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Mass Customization: Reuse of Digital Slicing for Additive Manufacturing

机译:大规模定制:重复使用数字切片进行增材制造

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摘要

Additive manufacturing, also known as three-dimensional (3D) printing, enables production of complex customized shapes without requiring specialized tooling and fixture, and mass customization can then be realized with larger adoption. The slicing procedure is one of the fundamental tasks for 3D printing, and the slicing resolution has to be very high for fine fabrication, especially in the recent developed continuous liquid interface production (CLIP) process. The slicing procedure is then becoming the bottleneck in the prefabrication process, which could take hours for one model. This becomes even more significant in mass customization, where hundreds or thousands of models have to be fabricated. We observe that the customized products are generally in a same homogeneous class of shape with small variation. Our study finds that the slicing information of one model can be reused for other models in the same homogeneous group under a properly defined parameterization. Experimental results show that the reuse of slicing information has a maximum of 50 times speedup, and its utilization is dropped from more than 90% to less than 50% in the prefabrication process.
机译:增材制造(也称为三维(3D)打印)可以生产复杂的自定义形状,而无需专门的工具和固定装置,然后可以通过更大的采用率实现批量定制。切片程序是3D打印的基本任务之一,对于精细制造,切片分辨率必须非常高,尤其是在最近开发的连续液体界面生产(CLIP)工艺中。这样,切片过程就成为了预制过程中的瓶颈,一个模型可能要花费数小时。这在大规模定制中变得尤为重要,在大规模定制中,必须制造数百或数千个模型。我们观察到,定制产品通常具有相同的同类形状,且变化很小。我们的研究发现,在适当定义的参数设置下,一个模型的切片信息可以在同一个同类组中用于其他模型。实验结果表明,切片信息的重用速度最多可提高50倍,并且在预制过程中其利用率从90%以上降至50%以下。

著录项

  • 来源
    《Journal of Computing and Information Science in Engineering》 |2017年第2期|021009.1-021009.8|共8页
  • 作者单位

    Epstein Department of Industrial and Systems Engineering, University of Southern California, Los Angeles, CA 90089;

    Department of Industrial and Systems Engineering, University at Buffalo, The State University of New York, Buffalo, NY 14260;

    Epstein Department of Industrial and Systems Engineering, University of Southern California, Los Angeles, CA 90089;

    Department of Industrial and Systems Engineering, University at Buffalo, The State University of New York, Buffalo, NY 14260;

    Department of Industrial and Systems Engineering, University at Buffalo, The State University of New York, Buffalo, NY 14260;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mass customization; slicing; 3D printing; additive manufacturing; CLIP; parameterization;

    机译:大规模定制;切片3D打印添加剂制造;夹;参数化;

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