持续性
减色
田口方法
碳足迹
工艺工程
物流
过程(计算)
能源消耗
制造工程
3D打印
生命周期评估
稳健性(进化)
熔融沉积模型
工程类
计算机科学
机械工程
可靠性工程
工程制图
生产(经济)
温室气体
艺术
生态学
生物化学
化学
电气工程
宏观经济学
机器学习
基因
经济
视觉艺术
生物
操作系统
作者
Marwan Khalid,Qingjin Peng
摘要
Abstract Additive manufacturing (AM) offers many advantages to make objects compared to traditional subtractive manufacturing methods. For example, complex geometries can be easily fabricated, and lightweight parts can be formed while maintaining the parts strength for the low carbon footprint, low material consumption and waste. But there are some areas for AM to improve in sustainability, reliability, productivity, robustness, material diversity, and part quality. Life-cycle assessment studies have identified that the AM printing stage has a big impact on the life-cycle sustainability of 3D printed products. AM building parameters can be properly selected to improve the sustainability of AM. This paper explores the fused deposition modeling (FDM) process parameters for sustainability to reduce the process energy and material consumption. Investigated parameters include the printing layer height, number of shells, material infilling percentage, infilling type, and building orientation. Taguchi design of experiments approach and statistical analysis tools are used to find optimal parameter settings to improve the sustainability of the FDM process. Models formulated in this research can be easily extended to other AM processes.
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