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通过在3D打印模具上复合纤维层压实现个性化关节矫形器的快速成型

Rapid Prototyping of Personalized Articular Orthoses by Lamination of Composite Fibers upon 3D-Printed Molds.

作者信息

Munoz-Guijosa Juan Manuel, Zapata Martínez Rodrigo, Martínez Cendrero Adrián, Díaz Lantada Andrés

机构信息

Composites and Nanocomposites Laboratory, Mechanical Engineering Department, Universidad Politécnica de Madrid; 28006 Madrid, Spain.

Product Development Laboratory, Mechanical Engineering Department, Universidad Politécnica de Madrid; 28006 Madrid, Spain.

出版信息

Materials (Basel). 2020 Feb 20;13(4):939. doi: 10.3390/ma13040939.

Abstract

Advances in additive manufacturing technologies and composite materials are starting to be combined into synergic procedures that may impact the biomedical field by helping to achieve personalized and high-performance solutions for low-resource settings. In this article, we illustrate the benefits of 3D-printed rapid molds, upon which composite fibers can be laminated in a direct and resource-efficient way, for the personalized development of articular splints. The rapid mold concept presented in this work allows for a flexible lamination and curing process, even compatible with autoclaves. We demonstrate the procedure by completely developing an autoclave-cured carbon fiber-epoxy composite ankle immobilizing, supporting, or protecting splint. These medical devices may support patients in their recovery of articular injuries and for promoting a more personalized medical care employing high-performance materials, whose mechanical response is analyzed and compared to that of commercial devices. In fact, this personalization is fundamental for enhanced ergonomics, comfort during rehabilitation, and overall aesthetics. The proposed design and manufacturing strategies may support the low-cost and user-centered development of a wide set of biomedical devices and help to delocalize the supply chain for involving local populations in the development of medical technology.

摘要

增材制造技术和复合材料的进展开始被整合到协同程序中,这可能通过帮助为资源匮乏地区实现个性化和高性能解决方案来影响生物医学领域。在本文中,我们阐述了3D打印快速模具的优势,复合纤维可以以直接且资源高效的方式层压在该模具上,用于个性化定制关节夹板。本文提出的快速模具概念允许进行灵活的层压和固化过程,甚至与高压灭菌器兼容。我们通过完全开发一种经高压灭菌器固化的碳纤维 - 环氧树脂复合踝关节固定、支撑或保护夹板来演示该过程。这些医疗设备可以帮助患者恢复关节损伤,并采用高性能材料促进更个性化的医疗护理,我们分析了其机械响应并与商业设备进行了比较。事实上,这种个性化对于提高人体工程学、康复过程中的舒适度以及整体美观性至关重要。所提出的设计和制造策略可以支持多种生物医学设备的低成本和以用户为中心的开发,并有助于使供应链本地化,让当地居民参与医疗技术的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15b2/7079611/93403a58b7dd/materials-13-00939-g001.jpg

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