class='kwd-title'>Keywords: High temperature oxi'/> Oxidation characteristics of porous-nickel prepared by powder metallurgy and cast-nickel at 1273 K in air for total oxidation time of 100 h
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Oxidation characteristics of porous-nickel prepared by powder metallurgy and cast-nickel at 1273 K in air for total oxidation time of 100 h

机译:粉末冶金法和铸镍法在空气中以1273小时的总氧化时间100h制备的多孔镍的氧化特性

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摘要

class="kwd-title">Keywords: High temperature oxidation, Porous nickel, Cast nickel, Duplex macrostructure, Inward migration, Linear kinetics class="head no_bottom_margin" id="ab010title">AbstractThe oxidation behavior of two types of inhomogeneous nickel was investigated in air at 1273 K for a total oxidation time of 100 h. The two types were porous sintered-nickel and microstructurally inhomogeneous cast-nickel. The porous-nickel samples were fabricated by compacting Ni powder followed by sintering in vacuum at 1473 K for 2 h. The oxidation kinetics of the samples was determined gravimetrically. The topography and the cross-section microstructure of each oxidized sample were observed using optical and scanning electron microscopy. X-ray diffractometry and X-ray energy dispersive analysis were used to determine the nature of the formed oxide phases. The kinetic results revealed that the porous-nickel samples had higher trend for irreproducibility. The average oxidation rate for porous- and cast-nickel samples was initially rapid, and then decreased gradually to become linear. Linear rate constants were 5.5 × 10−8 g/cm2 s and 3.4 × 10−8 g/cm2 s for the porous- and cast-nickel samples, respectively. Initially a single-porous non-adherent NiO layer was noticed on the porous- and cast-nickel samples. After a longer time of oxidation, a non-adherent duplex NiO scale was formed. The two layers of the duplex scales were different in color. NiO particles were observed in most of the pores of the porous-nickel samples. Finally, the linear oxidation kinetics and the formation of porous non-adherent duplex oxide scales on the inhomogeneous nickel substrates demonstrated that the addition of new layers of NiO occurred at the scale/metal interface due to the thermodynamically possible reaction between Ni and the molecular oxygen migrating inwardly.
机译:<!-fig ft0-> <!-fig @ position =“ position” anchor“ == f4-> <!-fig mode =” anchred“ f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:高温氧化,多孔镍,铸镍,双相宏观结构,向内迁移,线性动力学类摘要在空气中以1273 K的温度研究了两种不均匀镍的氧化行为,总氧化时间为100 h。两种类型是多孔烧结镍和微观结构不均匀的铸镍。多孔镍样品的制备方法是:压紧镍粉,然后在1473K的真空下烧结2小时。用重量分析法测定样品的氧化动力学。使用光学和扫描电子显微镜观察每个氧化样品的形貌和横截面显微结构。 X射线衍射和X射线能量色散分析用于确定形成的氧化物相的性质。动力学结果表明,多孔镍样品具有较高的不可重复性趋势。多孔镍和铸镍样品的平均氧化速率最初是很快的,然后逐渐降低,变成线性。线性速率常数为5.5×10 -8 g / cm 2 s和3.4×10 -8 g / cm 2

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