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A new lightweight design method integrating shape optimization with life cycle assessment for extrusion dies

机译:一种新的轻量化设计方法,将形状优化与生命周期评估相结合,用于挤压模具

摘要

Extrusion dies, in which melted raw materials are forced continuously into a profile to produce various plastic products, are often empirically designed leading to overweight and waste in materials, energy and emissions. Lightweight design method has been applied to reduce weight and increase material efficiency of extrusion dies at design stage. However, the research work was often focused on weight reduction with function requirements as the design constricts. Environmental impacts (EIs) over the entire life cycle of dies are not considered, as a result, it may result in environmental burdens being shifted from design stage to other stages of life cycle of products. Aiming at it, a new lightweight design method is proposed to integrate life cycle assessment (LCA) with shape optimization. The optimization mathematic models for the proposed method are developed, in which the EIs of extrusion dies are modeled as a function of shape variables and processing parameters. An example of extrusion dies for plastic pipe was presented to illustrate the effectiveness of the proposed method. The results showed that 13% weight reduction whist achieving reduction in EIs over the life cycle of dies in comparison with 18% weight reduction yet 29% increase in EIs at manufacturing stage and resultant increase in EIs over the life cycle using conventional lightweight design method in which EIs are not taken into account. It indicated that the proposed lightweight method could have great potentials to reduce weight and prevent environmental burdens shift problem.
机译:挤出模具中,熔融的原材料被连续不断地压制成型,以生产各种塑料产品,通常是凭经验设计的,从而导致材料,能源和排放物超重和浪费。在设计阶段,已采用轻量化设计方法来减轻重量并提高挤压模的材料效率。但是,研究工作通常集中在减轻重量以及满足设计要求的功能要求上。没有考虑到模具整个生命周期的环境影响(EI),因此,可能导致环境负担从产品生命周期的设计阶段转移到其他阶段。为此,提出了一种新的轻量化设计方法,该方法将生命周期评估(LCA)与形状优化集成在一起。建立了所提出方法的优化数学模型,其中,挤压模具的EI被建模为形状变量和加工参数的函数。以塑料管挤出模具为例,说明了该方法的有效性。结果表明,与传统的轻量化设计方法相比,在模具的整个生命周期中,EI的减少量减少了13%,而在制造阶段,EI的减少量减少了18%,而EI的增加量却增加了29%。不考虑哪些EI。这表明所提出的轻量化方法在减轻重量和防止环境负担转移问题方面具有很大的潜力。

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