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High temperature wear characteristics of TiC composite coatings formed by laser cladding with CNT additives

机译:碳纳米管激光熔覆TiC复合涂层的高温磨损特性

摘要

High temperature wear properties of titanium carbide (TiC) composite coatings fabricated by laser cladding with titanium powder and varied percentages of carbon nano-tube (CNT) powders on titanium substrates have been tested by pin-on-disk wear under dry sliding conditions. The results reveal that TiC composite coatings fabricated with proper addition of CNT give promising high temperature wear resistance which is ten times higher than that of the titanium substrate. The high temperature wear behavior and friction coefficient of the titanium substrate and the composite coatings were investigated. It was found that the wear behavior of the dominant wear mechanism of the TiC composite coatings is adhesive wear and oxidation, whereas the Ti substrate exhibits abrasive wear, adhesive wear, serious plastic deformation, and oxidation at high temperature. The improvement of the wear resistance is believed to be attributed to the reinforcement phase of TiC which can also provide high hardness according to the microstructure observation of the composite coatings by SEM, EDX and microhardness measurements.
机译:通过在干式滑动条件下的针盘磨损,已经测试了通过钛合金粉末激光熔覆制造的碳化钛(TiC)复合涂层和钛基材上不同百分比的碳纳米管(CNT)粉末的高温磨损性能。结果表明,适当添加CNT制成的TiC复合涂层具有良好的高温耐磨性,是钛基体的十倍。研究了钛基体和复合涂层的高温磨损行为和摩擦系数。已经发现,TiC复合涂层的主要磨损机理的磨损行为是粘合剂磨损和氧化,而Ti基体表现出磨料磨损,粘合剂磨损,严重的塑性变形和高温氧化。据信,耐磨性的改善归因于TiC的增强相,根据SEM,EDX和显微硬度测量对复合涂层的显微结构观察,TiC的增强相也可提供高硬度。

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