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Rheology of high melt strength polypropylene for additive manufacturing

机译:用于增材制造的高熔体强度聚丙烯的流变性

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摘要

Rheological measurements of high melt strength polypropylene (HMS-PP) were used in order to generate master curves describing the shear-dependent viscosity in comparison to acrylonitrile butadiene styrene copolymer (ABS). The latter material showed specific disadvantages in terms of thermal stability, whereas HMS-PP showed a more stable behavior at the investigated temperatures. Hereafter, the material was used in a fused deposition modeling additive manufacturing process, focusing on the investigation of possible improvements of HMS-PP over ABS. Based on the extrusion parameters for ABS, adapted parameters for HMS-PP were determined using a fused deposition modeling test bench. The rheological survey clearly showed changes in the melt viscosity of both ABS and HMS-PP due to thermal degradation. However, the comparison of rheological data of the virgin materials with those of printed material showed negligible changes. This leads to the conclusion that the thermal degradation of HMS-PP and ABS during the fused deposition modeling process is negligible, due to the short exposure time to elevated temperatures. Copyright © 2017 VBRI Press.
机译:使用高熔体强度聚丙烯(HMS-PP)的流变学测量值来生成描述与丙烯腈-丁二烯-苯乙烯共聚物(ABS)相比,剪切依赖性粘度的主曲线。后一种材料在热稳定性方面显示出特定的缺点,而HMS-PP在所研究的温度下显示出更稳定的行为。此后,该材料用于熔融沉积建模增材制造工艺,重点是研究HMS-PP相对于ABS可能的改进。基于ABS的挤出参数,使用熔融沉积建模测试台确定HMS-PP的适应参数。流变学研究清楚地表明,由于热降解,ABS和HMS-PP的熔体粘度均发生了变化。然而,原始材料与印刷材料的流变数据的比较显示可忽略不计的变化。这得出结论,由于在高温下暴露时间短,在熔融沉积建模过程中HMS-PP和ABS的热降解可以忽略不计。版权所有©2017 VBRI Press。

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