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Development of hard intermetallic coatings on austenitic stainless steel by hot dipping in an Al-Si alloy

机译:通过热浸在Al-Si合金中在奥氏体不锈钢上开发硬质金属间涂层

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摘要

The austenitic stainless steel was coated by dipping it into a molten Al–12.4%Si alloy at 765 °C. The effect of\udimmersion times in the range of 60 to 900 s was investigated with respect to the crystalline structure,\udthickness, and microhardness of the coating. A uniform layer (~12 μm) of intermetallic Al12(Fe,Cr)3Si2 with\udhexagonal crystalline structure is formed, irrespective of the immersion time. Incorporation of Si to the\udcoating changes the growth mode of the coating from inwards to outwards, which favours the development\udof a flat substrate/coating interface. Microhardness of the coating decreases with increasing dipping time,\udranging between 850 and 600 HV for the shortest and longest immersion time, respectively. These hardness\udvalues are higher than that for the substrate of about 200 HV, irrespective of the immersion time.
机译:通过在765°C下将其浸入熔融的Al-12.4%Si合金中来涂覆奥氏体不锈钢。关于涂层的晶体结构,厚度和显微硬度,研究了浸入时间在60到900 s范围内的影响。无论浸入时间如何,均会形成具有\ u六方晶结构的金属间Al12(Fe,Cr)3Si2均匀层(〜12μm)。将Si掺入\涂层中可以改变涂层的生长方式,从内到外,这有利于平坦基材/涂层界面的形成。涂层的显微硬度随浸渍时间的增加而降低,在最短和最长的浸渍时间分别在850和600 HV之间。与浸入时间无关,这些硬度/ ud值高于约200HV的基材的硬度/ ud值。

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