept

机译:使用CAD / CAE,DFE和DFMA概念的汽车成分可持续发展的综合方法

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In order to render cost effective and environmentally friendly products, sustainability is gaining importance in contemporary manufacturing organizations. The rapidly changing marketplace also means that organizations are in search of integrated approaches for creating sustainable product. In this context, this paper reports a case study carried out in an automotive component of single cylinder four stroke petrol engines. The candidate product is connecting rod. The existing handle of connecting rod has been modeled using computer-aided design (CAD). Then, the sustainability analysis has been carried out on the existing component for determining the environmental impact. This is followed by the engineering analysis of the component using computer aided engineering (CAE). Then the redesign of the handle performed by using design for manufacture and assembly (DFMA) principles. The sustainability factors have been measured in terms of carbon footprint, air acidification, energy consumption, and water impacts. It has been found that the redesigned product possesses minimal environmental impact. It could be knew from the results of the case study that the implementation of DFE (design for environment) and DFMA concept could initiate new developments in sustainable product design with minimal impact on the environment. This integrated approach is considered to be valuable for its implementation in similar product development situations to achieve business benefits such as reduced cost and time which would in turn improve the profitability.
机译:为了呈现成本效益和环保的产品,可持续性在当代制造组织中取得了重要意义。快速变化的市场也意味着组织正在寻找创建可持续产品的综合方法。在这种情况下,本文报告了单缸四冲程汽油发动机的汽车成分中进行的案例研究。候选产品是连杆。连杆现有手柄采用计算机辅助设计(CAD)建模。然后,已经对现有组件进行了可持续性分析,以确定环境影响。其次是使用计算机辅助工程(CAE)的组件的工程分析。然后通过使用制造和组装(DFMA)原则的设计进行重新设计。在碳足迹,空气酸化,能量消耗和水击方面已经测量了可持续性因素。已经发现重新设计的产品具有最小的环境影响。它可以从案例研究结果中知道,DFE的实施(环境设计)和DFMA概念可以在可持续产品设计中启动新的开发,对环境的影响最小。这种综合方法被认为对其在类似产品开发局势中的实施具有重要价值,以实现商业福利,例如降低成本和时间,从而提高盈利能力。

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