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Erosion behaviour of cobalt-based coatings with different carbide contents under high-speed propellant airflow

机译:高速推进气流下不同碳化物含量的钴基涂层的侵蚀行为

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摘要

Three different cobalt-based alloy coatings were prepared on the surface of PCrNi3MoVA steel by plasma transferred arc method by adjusting the contents of Cr, W, and C. An accelerated erosion test was performed on the coatings under high-pressure hot airflow environment generated by propellant combustion in gun bore. Scanning electron microscopy and X-ray diffractometry were used to analyse the microstructure of the three coatings before and after erosion. The thermal behaviour of the three coatings was analysed by differential scanning calorimetry. Results show that erosion mainly occurs between the dendrites on the surface of the coating, manifested by eutectic melting erosion and carbide cracking. As the contents of Cr, W, and C decrease, the amount of carbides formed in the coating decreases, the erosion behaviour of the coating is significantly weakened, and the erosion resistance is highly improved.
机译:通过调节Cr、W和C的含量,采用等离子转移电弧法在PCrNi3MoVA钢表面制备了三种不同的钴基合金涂层。在发射药膛内燃烧产生的高压热气流环境下,对涂层进行了加速腐蚀试验。利用扫描电子显微镜和X射线衍射仪分析了三种涂层在腐蚀前后的微观结构。用差示扫描量热法分析了三种涂层的热行为。结果表明,腐蚀主要发生在涂层表面的枝晶之间,表现为共晶熔化腐蚀和碳化物开裂。随着Cr、W和C含量的降低,涂层中形成的碳化物数量减少,涂层的冲蚀性能显著减弱,抗冲蚀性大大提高。

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