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Surface Treatment Effects on the Mechanical Properties of Silica Carbon Black Reinforced Natural Rubber/Butadiene Rubber Composites

机译:表面处理对二氧化硅炭黑增强天然橡胶/丁二烯橡胶复合材料力学性能的影响

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摘要

For the first time, phenolic formaldehyde resin (PF)-treated silica carbon black (SiCB) were prepared with different treatment conditions and their effect as fillers on the mechanical properties of filler filled natural rubber/butadiene rubber (NR/BR) composites were investigated in detail. The PF coating layer on the SiCB derived from rusk husk not only promoted the dispersion of the fillers but also improved the interfacial interactions between fillers and the rubber matrix. As a result, both the cross-link density and mechanical properties of the obtained composites were effectively enhanced. The filler SiCB with 3 wt % PF surface treatment greatly improved the tensile strength of NR/BR composites and reached 7.1 MPa, which increased by 73.7% compared with that of SiCB-filled NR/BR composites. The improved interfacial interactions promoted higher energy dissipation, leading to simultaneously enhancing the glass transition temperature of the obtained composites. Due to the easy processing and low cost of filler as well as the effectively enhanced mechanical properties of composites, the PF-coating methodology has a great potential for practical applications in SiCB reinforced high-performance composites. A commercial filler, carbon black (N774), was also used in this study and evaluated under the same conditions for comparison.
机译:首次以不同的处理条件制备了酚醛树脂(PF)处理的二氧化硅炭黑(SiCB),并研究了它们作为填料对填充橡胶的天然橡胶/丁二烯橡胶(NR / BR)复合材料力学性能的影响。详细。源自面包皮的SiCB上的PF涂层不仅促进了填料的分散,而且改善了填料与橡胶基体之间的界面相互作用。结果,有效提高了所得复合材料的交联密度和机械性能。 PF表面处理量为3 wt%的SiCB填料极大地提高了NR / BR复合材料的拉伸强度,达到7.1 MPa,比SiCB填充的NR / BR复合材料提高了73.7%。改善的界面相互作用促进了更高的能量耗散,从而导致同时提高了所得复合材料的玻璃化转变温度。由于填料的易于加工和低成本以及有效增强复合材料的机械性能,PF涂层方法在SiCB增强高性能复合材料的实际应用中具有巨大的潜力。这项研究中还使用了商业填料炭黑(N774),并在相同条件下进行了评估以进行比较。

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