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Characterisation of fused deposition modeling 3D printers for pharmaceutical and medical applications

机译:制药和医疗应用融合沉积建模3D打印机的特征

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摘要

Fused deposition modeling (FDM) is a promising 3D printing technique for the fabrication of personalized drug dosage forms and patient-specific implants. However, there are no market products produced by FDM available at this time. One of the reasons is the lack of a consistent and harmonized approval procedure. In this study, three FDM printers have been characterised with respect to printing parameters relevant for pharmaceutical and medical applications, namely the positioning, hot-end temperature, material residence time, printing velocity and volumetric material flow. The printers are the Ultimaker 2 (UM2), the PRotos v3 (PR3) as well as an in-house developed printer (IDP). The positioning results showed discrepancies between the printers, which are mainly based on different types of drive systems. Due to comparable utilised hot-ends and nozzle geometries, the results for the temperature and residence time distribution measurements were quite similar. The IDP has a high positioning accuracy but is limited with respect to printing velocity, while the achievable material volume flows were different for all printers. The presented characterisation method aims to contribute to the development of a harmonized equipment qualification framework for FDM printers, which could lead to an acceleration and facilitation of an approval procedure for 3D printed products.
机译:融合沉积建模(FDM)是用于制造个性化药物剂型和患者特异性植入物的有前途的3D印刷技术。但是,目前没有FDM生产的市场产品。其中一个原因是缺乏一致和统一的批准程序。在本研究中,三个FDM打印机已经表征了对药物和医疗应用相关的印刷参数,即定位,热端温度,材料停留时间,印刷速度和体积材料流动。打印机是Ultimaker 2(UM2),PROTOS V3(PR3)以及内部开发的打印机(IDP)。定位结果显示了打印机之间的差异,主要基于不同类型的驱动系统。由于采用了可比的热端和喷嘴几何形状,温度和停留时间分布测量的结果非常相似。 IDP具有高定位精度,但相对于印刷速度有限,而可实现的材料体积流量对于所有打印机不同。所呈现的特征方法旨在为FDM打印机进行统一设备资格框架的发展,这可能导致3D印刷产品的批准程序的加速和促进。

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