A Novel Bond Coat with Excellent Adhesive Strength Deposited by Plasma-Spraying of Mo-Clad Core-Shell-Structured Metal Powders

Chang Li, Jiu-Jing Song, Xiao-Tao Luo, Xin-Yuan Dong, Li Zhang
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Abstract

The metallic bond coat is generally utilized to increase the coating adhesion and the adhesion of thermal spray bond coat is of essential importance to applications. However, it usually depends on mechanical bonding with a low adhesive strength. In this study, a novel metal bond coat with high cohesion strength is proposed by plasma-spraying Mo-clad Ni-based or Fe-based spherical powder particles. Mo-cladding ensures the heating of spray particles to a high temperature higher than the melting point of Mo and prevents metal core from oxidation during spraying. Theoretical analysis on the splatsubstrate/ splat interface temperature and experimental examination into coating-substrate interface microstructure were performed to reveal the metallurgical bonding formation mechanism. The local melting of substrate surface and resultant bond coating by impacting high temperature droplets creates metallurgical bonding throughout the interfaces between substrate and bond coat, and within bond coat. The experiments were conducted with different substrates in different surface processing conditions including Ni-based alloy, stainless steel and low carbon steel. All pull-off tests yielded strong adhesion higher than the adhesives strength of 80 MPa. The present results revealed that Mo-clad metal powders can be used as new bond coat materials and high performance bond coat can be deposited by atmospheric plasma spraying.
等离子喷涂mo包覆核壳结构金属粉末制备一种具有优异粘结强度的新型粘结层
通常采用金属粘结层来增加涂层的附着力,热喷涂粘结层的附着力对应用至关重要。然而,它通常依赖于机械粘接,粘接强度低。在本研究中,通过等离子喷涂mo包覆ni基或fe基球形粉末颗粒,提出了一种具有高内聚强度的新型金属结合层。Mo包层保证了喷雾颗粒加热到高于Mo熔点的高温,防止金属芯在喷涂过程中氧化。通过对溅射-衬底/溅射界面温度的理论分析和对涂层-衬底界面微观结构的实验研究,揭示了冶金结合的形成机理。通过冲击高温液滴,基材表面的局部熔化和由此产生的粘结涂层在基材和粘结涂层之间以及粘结涂层内部的整个界面上产生冶金结合。实验采用镍基合金、不锈钢和低碳钢等不同表面加工条件下的不同基体进行。所有的拉脱试验均获得了高于80 MPa胶粘剂强度的强附着力。结果表明,mo包覆金属粉末可作为新型的粘结层材料,并可通过大气等离子喷涂制备高性能的粘结层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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