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首页> 外文期刊>Journal of Applied Polymer Science >Optimization of printing parameters for improvement of mechanical and thermal performances of 3D printed poly(ether ether ketone) parts
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Optimization of printing parameters for improvement of mechanical and thermal performances of 3D printed poly(ether ether ketone) parts

机译:用于改进3D印刷聚(醚酮)零件的机械和热性能的印刷参数优化

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摘要

Many processing parameters can be adjusted to optimize the fused filament fabrication (FFF) process, a popular and widely used additive manufacturing techniques for plastic materials. Among those easily adjusted parameters are the nozzle temperature, printing speed, raster orientation, and layer thicknesses. Using poly(ether ether ketone) (PEEK) as the base material, a design of experiments analysis was performed on the main FFF parameters. A response surface methodology was applied to analyze the results and to maximize the output responses. Results have shown that the nozzle temperature is the most influential parameter on tensile properties and the crystallinity degree of printed PEEK by FFF process. Parts produced with optimized FFF parameters were then subjected to an annealing treatment to induce a relaxation of residual stress and to enhance crystallinity. The best properties for 3D printed PEEK parts were achieved with annealed parts prepared at 400 degrees C with a printing speed of 30 mm/s, 0.15 mm layer thickness and raster orientation of [0 degrees/15 degrees/-15 degrees]. The resulting parts have mechanical properties comparable to those of injected PEEK.
机译:可以调整许多加工参数以优化熔融灯丝制造(FFF)工艺,一种流行且广泛使用的塑料材料的添加剂制造技术。在那些易调节的参数中,喷嘴温度,印刷速度,光栅方向和层厚度。使用聚(醚醚酮)(PEEK)作为基材,对主FFF参数进行实验分析的设计。应用响应表面方法来分析结果并最大化输出响应。结果表明,喷嘴温度是拉伸性能最有影响力的参数,以及FFF工艺印刷PEEK的结晶度。然后对用优化的FFF参数产生的零件进行退火处理,以诱导残留应力的松弛和增强结晶度。 3D印刷PEEK零件的最佳特性是通过在400℃下制备的退火零件,印刷速度为30mm / s,0.15mm层厚度和[0度/ 15度/ -15度]的光栅方向。得到的部件具有与注射的PEEK那些相当的机械性能。

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