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疏水化微生物燃料电池作为工业二氧化硅/丁苯橡胶轮胎胎面胶中的增强添加剂

Hydrophobized MFC as Reinforcing Additive in Industrial Silica/SBR Tire Tread Compound.

作者信息

Liu Ming, Imiete Iikpoemugh Elo, Staropoli Mariapaola, Steiner Pascal, Duez Benoît, Lenoble Damien, Scolan Emmanuel, Thomann Jean-Sébastien

机构信息

Material Research and Technology Department (MRT), Luxembourg Institute of Science and Technology (LIST), 41 Rue du Brill, L-4422 Belvaux, Luxembourg.

Goodyear Innovation Center Luxembourg (GIC*L), Avenue Gordon Smith, L-7750 Colmar-Berg, Luxembourg.

出版信息

Polymers (Basel). 2023 Sep 29;15(19):3937. doi: 10.3390/polym15193937.

Abstract

Silica is used as reinforcing filler in the tire industry. Owing to the intensive process of silica production and its high density, substitution with lightweight bio-based micro fibrillated cellulose (MFC) is expected to provide lightweight, sustainable, and highly reinforced tire composite. MFC was modified with oleoyl chloride, and the degree of substitution (DS) was maintained between 0.2 and 0.9. Subsequently, the morphology and crystallinity of the modified MFC were studied and found to be significantly dependent on the DS. The advantages associated with the use of the modified MFC in synergy with silica for the reinforcement of styrene butadiene rubber (SBR) nanocomposite was investigated in comparison with silica/SBR compound. The structural changes occasioned by the DS values influenced the processability, curing kinetics, modulus-rolling resistance tradeoff, and tensile properties of the resultant rubber compounds. We found that the compound made with modified MFC at a DS of 0.67 (MFC16) resulted to the highest reinforcement, with a 350% increase in storage modulus, 180% increase in Young`s modulus, and 15% increase in tensile strength compared to the referenced silica-filled compounds. Our studies show that MFC in combination with silica can be used to reinforce SBR compound for tire tread applications.

摘要

二氧化硅在轮胎工业中用作增强填料。由于二氧化硅生产过程密集且密度高,用轻质生物基微纤化纤维素(MFC)替代有望提供轻质、可持续且高度增强的轮胎复合材料。用油酰氯对MFC进行改性,取代度(DS)保持在0.2至0.9之间。随后,研究了改性MFC的形态和结晶度,发现其显著依赖于取代度。与二氧化硅/丁苯橡胶(SBR)复合材料相比,研究了将改性MFC与二氧化硅协同用于增强丁苯橡胶(SBR)纳米复合材料的优势。取代度值引起的结构变化影响了所得橡胶复合材料的加工性能、硫化动力学、模量 - 滚动阻力平衡以及拉伸性能。我们发现,与参考的二氧化硅填充复合材料相比,用取代度为0.67的改性MFC(MFC16)制成的复合材料具有最高的增强效果,储能模量提高了350%,杨氏模量提高了180%,拉伸强度提高了15%。我们的研究表明,MFC与二氧化硅结合可用于增强用于轮胎胎面应用的SBR复合材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2679/10574928/329fd5e60453/polymers-15-03937-g001.jpg

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