首页> 外文期刊>Journal of Thermal Spray Technology >Microwave-Assisted Post-processing of Detonation Gun-Sprayed Coatings for Better Slurry and Cavitation Erosion Resistance
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Microwave-Assisted Post-processing of Detonation Gun-Sprayed Coatings for Better Slurry and Cavitation Erosion Resistance

机译:微波辅助后处理爆炸喷枪喷涂涂料,用于更好的浆料和空化腐蚀性

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摘要

Slurry and cavitation erosion often limits the durability of many fluid machines such as hydroturbines, pumps, and propellers. Despite good resistance against slurry erosion, thermal spray coatings generally exhibit poor resistance against cavitation erosion. The performance of thermal spray coatings under cavitation erosion is limited by the presence of defects such as pores, splat boundaries, and limited adhesion with the substrate. In the present work, we performed post-processing of the WC-10Co-4Cr and Ni coatings deposited using the detonation gun process. For post-processing, microwave technique was used owing to its capability for atomic-level heating. The microstructural characterization of the as-sprayed and post-processed coatings showed significant homogenization for the latter. Compared to the typical lamellar structure of as-sprayed, the processed samples exhibited a columnar structure with metallurgical bonding with the substrate. The mechanical properties of the coatings were significantly improved after post-processing owing to the elimination of splat boundaries and pores which significantly enhanced the cavitation and slurry erosion resistance. Post-processed coatings showed at least ten times higher resistance to cavitation erosion. The slurry erosion resistance of the coatings also improved up to three times depending upon the impingement angle. A significant difference in the erosion mechanism was also observed after post-processing.
机译:浆料和空化侵蚀通常会限制许多流体机器,例如水道,泵和螺旋桨。尽管对浆料侵蚀造成了良好的抵抗力,但热喷涂涂层通常具有差的抗空心腐蚀性。在空化侵蚀下的热喷涂涂层的性能受到诸如孔隙,夹持边界和与基材的有限粘附的缺陷的限制。在本作工作中,我们进行了使用爆炸枪工艺沉积的WC-10Co-4CR和Ni涂层的后处理。对于后处理,由于其原子级加热能力而使用微波技术。喷涂和后处理后涂层的微观结构表征显示出对后者的显着均质化。与喷涂的典型层状结构相比,加工样品表现出柱状结构,与冶金键合。由于消除了分裂边界和孔隙而显着提高了空化和浆料腐蚀性,后处理后涂层的机械性能显着提高。后处理涂层显示出对空化腐蚀的耐受性较高的至少10倍。取决于撞击角度,涂层的浆料抗蚀性也能够提高三倍。后处理后,还观察到侵蚀机理的显着差异。

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