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Design, finite element analysis (FEA), and fabrication of custom titanium alloy cranial implant using electron beam melting additive manufacturing

机译:使用电子束熔化添加剂制造设计,有限元分析(FEA),以及定制钛合金颅植入的制造

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摘要

Skull defect reconstruction is one of the most difficult challenges faced by the surgeons because of the complex shape of the skull. Skull defects are dramatically increasing with the increase in road accidents, tumors, and wars, thereby increasing the demand for reconstruction of skull. It is difficult to manufacture standard implants for skull defects especially for large and complex defects, due to the complexity and the difference in anatomy of skulls. Design and fabrication of custom cranial implant is required in these cases. The conventional technologies face multiple challenges in fabricating lightweight custom cranial implants closer to that of bone in terms of weight; the difference in the weight introduces stress-shielding effects onto the surrounding bone. In order to overcome this problem, several researches proposed lattice structure implants fabricated by additive manufacturing. However, lattice structure implants are difficult to remove later when some problems are encountered. This paper presents a methodology of design analysis and fabrication of solid lightweight custom cranial implant using additive manufacturing. A Case study is presented where, a custom cranial implant is designed and analysed using finite element analysis (FEA) and then fabricated using electron beam melting (EBM) additive manufacturing. The titanium alloy Ti6Al4V which is biocompatible and non-toxic is used as the implant material. The functionality, fitting, and aesthetic of the proposed design are evaluated. The results show the successful fabrication of thin custom cranial implant for skull defect reconstruction via EBM technology. The fabricated implant has sufficient strength, weight close to the weight of the removed bone portion while maintaining a good fit and aesthetics. (C) 2018 CPE, University of Maribor. All rights reserved.
机译:骷髅缺陷重建是外科医生面临的最困难的挑战之一,因为头骨的复杂形状。随着道路事故,肿瘤和战争的增加,颅骨缺陷显着增加,从而提高了对颅骨重建的需求。由于颅骨解剖学的复杂性和差异,难以制造用于颅骨缺陷的标准植入物,特别是对于大而复杂的缺陷。在这些情况下需要设计和制造定制颅植入物。传统技术在制造轻质定制颅骨植入物方面面临多种挑战,在重量方面较近骨骼的植入物。重量的差异将应力屏蔽效应引入周围骨骼上。为了克服这个问题,几项研究提出了通过添加剂制造制造的晶格结构植入物。然而,当遇到一些问题时,晶格结构植入物难以删除。本文介绍了使用添加剂制造的固体轻质定制颅植入的设计分析和制造的方法。提出了一种案例研究,使用有限元分析(FEA)设计和分析了定制颅植入物,然后使用电子束熔化(EBM)添加剂制造。使用生物相容性和无毒的钛合金Ti6Al4V用作植入物质。评估所提出的设计的功能,拟合和美学。结果表明,通过EBM技术成功地制造了薄的定制颅骨植入物,通过EBM技术进行颅骨缺陷重建。制造的植入物具有足够的强度,重量接近除去的骨部分的重量,同时保持良好的配体和美观。 (c)2018年CPE,马里博大学。版权所有。

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