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首页> 外文期刊>Journal of Thermal Spray Technology >Effect of Phase Transformation Mechanism on the Microstructure of Cold-sprayed Ni/Al-Al_2O_3 Composite Coatings during Post-spray Annealing Treatment
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Effect of Phase Transformation Mechanism on the Microstructure of Cold-sprayed Ni/Al-Al_2O_3 Composite Coatings during Post-spray Annealing Treatment

机译:相变机理对后喷涂退火处理冷喷涂Ni / Al-Al_2O_3复合涂层组织的影响

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摘要

NiAl-Al_2O_3 intermetallic-based composite coatings were prepared by cold spraying of Ni/Al-Al_2O_3 composite powders followed by post-spray annealing treatment. The phase transformation mechanism from Ni/Al mechanical alloy to intermetallic compounds and its influence on the microstructure were examined to aim at controlling the coating microstructure. Results show that with the porous Ni/Al and Ni/Al-Al_2O_3 green compacts, a self-propagating high-temperature synthesis (SHS) reaction is ignited at a temperature of 500-600℃. However, a SHS reaction could not be ignited for the cold-sprayed dense Ni/Al and Ni/Al-Al_2O_3 alloy coatings with or without a substrate. The phase transformation from Ni/Al mechanical alloy to NiAl intermetallic compound during post-spray annealing evidently can be attributed to a diffusion mechanism. Compared to the quite porous structure of the composites resulting from SHS, the composite coatings via diffusion phase transformation during post-spray annealing treatment present a relatively dense microstructure with neither large pores nor micro-sized cracks.
机译:通过对Ni / Al-Al_2O_3复合粉末进行冷喷涂,然后进行后喷退火处理,制备了NiAl-Al_2O_3金属间化合物基复合涂层。研究了Ni / Al机械合金到金属间化合物的相变机理及其对显微组织的影响,旨在控制镀层的显微组织。结果表明,采用多孔Ni / Al和Ni / Al-Al_2O_3生坯,在500-600℃的温度下引发了自蔓延高温合成反应。但是,对于有或没有基材的冷喷涂致密Ni / Al和Ni / Al-Al_2O_3合金涂层,均无法引发SHS反应。喷涂后退火过程中从Ni / Al机械合金到NiAl金属间化合物的相变显然可以归因于扩散机理。与由SHS制成的复合材料的多孔结构相比,喷涂后退火处理过程中通过扩散相变的复合涂层呈现出相对致密的微观结构,既没有大孔也没有微观裂纹。

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