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Wear Mechanism Analysis and Microstructure of Vanadium Carbide Coating by Thermal Diffusion Process

机译:热扩散工艺磨损机理分析及碳化物涂层微观结构

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In this paper, the typical cold work die steel Cr12MoV was used as substrate material for vanadizing treatment. And the coating structure and bonding strength were studied. Moreover, comparison experiment of wear resistance between the coating and the substrate material was performed, and based on the experiment results, wear failure mechanism of vanadizing layer was analyzed. The results showed that vanadium carbide coating is dense, with fine grain structure and high bonding strength. These features help to improve the wear resistance of coatings. Comparision of wear performance between coating and substrate showed that vanadizing surface layer can significantly improve wear resistance of substrate material. Friction coefficient decreased from the 0.48 to 0.33 and wear weight loss decreased by 95%. Wear Failure analysis showed that the vanadium carbide layer of the wear mechanism is fatigue spalling wear.
机译:本文使用典型的冷加工模具钢CR12MoV作为钒处理的基材材料。研究了涂层结构和粘合强度。此外,进行涂层与基材材料之间的耐磨性的比较实验,并基于实验结果,分析了钒层的磨损失效机理。结果表明,碳化钒涂层致密,具有细粒结构和高粘合强度。这些功能有助于提高涂层的耐磨性。涂层和衬底之间的磨损性能的比较表明,钒表面层可以显着提高基板材料的耐磨性。摩擦系数从0.48降低至0.33,耐磨减肥减少95%。磨损失效分析表明,磨损机构的碳化物层是疲劳剥落磨损。

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