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Rheological and tribological approaches as a tool for the development of sustainable lubricating greases based on nano-montmorillonite and castor oil

机译:作为基于纳米蒙脱石和蓖麻油的可持续润滑油的发展的流变和摩擦学方法

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This study investigates the development of novel montmorillonite/castor oil blends to formulate sustainable lubricating greases to promote the replacement of petrochemicals industry-derived materials by substances obtained from renewable sources. Specifically, the effect of the thickener concentration on the rheological, chemical, thermal, tribological properties, and atomic force microscopy (AFM) microstructure of these systems were studied. The results showed that the C20A nanoclay content could be used to modulate the viscosity values, the linear viscoelastic functions, and tribological properties of these montmorillonite dispersions. In general, these gel-like dispersions exhibited remarkable lubricant properties; the samples showed values of the friction coefficient and wear scars similar or lower than those obtained with model bentonite grease.
机译:本研究调查了新型蒙脱石/蓖麻油的开发,以配制可持续润滑脂,通过可再生来源获得的物质促进替代石化产业衍生材料。具体地,研究了增稠剂浓度对这些系统的流变,化学,热,摩擦学性质和原子力显微镜(AFM)微观结构的影响。结果表明,C20A纳米粘土含量可用于调节这些蒙脱石分散体的粘度值,线性粘弹性功能和摩擦学特性。通常,这些凝胶状分散体表现出显着的润滑剂性质;样品显示出摩擦系数的值和磨损疤痕,与膨润土油脂的模型获得的磨损疤痕相似或低。

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