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Influence of the Slurry Thickness and Heat Treatment Parameters on the Formation of Aluminium Diffusion Coating

机译:浆料厚度和热处理参数对铝扩散涂层形成的影响

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摘要

Formation of the FeAl3 or Fe2Al5 phase during the aluminization of iron-based alloys causes detrimental behaviour of the material due to the brittleness of these phases and the different coefficient of thermal expansion between the base material and the resulting diffusion coating. In order to control the microstructure of the produced diffusion zone and its evolution, two different slurry thicknesses (30-50 and 100-150 A mu m) using high-purity aluminium spherical particles and three different heat treatments times (5, 10 and 20 h) were tested over ferritic-martensitic P92 steel. After the heat treatment, iron-aluminide phases rich in aluminium content were formed. After 1350 hours of exposure in air at 650 A degrees C, it was found that for the coatings in the range of 30-50 A mu m neither FeAl3 nor Fe2Al5 phase remained in the diffusion coating, while Fe2Al5 did remain in those coatings in the range of 100-150 A mu m.
机译:在铁基合金铝制化过程中形成FEAL3或Fe2Al5相导致材料由于这些阶段的脆性和基材之间的脆性和基材之间的不同热膨胀系数和所得到的扩散涂层而受损。 为了控制产生的扩散区的微观结构及其演化,使用高纯度铝球形颗粒和三种不同的热处理时间(5,10和20 H)以铁素体 - 马氏体P92钢测试。 在热处理之后,形成富含铝含量的铁 - 铝化胺相。 在650℃下在空气中暴露1350小时后,发现对于30-50Aμm的涂层,既不是FEAL3和Fe2Al5相留在扩散涂层中,而FE2AL5确实保留在那些涂层中 100-150亩的范围。

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