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使用新型热固化挤出式打印机对硅胶半月板植入物进行3D直接打印。

3D Direct Printing of Silicone Meniscus Implant Using a Novel Heat-Cured Extrusion-Based Printer.

作者信息

Luis Eric, Pan Houwen Matthew, Sing Swee Leong, Bajpai Ram, Song Juha, Yeong Wai Yee

机构信息

Singapore Centre for 3D Printing, School of Mechanical and Aerospace Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.

School of Chemical and Biomedical Engineering, Nanyang Technological University, 70 Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Polymers (Basel). 2020 May 1;12(5):1031. doi: 10.3390/polym12051031.

Abstract

The first successful direct 3D printing, or additive manufacturing (AM), of heat-cured silicone meniscal implants, using biocompatible and bio-implantable silicone resins is reported. Silicone implants have conventionally been manufactured by indirect silicone casting and molding methods which are expensive and time-consuming. A novel custom-made heat-curing extrusion-based silicone 3D printer which is capable of directly 3D printing medical silicone implants is introduced. The rheological study of silicone resins and the optimization of critical process parameters are described in detail. The surface and cross-sectional morphologies of the printed silicone meniscus implant were also included. A time-lapsed simulation study of the heated silicone resin within the nozzle using computational fluid dynamics (CFD) was done and the results obtained closely resembled real time 3D printing. Solidworks one-convection model simulation, when compared to the on-off model, more closely correlated with the actual probed temperature. Finally, comparative mechanical study between 3D printed and heat-molded meniscus is conducted. The novel 3D printing process opens up the opportunities for rapid 3D printing of various customizable medical silicone implants and devices for patients and fills the current gap in the additive manufacturing industry.

摘要

据报道,首次成功地使用生物相容性和生物可植入硅树脂对热固化硅酮半月板植入物进行直接3D打印,即增材制造(AM)。传统上,硅酮植入物是通过间接硅酮铸造和成型方法制造的,这些方法既昂贵又耗时。本文介绍了一种新型的定制热固化挤出式硅酮3D打印机,它能够直接对医用硅酮植入物进行3D打印。详细描述了硅树脂的流变学研究以及关键工艺参数的优化。还包括打印的硅酮半月板植入物的表面和横截面形态。利用计算流体动力学(CFD)对喷嘴内加热的硅树脂进行了延时模拟研究,所得结果与实时3D打印非常相似。与开关模型相比,Solidworks单对流模型模拟与实际探测温度的相关性更高。最后,对3D打印和热成型半月板进行了对比力学研究。这种新型3D打印工艺为为患者快速3D打印各种可定制的医用硅酮植入物和设备提供了机会,并填补了增材制造行业目前的空白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cec4/7285157/c07bc30dcc51/polymers-12-01031-g001.jpg

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