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衰老对聚乳酸及聚乳酸-X 3D打印材料弯曲强度的影响

Influence of Aging on the Flexural Strength of PLA and PLA-X 3D-Printed Materials.

作者信息

Mitrović Nenad, Golubović Zorana, Mitrović Aleksandra, Travica Milan, Trajković Isaak, Milošević Miloš, Petrović Aleksandar

机构信息

University of Belgrade, Faculty of Mechanical Engineering, 11000 Belgrade, Serbia.

The Academy of Applied Technical Studies, 11000 Belgrade, Serbia.

出版信息

Micromachines (Basel). 2024 Mar 14;15(3):395. doi: 10.3390/mi15030395.

Abstract

The three-point bending test is a valuable method for evaluating the mechanical properties of 3D-printed biomaterials, which can be used in various applications. The use of 3D printing in specimen preparation enables precise control over material composition and microstructure, facilitating the investigation of different printing parameters and advanced materials. The traditional approach to analyzing the mechanical properties of a material using a three-point bending test has the disadvantage that it provides only global information about the material's behavior. This means that it does not provide detailed insight into the local strain distribution within the material. However, the 2D Digital Image Correlation (DIC) method offers additional insight, especially in terms of strain localization. DIC is an optical technique that measures full-field displacements and strains on the surface of a sample. PLA and enhanced PLA-X material were utilized to create three-point bending samples. The aim of this paper was to analyze and compare the influence of aging on the mechanical properties of PLA and enhanced PLA-X materials using three-point bending coupled with the DIC method. The results showed statistically significant differences between the PLA and PLA-X, for both the new and aged materials. The aged PLA samples had the highest average value of maximal force around 68 N, which was an increase of 8.8% compared to the new PLA samples. On the other hand, the aged PLA-X material had an increase of 7.7% in the average maximal force compared to the new PLA-X samples. When comparing the two materials, the PLA samples had higher maximal force values, 6.2% for the new samples, and 7.3% for the aged samples. The DIC results showed that both the new PLA and PLA-X samples endured higher strain values at Points 1 and 2 than the aged ones, except for the aged PLA-X sample at Point 2, where the new sample had higher strain values. However, for the first 5 min of the experiment, both materials exhibited identical behavior, after which point significant differences started to occur for both materials, as well as at Points 1 and 2. A more profound comprehension of the biomechanical characteristics of both PLA and PLA-X material is essential to enhance the knowledge for potential biomedical applications. The DIC method was found to be a powerful tool for analyzing the deformation and failure behavior of samples and for complementing the traditional approach to material testing.

摘要

三点弯曲试验是评估3D打印生物材料力学性能的一种有价值的方法,可用于各种应用。在试样制备中使用3D打印能够精确控制材料组成和微观结构,便于研究不同的打印参数和先进材料。使用三点弯曲试验分析材料力学性能的传统方法的缺点是,它仅提供有关材料行为的整体信息。这意味着它无法深入了解材料内部的局部应变分布。然而,二维数字图像相关(DIC)方法提供了更多见解,特别是在应变局部化方面。DIC是一种光学技术,用于测量样品表面的全场位移和应变。利用聚乳酸(PLA)和增强型PLA-X材料制作三点弯曲试样。本文的目的是通过三点弯曲试验结合DIC方法,分析和比较老化对PLA和增强型PLA-X材料力学性能的影响。结果表明,无论是新材料还是老化材料,PLA和PLA-X之间均存在统计学上的显著差异。老化的PLA试样的最大力平均值最高,约为68 N,与新的PLA试样相比增加了8.8%。另一方面,与新的PLA-X试样相比,老化的PLA-X材料的平均最大力增加了7.7%。比较这两种材料时,PLA试样的最大力值更高,新试样高6.2%,老化试样高7.3%。DIC结果表明,除了老化的PLA-X试样在第2点处新试样的应变值更高外,新的PLA和PLA-X试样在第1点和第2点处承受的应变值均高于老化试样。然而,在实验的前5分钟,两种材料表现出相同的行为,此后两种材料以及第1点和第2点开始出现显著差异。更深入地了解PLA和PLA-X材料的生物力学特性对于增强潜在生物医学应用的知识至关重要。DIC方法被发现是分析样品变形和失效行为以及补充传统材料测试方法的有力工具。

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