Rahman Md Mahbubur, Oßwald Katja, Reincke Katrin, Langer Beate
Department of Engineering and Natural Sciences, Hochschule Merseburg-University of Applied Sciences, Eberhard-Leibnitz-Straße 2, 06217 Merseburg, Germany.
Polymer Service GmbH Merseburg, Associate institute of Hochschule Merseburg-University of Applied Sciences, 06217 Merseburg, Germany.
Materials (Basel). 2020 May 1;13(9):2095. doi: 10.3390/ma13092095.
A high number of technical elastomer products contain plasticizers for tailoring material properties. Some additives used as plasticizers pose a health risk or have inadequate material properties. Therefore, research is going on in this field to find sustainable alternatives for conventional plasticizers. In this paper, two modified bio-based plasticizers (epoxidized esters of glycerol formal from soybean and canola oil) are of main interest. The study aimed to determine the influence of these sustainable plasticizers on the properties of acrylonitrile-butadiene rubber (NBR). For comparison, the influence of conventional plasticizers, e.g., treated distillate aromatic extract (TDAE) and Mesamoll were additionally investigated. Two types of NBR with different ratios of monomers formed the polymeric basis of the prepared elastomers. The variation of the monomer ratio results in different polarities, and therefore, compatibility between the NBR and plasticizers should be influenced. The mechanical characteristics were investigated. In parallel, dynamic mechanical analysis (DMA) and thermogravimetric analysis (TGA) were performed and filler macro-dispersion was determined. Bio-based plasticizers were shown to have better mechanical and thermal properties compared to conventional plasticizers. Further, thermo-oxidative aging was realized for 500 h, and afterwards, mechanical characterizations were done. It was observed that bio-based plasticizers have almost the same aging properties compared to conventional plasticizers.
大量的工业用弹性体产品含有用于调整材料性能的增塑剂。一些用作增塑剂的添加剂存在健康风险或材料性能不足。因此,该领域正在进行研究,以寻找传统增塑剂的可持续替代品。在本文中,两种改性生物基增塑剂(大豆油和菜籽油的甘油缩甲醛环氧化酯)是主要研究对象。该研究旨在确定这些可持续增塑剂对丙烯腈-丁二烯橡胶(NBR)性能的影响。为了进行比较,还额外研究了传统增塑剂的影响,例如处理过的馏分芳烃萃取物(TDAE)和Mesamoll。两种具有不同单体比例的NBR构成了制备的弹性体的聚合物基础。单体比例的变化导致不同的极性,因此,NBR与增塑剂之间的相容性应该会受到影响。研究了其机械特性。同时,进行了动态力学分析(DMA)和热重分析(TGA),并测定了填料宏观分散情况。结果表明,与传统增塑剂相比,生物基增塑剂具有更好的机械和热性能。此外,进行了500小时的热氧化老化,之后进行了机械性能表征。观察到,与传统增塑剂相比,生物基增塑剂具有几乎相同的老化性能。