Bioeconomy and Ecoinnovation Centre, Proecological Technologies Research Group, ŁUKASIEWICZ Research Network-Institute for Sustainable Technologies, Pułaskiego 6/10, 26-600 Radom, Poland.
Molecules. 2023 Mar 29;28(7):3033. doi: 10.3390/molecules28073033.
Bio-greases were developed on the basis of vegetable oil obtained from seeds. An important aspect of this research is to monitor changes in their quality taking place under the influence of external factors. Raman spectroscopy was used to identify changes taking place in the bio-lubricant under the influence of mechanical and thermal forces. The performed tests reflected the operating temperature and friction load that may occur during actual operating conditions for the lubricated friction systems. The Raman spectra provided information on qualitative changes in the structure of the tested bio-lubricants at the molecular level. The integral intensity of the bands used to assess the degree of lipid unsaturation was adopted as the evaluation criterion. The influence of the oxidation process under the PetroOxy and wear test conditions on changes in the structure of the bio-lubricants was assessed. Variation in the integral intensity of the bands (I/I) proves that the structure of vegetable lubricants changes under the influence of the tests performed. Thermal and mechanical forces influence, the bands originating in unsaturated and result in a decrease in the oxidation resistance of vegetable lubricants.
生物润滑脂是在从种子中提取的植物油的基础上开发的。这项研究的一个重要方面是监测在外部因素影响下其质量的变化。拉曼光谱用于识别在机械和热应力影响下生物润滑剂中发生的变化。进行的测试反映了在实际润滑摩擦系统运行条件下可能出现的工作温度和摩擦负载。拉曼光谱提供了有关在分子水平上测试的生物润滑剂结构的定性变化的信息。用于评估脂质不饱和度程度的带的积分强度被用作评估标准。评估了 PetroOxy 和磨损测试条件下的氧化过程对生物润滑剂结构变化的影响。带的积分强度(I/I)的变化证明了植物油的结构在测试的影响下发生了变化。热和机械力的影响导致源自不饱和的带发生变化,从而降低了植物油的抗氧化性。