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Identifying an opportunistic method in design for manufacturing: an experimental study on successful a on the manufacturability and manufacturing effort of design concepts

机译:识别制造业设计的机会方法:对设计概念的可制造能力和制造工作的成功实验研究

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The main objective of design for manufacturing (DfM) is to ensure and simplify the manufacturing of products to reduce manufacturing costs. The problem is that most of DfM methods address the limitations of manufacturing processes with providing design considerations to enable manufacturability, whereas successful approaches are missing to support engineers in emphasizing the unique capabilities and exploiting the potential of the manufacturing processes. Experimental studies are rare, which investigate how design engineers proceed when the design goal includes the main objectives of the DfM. Therefore, the aim of this research is to examine successful approaches of experienced engineers and inexperienced students during the consideration of DfM in the design process. The key performance indicators were manufacturability and manufacturing effort of the design concepts. A total of 27 participants took part in the experiment, from which 15 were Master’s students majoring in mechanical engineering and 12 were design engineers from ten industrial companies in Germany. The results show, that 83% of the concepts could be manufactured. The distribution in the manufacturing effort shows that design engineers as well as students designed 45% of the concepts with a high manufacturing effort. Therefore, we analyzed successful approaches of design engineers, who cleverly optimized the design and still fulfilled the function. Furthermore, the successful approaches are implemented in an opportunistic method for DfM, adopted from additive manufacturing, which can be transferred to further manufacturing processes.
机译:制造业(DFM)设计的主要目标是确保和简化产品的制造,以降低制造成本。问题是大多数DFM方法如何解决制造过程的局限性,通过提供设计考虑来实现可制造性,而成功的方法缺失支持工程师强调独特的能力和利用制造过程的潜力。实验研究很少有稀有的,调查设计工程师如何在设计目标包括DFM的主要目标时进行。因此,这项研究的目的是在考虑DFM在设计过程中考虑经验丰富的工程师和缺乏经验的学生的成功方法。关键绩效指标是设计概念的可制造性和制造工作。共有27名参与者参加了实验中,从中有15个是硕士学位的机械工程专业,12名是来自德国的十大工业公司的设计工程师。结果表明,83%的概念可以制造。制造业的分布表明,设计工程师以及学生设计了45%的概念,具有高制造业。因此,我们分析了设计工程师的成功方法,他巧妙地优化了设计,仍然实现了该功能。此外,成功的方法以从添加剂制造中采用的DFM的机会方法实施,这可以转移到进一步的制造过程中。

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