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Energy and Material Flow Analysis of Binder-jetting Additive Manufacturing Processes

机译:粘合剂喷射增材制造工艺的能量和材料流分析

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Manufacturing, where great amount of energy and materials are being consumed, should take response to have cleaner production and to improve its sustainability. Additive manufacturing (AM) technology shows potential to reduce environment impact as a more sustainable manufacturing method; however, the lack of well documented energy consumption and material flow data limits the development of Life-Cycle Inventory (LCI) analysis of AM technology. This paper presents an energy and material consumption model of Binder-Jetting (BJ) process. A Unit-Process (UP) level model is created and validated by experimental data to provide LCI data for further Life-Cycle Analysis (LCA) of BJ additive manufacturing processes. The accurate process model provides a tool to industry to understand the energy consumption and material efficiency aspect of the binder-jetting process and to allow comparisons with traditional processes.
机译:在消耗大量能源和材料的制造业中,应该做出响应,以实现清洁生产并改善其可持续性。增材制造(AM)技术显示出减少环境影响的潜力,这是一种更可持续的制造方法;但是,缺乏有据可查的能源消耗和物料流数据限制了AM技术的生命周期清单(LCI)分析的发展。本文提出了粘结剂喷射(BJ)工艺的能源和材料消耗模型。通过实验数据创建并验证了单位工艺(UP)级别的模型,以提供LCI数据用于BJ增材制造工艺的进一步生命周期分析(LCA)。准确的过程模型为工业界提供了一种工具,以了解粘合剂喷射过程的能耗和材料效率方面,并允许与传统过程进行比较。

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