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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Microstructure and wear properties of in situ TiC/FeCrBSi composite coating prepared by gas tungsten arc welding
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Microstructure and wear properties of in situ TiC/FeCrBSi composite coating prepared by gas tungsten arc welding

机译:钨极氩弧焊原位TiC / FeCrBSi复合涂层的组织与磨损性能

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摘要

Using a gas tungsten arc welding (GTAW) process, in situ synthesis TiC particles reinforced Fe-based alloy composite coating has been produced by preplaced FeCrBSi alloy, graphite and ferrotitanium powders. The microstracture and wear properties of the composite coatings were studied by means of scanning electron microscopy (SEM), X-ray diffractometer (XRD) and wear test. The effects of thickness of the pre-placed powder layer on the microstracture, hardness and wear resistance of the composite coatings were also investigated. The results indicated that TiC particles were produced by direct metallurgical reaction between ferrotitanium and graphite during the GTAW process. TiC particles with sizes in the range of 3-5 μm were dispersed in the matrix. The volume fraction of TiC particles and microhardness gradually increased from the bottom to the top of the composite coatings. The TiC-reinforced composite coatings enhance the hardness and wear resistance. The highest wear resistance of the composite coating with a 1.2 mm layer was obtained.
机译:使用气体钨极电弧焊(GTAW)工艺,通过预先放置FeCrBSi合金,石墨和铁钛合金粉末,原位合成TiC颗粒增强的Fe基合金复合涂层。通过扫描电子显微镜(SEM),X射线衍射仪(XRD)和磨损试验研究了复合涂层的显微组织和磨损性能。还研究了预沉积粉末层的厚度对复合涂层显微组织,硬度和耐磨性的影响。结果表明,在GTAW过程中,钛铁是通过钛铁和石墨之间的直接冶金反应产生的。将尺寸在3-5μm范围内的TiC颗粒分散在基质中。 TiC颗粒的体积分数和显微硬度从复合涂层的底部到顶部逐渐增加。 TiC增强的复合涂层可提高硬度和耐磨性。获得了具有1.2 mm层的复合涂层的最高耐磨性。

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