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Effects of Nanosize Particles on the Intermetallic Compound Formations of Cold Sprayed Coatings

机译:纳米粒子颗粒对冷喷涂层金属间化合物形成的影响

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Comparative studies on the intermetallic compound (IMC) formations of nano- and micro-size Sn with Ni and Cu in cold gas dynamic sprayed (CGDS, or Cold Spray) coatings were carried out. High purity pure nano (average 150 nm) and micro (under 45 μm) Sn were selected and prepared as raw materials mixture in order to be sprayed onto Ni and Cu plate-shape substrates. Nano particles of Sn were successfully coated under conventional coating parameters when they are mixed with microsize materials. And thermodynamic predictions regards to compound formation similarly worked out for both nano and micro Sn mixture. However, the kinetics of formation reaction were turned out to be different. In all case, nano particle showed more sluggish behavior. After post-annealing, microsize Sn formed larger amount of IMC with Ni than nanosize Sn although, owing to larger interfacial area, more intensive reactivities were expected. Also, there were significant differences in the size and distribution of eutectic pores as well.
机译:进行了对金属间化合物(IMC)在冷气动态喷涂(CGDS或冷喷涂)涂层中Ni和Cu的金属间化合物(IMC)形成的对比研究。选择高纯度纯纳米(平均150nm)和微观(45μm)Sn,并制备为原料混合物,以喷涂到Ni和Cu板形衬底上。当它们与微化材料混合时,在常规涂层参数下成功地涂覆了Sn的纳米颗粒。热力学预测对化合物形成的介绍类似地用于纳米和微量Sn混合物。然而,原始形成反应动力学是不同的。在所有情况下,纳米粒子显示出更缓慢的行为。在退火后,微化Sn与纳米尺寸Sn形成较大量的IMC,但由于较大的界面区域,预期更加强烈的反应性。此外,对共晶孔的尺寸和分布也存在显着差异。

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