Wittmann Lisa-Maria, Kaschta Joachim, Drummer Dietmar
Department of Mechanical Engineering, Institute of Polymer Technology, Friedrich-Alexander-Universität Erlangen-Nürnberg, Am Weichselgarten 10, 91058 Erlangen, Germany.
Department of Material Science and Engineering, Institute of Polymer Materials, Friedrich-Alexander-Universität Erlangen-Nürnberg, Martenstraße 7, 91058 Erlangen, Germany.
Polymers (Basel). 2022 Aug 3;14(15):3172. doi: 10.3390/polym14153172.
Due to the lack of raw material and forced by political demand, an increasing percentage of postconsumer materials (PCR) shall be used in all processing methods in polymer technology. Thermoforming, as one of the oldest polymer-processing methods, has special requirements regarding the melt stability at high temperatures. Low melt stability affects the thermoforming in a negative manner, as the low stiffness leads the sheet to sag during the heating phase. In this study, two-layer sheets are used in order to improve melt stability of PCR material. The focus is placed on the influence of rheological properties on the biaxial stretching behavior of mono- and two-layer sheets in partially molted state. In order to create a stabilizing layer, two different thermoformable virgin materials with a melt flow rate (MFR) of 3 g/10 min and 6 g/10 min were chosen. The second layer consists of instable PCR materials with a MFR of 16 g/10min and 50 g/10 min. Rheological investigations, molecular characterization and biaxial stretching tests are used to show the benefit of two-layer sheets for processing PCR material under elongational stress. The results show that the use of two-layer sheets can improve the biaxial stretching properties, so that two-layer sheets can offer a significant potential in the processing of PCR materials in thermoforming.
由于原材料短缺以及政治需求的推动,在聚合物技术的所有加工方法中,消费后材料(PCR)的使用比例将不断增加。热成型作为最古老的聚合物加工方法之一,对高温下的熔体稳定性有特殊要求。熔体稳定性低会对热成型产生负面影响,因为低刚度会导致片材在加热阶段下垂。在本研究中,使用双层片材以提高PCR材料的熔体稳定性。重点在于流变性能对部分熔融状态下单层和双层片材双轴拉伸行为的影响。为了创建一个稳定层,选择了两种熔体流动速率(MFR)分别为3 g/10 min和6 g/10 min的可热成型原生材料。第二层由MFR为16 g/10min和50 g/10 min的不稳定PCR材料组成。通过流变学研究、分子表征和双轴拉伸试验来展示双层片材在拉伸应力下加工PCR材料的优势。结果表明,使用双层片材可以改善双轴拉伸性能,因此双层片材在热成型加工PCR材料方面具有巨大潜力。