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用于3D打印(熔融沉积成型/熔丝制造)长丝的二硫化钼改性聚乳酸

Molybdenum Disulphide Modified Polylactide for 3D Printed (FDM/FFF) Filaments.

作者信息

Kujawa Maciej, Głowacka Julia, Pawlak Wojciech, Sztorch Bogna, Pakuła Daria, Frydrych Miłosz, Sokolska Justyna, Przekop Robert E

机构信息

Faculty of Mechanical Engineering, Wroclaw University of Science and Technology, Wybrzeże Stanisława Wyspiańskiego 27, 50-370 Wroclaw, Poland.

Faculty of Chemistry, Adam Mickiewicz University in Poznań, Uniwersytetu Poznańskiego 8, 61-614 Poznan, Poland.

出版信息

Polymers (Basel). 2023 May 9;15(10):2236. doi: 10.3390/polym15102236.

Abstract

MoS is an additive used to improve the tribological properties of plastics. In this work, it was decided to verify the use of MoS as a modifier of the properties of PLA filaments used in the additive FDM/FFF technique. For this purpose, MoS was introduced into the PLA matrix at concentrations of 0.025-1.0% by weight. Through extrusion, a fibre with a diameter of 1.75 mm was obtained. 3D printed samples with three different filling patterns were subjected to comprehensive thermal (TG, DSC and HDT), mechanical (impact, bending and strength tests), tribological and physicochemical characteristics. The mechanical properties were determined for two different types of fillings, and samples with the third type of filling were used for tribological tests. Tensile strength has been significantly increased for all samples with longitudinal filling with improvement up to 49%. In terms of tribological properties, higher values of the addition (0.5%) caused a significant increase of up to 457% of the wear indicator. A significant improvement in processing properties in terms of rheology was obtained (416% compared to pure PLA with the addition of 1.0%), which translated into more efficient processing, increased interlayer adhesion and mechanical strength. As a result, the quality of printed objects has been improved. Microscopic analysis was also carried out, which confirmed the good dispersion of the modifier in the polymer matrix (SEM-EDS). Microscopic techniques (MO, SEM) allowed for the characterization of the effect of the additive on changes in the printing process (improvement of interlayer remelting) and to assess impact fractures. In the tribological area, the introduced modification did not bring spectacular effects.

摘要

二硫化钼是一种用于改善塑料摩擦学性能的添加剂。在本研究中,决定验证二硫化钼作为添加剂熔融沉积成型/熔丝制造(FDM/FFF)技术中使用的聚乳酸(PLA)长丝性能改性剂的用途。为此,将二硫化钼以0.025 - 1.0%重量浓度引入PLA基体中。通过挤出,获得了直径为1.75毫米的纤维。对具有三种不同填充模式的3D打印样品进行了全面的热学(热重分析(TG)、差示扫描量热法(DSC)和热变形温度(HDT))、力学(冲击、弯曲和强度测试)、摩擦学和物理化学特性分析。针对两种不同类型的填充物测定了力学性能,第三种填充物类型的样品用于摩擦学测试。对于所有纵向填充的样品,拉伸强度显著提高,提高幅度高达49%。在摩擦学性能方面,较高添加量(0.5%)使磨损指标显著提高,增幅高达457%。在流变学方面,加工性能得到了显著改善(与添加1.0%的纯PLA相比提高了416%),这转化为更高效的加工、增加的层间附着力和机械强度。结果,打印物体的质量得到了改善。还进行了微观分析,证实了改性剂在聚合物基体中的良好分散(扫描电子显微镜-能谱分析(SEM-EDS))。微观技术(偏光显微镜(MO)、扫描电子显微镜(SEM))能够表征添加剂对打印过程变化的影响(层间再熔化的改善)并评估冲击断裂情况。在摩擦学领域,引入的改性并未带来显著效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8359/10222440/91227cb913c8/polymers-15-02236-g001.jpg

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