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PREPARATION AND CHARACTERIZATION OF OIL-DOSED PHASES CREATED BY SUPERCRITICAL FLUID ON POLYMER MATERIALS

机译:超临界流体对聚合物材料制备的制备与表征

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Ultra-high molecular weight polyethylene (UHMWPE) and polyamide 66 (PA66) were used as model polymers in order to conduct research on the preparation and characterization of oil-dosed phases created by supercritical fluid on polymer materials. As lubricating oil impregnates polymer material, diethylhexyl adipate (DEHA=DOA, Mw=370) and alkyldiphenylether (ADE, Mw=440) were used. Oil impregnation conditions were controlled to between 60°C and 150°C and 10-20 MPa in Supercritical carbon dioxide (scCO{sub}2) environment. Experimental results showed that the total amount of oil impregnation correlated with processing temperature and duration. After impregnation, phases with a crystal structure different from the inside were observed on the polymer surface areas. The depth profile and chemical-distribution of oil-dosed phases by scCO{sub}2 impregnation were analyzed using Fourier-transform infrared (FTIR) spectroscopy. FTIR spectroscopy results have shown that it is possible to create phases having high concentrations of lubricating oil at a depth of about 25-30 micrometers from the surface of polymer materials.
机译:使用超高分子量聚乙烯(UHMWPE)和聚酰胺66(PA66)作为模型聚合物,以便对通过在聚合物材料上的超临界流体产生的油剂相的制备和表征进行研究。作为润滑油浸渍聚合物材料,使用二乙基己基(Deha = DOA,MW = 370)和炔基苯基醚(Ade,MW = 440)。将油浸渍条件控制在60℃和150℃之间,在超临界二氧化碳(SCCO {Sub} 2)环境中。实验结果表明,油浸渍总量与加工温度和持续时间相关。在浸渍之后,在聚合物表面积上观察到具有与内部不同的晶体结构的相位。通过傅立叶变换红外(FTIR)光谱分析SCCO {Sub} 2浸渍的深度曲线和化学分布。 FTIR光谱结果表明,可以从聚合物材料表面的深度产生高浓度润滑油的相。

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