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首页> 外文期刊>International journal of sustainable engineering >Initial analysis of cost, energy and carbon dioxide emissions in single point incremental forming - producing an aluminium hat
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Initial analysis of cost, energy and carbon dioxide emissions in single point incremental forming - producing an aluminium hat

机译:对单点渐进成形中的成本,能源和二氧化碳排放进行初步分析-生产铝制帽子

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摘要

In this paper, an initial analysis of cost, energy and carbon dioxide (CO_2) emissions that occur in producing a unique aluminium hat using single point incremental forming (SP1F) for two scenarios is performed. The aluminium hat was custom designed and made from Al-3003 O and is formed using a custom steel alloy SP1F tool and vertical computer numeric control (CNC) mill. The second scenario (S2) involved doubling the feed rate and step down increment of the first scenario (SI), as well as using an eco-benign lubricant. The cost and energy used for the SPIF process without labour were found to be $4.48 and 4580 kJ (1.27kWh) for SI and $4.10 and 1420 kJ (0.39 kWh) for S2, respectively. The respective direct electrical energy required for making the hat was only 16% and 27% of the total required process energy for SI and S2. Using virgin or traditional emission intensity inputs for the tool, lubricant, workpiece and energy, the embodied CO_2 from the process was found to be 4.48 kg Co_2e for SI. However, using 33% recycled aluminium, an eco-benign lubricant and a remanufactured tool resulted in an embodied CO_2 of 3.24 kg CO_2e or a 28% CO_2 savings for the same process parameters. Similarly, in S2, the embodied CO_2 was found to be 4.28 kg CO_(2e) for traditional inputs and 3.09 kg CO_(2e) for modified inputs. Comparing S1 traditional and S2 modified, there is a reduction in energy use and CO_2 by 69% and 31 % accordingly. As expected, the stock material dominated the embodied CO_2 and cost, but the energy consumed was the next highest contributor. Future work will consider optimal parameters for cost, energy and embodied CO_2 minimisation.
机译:本文对两种情况下使用单点增量成型(SP1F)生产独特的铝制帽子时发生的成本,能量和二氧化碳(CO_2)排放进行了初步分析。铝制帽子是由Al-3003 O定制设计和制造的,并使用定制的钢合金SP1F工具和立式计算机数控(CNC)铣床形成。第二种情况(S2)包括将第一种情况(SI)的进给速度提高一倍,并逐步降低增量,以及使用一种环保的润滑剂。 SI的SPIF工艺的成本和能量分别为4.48美元和4580 kJ(1.27kWh),S2为4.10美元和1420 kJ(0.39 kWh)。制作帽子所需的直接电能分别仅为SI和S2所需总处理能量的16%和27%。使用原始的或传统的排放强度输入的工具,润滑剂,工件和能源,过程中所含的CO_2对SI为4.48 kg Co_2e。但是,使用33%的回收铝,生态友好型润滑剂和再制造的工具,在相同的工艺参数下,可实现的CO_2为3.24 kg CO_2e,或节省了28%的CO_2。同样,在S2中,对于传统的输入,具体体现的CO_2为4.28 kg CO_(2e),对于修改的输入,为3.09 kg CO_(2e)。与传统的S1和改良的S2相比,能源使用量和CO_2分别减少了69%和31%。正如预期的那样,库存材料主要体现了所体现的CO_2和成本,但消耗的能源是第二大贡献者。未来的工作将考虑成本,能源和具体CO_2最小化的最佳参数。

著录项

  • 来源
    《International journal of sustainable engineering》 |2012年第3期|p.188-198|共11页
  • 作者

    K. Branker; D. Adams; J. Jeswiet;

  • 作者单位

    Department of Mechanical and Materials Engineering, Queen's University, Kingston, Ontario, Canada, K7L3N6;

    Department of Mechanical and Materials Engineering, Queen's University, Kingston, Ontario, Canada, K7L3N6;

    Department of Mechanical and Materials Engineering, Queen's University, Kingston, Ontario, Canada, K7L3N6,Australian National University, Canberra, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    single point incremental forming; carbon dioxide; energy; cost;

    机译:单点增量成型;二氧化碳;能源;成本;

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