A Study on the Effect of Multistage Toolpath in Fabricating a Customized Cranial Implant in Incremental Sheet Metal Forming

Mohamed I. Fahad, Ahmed Z. M. Shammari, Ramdziah binti Md Nasir
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Abstract

Incremental sheet forming (ISF) process offers a high degree of flexibility in the manufacturing of different sheet parts, which makes it an ideal candidate for prototype parts as well as efficient at fabricating various customized products at low production costs compared to traditionally used processes. However, parts produced in this process exhibit notable geometrical inaccuracy and considerable thickness reduction. In this paper, the single point incremental sheet forming variant of the process has been implemented to manufacture a highly customized cranial implant starting from the computed tomography (CT) scan data of the patient's anatomy. A methodology, from the modeling to the realization of the implant, is presented and discussed. The primary aim of the research was to analyze and study the effect of the multistage toolpath strategy compared to the traditional single-stage toolpath in terms of geometrical accuracy and thickness distribution. The final results show that the part formed in the multistage toolpath strategy exhibited a more uniform thickness distribution compared to the single-stage approach. Regarding the geometrical accuracy, the deviation analysis between the nominal and actual data has revealed that the multistage forming has significantly enhanced the final geometrical accuracy of the formed part.
渐进式钣金成形中多级刀具路径加工定制颅骨种植体的效果研究
增量薄板成形(ISF)工艺在制造不同薄板零件时提供了高度的灵活性,这使其成为原型零件的理想选择,并且与传统使用的工艺相比,它可以以低生产成本高效地制造各种定制产品。然而,在此过程中生产的零件表现出明显的几何精度和相当大的厚度减少。在本文中,该过程的单点增量片状成形变体已被实施,以制造高度定制的颅骨植入物,从患者解剖结构的计算机断层扫描(CT)扫描数据开始。从建模到植入体的实现,提出并讨论了一种方法。研究的主要目的是分析和研究多级刀轨策略与传统单级刀轨相比在几何精度和厚度分布方面的影响。结果表明,采用多级刀路成形的零件比采用单级刀路成形的零件具有更均匀的厚度分布。在几何精度方面,通过对标称数据与实际数据的偏差分析,表明多级成形显著提高了成形件的最终几何精度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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