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由发泡聚丙烯珠体制成的无蒸汽和基于蒸汽的试样的力学性能比较。

Comparison of Mechanical Properties of Steam-Free and Steam-Based Specimens Made of Expanded Polypropylene Beads.

作者信息

Handtke Sören, Hain Jörg, Fischer Fabian, Ossowski Tim, Dröder Klaus

机构信息

Volkswagen AG, Berliner Ring 2, 38440 Wolfsburg, Germany.

Institute of Machine Tools and Production Technology, Technische Universität Braunschweig, Langer Kamp 19b, 38106 Braunschweig, Germany.

出版信息

Polymers (Basel). 2024 Jan 31;16(3):400. doi: 10.3390/polym16030400.

Abstract

Reducing the CO emissions of plastic parts is crucial in terms of sustainable product and process designs. Approaches include the use of recycled materials and reducing the energy demands of processes through more efficient technologies. In this context, this study shows the potential of the steam-free processing of particle foam beads into thin-walled moulded parts. Expanded polypropylene (EPP) particle foam beads have been processed in both a steam-free and steam-based process. For this purpose, specimens with different part densities and thicknesses were produced, the mechanical properties were investigated, and the surface quality was discussed. Specimens made of EPP with a part thickness of 5 to 20 mm and part densities of 60 to 185 g/L were produced steam-free. Lower part thicknesses and higher densities increase the mechanical properties. As the density increased, the homogeneity of the surfaces of the steam-free specimens also increased. In comparison, specimens with a thickness of 10 mm and part densities of 35 to 90 g/L were produced on a steam-based process. The results of the mechanical test were compared with those of the steam-free specimens. The steam-based specimens showed higher mechanical properties for the same density.

摘要

就可持续产品和工艺设计而言,降低塑料部件的一氧化碳排放量至关重要。方法包括使用回收材料以及通过更高效的技术降低工艺的能源需求。在此背景下,本研究展示了将颗粒泡沫珠粒无蒸汽加工成薄壁成型部件的潜力。发泡聚丙烯(EPP)颗粒泡沫珠粒已通过无蒸汽和基于蒸汽的工艺进行加工。为此,制作了具有不同部件密度和厚度的试样,研究了其机械性能,并讨论了表面质量。制作了壁厚为5至20毫米、部件密度为60至185克/升的无蒸汽EPP试样。较低的部件厚度和较高的密度会提高机械性能。随着密度的增加,无蒸汽试样表面的均匀性也会提高。相比之下,在基于蒸汽的工艺中制作了厚度为10毫米、部件密度为35至90克/升的试样。将力学测试结果与无蒸汽试样的结果进行了比较。对于相同的密度,基于蒸汽的试样显示出更高的机械性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31d3/10857073/c3e4eeabd3a7/polymers-16-00400-g001.jpg

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