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Improvements in HVOF sprayed cermet coatings produced from SHS powders

机译:从SHS粉末制备的HVOF喷涂金属陶瓷涂料的改进

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It has been shown that high velocity oxy-fuel (HVOF) thermal spray coatings with good wear resistance can be produced from Ni(Cr)-TiC powders manufactured by self-propagating high temperature synthesis (SHS) reactions. In the present work the process was expanded to include additions of Mo and W with the objective of modifying the carbide phase in an attempt to increase the wear resistance further. The effect of changing the matrix, i.e. substituting Fe for Ni, and changing the ceramic phase from TiC to TiB{sub}2 was also examined. The feedstock powder and resultant coatings are characterised in terms of x-ray diffraction analysis and scanning electron microscopy while the coating properties are measured by microhardness and dry sand rubber wheel (DSRW) abrasive wear testing. The results show that Fe(Cr)-TiB{sub}2 and Ni(Cr)-(W, Ti)C coatings have wear rates comparable to that of conventional Cr{sub}3C{sub}2-NiCr coatings produced from sintered and crushed powder, but further improvements are needed to achieve the wear resistance of WC-Co coatings.
机译:已经表明,具有良好耐磨性的高速氧 - 燃料(HVOF)热喷涂涂层可以由通过自我传播的高温合成(SHS)反应制造的Ni(Cr)-TIC粉末制成。在本工作中,该方法扩展以包括添加Mo和W,其目的是改变碳化物相的目的,试图进一步增加耐磨性。还检查了改变基质的效果,即替代Ni,与TIC改变为TiB {Sub} 2的效果。原料粉末和所得涂层的特征在于X射线衍射分析和扫描电子显微镜,同时通过显微硬度和干砂橡胶轮(DSRW)研磨试验测量涂层性能。结果表明,Fe(Cr)-tib {sub} 2和Ni(Cr) - (W,Ti)C涂层具有与烧结制备的常规Cr {sub} 3c {sub} 2-nicr涂层相当的磨损率并粉碎粉末,但需要进一步改进以实现WC-CO涂层的耐磨性。

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