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3D Printing For Health Wealth: Fabrication Of Custom-Made Medical Devices Through Additive Manufacturing

机译:健康和财富的3D印刷:通过添加剂制造制造定制的医疗设备

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Additive Manufacturing (AM) differs from traditional manufacturing technologies by its ability to handle complex shapes with great design flexibility. These features make the technique suitable to fabricate customized components, particularly answering specific custom needs. Although AM mainly referred to prototyping, nowadays the interest in direct manufacturing of actual parts is growing. This article shows the application of AM within the project 3DP-4H&W (3D Printing for Health & Wealth) which involves engineers and physicians for developing pediatric custom-made medical devices to enhance the fulfilling of the patients specific needs. In the project, two types of devices made of a two-component biocompatible silicone are considered. The first application (dental field) consists in a device for cleft lip and palate. The second one (audiological field) consists in an acoustic prosthesis. The geometries of the devices are based on the anatomy of the patient that is obtained through a 3D body scan process. For both devices, two different approaches were planned, namely direct AM and indirect Rapid Tooling (RT). In particular, direct AM consists in the FDM processing of silicone, while RT consists in molds FDM fabrication followed by silicone casting. This paper presents the results of the RT method that is articulated in different phases: the acquisition of the geometry to be realized, the design of the molds taking into account the casting feasibility (as casting channel, vents, part extraction), the realization of molds produced through AM, molds surface chemical finishing, pouring and curing of the silicone. The fabricated devices were evaluated by the physicians team that confirmed the effectiveness of the proposed procedure in fabricating the desired devices. Moreover, the procedure can be used as a general method to extend the range of applications to any custom-made device for anatomic districts, especially where complex shapes are present (as tracheal or ma
机译:添加剂制造业(AM)与传统制造技术的不同之处在于其能够处理具有良好设计灵活性的复杂形状。这些功能使该技术适合制造定制组件,特别是回答特定的自定义需求。虽然我主要提到了原型设计,但如今,直接制造实际部件的兴趣正在增长。本文展示了AM在项目3DP-4H&W(健康和财富3D打印)内的应用,这涉及开发儿科定制医疗设备的工程师和医生,以增强患者特定需求的实现。在该项目中,考虑由双组分生物相容性硅树脂制成的两种类型的设备。第一个申请(牙科领域)包括用于唇裂和口感的装置。第二个(听力场)在声学假体中组成。装置的几何形状基于通过3D体扫描过程获得的患者的解剖结构。对于两个设备,计划了两种不同的方法,即直接AM和间接快速工具(RT)。特别是,Direct AM由硅树脂的FDM加工组成,而RT由模具FDM制造,然后是硅氧烷铸造。本文介绍了RT方法的结果,其在不同阶段阐明:采集待实现的几何形状,模具的设计考虑到铸造可行性(作为铸造通道,通风口,零件提取),实现通过AM生产的模具,模具表面化学精加工,浇注和固化硅氧烷。由医生团队评估制造的设备,该团队证实了所提出的程序在制造所需装置方面的有效性。此外,该程序可用作将应用范围扩展到用于解剖区的任何定制装置的一般方法,特别是在存在复杂形状(如气管或MA所述)

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