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A novel approach to include sustainability concepts in classical DFMA methodology for sheet metal enclosure devices

机译:一种新的方法,包括用于金属板盒装置的经典DFMA方法中的可持续性概念

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摘要

Nowadays sustainable design is a mandatory requirement in the product development process. For this reason, design methodologies are addressed to establish a close relationship between environmental, social and economic impact indicators and product features from early design stages, especially in those features related to its manufacturing. In this paper, the design for manufacturing and assembly-DFMA methodology is adapted to sheet metal enclosure devices, integrating functional and component relationships to minimize particular sustainability indicators such as energy consumption, carbon footprint, number of parts, required amount of material, assembly time and manufacturing costs. Savings with the proposed method are achieved following specific sub-tasks oriented to define new simplified product components, considering changes in manufacturing processes and re-defining mechanical connections between parts. Traditional DFMA approaches consider manufacturing and assembly issues related to a reduction of product complexity and economic savings. The proposed method aims to examine the benefits in life cycle stages such as raw material consumption, service, maintenance, upgrading and end of life-EOL. The methodology is validated through a redesign of a sheet metal industrial clock, in which the sustainability impacts are calculated from a comparison of an existent product vs. a new product development. The implementation of the method in the case study demonstrate reductions of more than 25% in product mass, consumed energy and CO2 footprint, and more than 50% in theoretical assembly time and product complexity. Sustainability indicators of the proposed method are selected from literature analysis and taking into account attributes of sheet metal enclosure devices.
机译:如今可持续设计是产品开发过程中的强制性要求。因此,解决了设计方法,以建立早期设计阶段的环境,社会和经济影响指标和产品特征之间的密切关系,特别是在与其制造业相关的这些功能中。在本文中,制造和组装-DFMA方法的设计适用于金属封闭装置,整合功能和部件关系,以最大限度地减少特定的可持续性指标,例如能量消耗,碳足迹,零件数量,所需数量的材料,组装时间和制造成本。通过面向定向的特定子任务以定义新的简化产品组件,考虑到制造过程的变化以及重新定义部件之间的机械连接,实现了所提出的方法的节省。传统的DFMA方法考虑与减少产品复杂性和经济储蓄相关的制造和装配问题。该方法旨在审查生命周期阶段(如原料消费,服务,维护,升级和Life-EOL结束等益处)。通过重新设计钣金工业时钟来验证方法,其中从存在产品与新产品开发的比较来计算可持续性影响。在案例研究中的实施方式证明了产品质量,消耗能量和CO2占地面积超过25%的减少,在理论组装时间和产品复杂性中超过50%。所提出的方法的可持续性指标选自文献分析,并考虑了钣金外壳装置的属性。

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