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3D Printing of a Self-Healing Thermoplastic Polyurethane through FDM: From Polymer Slab to Mechanical Assessment

机译:3D通过FDM打印自愈热塑性聚氨酯:从聚合物板到机械评估

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摘要

The use of self-healing (SH) polymers to make 3D-printed polymeric parts offers the potential to increase the quality of 3D-printed parts and to increase their durability and damage tolerance due to their (on-demand) dynamic nature. Nevertheless, 3D-printing of such dynamic polymers is not a straightforward process due to their polymer architecture and rheological complexity and the limited quantities produced at lab-scale. This limits the exploration of the full potential of self-healing polymers. In this paper, we present the complete process for fused deposition modelling of a room temperature self-healing polyurethane. Starting from the synthesis and polymer slab manufacturing, we processed the polymer into a continuous filament and 3D printed parts. For the characterization of the 3D printed parts, we used a compression cut test, which proved useful when limited amount of material is available. The test was able to quasi-quantitatively assess both bulk and 3D printed samples and their self-healing behavior. The mechanical and healing behavior of the 3D printed self-healing polyurethane was highly similar to that of the bulk SH polymer. This indicates that the self-healing property of the polymer was retained even after multiple processing steps and printing. Compared to a commercial 3D-printing thermoplastic polyurethane, the self-healing polymer displayed a smaller mechanical dependency on the printing conditions with the added value of healing cuts at room temperature.
机译:使用自我愈合(SH)聚合物制作3D印刷的聚合物部件,提供了增加3D印刷部件的质量的潜力,并通过其(按需)动态性质增加了它们的耐用性和损坏耐受性。然而,由于其聚合物结构和流变复杂性,这种动态聚合物的3D印刷不是直接的过程,并且在实验室规模中产生的有限量。这限制了自我愈合聚合物的全部潜力的探索。在本文中,我们介绍了室温自愈合聚氨酯的融合沉积建模的完整过程。从合成和聚合物板制造开始,我们将聚合物加工成连续丝和3D印刷部件。为了表征3D印刷部件,我们使用了压缩剪切试验,这在有限的材料可用时证明有用。该测试能够准确地评估散装和3D印刷样品及其自我愈合行为。 3D印刷自愈合聚氨酯的机械和愈合行为高于散装SH聚合物的机械和愈合行为。这表明即使在多次加工步骤和印刷之后,也可以保留聚合物的自愈性。与商业3D印刷热塑性聚氨酯相比,自愈合聚合物在印刷条件下显示较小的机械依赖性,在室温下愈合切割的附加值。

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