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THE USE OF ALUMINIDE DIFFUSION COATINGS TO IMPROVE CARBURIZATION RESISTANCE

机译:铝扩散涂层的使用以提高抗渗碳性

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Aluminide diffusion coatings have been formed on mild steel, AISI 321 stainless steel, alloy 792 and alloy 800 base materials by pack aluminizing. The aluminizing temperature employed for the four materials was adjusted to facilitate coatings on each with a common thickness between 50 and 60μm. A partial characterization of the aluminized materials has been performed. Differential interference contrast optical microscopy was employed to determine coating thickness and to elucidate coating microstructures. Energy-dispersive x-ray analysis was utilised to obtain a composition versus depth profile through the surface of each of the aluminized materials. The results obtained are discussed and compared to previous work. Uncoated and aluminized samples of each material have been pack carburized in air at 900°C. At intervals the samples were removed from the carburizing pack and their weight gain measured. Carburizing was continued for a total cumulative time of 756 hours. It was found that aluminizing had produced a distinct increase in the carburization resistance of the AISI 321 stainless steel, alloy 792 and alloy 800, but, by the end of carburizing, only a marginal increase in that of the mild steel. This is rationalized in terms of oxide layers formed on the surface of the uncoated and aluminized materials.
机译:铝化物扩散涂层已通过包装渗铝在低碳钢,AISI 321不锈钢,792合金和800合金基础材料上形成。调整了这四种材料的镀铝温度,以方便在每种厚度为50至60μm的涂层上进行涂覆。已对渗铝材料进行了部分表征。微分干涉对比光学显微镜用于确定涂层厚度并阐明涂层的微观结构。利用能量分散的X射线分析来获得穿过每种渗铝材料的表面的组成与深度的关系曲线。对获得的结果进行了讨论,并与以前的工作进行了比较。每种材料的未涂层和镀铝样品已在900°C的空气中进行了包装渗碳处理。每隔一段时间从渗碳包装中取出样品并测量其重量增加。继续进行渗碳,累计时间总计756小时。发现渗铝使AISI 321不锈钢,792合金和800合金的耐渗碳性显着提高,但到渗碳结束时,软钢仅略微增加。就在未涂覆和镀铝材料的表面上形成的氧化物层而言,这是合理的。

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