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Sustainability assessment of machining process based on extension theory and entropy weight approach

机译:基于扩展理论和熵权法的加工过程可持续性评估

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摘要

The development of sustainability assessment for machining process is considered as one of the crucial strategies to realize sustainable design and manufacturing, while existing methods focusing on environmental assessment have limits due to neglect economic and social impacts. This paper proposes an assessment approach for evaluating sustainability performance of machining process with respect to a consistent set of environmental, economic, and social criteria in order to select a machining strategy from sustainable manufacturing viewpoint. Sustainability assessment criteria are identified to compare different machining parameter alternatives; cutting noise, especially, is defined as an important criterion of social impact, and energy, lubricant oil, and cutting fluids consumption are identified as criteria of environmental impact. Additionally, the weights of criteria are determined using entropy weight approach with the advantage of objective evaluation by exploiting the useful information of data to a maximum extent. Furthermore, sustainability performance of machining process is calculated based on extension theory through utilizing correlation function between evaluated matter-element and classical field matter-element. Face milling test conducted on CNC vertical machining center not only illustrates validity of the proposed method for assisting the engineers or designers to define sustainability performance of machining process, but also proves the relationship between cutting parameters and cutting noise.
机译:机加工过程可持续性评估的发展被认为是实现可持续性设计和制造的关键策略之一,而现有的环境评估方法由于忽略了经济和社会影响而受到限制。本文提出了一种评估方法,用于根据一套一致的环境,经济和社会标准评估加工过程的可持续性表现,以便从可持续制造的角度选择加工策略。确定可持续性评估标准以比较不同的加工参数替代方案;尤其是切削噪声被定义为社会影响的重要标准,而能源,润滑油和切削液的消耗被确定为环境影响的标准。此外,利用熵权方法确定标准的权重,并通过最大程度地利用数据的有用信息来进行客观评估。进而,利用被评估物元与经典场物元之间的相关函数,基于可拓理论计算出加工过程的可持续性。在数控立式加工中心进行的端面铣削试验不仅说明了所提出的方法的有效性,该方法可帮助工程师或设计师定义加工过程的可持续性,而且证明了切削参数与切削噪声之间的关系。

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