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Analysis of the Chemical and Tribological Properties of Phosphate Glass Layers Developing during Metalworking Processes on Manual Transmission Synchronizers

机译:磷酸盐玻璃层的化学和摩擦学特性在手动传动同步器上发育金属加工过程中的化学和摩擦学特性

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摘要

Optimization of machining processes to improve the tribological properties of surface layers has become a subject of industrial development. The modifications caused by manufacturing commonly include changes of topography, hardness or residual stresses. The present study investigates modification of the tribological properties of gear synchronizers by the formation of chemical layers on the metal surface within the final grinding process. These layers similar to phosphate glass emerge from the metalworking fluid additive zinc dialkyldithiophosphate(ZnDTP), which is applied in the process in different concentrations. The layers generated at the surface were measured by time-of-flight secondary ion mass spectrometry (ToF-SIMS). Tribological experiments were conducted on a special synchronizer test facility. ToF-SIMS depth profiling revealed that higher ZnDTP concentrations in the metalworking fluid led to thicker phosphate glass layers on the machined surface. The layer that was generated by the addition of 5% ZnDTP to the metalworking fluid led to a more homogenous coefficient of friction and a lower amount of wear in the tribological experiments. However, the addition of further ZnDTP, up to a total amount of 10%, led to higher fluctuations in the coefficient of friction and increasing wear, likely related to the occurrence of friction oscillations resulting from thicker phosphate glass layers. However, the results indicate a good potential for improving surface layer properties of metal workpieces by adjusting the chemical composition of the metalworking fluid applied in the final machining process.
机译:优化加工过程以改善地表层的摩擦学特性已成为工业发展的主题。由制造引起的修改通常包括地形,硬度或残余应力的变化。本研究通过在最终研磨过程中形成化学层来调查通过在金属表面上形成化学层的齿轮同步器的修饰。这些层类似于磷酸盐玻璃,从磷酸盐(ZnDTP)中的金属加工液添加剂锌(ZnDTP)中出现,其在不同浓度的过程中施用。通过飞行时间二次离子质谱(TOF-SIM)测量表面上产生的层。在特殊同步测试设施上进行了摩擦学实验。 TOF-SIMS深度分析显示,金属加工流体中的较高的ZnDTP浓度导致加工表面上的较厚的磷酸盐玻璃层。通过向金属加工流体添加5%ZnDTP而产生的层导致了摩擦实验中更均匀的摩擦系数和较低的磨损。然而,进一步的ZnDTP,总量的10%,导致摩擦系数和磨损系数的较高波动,可能与由较厚的磷酸玻璃层产生的摩擦振荡发生相关。然而,结果表明通过调节在最终加工过程中施加的金属加工流体的化学成分来改善金属工件的表面层性质的良好潜力。

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