快速成型的可持续性分析:材料/资源和工艺角度

A. Ullah, Hiroyuki Hashimoto, A. Kubo, J. Tamaki
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引用次数: 31

摘要

快速原型(RP)的可持续性取决于模型构建材料(木质材料,光树脂等)和模型构建过程(添加过程- SLA, SLS等;和减法过程(如锯木)。本研究建立了快速成型过程的可持续性指标,该指标综合了模型材料的体积数量、模型材料初级生产的CO2足迹和资源消耗、模型制造过程的能耗和CO2排放等可持续性因素。此外,通过使用基于sla的RP技术(加法工艺)和基于木质材料的RP技术(减法工艺),从相同的3D CAD数据创建了物理模型。减法过程使用特别设计的数控机床,使用由3D CAD模型控制的圆锯去除木质材料。模型构建过程已重复为不同比例的相同的3D CAD模型。利用实验结果,对两种RP技术的可持续性指标进行了比较。结果有助于确定给定3D CAD模型和RP技术的物理模型的临界尺寸,以确保可持续性。此外,研究结果显示了在可持续制造要求方面改进各自RP技术的新途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sustainability analysis of rapid prototyping: material/resource and process perspectives
Sustainability of rapid prototyping (RP) depends on both model-building materials (wooden-materials, photo-resins, etc.) and model-building processes (additive processes – SLA, SLS, etc.; and subtractive processes – e.g., wood-sawing). In this study, a sustainability index is developed for RP processes, and this index incorporates such sustainability factors as volumetric quantity of model-building material, CO2 footprint and resource depletion of primary production of model-building material, energy consumption and CO2 emission of the model-building process. In addition, physical models have been created from the same 3D CAD data by using both SLA-based RP technology (additive process) and wooden-material-based RP technology (subtractive process). The subtractive process uses a specially designed CNC machine tool that removes the wooden-material using a circular-saw controlled by a 3D CAD model. The model-building process has been repeated for different scales of the same 3D CAD model. Using the experimental results, the sustainability index of the two RP technologies has been compared. The results help determine the critical size of a physical model of a given 3D CAD model and RP technology ensuring sustainability. In addition, the results show new avenues for improving the respective RP technologies in terms of sustainable manufacturing requirements.
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