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用于医疗应用的光固化PolyJet矩阵技术制造的模型的计量质量和机械性能分析

Analysis of Metrological Quality and Mechanical Properties of Models Manufactured with Photo-Curing PolyJet Matrix Technology for Medical Applications.

作者信息

Kozior Tomasz, Bochnia Jerzy, Gogolewski Damian, Zmarzły Paweł, Rudnik Mateusz, Szot Wiktor, Szczygieł Paweł, Musiałek Mateusz

机构信息

Faculty of Mechatronics and Mechanical Engineering, Kielce University of Technology, 25-314 Kielce, Poland.

出版信息

Polymers (Basel). 2022 Jan 20;14(3):408. doi: 10.3390/polym14030408.

Abstract

This paper presents the metrological quality and mechanical properties of models in the form of hook holders manufactured from MED610 polymer material using PolyJet Matrix (PJM) technology. Measurements in the dimensional and shape analysis were made using the optical method with a microscope. The mechanical test was estimated by static tensile testing of the fabricated parts. A comprehensive approach to both the analysis of test results based on standardized samples and real hook models makes the presented results of great scientific and engineering value and creates the possibility of practical use in the medical industry, which has not been so comprehensively presented in the currently published research papers. Analyzing the results of measurements of the geometrical characteristics of the elements, it can be concluded that the PolyJet Matrix 3D printing technology has demonstrated a high level of precision in manufacturing the prototype parts. The static tensile test of samples, taking into account the printing directions, showed a high anisotropy of mechanical properties. The results of both strength and simulation tests indicate that it is necessary to assume a relatively high safety factor, the value of which depends on the direction of printing, which, in the case of such a responsible medical application, is very important.

摘要

本文介绍了采用PolyJet Matrix(PJM)技术由MED610聚合物材料制成的钩形固定器形式模型的计量质量和力学性能。尺寸和形状分析中的测量使用显微镜通过光学方法进行。通过对制造部件的静态拉伸试验来评估力学性能测试。基于标准化样品和实际钩形模型对测试结果进行综合分析的方法,使得所呈现的结果具有巨大的科学和工程价值,并创造了在医疗行业实际应用的可能性,而目前已发表的研究论文中尚未如此全面地呈现这一点。通过分析元件几何特征的测量结果,可以得出结论,PolyJet Matrix 3D打印技术在制造原型部件方面显示出了高精度水平。考虑到打印方向的样品静态拉伸试验表明力学性能具有高度各向异性。强度测试和模拟测试的结果都表明有必要假定一个相对较高的安全系数,其值取决于打印方向,在这种责任重大的医疗应用中,这一点非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7bd/8839167/77bfbd95962b/polymers-14-00408-g001.jpg

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