Effects of plasma spraying process on microstructure and mechanical properties of Cr2AlC/410 composite coatings

Yihu Ma , Chaosheng Ma , Guozheng Ma , Wenbo Yu
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Abstract

To investigate the influences of Cr2AlC mass fraction and supersonic plasma spraying process on the microstructure and mechanical properties of Cr2AlC reinforced 410 stainless steel composite coatings, the coatings containing different mass fractions of Cr2AlC were prepared and investigated. The composite coating exhibited low porosity and high adhesion strength. The addition of Cr2AlC significantly enhanced the hardness of the composite coatings through particle strengthening. However, when the mass fraction of Cr2AlC was 20%, the aggregation of Cr2AlC resulted in a strong decrease in the coating preparation efficiency, as well as a decline in adhesion strength. In the supersonic plasma spraying process, the Ar flow rate mainly influenced the flight velocity of the particles, while the H2 flow rate and the current mainly affected the temperature of the plasma torch. Consequently, all of them influenced the melting degree of particles and the quality of the coating. The lowest porosity and the highest hardness and adhesion strength could be obtained when the Ar flow rate is 125 L/min, the H2 flow rate is 25 L/min, and the current is 385 A.

等离子喷涂工艺对 Cr2AlC/410 复合涂层微观结构和机械性能的影响
为了研究 Cr2AlC 质量分数和超音速等离子喷涂工艺对 Cr2AlC 增强 410 不锈钢复合涂层的微观结构和机械性能的影响,制备并研究了含有不同质量分数 Cr2AlC 的涂层。复合涂层表现出低孔隙率和高附着强度。Cr2AlC 的添加可通过颗粒强化显著提高复合涂层的硬度。然而,当 Cr2AlC 的质量分数为 20% 时,Cr2AlC 的聚集导致涂层制备效率大大降低,附着强度也有所下降。在超音速等离子喷涂过程中,氩气流量主要影响颗粒的飞行速度,而 H2 流量和电流主要影响等离子炬的温度。因此,它们都会影响颗粒的熔化程度和涂层质量。当 Ar 流速为 125 L/min、H2 流速为 25 L/min 和电流为 385 A 时,孔隙率最低,硬度和附着强度最高。
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