Hiranobe Carlos Toshiyuki, Gennaro Elmer Mateus, de Souza Guilherme Henrique Barros, Souza Dener da Silva, Kawall Samara Araújo, Hiranobe Márcia Ferreira, Salmazo Leandra Oliveira, Pérez Miguel Angel Rodríguez, Gil Alberto Lopez, Nascimento Eduardo Soares, da Silva Erivaldo Antônio, Dos Santos Renivaldo José
Department of Engineering, School of Engineering and Sciences, São Paulo State University (UNESP), Rosana Campus, Avenida dos Barrageiros, Rosana 19274-000, SP, Brazil.
Department of Aeronautical Engineering, Engineering School, São Paulo State University (UNESP), Avenida Professora Isette Corrêa Fontão, São João da Boa Vista 13876-750, SP, Brazil.
Materials (Basel). 2025 Apr 17;18(8):1842. doi: 10.3390/ma18081842.
The article examines the possibility of using ophthalmic lens waste (OLW) as a filler in styrene-butadiene rubber (SBR) composites in varying proportions. It analyzes the impact of OLW on the composites' rheological, structural, morphological, mechanical, and thermal properties. Results show that OLW addition does not significantly alter vulcanization time, leading to thermal savings during processing. The crosslink densities, determined by the swelling method in an organic solvent and the mechanical behavior of the elastomers, increased with the incorporation of OLW, suggesting a filler/polymeric matrix interaction. The Lorenz-Parks model confirmed matrix-filler interaction, although it was insufficient to substantially improve mechanical reinforcement, with OLW mainly acting as a filler. Thermogravimetric tests revealed good thermal stability, but dynamic mechanical analysis indicated reduced damping properties. Spectroscopic analysis indicated the lack of molecular bonding between the polymer and the OLW filler. The study suggests that the optimal OLW content is between 10 and 20 phr, enabling the production of a new composite. Overall, incorporating OLW into vulcanized SBR composites offers a sustainable and cost-effective approach to reusing industrial waste in polymer production, providing an environmentally friendly alternative for the polymer industry.
本文研究了以不同比例将眼科镜片废料(OLW)用作丁苯橡胶(SBR)复合材料填料的可能性。分析了OLW对复合材料流变、结构、形态、力学和热性能的影响。结果表明,添加OLW不会显著改变硫化时间,从而在加工过程中节省了热量。通过在有机溶剂中的溶胀法测定的交联密度以及弹性体的力学行为,随着OLW的加入而增加,表明填料与聚合物基体之间存在相互作用。洛伦兹-帕克斯模型证实了基体与填料之间的相互作用,尽管这不足以显著改善机械增强效果,OLW主要起填料的作用。热重测试显示出良好的热稳定性,但动态力学分析表明阻尼性能降低。光谱分析表明聚合物与OLW填料之间缺乏分子键合。研究表明,OLW的最佳含量在10至20份之间,能够生产出一种新型复合材料。总体而言,将OLW纳入硫化SBR复合材料为聚合物生产中的工业废料再利用提供了一种可持续且具有成本效益的方法,为聚合物行业提供了一种环保替代方案。