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热处理对 3D 打印 PLA 机械性能的影响。

Effect of heat treatment on mechanical properties of 3D printed PLA.

机构信息

Department of Mechanical Engineering, Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Coimbatore, India.

Department of Mechanical Engineering, Amrita School of Engineering, Amrita Vishwa Vidyapeetham, Coimbatore, India.

出版信息

J Mech Behav Biomed Mater. 2021 Nov;123:104764. doi: 10.1016/j.jmbbm.2021.104764. Epub 2021 Aug 11.

Abstract

Polylactic acid (PLA) is one of the predominant filaments used in the process of 3D printing which is a type of Additive Manufacturing (AM) technology in which a printer prints the semi-molten filament on the bed, layer by layer forming a part of the desired dimension. The final 3D printed parts generally have lower mechanical properties than conventional manufacturing techniques such as injection moulding. The primary reasons for the comparatively poor mechanical property are the poor formation of bonds between inter-filaments and the residual thermal stresses induced due to the temperature difference while 3D printing the filament. Heat treatment of the 3D printed part can significantly reduce the internal stresses developed during the process of printing and also improve the formation of bonds between inter-filaments. The mechanical properties of the PLA, particularly tensile properties can be enhanced to about 80% by heat treating to about 100 °C for 4 h. Heat distortion temperature (HDT) test is used to analyze the heat resistance of the specimens. HDT test also showed an improvement of the heat resistance of heat-treated parts compared to the non-heat treated of about 73%. There is a significant improvement in the mechanical properties just by heat-treating the 3D printing parts compared to the parts that were not heat treated.

摘要

聚乳酸(PLA)是 3D 打印过程中使用的主要细丝之一,3D 打印是一种增材制造(AM)技术,其中打印机在床层上打印半熔融细丝,逐层形成所需尺寸的一部分。最终的 3D 打印零件通常具有比传统制造技术(如注塑成型)更低的机械性能。机械性能相对较差的主要原因是细丝之间的结合形成较差,以及 3D 打印细丝时由于温差而产生的残余热应力。对 3D 打印零件进行热处理可以显著降低打印过程中产生的内应力,并改善细丝之间的结合形成。通过热处理,PLA 的机械性能,特别是拉伸性能,可以提高到约 80%,将 PLA 加热到约 100°C 并保持 4 小时。热变形温度(HDT)测试用于分析试样的耐热性。与未经热处理的试样相比,HDT 测试还表明,热处理后的试样的耐热性提高了约 73%。与未经热处理的零件相比,仅通过对 3D 打印零件进行热处理,就可以显著提高机械性能。

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