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首页> 外文期刊>International journal of production economics >Cost modeling and analysis for Mask Image Projection Stereolithography additive manufacturing: Simultaneous production with mixed geometries
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Cost modeling and analysis for Mask Image Projection Stereolithography additive manufacturing: Simultaneous production with mixed geometries

机译:掩模图像投影立体光刻增材制造的成本建模和分析:混合几何的同时生产

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摘要

Additive manufacturing has obtained widespread and continuously increasing interest, owing to its distinguished advantages (e.g., reduced material waste and enhanced manufacturing complexity) compared to traditional manufacturing processes. Currently, the implementation of additive manufacturing in the industrial sector is limited to small-scale production with high customization level. In current literature, the cost analysis for complex production layouts especially with mixed geometries are not fully studied, and some popular additive manufacturing processes are not well investigated for end-performance. Therefore in this paper, a comprehensive cost model is established to theoretically evaluate the cost performance of the Mask Image Projection Stereolithography process for simultaneously fabricating multiple mixed geometries. In addition, an optimization problem is formulated to reduce the additive manufacturing costs considering the set of decision variables (layer thickness and surface stratification angle) under the constraints of production throughput and part quality. The case study results indicate that 26% of cost savings can be achieved by solving the proposed optimization problem. Furthermore, a sensitivity analysis is conducted which shows that the raw material unit price and the initial investment on additive manufacturing hardware and software are the main cost drivers.
机译:与传统制造工艺相比,增材制造由于其显着的优势(例如,减少了材料浪费和制造复杂性)而获得了广泛且持续增长的兴趣。当前,在工业部门中实施增材制造仅限于具有高定制水平的小规模生产。在当前的文献中,对复杂生产布局(尤其是具有混合几何形状)的成本分析还没有进行充分的研究,对某些流行的增材制造工艺的最终性能也没有进行充分的研究。因此,本文建立了一个综合成本模型,从理论上评估了同时制造多个混合几何形状的掩模图像投影立体光刻工艺的成本性能。此外,在生产量和零件质量的约束下,考虑了一组决策变量(层厚度和表面分层角度),提出了一个优化问题以降低增材制造成本。案例研究结果表明,通过解决建议的优化问题,可以节省26%的成本。此外,进行了敏感性分析,表明原材料单价以及增材制造硬件和软件的初始投资是主要的成本驱动因素。

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