Tammaro Daniele, Ballesteros Alberto, Walker Claudio, Reichelt Norbert, Trommsdorff Ulla
Department of Chemical, Materials and Production Engineering, University of Naples Federico II, P.le Tecchio 80, 8008 Napoli, Italy.
Sulzer Chemtech, Else-Züblinstrasse 11, 8404 Winterthur, Switzerland.
Polymers (Basel). 2022 Jan 5;14(1):205. doi: 10.3390/polym14010205.
We explore the foam extrusion of expanded polypropylene with a long chain branched random co-polypropylene to make its production process simpler and cheaper. The results show that the presence of long chain branches infer high melt strength and, hence, a wide foamability window. We explored the entire window of foaming conditions (namely, temperature and pressure) by means of an ad-hoc extrusion pilot line design. It is shown that the density of the beads can be varied from 20 to 100 kg/m using CO and isobutane as a blowing agent. The foamed beads were molded by steam-chest molding using moderate steam pressures of 0.3 to 0.35 MPa independently of the closed cell content. A characterization of the mechanical properties was performed on the molded parts. The steam molding pressure for sintering expanded polypropylene beads with a long chain branched random co-polypropylene is lower than the one usually needed for standard polypropylene beads by extrusion. The energy saving for the sintering makes the entire manufacturing processes cost efficient and can trigger new applications.
我们研究了采用长链支化无规共聚聚丙烯对发泡聚丙烯进行泡沫挤出,以使其生产过程更简单、成本更低。结果表明,长链支链的存在赋予了高熔体强度,从而具有较宽的发泡窗口。我们通过专门设计的挤出中试生产线探索了整个发泡条件范围(即温度和压力)。结果表明,使用二氧化碳和异丁烷作为发泡剂时,珠粒的密度可在20至100千克/立方米之间变化。发泡珠粒采用蒸汽箱模塑法进行模塑,使用0.3至0.35兆帕的适度蒸汽压力,与闭孔含量无关。对模塑部件进行了机械性能表征。用长链支化无规共聚聚丙烯烧结发泡聚丙烯珠粒所需的蒸汽模塑压力低于通常通过挤出法生产标准聚丙烯珠粒所需的压力。烧结过程中的节能使得整个制造过程具有成本效益,并能催生新的应用。