Mazzanti Valentina, Fortini Annalisa, Malagutti Lorenzo, Ronconi Giulia, Mollica Francesco
Department of Engineering, University of Ferrara, 44122 Ferrara, Italy.
Polymers (Basel). 2021 Jun 23;13(13):2055. doi: 10.3390/polym13132055.
Wood polymer composites or WPCs are increasingly used as substitutes for natural wood in outdoor applications due to their better environmental sustainability and the consequent reduction in carbon footprint. In this paper, the presence of an elastomer used as a toughening agent (Santoprene by Exxon Mobil) in a polypropylene-based WPC containing 50 wt % wood flour was investigated in terms of its tribological behavior by dry sliding wear tests. These were performed after two environmental pre-conditioning treatments, i.e., drying and water soaking. The ball-on-disk configuration under a constant load was chosen along two sliding distances. Dynamic mechanical thermal analyses were used to reveal the effect of the toughening agent on the storage modulus and damping factor of the composites. Results in terms of weight loss measurement and coefficient of friction were obtained, together with surface morphology analysis of the worn surfaces at the scanning electron microscope and 3D profilometer. An abrasive wear mechanism was identified, and it was shown that the toughening agent improved wear resistance after both pre-treatments. This beneficial effect can be explained by the increase in strain at break of the WPC containing the elastomer. On the other hand, the water soaking pre-treatment produced severe damage, and the loss of material cannot be completely compensated by the presence of the toughening agent.
木塑复合材料(WPCs)因其更好的环境可持续性以及随之而来的碳足迹减少,在户外应用中越来越多地被用作天然木材的替代品。在本文中,通过干滑动磨损试验,研究了一种用作增韧剂的弹性体(埃克森美孚的山都平)在含有50 wt%木粉的聚丙烯基WPC中的摩擦学行为。这些试验是在两种环境预处理后进行的,即干燥和水浸。在恒定载荷下,选择球盘配置并沿两个滑动距离进行试验。采用动态机械热分析来揭示增韧剂对复合材料储能模量和阻尼因子的影响。获得了失重测量和摩擦系数方面的结果,以及在扫描电子显微镜和三维轮廓仪下对磨损表面的表面形貌分析。确定了磨料磨损机制,结果表明,两种预处理后增韧剂均提高了耐磨性。这种有益效果可以通过含弹性体的WPC的断裂伸长率增加来解释。另一方面,水浸预处理造成了严重损伤,增韧剂的存在无法完全补偿材料的损失。