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首页> 外文期刊>International Journal of Production Research >Energy consumption model of Binder-jetting additive manufacturing processes
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Energy consumption model of Binder-jetting additive manufacturing processes

机译:粘结剂喷射增材制造工艺的能耗模型

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摘要

Considering the potential for new product design possibilities and the reduction of environmental impacts, Additive Manufacturing (AM) processes are considered to possess significant advantages for automotive, aerospace and medical equipment industries. One of the commercial AM techniques is Binder-jetting (BJ). This technique can be used to process a variety of materials including stainless steel, ceramic, polymer and glass. However, there is very limited research about this AM technology on energy consumption aspect. This paper presents a method to build an energy consumption model for printing stage of BJ process. Mathematical analyses are performed to find out the correlation between the energy consumption and geometry of the manufactured part. Based on the analyses, total energy consumption is calculated as a function of part geometry and printing parameters. Finally, test printing is performed to check the accuracy of the model. This process model provides a tool to optimise part geometry design with respect to energy consumption.
机译:考虑到新产品设计可能性和减少环境影响的潜力,增材制造(AM)工艺被认为在汽车,航空航天和医疗设备行业具有显着优势。商业增材制造技术之一是活页夹喷射(BJ)。该技术可用于处理各种材料,包括不锈钢,陶瓷,聚合物和玻璃。然而,关于这种AM技术在能耗方面的研究非常有限。本文提出了一种建立BJ工艺印刷阶段能耗模型的方法。进行数学分析以找出能耗与所制造零件的几何形状之间的相关性。基于这些分析,可以根据零件的几何形状和印刷参数计算总能耗。最后,执行测试打印以检查模型的准确性。该过程模型提供了一种工具,可根据能耗优化零件几何设计。

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