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Soy Extender Oils in Automotive Rubber: Case Studies of Natural Rubber and EPDM

机译:汽车橡胶大豆增量油:天然橡胶和ePDM的案例研究

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摘要

Research and development of renewable or recycled materials provides an opportunity to support Ford's corporate environmental strategy. Within elastomer components, one opportunity for using these sustainable materials is incorporation of soybean oil as a replacement for petroleum based oils in formulations. Technical case studies were conducted using degummed and modified soy oils in two different rubber matrices, Natural Rubber (NR) and Ethylene Propylene Diene Monomer (EPDM) rubber. Soy oil was incorporated at various loading levels ranging from 5-20 wt% replacement of petroleum oil in EPDM and 20-100 wt% in NR model compound formulations. Key physical and rheological properties of these rubber compounds using renewable extender oils were assessed, including cure kinetics, tensile properties, Durometer and tear resistance. Selected formulations were evaluated for lab scale testing and prototype part trial evaluations in an exterior automotive application. The primary technical challenges and outlook for using renewable oils in automotive rubber compounds are also discussed.
机译:可再生或再生材料的研究和开发为支持福特的企业环境战略提供了机会。在弹性体组分中,使用这些可持续材料的一次机会是将大豆油掺入作为制剂中石油基油的替代品。使用两种不同的橡胶基质,天然橡胶(NR)和乙烯二烯单体(EPDM)橡胶中的脱胶和改性大豆油进行技术案例研究。在各种装载水平的各种负载水平中掺入豆油,在EPDM中的5-20重量%的替代石油油和20-100wt%的NR模型化合物配方中。评估这些橡胶化合物的关键身体和流变性能,包括可再生增量油脂,包括固化动力学,拉伸性能,硬度计和抗撕裂性。在外部汽车应用中评估了所选配方进行实验室规模测试和原型部分试验评估。还讨论了在汽车橡胶化合物中使用可再生油的主要技术挑战和前景。

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