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首页> 外文期刊>Journal of Cleaner Production >A design of experiments approach for the optimisation of energy and waste during the production of parts manufactured by 3D printing
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A design of experiments approach for the optimisation of energy and waste during the production of parts manufactured by 3D printing

机译:设计用于通过3D打印制造零件的过程中优化能源和废物的实验方法

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Direct digital manufacture and additive manufacture has expanded from rapid prototyping into rapid production and has the possibility to produce personalised high quality products with the batch size of one. Affordable additive manufacturing machines and open source software enables a wide spectrum of users. With a populace empowered with the possibility of producing their own products, this disruptive technology will inevitably lead to a change in energy and material consumption. With such an unpredictable impact on society it is timely to consider the economic and environmental issues of growth in this sector. This work demonstrates a Design of Experiments approach for part optimisation with a consideration of scrap weight, part weight, energy consumption and production time. The main conclusion of this study was that through optimisation of machine build parameters a desired response is possible and compromises between output responses such as scrap and production time can be identified. The research also showed that identical build parameters for different designs can yield different output responses, highlighting the importance of developing design specific models. The scientific value of the work lies in the contribution of new data sets for models in additive manufacturing. Together with the optimisation method adopted, the results allow for a more detailed and accurate assessment of the economic and environmental impact of 3D printed products at the design stage. (C) 2016 Elsevier Ltd. All rights reserved.
机译:直接数字制造和增材制造已从快速原型发展到快速生产,并有可能生产批量为一个的个性化高质量产品。负担得起的增材制造机器和开源软件使广泛的用户受益。拥有生产自己产品的可能性的民众,这种破坏性技术将不可避免地导致能源和材料消耗的变化。由于对社会产生了如此不可预测的影响,因此应及时考虑该部门增长的经济和环境问题。这项工作展示了一种用于废料重量,零件重量,能耗和生产时间的零件优化设计的实验设计方法。这项研究的主要结论是,通过优化机器制造参数,可以实现理想的响应,并且可以确定输出响应(例如废料和生产时间)之间的折衷。研究还表明,针对不同设计的相同构建参数可以产生不同的输出响应,突出了开发特定于设计的模型的重要性。这项工作的科学价值在于为增材制造模型提供了新的数据集。结合采用的优化方法,结果可以在设计阶段对3D打印产品的经济和环境影响进行更详细,准确的评估。 (C)2016 Elsevier Ltd.保留所有权利。

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