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Effects of Scanning Strategy and Printing Temperature on the Compressive Behaviors of 3D Printed Polyamide-Based Composites

机译:扫描策略和印刷温度对3D印刷聚酰胺基复合材料压缩行为的影响

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摘要

In this work, the effects of scanning strategies and printing temperature on mechanical properties and crush behaviors of columns manufactured using the fused deposition modeling (FDM) technique were studied. The results showed that scanning strategy and printing temperature had significant influences on mechanical response and deformation mode of the columns. The columns printed in different scanning strategies showed significant anisotropy due to the preferred orientation of short fibers during the printing process. The columns printed in a circular direction presented the highest compressive force response. The columns printed with carbon fiber-reinforced polyamide in a circular direction showed the final oblique fracture failure mode, in which there were fiber pull-out and matrix pull-apart on fracture surfaces. Different indicators were also used to evaluate the mechanical properties and crushing characteristics of the columns. The carbon fiber reinforcement columns presented the highest energy absorption, and the glass fiber reinforcement columns showed the highest elastic modulus and yield strength. The results indicated that the scanning strategy and printing temperature not only influenced the elastic modulus and yield strength, but also affected the energy absorption performances of the columns.
机译:在这项工作中,研究了扫描策略和印刷温度对使用熔融沉积建模(FDM)技术制造的柱式机械性能和挤压行为的影响。结果表明,扫描策略和印刷温度对柱的机械响应和变形模式具有显着影响。由于在印刷过程中,在不同扫描策略中印刷的柱显示出显着的各向异性,由于短纤维的优选方向。在圆形方向上印刷的柱呈现最高的压缩力响应。用圆形方向上用碳纤维增强聚酰胺印刷的柱显示出最终的斜破裂衰竭模式,其中纤维拉出和基质拉伸在裂缝表面上。还用于评估柱的机械性能和破碎特性的不同指标。碳纤维增强柱呈现最高能量吸收,玻璃纤维增​​强柱显示出最高弹性模量和屈服强度。结果表明,扫描策略和印刷温度不仅影响了弹性模量和屈服强度,而且影响了柱的能量吸收性能。

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