Improving the Impact Resistance through Annealing in PLA 3D Printed Parts

IF 1.5 0 ENGINEERING, MULTIDISCIPLINARY Engineering, Technology & Applied Science Research Pub Date : 2023-10-13 DOI:10.48084/etasr.6281
Dragos Gabriel Zisopol, Alexandra Ileana Portoaca, Maria Tanase
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Abstract

This study conducts an experimental exploration and thorough analysis of the influence of annealing on the impact resistance of PLA 3D-printed components. The investigation extends its scope to encompass the influence of printing parameters, specifically layer thickness and infill percentage. The research highlights that the impact resistance of annealed 3D printed PLA components is predominantly influenced by the infill percentage, with the highest impact energy observed at a full 100% infill. It is noticeable that the application of annealing post-processing heat treatment results in a remarkable, up to threefold, increase of the impact energy highlighting its potential efficacy as a viable technique for enhancing the mechanical integrity of PLA 3D printed products. Consequently, this study establishes annealing as a promising methodology, particularly for PLA 3D printing applications that encounter significant mechanical loads.
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通过退火提高PLA 3D打印件的抗冲击性能
本研究对退火对PLA 3d打印部件抗冲击性能的影响进行了实验探索和深入分析。研究扩展了其范围,包括印刷参数的影响,特别是层厚度和填充率。研究强调,退火3D打印PLA部件的抗冲击性主要受填充率的影响,当填充率达到100%时,冲击能最高。值得注意的是,退火后处理热处理的应用导致冲击能量显著增加,高达三倍,突出了其作为提高PLA 3D打印产品机械完整性的可行技术的潜在功效。因此,本研究确定退火是一种有前途的方法,特别是对于遇到重大机械负荷的PLA 3D打印应用。
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来源期刊
Engineering, Technology & Applied Science Research
Engineering, Technology & Applied Science Research ENGINEERING, MULTIDISCIPLINARY-
CiteScore
3.00
自引率
46.70%
发文量
222
审稿时长
11 weeks
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