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Simultaneous chromizing and aluminizing using chromium oxide and aluminum: (II) on austenitic stainless steel

机译:使用氧化铬和铝同时进行铬化和铝化:(II)在奥氏体不锈钢上

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摘要

The codeposition of Cr and Al on 304 stainless steel his been investigated using the conversion reaction of Cr{sub}2O{sub}3 to halide. An increase in ratio of Cr{sub}2O{sub}3 to Al in the pick composition tends to form a chromide coating, which is very poor in high temperature oxidation resistance. A codeposited coating layer. which shows high oxidation resistance. is mainly characterized by three zones: an outer layer of iron aluminide, a nickel-rich iron aluminide, and an interdiffusion zone consisting of alpha ferrite and nickel aluminide precipitates. oxidation resistance increased as the thickness of the outer iron aluminide layer increased. This means that the aluminum in the outer layer. rather than that in nickel aluminide precipitates or alpha ferrite, acts as a strong aluminum source forming a protective Al{sub}2O{sub}3 scale it the coating surface. Using a pick mixture containing 10 wt.% Cr{sub}2O{sub}3 and 10 wt.% Al, a coating. which shows excellent oxidation resistance at 1100℃, was obtained after codeposition of aluminum and chromium on 304 stainless steel at 1050℃ for about 6-8 h.
机译:利用Cr {sub} 2O {sub} 3向卤化物的转化反应,研究了Cr和Al在304不锈钢上的共沉积。镐头组合物中Cr {sub} 2O {sub} 3与Al的比例增加趋向于形成铬化物涂层,该铬化物涂层的高温抗氧化性非常差。共沉积涂层。表现出高抗氧化性。其主要特征在于三个区域:铝化铁的外层,富镍铝化铁以及由α铁素体和铝化镍沉淀物组成的互扩散区。抗氧化性随外部铝化铁层的厚度增加而增加。这意味着铝在外层。而不是铝化镍沉淀或α铁素体中的铝,它起着强大的铝源作用,在涂层表面形成了一层保护性的Al {sub} 2O {sub} 3氧化皮。使用包含10重量%的Cr {sub} 2O {sub} 3和10重量%的Al的挑选混合物,形成涂层。在1050℃将铝和铬共沉积在304不锈钢上约6-8小时后,可得到在1100℃具有优异的抗氧化性能。

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