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Effects of fiber type on the tribological behavior of polyamide composites.

机译:纤维类型对聚酰胺复合材料摩擦性能的影响。

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An experimental and analytical study of the tribological behavior of polymer composites is presented. Glass, aramid, and carbon fiber-filled polyamide (Nylon 6,6) composites serve as models for understanding friction and wear processes encountered when polymer composites are used in tribological applications. Experimental results not only include measurements of friction and wear, but surface temperatures produced by frictional processes during oscillating contact experiments. Since an optically flat, transparent sapphire disk is used as the oscillating countersurface, surface temperatures can be measured directly at the interface using an infrared microscope.; Experimental results show that the presence of fibers in the polyamide matrix lowers wear, friction, and surface temperature when compared with the unfilled polymer. Rationale for this improved tribological behavior is presented and discussed. Fiber-type is shown to have a direct influence on the tribological behavior of the polymer composite, and the chemical behavior at and near the interface is shown to be significant by examining worn and transferred material through surface analytical techniques. In particular, evidence is presented for the tribochemical degradation of intramolecular bonds in the polyamide macromolecule.; Measurements of surface temperatures are compared with theoretical predictions using models for the real area(s) of contact, and results from "scanning" experiments are also presented in which the infrared microscope is used to measure surface temperatures at possible real areas of contact within the apparent contact region. Instantaneous measurements of surface temperature and friction over a single cycle of motion are also presented which allows for the performance of a frequency domain analysis. This technique not only shows the frequency content of the friction and surface temperature signals, but it also shows correlations between these two parameters. The role of intermolecular attractions in frictional processes is addressed, and evidence for relatively strong intermolecular attractions between the polyamide surface and sapphire disk is discussed.
机译:进行了聚合物复合材料的摩擦学性能的实验和分析研究。玻璃,芳纶和碳纤维填充的聚酰胺(尼龙6,6)复合材料可作为模型,用于理解在摩擦学应用中使用聚合物复合材料时遇到的摩擦和磨损过程。实验结果不仅包括摩擦和磨损的测量值,还包括在振荡接触实验过程中由摩擦过程产生的表面温度。由于将光学透明的透明蓝宝石圆盘用作振荡的相对表面,因此可以使用红外显微镜直接在界面处测量表面温度。实验结果表明,与未填充的聚合物相比,聚酰胺基体中纤维的存在降低了磨损,摩擦和表面温度。提出并讨论了这种改进的摩擦学行为的原理。纤维类型对聚合物复合材料的摩擦学性能有直接影响,而通过表面分析技术检查磨损和转移的材料,则表明在界面处和界面附近的化学性能很重要。特别是,提供了聚酰胺大分子中分子内键的摩擦化学降解的证据。使用实际接触区域的模型,将表面温度的测量值与理论预测值进行比较,并给出“扫描”实验的结果,其中使用红外显微镜测量在实际接触区域内可能的实际接触区域的表面温度。表观接触区域。还介绍了在单个运动周期内的表面温度和摩擦的瞬时测量结果,从而可以执行频域分析。该技术不仅显示了摩擦和表面温度信号的频率含量,而且还显示了这两个参数之间的相关性。讨论了分子间吸引力在摩擦过程中的作用,并讨论了聚酰胺表面和蓝宝石圆盘之间相对较强的分子间吸引力的证据。

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