将带有陶瓷涂层的三维打印件用作神经学工具--初步研究。

Acta of bioengineering and biomechanics Pub Date : 2024-04-16 Print Date: 2024-06-01 DOI:10.37190/abb-02390-2024-02
Arkadiusz Szarek, Justyna Łukomska-Szarek, Grzegorz Stradomski, Maciej Nadolski, Wojciech Wolański, Kamil Joszko, Katarzyna Nowakowska-Langier, Sebastian Okrasa, Dawid Larysz, Patrycja Larysz
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引用次数: 0

摘要

目的:本文展示了对生物相容性聚合物打印部件基本强度参数的初步研究,这些部件使用了陶瓷层以提高工具切削表面的强度。研究方法试样由不同材料制成,采用不同的三维打印技术,最终形成工具切割元件的工作表面涂有 Al2O3。进行了光泽度测试、涂层性能测试、涂层表面划痕测试以及表面形貌评估。结果:研究发现,聚合物材料具有足够的强度,可用于一次性工具,但使用薄层 Al2O3 可显著提高表面强度参数,这可能会对工具的可靠性和耐用性产生重大影响。根据芯材和印刷技术的不同,覆有 Al2O3 层的聚合物表面的抗划伤性提高了 24% 至 75%。与目前使用的金属工具相比,其表面光泽度低得不成比例,这表明它们可用于内窥镜手术。结论根据所进行的研究发现,使用薄层 Al2O3 覆盖聚合物三维打印件是提高强度参数(如抗划伤性、摩擦学参数)的绝佳方法,与金属生物材料相比,内窥镜照明在表面产生的光反射小得不成比例。这为将聚合物三维打印技术用于个性化神经外科工具带来了巨大希望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Usage of 3D prints with ceramic coating applied as neurological tools - preliminary research.

Purpose: The paper shows a preliminary study of the basic strength parameters of printed parts made of biocompatible polymers with ceramic layers applied to increase the strength of the tool cutting surface. Methods: The specimens were made from different materials and using different 3D printing technologies and the working surfaces that will eventually form the cutting element of the tool were coated with Al2O3. Gloss tests were conducted, properties of the coating, a scratch test of the coated surface, also evaluated surface to-pography. Results: Based on the conducted research, it was found that polymeric materials are characterized by sufficient strength and can be used for disposable tools, however, the use of thin layers of Al2O3 significantly increases the surface strength parameters, which may have a significant impact on the reliability and durability of the tools. The polymer surface covered with an Al2O3 layer is characterised by increased scratch resistance ranging from 24% to 75% depending on the core material and printing technology. The gloss of the surfaces is disproportionately low compared to currently used metal tools, which indicates that they can be used in endoscopic procedures. Conclusions: Based on the conducted research, it was found that the use of thin layers of Al2O3 covering polymer 3D prints is an excellent way to increase strength parameters such as scratch resistance, tribological parameters and light reflections arising on the surface as a result of endoscopic lighting are disproportionately small compared to metallic biomaterials. This gives great hope for using polymer 3D prints for personalised neurosurgical tools.

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