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Reactive magnetron sputtered wear resistant multilayer transition metal carbide coatings: microstructure and tribo-mechanical properties

机译:反应磁控溅射耐磨多层过渡金属碳化物涂层:微观结构和摩擦机械性能

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摘要

To enhance the performance and durability of mechanical components, surface properties need to be modified. In this work, a unique combination of transition metal carbide (TMC) multilayer coatings (TiC/CrC, TiC/ZrC and TiC/WC) were deposited by reactive DC magnetron sputtering on 316LN steel substrates. GIXRD results showed the presence of an amorphous CrC phase in the TiC/CrC multilayer, whereas, crystalline TiC, ZrC and W2C phases were observed in their respective coatings. FESEM analysis indicated the non-columnar structures of TMC layers in all the samples, except the CrC layer in the TiC/ CrC multilayer. Solid solutions of the TiC and WC layers at the interface were identified due to the migration of W atoms into the TiC crystal lattices. The poor crystalline nature of the TiC/CrC multilayer led to lower hardness and weak wear resistance. However, enhanced tribo-mechanical properties were observed in TiC/ZrC and TiC/WC multilayer coatings. This is explained by the improved crystallinity and enhanced resistance to plastic deformation. For the selected tribological parameters, abrasive, adhesive and combined abrasive/adhesive wear modes are the major governing factors in determining the wear behaviors of TiC/CrC, TiC/ZrC and TiC/WC coatings, respectively. The chemical stability of deformed wear tracks was observed by Raman spectroscopy.
机译:为了增强机械部件的性能和耐用性,需要修改表面性能。在这项工作中,过渡金属碳化物(TMC)多层涂层(TiC / CrC,TiC / ZrC和TiC / WC)的独特组合通过反应性直流磁控溅射沉积在316LN钢基底上。 GIXRD结果表明,在TiC / CrC多层膜中存在无定形CrC相,而在它们各自的涂层中观察到结晶TiC,ZrC和W2C相。 FESEM分析表明,除TiC / CrC多层膜中的CrC层外,所有样品中的TMC层均为非柱状结构。由于W原子迁移到TiC晶格中,确定了界面处TiC和WC层的固溶体。 TiC / CrC多层膜的不良结晶性导致较低的硬度和较弱的耐磨性。但是,在TiC / ZrC和TiC / WC多层涂层中观察到了增强的摩擦机械性能。这可以通过改善的结晶度和增强的抗塑性变形来解释。对于选定的摩擦学参数,磨料,粘合剂和磨料/粘合剂的组合磨损方式是分别确定TiC / CrC,TiC / ZrC和TiC / WC涂层的磨损行为的主要控制因素。通过拉曼光谱观察变形的磨损轨迹的化学稳定性。

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