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Fe-BASED AMORPHOUS-NANOCRYSTALLINE THERMAL SPRAY COATINGS

机译:Fe基无定形纳米晶体热喷涂涂料

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In this work, a new composition of Fe-15Cr-4Mo-5P-4B-lC-lSi (wt.%) amorphous powder was produced by mechanical alloying of elemental powder mixture. Thermal spraying of amorphous powder was done by high velocity oxy fuel spraying technique at various spraying conditions to obtain the desirable amorphous and nanocrystalline coatings. It was found that alpha-Fe based supersaturated solid solution is first formed during mechanical alloying which transforms to amorphous structure at longer milling times. The crystallization kinetic parameters suggest that the crystallization mechanism is dominantly governed by a three-dimensional diffusion-controlled growth. The crystallization of amorphous structure occurs in one single stage. By carefully controlling the spraying parameters and proper selection of powder composition, the desired microstructure with different fraction of amorphous and nanocrystalline phases and therefore with different properties could be obtained.
机译:在这项工作中,通过元素粉末混合物的机械合金化产生了Fe-15cr-4MO-5P-4B-LC-LSI(WT.%)非晶粉末的新组合物。通过高速氧燃料喷涂技术在各种喷涂条件下进行无定形粉末的热喷涂,得到所需的无定形和纳米晶涂层。结果发现,首先在机械合金化期间形成α-Fe的过饱和固溶体,其在更长的研磨时间转变为无定形结构。结晶动力学参数表明结晶机制由三维扩散控制的生长占主导地位。无定形结构的结晶发生在一个单一阶段。 By carefully controlling the spraying parameters and proper selection of powder composition, the desired microstructure with different fraction of amorphous and nanocrystalline phases and therefore with different properties could be obtained.

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